Thursday, October 16, 2008

Iron Furnace, Foundry Furnace and Induction Furnace Information

Casting

In Casting , the type of furnace you have at your foundry, or workshop determines a lot of the work you can or can not do. Since the beginning of time, people who enjoy casting have been making their own furnaces. The plans for home made furnaces are eagerly shared among the enthusiasts so finding blueprints and instructions should not be difficult. But before you rush off to find the blueprints you may want to take time to learn about the types of Metal Casting furnaces available to help determine which one will suit your needs. This is not saying that you should only have one furnace at any given time, but this way you will know what project will work best for which furnace.

Cupola

Cupola furnaces are among the most popular with backyard foundries. Many casters construct their own cupola which proves to be cost effective and highly efficient if done properly. Since cupola furnaces can achieve high melting temperatures they are primarily used for the melting of iron and bronze, though aluminum can also be melted when attention is paid to keeping the temperature low. The primary fuel source for cupola furnaces are coke using limestone for flux.

By not using a crucible, the Cupola furnace is able to melt the metal at a faster rate. While individual designs of these furnaces differ due to varying resources and design ideas, the basic component of a cupola furnace is the same. The cupola furnace must be elevated above the ground and installed with a drop bottom usually hinged, which will allow the excess metal, fuel source, and other waste to drop from the furnace. You will need at least two types of shafts, ladle shafts and air shafts and they both provide similar outlets for air and metal.  A slag tap hole can be placed on the furnace usually in the back, higher then the tap hole, which will allow the slag to flow out easily.

With most small home foundries, the cupola furnaces are preferred over that of other furnaces for its high melting rates and for how easily the construction of such a furnace can be.

Reverberatory

The Reverberatory Furnaces are commonly found in industrial plants but there have been quite a number of home grown foundries that have used this furnace type with much success. The basic idea of a Reverbeatory Furnace is to use the heat reflecting off a surface, usually brick, to heat the metal, which is aluminum in most cases. This helps because then the metal doesn't even come close to touching the flame or fuel. Its commonly known that the process is also used in Puddling Furnaces. The name Reverberatory and Puddling are often used interchangeably. By placing the metal in a shallow depression and then directing an intense flame over that depression and to the wall, the heat rebounds to melt the metal. Controlled the length of the path of the flame is something that most casters will do because then you can control the intensity of the heat.

There are many designs for the reverberatory furnace, all of which will include exhaust ports and the rear of the furnace must be able to withstand the intense heat and be able to bounce it back into the chamber.

Bronze, aluminum, tin, and many other ores can be melted in a reverberatory furnace all depending on the construction of the actual furnace and the heat of the flame. This type of furnace has been around since at least the Middle Ages and was used primarily for bronze work.

Electric Arc

Electric Arc furnaces are normally used in Industrial foundries. Most hobby casters do not use these furnaces due to cost, space issues, and a general inconvenience. There are two forms of the electric arc furnace, the direct and indirect.

The direct arc has three electrodes which are used to heat metal by way of the arc. This creates an incredible amount of heat and so water jackets and other cooling devices will be needed for operation.

An Indirect Arc is only using just one electrode and really thats only the thing that is different between the direct arc furnace.

Electric Induction Metal Casting

Electric Induction furnaces are becoming all the more popular with large industrial size foundries that enjoy the clean burning and efficiency of an electrical furnace. Copper coils surround the crucible with the metal inside which can reach extremely high temperature suitable for melting most metals.

Rotary

The Rotary style furnaces are hailed for their ease of use being fully or at the very least partially automatic. These furnaces tend to be harder to construct though there are resources and companies online that sell rotary furnace.

The different furnace types do affect the quality of the work being produced, so it is important to keep that in mind as you cast. With a little trial and error, you should find the perfect furnace to fit your needs so you can start building one of your very own.

 
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Wednesday, October 15, 2008

All About Brass Casting

Casting

Brass is a great metal to cast with as it can provide some really great looking results.  Many believe that brass, an alloy of zinc and copper, has been around since our prehistoric ancestors. You will find brass today is a lot of musical instruments including trumpets and of course the penny's in your pocket are made of brass.

The low melting point makes brass a really great material for metal casting since even the smaller home grown furnaces can be used. By adding and subtracting alloys from bronze one can successfully make hard or soft bronzes. Aluminum and tin are sometimes added to bronze to create a layer that is not corrosive and very durable. Of course, for the home foundry users, playing alchemist isn't really an option or necessary and scrap brass is perfectly acceptable in many cases. Locating scrap pieces of brass should be sufficient enough for whatever project you have in mind. Due to brass' gleam and yellow shine, many artists will use the alloy for sculptures, jewelry, and other decorative items. Other metal casters may choose to use brass for general hardware needs or vintage car restoration, and of course, whatever else they may choose.

Generally there are three casting methods that prove to be suitable for Metal Casting . Metal casters may choose to experiment with different methods and should not allow themselves to be limited.

Metal Casting casting is usually associated with bronze casting but can also be used for brass and for really any other metal. By using a wax model and covering it with a ceramic shell, artisans are able to inject the molten alloy which replaces the wax. The brass piece will be shown once you start to chip away at the shell. Lost wax casting is used when a high attention to detail is needed. Artists or metal casters looking to create decorative brass pieces or sculptures will find that the lost wax casting technique will meet their needs far better than other techniques and methods.

Die casting is yet another method used for Metal Casting . Die casting is normally used in commercial foundries since the initial start up cost is undesirable for the smaller home foundries. By using a reusable mold created from steel, the caster will be able to create scores of identical products. Die casting with brass should be used if the caster or artists is planning to make multiples of one product and can find a viable market for those pieces.

A very popular method for small foundries today is a type of casting that has been around the longest called Sand Casting. The brass is poured into sand molds and can create a unique look which may be preferred for the artisans. Sand casting tends to be the most economically sensible for small foundries and if the casting does not have to be incredibly attractive then this method is preferable for many.

Whichever casting method is used for casting the brass really depends on the individual. Many find that casting brass to be fun and easy since it does melt rather easily. What is nice about brass, is that its easier on the budget as the furnace required to melt the metal is a lot smaller and easier to have at a home. Many have even been able to melt brass in small ceramic pots using charcoal!

Some ideas of what to make with brass include candle holders, plumbing fixtures, and even musical instruments
 
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Bronze Metal and Bronze Casting Described

Metal Casting

Bronze Casting has been practiced for centuries. Many civilizations have used this alloy for weapons, sculptures, and general pieces of hardware. The popular way to cast bronze is the Lost Wax Casting process which was first used sometime in the 3000 BC near ancient Sumeria. The Lost Wax process is still used to this day and its modern equivalent Investment Casting is very popular with jewelry makers.

Bronze is the preferred alloy for metal working artists as it's relatively easy to work with and resistant to corrosion. The properties of bronze tend to be stronger than most other alloys, except of course for steel, and lends itself easily to the molding and casting process. Many small foundries like the kind that can be found in a backyard or workshop find that bronze is a great material to work with and with a melting point of 1,700 Fahrenheit or about 925 Celsius many homemade furnaces are able to melt down the bronze quickly and efficiently.

