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ENHANCING SURFACE HARDNESS OF TITANIUM ALLOY Ti-6Al-4V BY COMBINED NITRIDING AND CVD COATING

机译:氮化和化学气相沉积相结合提高钛合金Ti-6Al-4V的表面硬度

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摘要

Titanium alloys show a relatively high strength to density ratio and good corrosion resistance. Their main disadvantage in many applications is the low hardness and hence low resistance to abrasive wear. The wear resistance of titanium alloys can be enhanced by nitriding, but the compound layer thickness is limited. The requirement of thicker compound layers could be fulfilled by a combination process. The duplex process of nitriding plus moderate temperature chemical vapour deposition (MTCVD) TiCN coating of titanium alloys appears promising. Either pressure nitriding or gas nitriding can be applied to Ti-6Al-4V With pressure nitriding, homogeneous compound layers can be produced on complex shaped components; however, the combined process must be carried out discontinuously in two reactors, due to the different process parameters. When using gas nitriding, the combined process can be performed continuously in the CVD equipment. With the combined nitriding + MTCVD coating route, thick compound layers could be produced in relatively short process times. The surface microstructures consist of a nitrogen diffusion layer, an intermediate layer, a compound layer, and a TiCN coating. The Ti-6Al-4V surface was characterised by high hardness and good layer adhesion.
机译:钛合金具有较高的强度密度比和良好的耐腐蚀性。它们在许多应用中的主要缺点是硬度低,因此对磨料磨损的抵抗力低。氮化可以提高钛合金的耐磨性,但复合层的厚度有限。可以通过组合工艺来满足较厚的化合物层的要求。钛合金的氮化加中温化学气相沉积(MTCVD)TiCN涂层的双重工艺似乎很有希望。 Ti-6Al-4V可以采用压力渗氮或气体渗氮。通过压力渗氮,可以在复杂形状的零件上形成均质的化合物层。但是,由于工艺参数不同,联合工艺必须在两个反应器中不连续地进行。使用气体氮化时,可以在CVD设备中连续执行合并的过程。结合氮化+ MTCVD涂层工艺,可以在相对较短的处理时间内生产出较厚的化合物层。表面微结构由氮扩散层,中间层,化合物层和TiCN涂层组成。 Ti-6Al-4V表面具有高硬度和良好的层附着力的特征。

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