Home> News> The powder metallurgy process of stainless steel parts is a method of making parts from metal powder through processes such as pressing and sintering
November 11, 2023

The powder metallurgy process of stainless steel parts is a method of making parts from metal powder through processes such as pressing and sintering

The Powder Metallurgy process of Stainless Steel Parts is a method of making parts from metal powder through processes such as pressing and sintering. Specific steps are as follows:

1. Raw material preparation: Select appropriate stainless steel powder as raw material, usually grinding metal blocks into powder.

2. Mixing: Mix the stainless steel powder evenly with other additives (such as reinforcing agents, lubricants, etc.) to improve the performance and processing performance of the parts.

3. Pressing: Put the mixture into a mold and press it through a pressing machine into parts of the desired shape. During the pressing process, the powder particles combine with each other to form a preliminary shape.

4. Sintering: Put the pressed parts into a sintering furnace for high temperature treatment. At high temperatures, diffusion and bonding occur between metal powder particles to form a dense structure.

5. Post-processing: After sintering, the parts may need to undergo some post-processing processes, such as heat treatment, surface treatment, etc., to further improve performance and appearance.

The Stainless Steel Powder Metallurgy process has the following advantages:

1. Parts with complex shapes can be manufactured with high geometric accuracy and dimensional stability.

2. Appropriate additives can be added during the manufacturing process to improve the performance and processing performance of the material.

3. It can save raw materials and reduce waste generation.

4. Can achieve mass production and improve production efficiency.

5. High-precision holes and small structures can be produced.

In short, the powder metallurgy process of stainless steel parts is a manufacturing method with broad application prospects that can meet the performance and shape requirements of parts in different industries.

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