Many modern day artists create their own furnaces with the metal casting in mind. These metal casters employ the Lost Wax Casting method which proves to be the best when dealing with the alloy. The Lost Wax Casting is making an original of the sculpture from wax and then creating a mold using this original. Often times the original is lost during the mold making process so keep that in mind if you want to hang on to the original for whatever reason. Molten wax is poured into the mold which is chased or smoothed of imperfections. During this point, any other pieces are attached and small wax tubes are placed into the piece. These tubes will be how the molten bronze is going to travel into the piece replacing wax with the alloy.  When this is complete the artist will create a ceramic shell around the wax model. What really does the trick on helping to melt the wax is the shell which helps form the molten bronze which in turn melts the wax. When the molten bronze is poured the bronze takes place of the wax. Afterwards, the artist will crack the shell and reveal the bronze piece. If you are looking for a method that transfers every single detail from the wax onto the bronze, this method is going to give you more detail than any other.

Some artists really enjoy addint Patina to the sculpture but its really to each his own. The Patina is a chemical that when applied to bronze creates colors and makes the bronze take an aged look. The Patrina compounds used depends on the type of color desired. Ferric Nitrate will make the bronze take on a red or brown color while Sulphurated Potash will make black and Cupric Nitrate will create blue and green. Modern day artists choose to go with a very high polished bronze instead of using these compounds. This step depends solely on the artist’s taste and the look they are going for.

Metal Casting will remain a popular medium until another alloy is developed that exhibits properties that are easier to manage and are more resistant to corrosion. Casting the alloy is easily done so metal casters that want to experiment are encouraged to do so. Making anything from small figurines, large sculptures, and even cabinet handles can be accomplished with the use of bronze. The only limitations in Metal Casting are with the caster himself.
 
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Tuesday, October 14, 2008

Artistic Casting and Art Casting Information along with Metal Casting Basics

Metal Casting

Art Casting is an ancient method of creating statues and sculptures that has been in practice in Meso-America, China, and Ancient Egypt since 2000 BC. The Greeks practiced it, so did the Romans, and pretty much any civilization with a strong interest in art.

Bronze is an alloy of tin and copper that has been used to make weapons and sculptures since its discovery by man. Bronze is able to fill in the fine detail of molds making it very desirable to artists. When art casting, bronze is the alloy of choice since it is both beautiful and easy to work with. There are few examples of bronze statues left from antiquity since the alloy became scarce and many of the statues were melted down for weapons and other sculptures usually for new emperors or victors.

The Lost Wax Casting process is the preferred method used when art casting. This process was used in ancient times to create bronze items. Small foundries like the type found in backyards, personnel workshops, and garages are able to use the Lost Wax Casting process with a certain amount of professionalism. Commercial foundries and professional art companies use the Lost Wax Casting process as well to create custom items and monuments. The process remains, essentially, the same since the ancient craftsmen who first pioneered the method. Investment Casting is just the same as lost wax casting except its called a different name because its being used for commerical manufacturing or jewelry making.

Art Casting is one of the more enjoyable reasons to fire up the furnace and get into metal casting. While most think metal casting to be strictly limited to hobbyist and historical re-enactors, casting is a popular skill and craft used by a wide range of people for varying reasons. Artists see the need to have metal casting skills as it allows the artists to have direct control over the process instead of out sourcing it to a commercial foundry. Commercial Foundries have guys with lots of experience and so to hire their services you will pay the highest of prices. Metal Casting on your own is often times economical and just smart.

Plenty of time should be allocated to the Lost Was Casting process as well as plenty of attention to detail because although it is simple compare to other methods, if you don't have those two items, then you will be in trouble. The artists will start with an original piece sculpted from wax. The original can be made of other substances like clay or even metal but wax seems to be the easiest to work with. The original will be used to make the mold. If the piece to be cast is large, multiple molds will be needed. This is common in art casting and completely possible with the use of shims and keys that will allow placing the pieces together after the casting process easier. Most molds will be made out of latex or other materials to help transfer the fine detail into the mold cavity.

The original is often destroyed during the mold making process upon removal. Molten wax is poured into the mold until the desired thickness is achieved.  When dry, this wax copy is removed and chased which rids the piece of imperfections and is used to combine the pieces.  You will place paths for the molten metal on the wax copy.  You will also place a cup or funnel at the top of the copy. This process is called spruing and is done in wax.

A ceramic shell is placed around the copy. The shell isn't really ceramic but a sand and liquid silica combination.  You will repeat this step until the shell is thick enough for the piece. You will then heat the item which will melt the wax inside. The wax runs out of the shell through the paths placed during spruing. 

Then comes the part for the molten bronze. The bronze is poured into the top of the hollow shell. When cool you are going to remove the shell carefully to reveal the finished product. The bronze sculpture is chased, painted, and finished up however the artists choose.

Art casting can be done with any metal or alloy. If you are going to use the Lost Wax Casting process then you do not have to stick with bronze. In order to get that exact look sometimes you have to try a few other metals to see what works the best.

 
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Aluminum Foundry Information and Info on How to Aluminum Cast

Metal Casting

Aluminum is the most common alloy used in metal casting. There are a few causes as to why this would happen and the main ones are availability and quality. Many metal casters have access to a large amount of aluminum with soda and beer cans that they crush and melt down. Aluminum has several desirable properties for the metal caster no matter if they are a hobbyist, artist, or are casting needed parts for home repairs. Many who cast aluminum also love the alloy since it can be used in all of the varying casting processes giving it a wide range of possibilities. Aluminum is often used as a practice alloy for the first time metal caster or for casters who are trying out new methods and ideas.

Many of the small home furnaces that are found in most hobbyists’ foundries will be able to easily melt aluminum. It may even be possible to use charcoal though many just use propane since they have it on hand for other alloys. For your first run at casting, charcoal should be fine.

Soda Cans work out well for aluminum casting, but you need to have a pretty big supply depending on the size and shape of the object you want to cast. Make sure to crush the cans as much as possible before placing in the crucible or other area that will be used to melt the alloy.

Since any Metal Casting process can be used with aluminum the choice will rest with you. There are three casting methods out of the numerous methods available for aluminum that seems to be preferred by small time metal casters. These methods are sand casting, lost foam casting, and investment casting.

Remember, though, aluminum can be used with any metal casting process so do not be afraid to experiment.

Sand Casting

Sand casting aluminum is very common and is a popular way to break in a new furnace. What most casters do it use a bonding agend that they mix in so that a mold forms around the item to be cast. The item, or pattern, is removed very carefully revealing the mold. If there will be any empty spaces in the finished product then a core is added to the mold. The core can be made of sand and is placed so that the molten metal fills the area of the mold around it. So, say you're making a picture frame you will place a cone where the glass will go so the molten aluminum will not fill that area.

Many choose not to use sand casting since it does not allow for fine detail whereas other casting does, but it is inexpensive.

