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Sheet Metal Fabrication

Sheet Metal Fabrication

Sheet metal and die technology are the backbone of modern manufacturing. It involves using precisely designed and crafted dies to shape and process metal sheets. Dies, often called the “mother of industry,” directly determine the quality, efficiency, and consistency of the final products.

 

 

 

Metal Hole Punching

2.Metal Stamping

Metal stamping is a high-efficiency cold-forming processing technology. With the help of punching machines and special molds, pressure is applied to metal sheets, strips or pipes to make them undergo plastic deformation or separation, so as to obtain stamping parts with specific shapes, sizes and properties. No additional heating of metal materials is required during the processing, which features fast forming speed and stable precision. According to the process types, it can be divided into separation processes (such as shearing, blanking, punching) and forming processes (such as bending, drawing, flanging). It is widely used in the production of large-batch standardized metal components and is a core basic process in industries such as automobile, electronics and home appliances.

1.Sheet metal processing

Sheet metal processing has become a mainstream process in the hardware manufacturing field with four major advantages: First, high forming efficiency. Batch stamping forming can be realized through molds, which is suitable for large-scale production of standardized components and greatly reduces the unit cost; Second, strong design flexibility. It can customize complex special-shaped structures according to customer needs, and there is no need to adjust core production equipment when modifying design schemes, adapting to small-batch customized orders; Third, high material utilization rate. Computer-aided nesting technology is adopted to optimize cutting paths, reduce sheet waste, and the material utilization rate can reach more than 90%; Fourth, adapting to multi-industry needs. The processed components have both lightweight and structural strength, and their corrosion resistance can be improved through surface treatments such as spraying and electroplating, meeting the application requirements of automobiles, electronics, communications, medical equipment and other fields.

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