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Oxidation resistance and hardness of TiAlSiN/CrAlYN multilayer films deposited by the arc ion plating method

机译:电弧离子镀法沉积TiAlSiN / CrAlYN多层膜的抗氧化性和硬度

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摘要

Multilayered TiAlSiN/CrAlYN films were synthesized on cemented carbide, silicon and SUS304 substrates with various periods and investigated their oxidation resistance and hardness. The multilayer period between 5.6. nm and 23.2. nm was obtained by controlling the rotation speed of the substrates. X-ray diffraction patterns showed that the TiAlSiN/CrAlYN multilayer films after annealed at 1000. °C for 1. h retained the nitride structure and no peaks indicating metal oxide were observed for the films. Using the glow discharge optical emission spectrometry depth profiling method, an oxidation peak was only observed around the film surface. Hardness of TiAlSiN/CrAlYN multilayer films was measured using a conventional micro-Vickers hardness tester and the result showed that it changed depending on the multilayer period. That is, the film with a period of 8.7. nm exhibited the highest hardness with 37.1. GPa, which was higher than the value calculated based on the rule of mixtures of TiAlSiN monolayer and CrAlYN monolayer.
机译:在硬质合金,硅和SUS304硬质合金衬底上合成了多层TiAlSiN / CrAlYN薄膜,并对其进行了不同周期的研究,研究了它们的抗氧化性和硬度。多层周期在5.6之间。 nm和23.2。通过控制基板的旋转速度获得10nm。 X射线衍射图表明,TiAlSiN / CrAlYN多层膜在1000°C退火1小时后,保留了氮化物结构,没有观察到表明金属氧化物的峰。使用辉光放电光发射光谱深度剖析法,仅在膜表面附近观察到氧化峰。使用常规的维氏硬度计测量TiAlSiN / CrAlYN多层膜的硬度,结果表明其随多层周期而变化。也就是说,电影的期限为8.7。 nm表现出最高的硬度,为37.1。 GPa,高于根据TiAlSiN单层和CrAlYN单层的混合规则计算的值。

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