Lost Foam Casting

Lost foam casting which is sometimes called evaporative casting. The lost foam casting is a form of sand casting. Using old soda cans in conjunction with aluminum casting really makes the process even more affordable. A foam copy of what you want to cast is created and surrounded by a ceramic shell. Loose sand is where you will want to place the copy so that you can help to hold the shape during the pour. The molten aluminum is poured into a cup that in inserted into the copy. The foam vaporizes and the aluminum replaces it filling the area in the ceramic shell. Removing the shell will reveal the Metal Casting . This method is great for fine details but the copy is lost to the ages. Luckily, foam is not all that expensive.

Investment Casting

Investment casting is commonly used by jewelers as it allows precise castings with full detail. This form of casting has been around since ancient times under the name of lost wax casting. Investment casting involves creating a wax copy which is then covered in slurry creating a shell, much like the kind of shell in lost foam casting. The molten aluminum replaces the wax which melts out of the shell and can be collected for reuse. Artists and casters that need high precision parts favor this technique.

Given the number of options that aluminum presents to the caster finding the right casting method will involve some time. To help decide which Aluminum Casting process is best consider factors like quality and cost.

Many metal casters use aluminum far more then they use other alloys like brass, bronze, or iron.
 
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Monday, October 13, 2008

Cupola Casting Information

Metal Casting

A Cupola is a type of furnace that is very much alike to blast furnace. The Cupola furnace is refractory lined, stack of steel that is around 20 to 35 feet high. It rests on a base plate that is made of cast iron and has four legs. The casting that is obtained from the cupola furnace is known as a cupola casting.

Cupola Furnace: The Cupola Casting furnace is one of the oldest forms of furnace that have been used by the iron and metal foundries. Most of the industries are aware and have used the Cupola furnace as it is the curdest and simplest furnace in the industry. However, the cupola’s use is declining and the furnace is fast being extinct.

Merits of the Cupola Metal Casting Furnace: Though the electric or the blast furnace has started replacing the Cupola Furnace, it has some special benefits of its own. The Cupola furnace is very nice in the fact that its set up so it can remain always in action and working order. The furnace also offers a very high melting rate. The most important merit of the furnace is that it has relatively very low melting cost. The furnace has also permits a lot of ease of operation.

However, due to the invention and development of the electric furnace, the use of Cupola furnaces has substantially declined. The electric furnace melts a much larger amount of metal. The operation cost of the electric furnace is also very low. The electric furnace also emits a much smaller level of smoke heat and also pollutants.

Construction of the Cupola furnace: The Cupola furnace is constructed in a crude and simple manner. The Cupola Metal Casting furnace is a vertical structure like a steel shell. The steel is lined with refractory bricks from the inside. The furnace has an opening half way in the vertical shaft. The charge is introduced through the opening. The charge is divided into different layers. It contains the metal that is to be melted. The metal is mixed with coke, fuel, and lime stone flux. The fuel is burnt directly into the air and is introduced in to the furnace through the tuyeres which are positioned above the hearth. The hot gases that have been produced ascend and pre heat the charge.

The cupolas in majority of the cases have drop down doors. The bottoms can be dropped down to facilitate the cleaning and the repairs. At bottom in front of the furnace is a tap hole. The molten metal is removed from the tap hole. At the rear there is also another slag hole. On the top of the stag you will find that it is covered with a spark or what is also called a fume arrester.

Usually the cupola has a diameter of 405 to 2000 mm. It is operated on varying fuels for different metal ratios. The molten metal that can be produced in the copula of this size at a speed of 1 to 30 tones per hour.

Continuity of process: After the process of melting has ended, the charging is halted. However, the blast of hot air is always maintained till all the metal has been melted and has been taken out from the tap hole. When the air cools down, the doors at the bottom are opened and the residue that has been left behind is removed.           


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Saturday, October 11, 2008

Learn about Casting Patterns and the different types of Casting Patterns

Metal Casting

A casting pattern is basically a shaped form of either metal or wood where sand is packed around it in the mold. When this pattern is removed, the resulting cavity would be exactly the shape of the pattern object that was to be cast. The casting pattern should however be designed in order to be easily removed without any damage done to the mold. The pattern should be also be perfectly dimensioned and should be very durable for the intended use. The patterns that are used in sand casting can be made of plastic, metal, wood or any other material. The casting patterns are made to the right standards of construction this is basically because they can last for a reasonable time. The durability of the pattern would however depend according to the quality of grade in the casting pattern. If the pattern is made of right quality then they would be constantly providing dimensionally perfect casting patterns.

The process: The process of making Metal Casting is actually called as pattern making which is in fact a skilled trade which is related to the trades of die and tool making and mold making. However this also sometimes incorporates the elements of fine wood making. The makers of casting patterns basically learn their pattern making skills through trade schools and apprenticeships over a number of years of experience. The pattern maker is really the one who carries out the design but sometimes you will see an engineer who many help a few times.

Design: The Metal Casting incorporate proper allowances for the shrinkage and this process is called as contraction allowance. Their accurate values however depend on the alloys that are being used and the accurate sand casting methods that is used. There are a few alloys that have the overall linear shrinkage of nearly 2.5 percent as other alloys might actually experience 0 percent shrinkage or even a light positive shrinkage or it might also increase the size in the casting process. The amount of the shrinkage is also dependant on the sand casting process that is employed for instance chemical bonded sands, clay bonded sands or other bonding materials.

The casting patterns should also include proper allowance for the draft. This means that the sides would be tapered so that when it would be taken out from the sand it will not tend to drag out sand of place along with it. This process can be called a taper, but it is only preformed when the temperature ranges from one to three degrees. The foundry engineers or the pattern maker of the casting patterns actually decide where the gating systems, risers and the sprues are places in terms of casting patterns. In this pattern a hole is desired in the Metal Casting that uses a core which defines the location and volume of in the casting where the metal would not flow into. Chills are also used sometimes located on the casting patterns surface and these are then formed into sand molds. These casting patterns however continue to be a vital requirement for sand casting of metal.
 
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Learn about Casting Molds and the different types of Casting Molds

Metal Casting

Metal Casting is basically the manufacturing process through which a liquid material is emptied into a mold that includes a hollow opening of the desired art or shape and is then allowed to harden. This hardened casting is then removed and broken out in order to complete the process. Apart from using sand as the main mold material there is a metal that is used as the mold. Normally, a cast meehanite or an iron is used as the material for mold and the objects are made from the sand or metal. The cavity surface is basically covered with a thin layer of material that is heat resistant which can be either sodium silicate or clay.

Casting Molds: The casting molds are actually pre heated to nearly 392 degree Fahrenheit before the metal is pored in the cavity. The design of cavity for these casting molds does not chase the same principle for shrinkage like in the sand casting molds. This is because of the fact that the metal casting molds heat up and enlarge during the pouring process and so the cavity does not need to be expanded like in the sand castings. Nevertheless, care should be taken in order to ensure a correct thermal balance as you can use external water source for cooling or you can also opt for suitable radiation techniques.

