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Structure, mechanical properties and thermal stability of Ti1-x SixN coating

机译:Ti1-X Sixn涂层的结构,机械性能和热稳定性

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Ti1-xSixN coating is a promising candidate for wear resistant applications due to their super-hardness and high thermal stability. Here, we explored the structure, mechanical properties and thermal stability of Ti1-xSixN (x = 0, 0.13, 0.17 and 0.22) coatings deposited by cathodic arc evaporation. Monolithically grown Si-containing Ti1-xSixN coatings, which are Si-solution in TiN for x = 0.13 and 0.17, reveal a high hardness of 39.4 +/- 0.67 and 40.6 +/- 0.72 GPa, respectively. Then Ti1-xSixN transforms into a nanocomposite structure consisting of cubic Ti (Si)N nanocrystallite enveloped by the amorphous SiNx tissue phase for x = 0.22, which exhibits a high hardness of 40.0 +/- 0.6 GPa. However, increasing of Si content leads to a significant increase in compressive stress from -0.63 GPa for x = 0 to - 3.78 GPa for x = 0.13 to - 4.54 GPa for x = 0.17 to - 5.51 GPa for x = 0.22. The hardness of Ti1-xSixN coatings can be maintained up to similar to 1000 degrees C due to the suppressed grain growth, and then decreases for further elevated annealing temperature, whereas the TiN coating exhibits a continuous drop in hardness towards its intrinsic value of similar to 21.3 GPa.
机译:Ti1-Xsixn涂层是一种很有希望的耐磨耐用应用,因为它们的超硬和高热稳定性。这里,我们探讨了通过阴极弧蒸发沉积的Ti1-Xsixn(x = 0,0.13,0.17和0.22)涂层的结构,机械性能和热稳定性。含有单片生长的Si的Ti1-Xsixn涂层,其在锡中的Si-溶液X = 0.13和0.17,分别显示出39.4 +/- 0.67和40.6 +/- 0.72GPa的高硬度。然后Ti1-Xsixn转化为由由非晶SiNx组织相的立方Ti(Si)N纳米晶体组成的纳米复合结构,其X = 0.22,其具有40.0 +/- 0.6GPa的高硬度。然而,X = 0.13至-4.54GPa的X = 0.13至-4.54GPa的X = 0.13至-5.51GPa,X = 0.1至5.51GPa的X = 0.1至4.54GPa的X = 0.13至-54GPa的增加,Si含量的增加导致X = 0.13至-4.54gPa的显着增加。由于抑制晶粒生长,Ti1-Xsixn涂层的硬度可以保持高达1000℃,然后减少进一步提高的退火温度,而锡涂层表现出与其同样的固有值的连续下降21.3 GPA。

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