首页> 外国专利> Wear-resistance edge layer structure for titanium or its alloys which can be subjected to a high mechanical load and has a low coefficient of friction, and method of producing the same

Wear-resistance edge layer structure for titanium or its alloys which can be subjected to a high mechanical load and has a low coefficient of friction, and method of producing the same

机译:用于钛或其合金的耐磨边缘层结构及其制造方法,所述耐磨边缘层结构可以承受高机械负荷并且摩擦系数低。

摘要

Wear-resistant edge layer for titanium and its alloys which can be subjected to high loads and has a low coefficient of friction. The wear-resistant edge layer includes a hard amorphous carbon layer, an intermediate layer, and a laser gas alloyed layer. The wear-resistant edge layer may include a 200 to 400 nm thick hard amorphous carbon layer, a 50 to 200 nm thick intermediate layer, and a 0.3 to 2.0 mm thick laser gas alloyed layer. The laser gas alloyed layer may include precipitated titanium nitride needles and have a hardness between 600 HV0.1 and 1400 HV0.1. Process for producing a wear resistant edge layer on a substrate. The process includes forming a laser gas alloyed layer by melting a surface of a substrate, applying an intermediate layer by Laser-Arc, and depositing a hard amorphous carbon layer on the intermediate layer by Laser-Arc.
机译:钛及其合金的耐磨边缘层,可承受高载荷并具有低摩擦系数。耐磨边缘层包括硬质无定形碳层,中间层和激光气体合金层。耐磨边缘层可以包括200至400nm厚的硬质无定形碳层,50至200nm厚的中间层和0.3至2.0mm厚的激光气体合金层。激光气体合金层可以包括沉淀的氮化钛针并且具有在600HV0.1和1400HV0.1之间的硬度。在基底上产生耐磨边缘层的方法。该方法包括通过熔化衬底的表面来形成激光气体合金层,通过Laser-Arc施加中间层,以及通过Laser-Arc在中间层上沉积硬质非晶碳层。

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