Permanent Metal Casting : Although these permanent casting molds are not as flexible as the sand castings which allow to be used in different metal patterns or designs but these lower the cost of producing the part. When there is a production run of more than 1000 parts the permanent casting molds would produce much lower piece of cost part. Apart from this, the break even point also depends on the density of the part. There are more complex parts that are favored when you use these permanent casting molds. The typical part size would be around 50g to 70 kg and the basic materials used are medium and small parts that are made from magnesium, aluminum and brass and also their alloys.

Slush Metal Casting : The slush casting molds are actually a special type of permanent casting molds in which the molted metal is not allowed to solidify completely. After gaining the desired wall thickness the still not solidified molted metal is then poured out. This is basically used in order to make void ornamental objects like lamps, candlesticks and statues.

Corthias Casting Molds: This type casting molds is yet another variant of the permanent casting molds in which basically a plunger is used to pack the molted metal through the spure hole. This type of process allows thinner walls and to produce greater details.

Vacuum Permanent Casting Molds: This type of casting mold is also part of the permanent casting mold family and is very similar to the lowe pressure casting molds. In this type vacuum is used rather than a pressure. You can make thin wall casting through this type of casting molds like in the other low pressure casting molds. Apart from this the results are high as there are no risers used.
  
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Learn about Resin Casting and the process of Resin Casting

Metal Casting

Resign Casting really is a complex system of technical installation and this technical installation is used in the process of casting resin. The process of Resin Casting is a complex process that is used in a variety of fields. If you have a product and you are concerned about high quality and precision, then resin casting is the way to go.

Need for Resin Casting : Resin casting is used to obtain a high level of quality and also precision in the dimensions of the product. Resin casting is basically used in the process of miniaturization i.e. the process of making things small. The process of Resin Casting is also used extensively the field of electronics. The electronics industries today resort to the resin castings to achieve the norms of total quality management.

The process of resin metal casting earned success and also gained popularity in the field of electronics because it facilitated the acute miniaturization process and also at the same time maintained a high level of quality. The electronics industry is a very demanding field in terms of quality and cost. Experts recommend that the process of resin casting is an ideal way to achieve the required quality and it also helps cut down the cost of production. The process is also highly productive and also reliable with respect to speed.          

Industrial Applications of Resin Casting: The process of resin casting is basically used in the electronics industry. Resin Casting is used in the production of transformers, Liquid Crystals Displays more commonly known as the LCD’s. It also used in the manufacture of heavy electronic systems.

Important steps in Resin Metal Casting : The process of resin casting is completed in basically five important steps. The first step is to condition the resin, and then the material is transported. After the transportation of the material the three most important steps are executed. First the material is metered, then the material is mixed and then finally it is dispensed.

Conditioning process: The process of conditioning in the resin casting evenly distributes the fillers ion the mixture. The conditioning also eliminates the moisture and air. It also makes the mixture constant, and also elevates the temperature of the mixture. The process of conditioning also maintains a low viscosity in the mixture. This process is very important for complex combinations as it intensifies the quality of the product.

Process of Material Transportation: In the process of transportation of the materials, the piston pumps, screw pumps, and the gear pumps are used. For the highly viscous substances, instead of gear pumps, follower plate pumps are used.

Mixing Process: This process is very important as it is mean to be used to obtain an equal and stabilized reaction through all the materials. The most commonly used methods in the mixing are the static mixing tube, the dynamic blender, and the dynamic static mixing tube.

Dispensing process: The process of dispensing is the most important process in the Resin Metal Casting . The dispensing Unit and the movement of the part are actually relative to one another in the dispensing process.

Metering Systems and sometimes a vacuum system is what is used to cast Resin. In the industrial to cut costs and also time multiple dispensing units are used.          


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Wednesday, October 8, 2008

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Metal Casting Groups

Metal Casting


Metal Casting is one of the most widely used processes that is used in the production and process industry. In the metal industry the process of Casting is the basic and he most essential step in the process of production. At the dawn of the industrial revolution, casting was a very crude process that had not undergone development.

Need for associations and institutes: Though the process of Metal Casting is an important step in  production, it remained underdeveloped for a very long period of time. The basic need for the formation of metal casting related associations was to develop the process of casting. Whats important is that these various metal casting associations are working together so they can share ideas and improve the mteal casting process. Associations and the groups that have been formed by the companies are constantly experimenting with the proposed reforms in the casting process. Many of them have also come up with sound technical rectifications and an amazing number of proposals.

Aims and Objective of Metal Casting Associations and groups: The basic objective of all the Meat casting Groups and associations that have been working for a few decades remains unchanged. The associations strive to develop the process of casting to the pinnacle. The global market has become demanding and competitive than ever. The associations helps the member companies in maximizing their quality standards. These associations also work for the spread of appropriate technology. Many innovations and inventions are proposed and executed for the technological benefit of the member companies. When you receive this kind of support it really helps the company cut its costs of production. It also helps the companies to increase the quality and also ht performance of their production units.
                       
Work against pollution: Metal Metal Casting companies are often pressurized and also accused of polluting the environment. A lot of information on how to dispose of pollutants is given to these companies by some of these casting associations. Using the same location is one way that companies who are close together work to help dispose of their waste. Many of the associations have set up their own norms for the member companies.

Man power safety: Some of the associations also keep a tab on the safety of the workers. A metal casting industry is a very dangerous place to work in. the associations hence have prescribed many safety norms to the member companies.

The norms regarding safety of the environment and the safety of the workers if not followed always invite trouble from the government. If the safety norms of the associations are followed then the intervention of the government reduces considerably.

Spread of Knowledge: To make the people in the industry aware of the ongoing commercial development and technical research the associations arrange international expos and also many exhibitions. The associations also represent their member companies in many seminars organized on the international level.

Commercial Aspects: Commercial Meetings and exchanges of ideas are one way that metal casting associations help with commercial aspects of metal casting associations. Many associations give sound financial information and also explains the market conditions to the member companies.


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Tuesday, October 7, 2008

The definition of Metal Casting Crucibles

Metal Casting

A pot in which metal is held, while melting in a furnace is called as a “Crucible.” It is made of silicon carbide and clay graphite.

Shapes of crucibles: A bilge shaped crucible has the shape of a barrel. The part of the crucible in the middle region is called as a bilge. This is the widest part of the crucible and has the maximum diameter. The top of the Metal Casting crucible has lesser diameter than the bilge. The base of the crucible has lesser diameter than the top. As per a thumb rule, the # of a bilge crucible is the number of pounds of aluminum that it would hold. For bronze and brass, thrice the # can be held. For instance, a #5 bilge crucible can hold almost 5 pounds of aluminum and 15 pounds of brass. This thumb rule is applicable for bilge shape only.

If you are looking at an "A" shaped crucible, you will see that it has a narrow bottom and a wider top so that it looks like the shape of an "A". What these are tend to be mostly straight sides and then these straight sides are bent outwards. The diameter continuously increases from the base to the top. As it is simpler to manufacture this shape than the bilge one, the A shaped crucible has a lesser cost. When compared with the equivalent bilge style, the capacity of the A shaped crucible is lesser.

