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physical and mechanical properties of the nanocomposite and combined Ti-N-Si /WC-Co-Cr and Ti-N-Si/(CR3C2)75-(NiCr)25 coatings

机译:纳米复合材料以及Ti-N-Si / WC-Co-Cr和Ti-N-Si /(CR3C2)75-(NiCr)25复合涂层的物理和机械性能

摘要

Two types of the combined nanocomposite coatings (Ti-N-Si /WC-Co-Cr and Ti-N-Si/ (Cr3C2Ni)75-(NiCr)25) of 160-320 μm thickness were produced using two deposition techniques: the cumulative-detonation and the vacuum-arc deposition with the high-frequency discharge. This gives the possibility (using the combined coatings) to restore the size of worn areas of the tools and demonstrate the high corrosion and wear resistance, to increase the hardness, modulus of elasticity, and plasticity index. Composition of the top coating varied from Ti = 60 at.%, N = 30 at.%, and Si = 10 at.% to Ti = 75 at.%, N = 20 at.%, and Si = 5 at.%. In the first series of coatings the following phases were obtained: (Ti;Si) and TiN in thin top coating and WC and W2C in thick bottom coating. The second series gives (Ti;Si)N and TiN in top coating; Cr3Ni2 and pure Cr in bottom coating; and small amount of Ti19O17 in the transition region between thin and thick coatings. For the first series the grain size achieved 25 nm at the hardness of 38 GPa. For the second series the grain size was 15 nm at the hardness of 42 GРa ± 4 GPa. It is shown that the corrosion resistance in salt solution and acid media increases with the wear decrease as a result of the cylinder friction over the surface of combined coating.При цитуванні документа, використовуйте посилання http://essuir.sumdu.edu.ua/handle/123456789/9351
机译:使用两种沉积技术生产了两种厚度为160-320μm的复合纳米复合涂层(Ti-N-Si / WC-Co-Cr和Ti-N-Si /(Cr3C2Ni)75-(NiCr)25)。伴随高频放电的累积爆炸和真空电弧沉积。这样就可以(使用组合涂层)恢复工具磨损区域的大小,并展现出高耐腐蚀性和耐磨性,从而增加硬度,弹性模量和可塑性指数。顶部涂层的成分从Ti = 60 at。%,N = 30 at。%和Si = 10 at。%到Ti = 75 at。%,N = 20 at。%和Si = 5 at。% 。在第一系列涂层中,获得了以下相:薄涂层中的(Ti; Si)和TiN以及厚涂层中的WC和W2C。第二个系列给出面涂层中的(Ti; Si)N和TiN;底涂层中的Cr3Ni2和纯Cr;在薄涂层和厚涂层之间的过渡区域中添加少量的Ti19O17。对于第一个系列,在38 GPa的硬度下,晶粒尺寸达到25 nm。对于第二系列,在42GРa±4 GPa的硬度下,晶粒尺寸为15 nm。结果表明,由于复合涂层表面上的圆柱体摩擦,盐溶液和酸介质中的耐腐蚀性随着磨损的降低而增加。手柄/ 123456789/9351

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