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Effect of Internal Interfaces on Hardness and Thermal Stability of Nanocrystalline Ti0.5Al0.5N Coatings

机译:内部界面对Ti 0.5 Al 0.5 N纳米晶涂层硬度和热稳定性的影响

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摘要

The effect of microstructure on the thermal stability and hardness of the cathodic arc evaporated Ti0.5Al0.5N coatings was investigated with the aid of the in-situ high-temperature X-ray diffraction experiments, which were accompanied by high-resolution transmission electron microscopy (HRTEM) and nanoindentation measurements. The microstructure of the coatings was modified through the choice of the bias voltage in the deposition process. It was found that the bias voltage affects strongly the uniformity of the local distribution of titanium and aluminum in the coatings. The nonuniform distribution of the elements contributes to the formation of lattice strains at the crystallite and phase boundaries. The lattice strains at the crystallite boundaries increase the hardness of the coatings; the lattice strains at the phase boundaries improve their thermal stability. A certain nonuniformity of the distribution of the metallic species in the coatings is regarded as advantageous. However, a great nonuniformity in the distribution of the metallic species accelerates the degradation of the coatings at high temperatures. As a measure for the nonuniformity of the distribution of the atomic species in the as-deposited (Ti, Al) N samples, the stress-free lattice parameter of fcc-(Ti, Al) N is suggested.
机译:借助原位高温X-射线研究了阴极电弧蒸发Ti 0.5 Al 0.5 N涂层的显微组织对热稳定性和硬度的影响。射线衍射实验,伴随有高分辨率透射电子显微镜(HRTEM)和纳米压痕测量。通过在沉积过程中选择偏压来改变涂层的微观结构。已经发现,偏置电压强烈地影响涂层中钛和铝的局部分布的均匀性。元素的不均匀分布有助于在微晶和相界处形成晶格应变。微晶边界处的晶格应变增加了涂层的硬度;相界处的晶格应变改善了它们的热稳定性。涂层中金属物质分布的一定不均匀被认为是有利的。但是,金属种类分布的极大不均匀性加速了高温下涂层的降解。为了测量沉积的(Ti,Al)N样品中原子种类分布的不均匀性,建议使用fcc-(Ti,Al)N的无应力晶格参数。

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