Both the above mentioned shapes can be manufactured in Clay graphite and silicon carbide.

Properties of crucibles: A crucible must be able to bear the extremely high temperatures of the molten metal. For this, the melting point of the material used to create the crucible must be more than the melting point of the metal that in placed in the crucible. Also, the crucible material must have excellent strength even in the white hot state.

For melting metals like aluminum and zinc, a steel crucible made at home can be used. The reason is that the melting point of aluminum and steel is lesser than steel. In this case, the interior surface of the steel Casting crucible undergoes flaking or scaling. Due to this scale, the molten metal is polluted. The thickness of the crucible walls decreases fast. Hence, a coating of marcote-7 is applied to the inner surface of the steel crucible. The use of steel crucibles is okay if the contamination due to the scales is not regarded serious.

Materials used: To construct a Metal Casting crucible, the usual refractory materials (i.e. carbon bonded silicon carbide and clay graphite) can survive the extremely high temperatures of work of a foundry. In addition, silicon carbide is a very durable material.

Some of the clay graphite crucibles can be used up to 2750 degrees Fahrenheit. Some A shaped crucibles are used up to 2000 degrees Fahrenheit. These crucibles can be used to handle gold, silver, bronze, brass, aluminum and zinc alloys.

The A shaped crucibles have a rough surface finish and there are dents along the rims. However, this roughness does not interfere with the performance by any means.

Tongs that are correctly fitted are very important when you are handling various crucibles. In correct tongs can lead to damage or total failure of the crucible. In between the base of the furnace and the crucible there must be a disk of cardboard or a coating of Plumbago.


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Monday, October 6, 2008

Learn about the basics of Casting Sand, Green Sand, and the uses of Casting Sand

Metal Casting

Green Sand: Green sand is also called as foundry sand or molding sand. This is utilized for sand Casting . When this sand is oiled or moistened, it has a tendency to pack well and retain the shape. Green Sand is made up of three things: Pulverized Coal, Water, and Bentonite Clay and Sand. Out of these four components, the biggest part is that of the sand.  There are several proportions of these four components. The different ratios are used to adjust the surface finish, moldability and capacity of the hot molten metal to degas. The prime use of this sand is in the Casting . The coal is usually called as sea coal in foundries. The amount of sea coal is less than 5 percent. It undergoes partial combustion when there is molten metal present and this causes offgassing of organic vapors.

Green sand is stored in flasks (as the casters call the container). What these boxes are are boxes that don't have a bottom or lit to them. This box is divided into two half parts and these are connected together. These halves are called as the top or cope and bottom or drag flask.

As per its name, green sand is not green in color. The word “green” is used as it is used in the wet state.

Casting Sand: Some Casting sands are oil bonded and foundry mix sand. This is a mixing of oil, resin and sharp fine silica sand. Such a mix can be utilized in sand casting of all varieties of metals. Some casting sands consist of 20 percent more oil and resin as compared to other brands. Really what you want is a mixture that provides maximum green power and the best finish for the surface that is humanly possible.

A good sand to use for casting sand is an oil bonded sand and can be used as a substitute for water bonded green sand. The advantage over traditional, older sands is that as water is absent, the sand does not steam like the traditional sands. This sand is more secure to use than green sand. The reason is that potentially explosive quantities of steam are not generated. Due to this dearth of steam generation and the smooth texture of the sand, the oil bonded sand results in a smoother surface finish. The novice can use these sands and get professional results.

Use of casting sand: The same techniques, patterns and tools that are used for water bonded sands can be used for oil bonded casting sands. As the sand has better adhesive properties, there are fewer hassles with loose sand in the impression. The difference is that water cannot be used to manage loose sections. However, as the self adhesion is better, there are fewer problems of crumbling.

When the oil comes in contact with molten metal, it does not burn. When the castings are being shaken out, it is advisable to take off the sand that is burned. This sand that is burned can then be mixed again in the pile of fresh sand. It reabsorbs oil and works very well. After repeated use of this sand, the oil gets depleted. In this case, around 30W of non-detergent motor oil can be used to reload the sand with oil.


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Sunday, October 5, 2008

Metal Casting Tools and Definitions of Metal Casting Tools

Metal Casting

There are various types of Metal Casting tools. Provided below are details of some of the casting tools.

Esmarch plaster scissors: These are German stainless steel cast scissors of high quality. The entire length is 20 centimeters or 8 inches. There is a 6 centimeters slanted blade for safety of the patient. The handle for leverage is of 15 centimeters. This is perfect to cut the inner layers of synthetic cast materials or plaster.

Lister bandage scissors: These are stainless steel bandage scissors of high quality. The size of the blade is 5.5 centimeters. It resists rust and corrosion. This scissors are perfect to remove QuickCast splints and casts.

Cast scissors for serial finger casts: These are manufactured from German stainless steel of highest quality. The total Length comes out to be exactly Nine Centimeters. There is a 1.3 centimeters slant design on the cutting surface. During cast removal, there is good patient safety and the scissors offer excellent force.

Metal Casting spreader: This has a stainless steel construction. There is a spring loaded handle to facilitate use.

Metal Casting breaker: The length of the cast breaker is seven inches. This is an O.R. quality German instrument. This is used for lightweight cast breaking and trimming. This has deep serrated tips and is free of latex. The cast breaker is available in sizes of 9.5 inches also.

Plaster and Utility shears: The length of this instrument is 8 inches. This is a German instrument of O.R. quality. There is a spring loaded handle design that decreases the hand fatigue. This is very efficient in case of cotton or cloth wadding. It is free of latex.

Wire suture scissors: This is a stainless steel scissors of high quality. This is a perfect device to remove finger serial casts and to make tight corner cuts.

Fiskars all purpose snips: This instrument has a positive safety latch, a stainless steel spring and a comfort grip. The design is such that there is maximum power and handling ease. Its important to be able to cut a variety of materials with one tool so its good to have some stainless steel blades that are of high quality. Low temperature thermoplastics can be cut at room temperature by this device.

Aviation snips: These snips are of industry quality. Non-heated splinting material can be cut with efficiency. It can be used to cut straight lines as well as wide curves. The handles are coated with plastic to increase the comfort. What is nice is that no matter if you are right handed or left handed, the device can be used in either.

A good pair of scissors that will work for those with weaker hands or those that have arthritis are called Softtouch Spring Action Scissors as the spring helps to operate the scissors easier. There is a gray cushion grip. This is used to provide relief to the finger and thumb discomfort. It also absorbs squeezing pressure. The handle can be easily gripped and used in the left hand or right hand. There is a gentle spring action to open blades at the end of each cut. This offers relief to the hand and joints. There is a large slide lock for single handed operation. This also maintains the blades closed for portability and safe storage. It is free of latex.

Cast stand: The height can be adjusted. This comprises of a drip bucket. While the limb is being casted, it provides support to the arm or leg of the patient.


