منوی دسته بندی

Die casting mold

In order to increase the efficiency and increase the lifespan of the die-cast mold, it is necessary to use high-quality and heat-resistant steel, which is called hot-work steel, which has high thickness and precise technical specifications. This type of mold is made of two fixed and movable halves. The two halves of the mold in a casting machine must work at the required temperatures and pressures to produce a quality piece in accordance with the client’s specifications

The cost of making a die caster mold depends on features such as size, number of holes, number of cores or slides required, weight of the mold, geometric type and complexity of the part, finishing and plating, and of course the final decisions for making a die cast mold that must be discussed between the customer and the mold maker. And it depends on the review

 :There are many different types of casting molds, each of which fulfills one of the customer’s needs. Choosing the type of diecast mold depending on the needs of the employer can be one of the following

1- The size of the part for casting 2- The volume of the required parts 3- The desired quality 4- Set parts

Description

Diecast mold, which is also called pressure casting, is one of the most widely used methods in the manufacture and production of metal parts in various industries. Unlike the plastic injection mold method, which is used to produce plastic parts, but the die-cast mold is used to produce metal parts. In the diecast method, metal parts are produced according to the general principles of casting, and at first, after the material is completely melted, it is injected into the mold and the material is frozen from liquid to solid.

Today, a very diverse range of aluminum parts are made by die-cast method, which helps to reduce the weight of the production parts. The complexity of such parts makes the making of diecast molds entrusted to a skilled and experienced team, which usually has a high production cost. In this method, the high mechanical and thermal stresses that are created in the mold parts should be calculated and steel that is resistant to all these stresses should be used to prevent the premature cracking of the mold parts as much as possible.

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