Hot Chamber Die Casting

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Hot chamber die casting, also known as gooseneck casting, is a manufacturing process in which molten metal is poured into a die or mold to produce parts with a specific shape. The process is called "hot chamber" because the metal is poured into the die using a pneumatic or hydraulic plunger, which is heated to prevent the metal from solidifying before it fills the die.


In hot chamber die casting, the metal is melted in a furnace and then transferred to a casting chamber, where it is poured into the die. The die is a metal tool with a shape that corresponds to the desired shape of the finished part. The metal is forced into the die under high pressure, typically between 70 and 110 MPa. After the metal has cooled and solidified, the die is opened and the finished part is removed.

 

Hot chamber die casting is well suited for producing small, intricate parts with thin walls, such as those made from zinc, aluminum, and copper alloys. It is a faster process than cold chamber die casting, but it is not suitable for casting steel or other high-melting point alloys.

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