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Rapid Prototype Basics

advantages of prototyping

Invention Prototype is a process of software development wherein physical objects are automatically constructed by means of SFF or solid freeform fabrication. In the process of rapid prototyping, a prototype or working model can be constructed quickly, and tested for its functionality, performance and output. The new features or ideas can be illustrated well in the prototype and early user feedback can be gathered with regards to the product. There are numerous advantages of rapid prototyping.

Benefits of Rapid Prototyping:

Significant advantages of a Rapid Prototyping include reduction of project cost and risk. Generally, one or more prototypes are developed in the process of software development in a series of incremental and iterative steps. Every prototype that is manufactured is based on the previous designs’ performance and it is a corrective process through which the past design defects or problems are corrected. The product is readied for production when the prototype is refined as per requirements and meets all the design goals like manufacturability, robustness and functionality.

Another great advantage of rapid prototyping is that it finds use and application in almost all the industries. The other advantages of rapid prototyping include the following:
Visualization capabilities are enhanced in the early designing phase with use of rapid prototyping. The user gets a fair idea of how the final product will look by observing the working model in early design stage.
The design flaws can be detected before manufacture process is initiated.
Rapid prototyping enables producer and users to participate actively. Active participation between the users and producer is encouraged.
The user is able to get a higher output.
The development costs are reduced considerably, hence rapid prototyping proves to be quite cost effective.
Rapid prototyping increases the speed of system development.
With Invention Prototype , it is possible to detect deficiencies in the earlier prototype, coding activities and requirement analysis.
Rapid prototyping assists in refining the potential risks that are involved in the delivery
The different aspects of the prototype can be tried and tested and immediate feedback is possible form user.
Better communication is enabled between the users and designer as there is clear expression of requirements and expectations in the start itself.
Rapid prototyping enables easy delivery of high quality product.

Cost and Time Savings:

Savings of development time and process costs are some of the greatest advantages of rapid prototyping. Time can be saved by reducing the amount of time required to produce the prototype parts and tooling. Production costs are lowered as the mistakes regarding tooling are identified in the early stages and hence, the modification costs can be cut down in the actual production.

Advantage of Innovation:

Rapid prototyping can be used in many innovative ways. There are many firms that use rapid prototyping innovatively, hence, offering additional benefits. The advantages of rapid prototyping in innovative applications are advancement of new testing procedures and analysis, production tooling manufacture, improved communications across production departments and support of customized manufacturing. The new technologies can be used in a cost effective and successful manner with innovative applications of rapid prototyping.

Saturday, October 4, 2008

Types of Iron Casting

Metal Casting

Iron Metal Casting can be referred to as products made out of melted iron molecules. These molecules are, first, poured into mold and allowed to cool. They are then extracted. The casting properties depend a great deal on the foundry practice. They also depend on the cooling rate. Iron contains huge carbon concentrations. This content facilitates melting, simplicity of casting, and machining. Iron casting designs have a great variation owing to the property of iron to resist shrinkage during the process of cooling. The end product attains a great reputation for its strength and durability. Tensile strength ranges between 20,000 psi and over 60,000 psi. The values of hardness (without heat treatment) range between 100 and 300 BHN.

Some factors need to be considered while buying iron Metal Casting . The quality of the foundry that is being used should be one of the first things on the list of things to check. This should be done because foundry practices determine the casting properties. The consumer might have a tough time in finding the apt one. Secondly, the concentration of carbon should be looked into. The percentage of carbon commonly ranges between 2.5 and 4%. An addition of even 0.Even the small amount of 1% would cause the strength to decrease by the large number of 2700 psi. Casting procedures differ from foundry to foundry.

Green sand molding is the most commonly used type of Metal Casting . Normally, small and medium sized products are produced using this type of casting. Shell molding is preferred for bigger applications. Shell molding is great in the fact that its really good for helping with the cooling of the heated metal in the mold. This process gives a better finishing to the final product as compared to all the other processes. Centrifugal casting is used for producing big cylinders and pipes. Both, producer and consumer would get highly satisfied if a proper blend of correct casting process and reputed foundry is made.

Iron castings are utilized extensively in machinery, automotive, and agricultural industry. Parts such as turbine and pump housings, dynamometer bases, compressors are made out of iron castings. Majority of manufacturers have the caliber to go for high and low production outputs. They are also entitled to go for short order runs. To give the customer the highest accuracy and quality there are standard prototypes that should be used. Some manufacturers provide finishing services like galvanizing, painting, and machining as well. In general, iron castings include alloy casting, ductile castings, and malleable castings. There are some terms relating to iron castings. They need to be known in order to get a fair idea of iron.

Brinell Hardness Number (BHN): It can be defined as the method used for measuring the hardness of iron. For iron castings, a metal ball of 3000Kg is put on a flat iron piece. After the removal of ball, indentation observed is recorded. This measurement indicates the value of hardness.

Tensile Strength: Tensile strength can be defined as the quantity of bending and stretching undergone by a material before tearing or breaking. Here the metal is iron.

Modulus of Elasticity: It can be defined as the ratio of stress to strain. This value determines the elasticity as well as the stiffness of the concerned material.


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Friday, October 3, 2008

Aluminum Information and the process of Aluminum Casting

Metal Casting

Aluminum is amongst those metals which can be ‘cast’ by every process used in metal casting. These processes, in descending order of quantity of aluminum  casting are: die casting, permanent mold Metal Casting , sand casting, plaster casting, investment casting, and continuous casting. The Casting process is selected on the basis of factors such as cost, feasibility, quality, etc.

One should not be concerned about these methods as they are all very simple and feasible. However, the most suitable casting method can be decided according to the design features or dimensions.  For instance-Large products are made using sand casting. The quality factor is also important in selecting the casting process. Quality refers to both, mechanical properties (ductility and strength) and soundness (surface imperfections, cracking, and porosity freedom).

The methods most commonly used can be described as follows:

Die Metal Casting : As per the statistics, around $2.5m worth of die-castings of aluminum  alloys are produced in the US alone every year. The process of die casting utilizes almost two times the tonnage of aluminum  alloys as the combination of other casting processes. Die casting is best suited for large quantity production of relatively tiny parts. Aluminum die castings upto 50 Kg of weight can be produced if casting-machine costs and high tooling are justified.

Some common applications of die cast aluminum  alloys are inclusive of alloy 380.0 for Lawnmower housings, Alloy A380.0 for streetlamps housings, dental equipment, typewriter frames, Alloy 360.0 for frying skillets, instrument cases, cover plates, parts needing corrosion resistance, Alloy 413.0 for outboard parts of motor like connecting rods, pistons, housing, and Alloy 518.1 for conveyor components, escalator parts, aircraft, marine hardware.

Die castings cannot be easily heated or welded due to entrapped gases. Efforts are being on the war footing to overcome this obstacle. The die castings of aluminum  alloys are generally produced using aluminum -silicon-copper alloys. This alloy family gives an excellent combination of corrosion resistance, strength, and cost, along with respite from ‘hot shortness’ and high fluidity which are mandatory for easy casting. To avoid corrosion or resit it better than other alloys, look for an alloy with a lower copper content and this should help.

