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Transfor mold wear mechanism and surface treatment technology review

Publish Time: 2024-11-12
Transfor mold plays a vital role in industrial production. However, it will inevitably be affected by wear during use, which will affect work efficiency and product quality. Therefore, it is particularly important to understand the wear mechanism of Transfor mold and explore effective surface treatment technology.

The wear mechanism of Transfor mold mainly includes abrasive wear, fatigue wear and corrosive wear. Abrasive wear is caused by friction and shearing between hard particles and sharp angular objects on the surface of the workpiece and the mold surface, resulting in the peeling and wear of the metal on the mold surface. Fatigue wear is that the mold is repeatedly subjected to dynamic loads during work, causing surface microcracks. These cracks expand with the increase of time and the number of uses, and eventually lead to fatigue damage of the mold. In addition, the mold may also be corroded by chemical substances under special working conditions, resulting in erosion and wear of the surface metal.

For the wear problem of Transfor mold, surface treatment technology provides an effective solution. Common surface treatment technologies include carburizing, nitriding, ion carburizing, carbonitriding, nitrocarburizing, boriding, hardened film deposition, etc. These technologies improve the hardness, wear resistance, fatigue resistance and corrosion resistance of the mold by changing the morphology, chemical composition, organizational structure and stress state of the mold surface.

For example, nitriding technology can form a layer of extremely hard alloy nitride on the mold surface, significantly improving the surface hardness and wear resistance of the mold. Hardened film deposition technology can form a thin hardened film on the mold surface. This film has extremely high hardness and wear resistance, and can effectively protect the mold surface from wear.

In summary, the wear mechanism of Transfor mold is complex and diverse, but through reasonable surface treatment technology, the wear resistance and service life of the mold can be significantly improved. In the future, with the continuous development of materials science and surface treatment technology, it is believed that more efficient and environmentally friendly surface treatment technologies will be applied to the manufacturing and maintenance of Transfor mold, providing industrial production with better quality and more efficient mold products.
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