‘Permanent Mold’ casting: ‘Permanent mold’ casting is best suited for high-volume production. Their size is larger than ‘die castings’. These castings have a very low pouring rate. They are gravity-fed. Outstanding mechanical properties are exhibited by ‘permanent mold’ castings. There is a lot of scope for further improvement if they are given heat treatment.

If you are looking for some of the most common alloys of aluminum permanent mold casting is the alloy 366.0 for automotive pistons, Alloys 355.0, A357.0, C355.0  for impellers, timing gears, compressors, missile and aircraft components, Alloys A356.0, 356.0 for aircraft wheels, parts of machine tools, pump parts, valve bodies, marine hardware, and 296.0, 333.0, 319.0.

Sand casting: This type of casting involves formation of casting mold (with sand). It is inclusive of conservative sand casting & lost-foam casting. The first one involves forming a pattern of sand, pouring the molten metal into it and breaking it once the product is formed. Lost-foam pattern involves putting a dispensable pattern of polystyrene in the mold. The rest of the procedure is the same as conservative sand casting.


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Lost Foam Casting Information and the process of Lost Foam Casting

Metal Casting

Lost Foam Metal Casting is a sub type of Investment Casting. This type of casting method uses foam pattern as the investment. This method benefits from the advantages of the foam properties helpful to make simple and cheap castings. These types of simple castings are impossible using the regular cope and drag method.

Here are the details of the Casting Process:

Foam Shaping: The original foam pattern of the Polystyrene is generally molded or carved.

Carving Polystyrene: What you want to do it to take either a traditional carving tool or one of the newer hot wire cutting tools to cut the formed foam. It can also be sanded easily.

Injecting Polystyrene in a Mold: Polystyrene contains pentane as a blowing agent and is commonly used for beads. The beads are pre-extended, stabilized and then blown into the mold to form pattern sections. A steam cycle forces the beads to expand fully, after this the fuse together and then it undergoes an in-mold cooling cycle. The final shape if very complex, then it is molded in sections. A cluster is formed by aging and gluing together the shaped foam sections. 

Preparing Final Mold (Investment) for Casting : Gates and Raisers are generally attached to the pattern, they are also the part of the casting as this helps reduce the shrinkage. Pouring, dipping or spraying are the different methods used for coating the foam cluster with ceramic investment. The reason for this coating is that it forms a barrier and helps to prevent the molten metal to penetrate or cause sand erosion while pouring. Structural integrity of the casting is protected thanks to the coating. The cluster when dried is backed up with un-bonded sand and is placed in a flask. Proper and uniform compaction is then achieved by performing mold compaction using a vibrating table. Finally, after a lot of detailed work and proper compaction you can now pour into the mold.

Automatic pouring is the preferred method in Lost Foam Metal Casting . This is the most critical process and also a bit difficult than the traditional foundry practice. As there are no parting lines or fins to remove the cleaning is easier and requires far more less time and operations in the Lost Foam Casting process.

Advantages of Lost Foam Casting: Due to its unique properties, foam is easy to carve glue and manipulate. It also provides accurate dimensions as Lost Foam Casting is more accurate and effective than sand casting. There are no fins or parting lines the finishing process is easy and less time consuming. The elimination of cores makes complex casting designs easy. Lost Foam Casting also allows us to control the wall thickness and thus no core prints are required thus eliminating shifts or fins and also saves the trouble of sand mixing and core defects. As there are no drafts multiple levels of casting is possible. Precise gate and riser replacements are achieved. Lost Foam casting becomes very helpful when you are trying to cast something that is very difficult with cope or drag mehtods as it will be much easier with Lost Foam Casting.  Due to simpler process and easy finishing work, the process is very cost effective and lowers the overall price of the final product.

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Thursday, October 2, 2008

Casting Patterns and Metal Casting Information

Metal Casting

Metal Casting is a useful skill that has its roots in antiquity. Weapons and sculptures were traditionally created using this method but as the DIY movement gained momentum many modern day casters have found a use for Metal Casting to make plumbing fixtures, door knobs, and many other items. Today, small foundries can be found in many backyards, garages, and workshops.

In order to make a casting of metal, you will need a furnace capable of melting metal alloys at high temperatures. Usually, individual metal casters will construct their own furnace. There are companies that will sell small scale furnaces but they are often costly. The most common type of casting is called Sand Casting which uses sand or green sand to make the molds where the molten metal will be poured into to form the finished product. The mold is a handmade item placed in a flask which has two parts, a cope and drag. The mold is usually made of sand, but can also be created using other ingredients like latex or even metal. Within the mold cavity you can see in the mold the pattern that has formed.

The mold cavity will be an impression of the pattern including the fine details which will then be filled with the molten alloy. Pattern casting is an art form in itself, really, but anyone can create a pattern even if you have no artistic skill what so ever. The pattern is an original which will be cast into metal. Common pattern castings include complex engine parts for models, replicas of Civil War era weapons, sculptures, and even jewelry.

The pattern can be made of any material like clay, wood, and wax. The pattern material really depends on a few factors like the casting method and the availability of the material. If you are able to carve wood then you can use this skill to make patterns. Sometimes the casting method can dictate what the pattern is made of and you may have to get particular materials. An example of this is the Lost Wax Metal Casting Method which will use wax as the pattern.

When creating the mold, you will place the original into the drag of the flask and place more molding material on top forming the cope. When the mold is dry you will carefully remove the pattern revealing an impression in the mold.

If you are creating your own pattern you will need to make it with Contraction allowances in mind. This contraction allowance will compensate for the shrinkage that occurs in many casting processes. In order to take out the pattern without disturbing the mold, draft allowances need to be considered as well. The pattern should have tapered edges to allow for easy removal.

Many who make their own patterns will add sprues, gates, and risers to the pattern so that when castled these items will already be in the mold.What happens with these devices is that they will allow the metal that is melted to make its way into the mold cavity.

If you find it difficult to make your own patterns then you can pay for pattern making services; although many casters in the same situation will just learn how to make patterns to save money. Pattern casting is a valuable skill to have and can be learned rather easily.

 
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Casting Supplies Information and what Casting Supplies will you Need

Metal Casting

Some of the Metal Casting supplies are described below.

Cast cutters and blades: There are two varieties of cast cutter blade for plaster casts – 2 inches and 2.5 inches. This comprises of one blade and in most of the cutters, stainless steel blades fit in. This has a maintenance free operation and is comfortable to use. There is a high torque motor and an ON / OFF switch. The Cast cutter blade for synthetic casts is also available in two sizes – 2 inches and 2.5 inches. This has the same features as mentioned above. The Hercules Plaster Shears 7.5 inches is a Hercules heavy duty bandage and plaster shears 7.5 inches (19.1 cm) and has a serrated blade. The Cast cutter heavy duty with metal housing consists of one 2 inches fiberglass blade. In most of the cutters, a stainless steel blade can be fitted. The length is 12.5 inches and weight is 3 lbs 13 oz. This is specially lubricated for greater service and more comfort. The heavy duty can be used in both clinical use and fabrication setting.

Cast padding: The specialist Casting padding 3 inches X 4 yards is made up of micro pleated cotton fabric that stretches more than 50 percent. There is no need to tear and tuck for a smooth and comfortable fit. This is also available in sizes of 4 inches X 4 yards as well as 2 inches X 4 yards. The Sof Rol padding 3 inches X 4 yards is made of 100 percent surgical grade rayon. This is also available in sizes of 2 inches and 4 inches X 4 yards.

Casting splinting materials: The orthoplast II splint material plain is available in size of 18 inches X 24 inches X 1/8 inch. The setting time is 3 to 4 minutes. The finished splints can be butt bonded, hinged, bonded, strapped and riveted. There is a wax coated surface. This is self adhering when heated. This is majorly designed for upper extremities. What it is really perfect for are hand splints. It moulds as per the contours of the body without any wrinkling. The orthoplast splinting material plain is available in sizes of 18 inches X 24 inches X 1/8 inch. This is made of a low heat thermo plastic material and is highly comfortable. After this material is heated, it can be molded or cut to any shape and adheres to itself. This material can be butt bonded, hinged, bonded, strapped and riveted. Cylindrical Casting Procedures can also be used with this.

Heat gun: This is of two types – heat gun and master heat gun 220 volt.

Splinting pans: The forma splint 14 inches X 10 inches is an extremely compact and lightweight design. So, it is perfect for small splinting needs or for varying spots. This has a stainless steel working tank of dimensions 13 inches X 9.5 inches X 1.25 inches. This has a lexan cover. Water is maintained at controlled temperatures by a variable temperature thermostat between 150 degrees Fahrenheit and 190 degrees Fahrenheit. There is a high heat safety switch and grounded hospital grade plug. The empty weight of this device is 5.5 lbs. It heats to the required temperature in only 15 minutes.


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Wednesday, October 1, 2008

What are the Inner Workings of Brass Casting?

Metal Casting

Brass Metal Casting , as the name suggests, involves the use of brass as the molten metal. Brass casting can be carried out by the way of sand Metal Casting only. Sand casting can be defined as a ‘cast part’ produced by formation of a mold from a mixture of sand and pouring the casting liquid (mostly molten metal) into mold. Then the air-cooling of the mold takes place. After the solidification of metal, the removal of mold takes place. The metal used here is brass. It is a known fact that brass is an alloy of copper and zinc. Hence, to be precise, the molten metal consists of two elements. 

Sand molding consists of two types- ‘Green sand’ molding and ‘air set’ molding. The first one consists of a blend of moisture, clay, silica sand and other additives. The second one makes use of dry sand bonded to all the above materials except moist clay, by the way of using an adhesive, which is fast curing.

At times, there is a placing of a temporary plug (in the mold cavity) to enable the formation of a channel to pour the fluid which is to be molded. The molds of the second type, i.e. the air-set molds result in the formation of a 2-part mold. The two parts are bottom and top. The tamping-down of the sand mixture takes place as it gets added. Many a times, the final assembly of the mold is vibrated to get the sand compacted and get the unwanted voids filled. Then the molten alloy (brass) gets poured into mold. After the solidification and cooling of brass, the separation of casting from sand mold takes place. Normally, such molds are one-time usable.

Metal Casting Patterns: These are made by a desinger whom the engineer has given the design for the object that will be made. On the basis of this design, a pattern is built by an efficient pattern maker by the use of plastic, metal, or wood. Polystryene is another good choice and can aslo be used. The casting brass would get contracted during solidification. Sometimes another thing that can cause this is non-uniformity. Therefore, the size of the pattern should be a bit larger as compared to the final product. ‘Contraction Allowance’ is the name given to this difference. Brass enters the mold cavity through a runner system including sprue and other feeders.

Molding box: A molding box having multiple parts (also known as casting flask whose bottom and top halves are called drag and cope respectively) is constructed for receiving the pattern. There may be an addition of sand to nullify the defects introduced due to the pattern getting removed.

Chills: To have a proper control over metallurgical structure and solidification of brass, plates of brass, or any other metal can be placed in mold. Its at these particular spots that a very hard structure may be formed. Chills can be used for promoting directional solidification as well.

Design Requirements: The thing in making and the pattern corresponding to it should be designed in such a way that every stage of process can get accommodated. One should be able to take away the pattern without causing any disturbance to molding sand.

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Learn about Varioud Casting Groups and Associations

Casting

Casting has endured through the ages since the time of Ancient Egypt, possibly longer. Since then small foundries have developed to meet the needs of the individual caster. There are several reasons that people choose to create their own home grown foundries. A top reason is the need to create parts and pieces that are no longer available on the market or that are just too expensive to purchase. Those who get into Metal Casting for this reason are usually interested in restoration projects, home improvement projects, or hobby building like model planes and trains. Artists are the other group that see metal casting as a cheap and easy way to create sculptures from small to large. Jewelers even use metal casting to create complex pieces that would just otherwise be impossible to create.

Given the wide scope of metal casting there are several methods and techniques that have developed. For those new to metal casting or for those wanting to try some of these other methods may find it difficult to find information on your own. Luckily, there are several metal casting associations and groups that are more then willing to share information and exchange ideas, projects, and pictures of the goings on in the their home foundries.

On the internet, Casting associations and groups are either message boards full of casters where they can ask questions, post ideas, and pictures or are websites that are maintained by a set group of people offering general information and educational resources.

Both of these types of websites are incredibly helpful to metal casters who can benefit from the educational purposes of some of the sites tempered with the real life applications and experiences of the message boards.

The majority of the information that will be easy to find will be geared at industrial and manufacturing foundries versus the small home foundry. Industrial metal casting sites can be wonderful sources of information so do not skip by these. Use both small metal casting sites and industrial sites to your advantage.

If you are looking for a great group online, you should visit the Casting Hobby Group found through Yahoo Groups. This casting group was developed and maintained by experienced metal casters and enjoys a high amount of activity. If you are looking for quick simple information, lots of ideas, photos of furnaces, and potentially some furnace building plans, then you've hit the right spot by going here.

The Casting Hobby Group can be found at http://groups.yahoo.com/group/castinghobby/

The Association of Backyard Metal Casters is located at http://www.abymc.com/.  This online metal casting association has an extensive membership complete with informative articles, forums, and even live chat. Of course, pictures are posted on the site to give visitors ideas about what other furnaces and foundries look like. Don't worry if you're foundry isn't pretty, there actually doesn't seem to be very many of them that are.

Now, The American Foundry Society is mainly for the industrial metal casters and companies but they also promote information and education to consumers. The information provided on the site is great for anyone wishing to follow advancements in metal casting technology. There is even an online store.

http://www.afsinc.org/ is the online home for the American Foundry Society.

For the most part metal casting associations and groups exist on the local level more than a unifying force on the web. What does exist on the web is a great source of information, ideas, and insight. It is a great idea to join any of the groups you can in order to share and find knowledge.
 
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