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High temperature scratch testing of hard PVD coatings deposited on surface treated tool steel

机译:沉积在表面处理工具钢上的硬质pVD涂层的高温划痕试验

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摘要

Scratch testing is one of the most usual characterisation techniques for systems with thin hard coatings. Scratch tests are performed at run at room temperature, due to the risk of degradation of the indenter diamond tip at high temperature and added test complexity. However, results obtained at room temperature may differ from the final system performance in high temperature applications, due to factors such as substrate thermal softening.\ud\udIn this work, a simple and a robust test for the mechanical characterisation of hard PVD coatings at high temperature and open atmosphere has been developed, based on a modification of the scratch test where the diamond tip is replaced by a WC indenter. The test has been used to evaluate the effect of temperature up to 500 °C on commercial PVD AlCrN coating deposited on tool steel subject to different surface treatments. Results show a decrease in the failure load Lc2 with increasing temperature, and a very noticeable effect of substrate nitriding.
机译:划痕测试是具有薄硬涂层的系统最常用的表征技术之一。由于在高温下压头金刚石尖端的降解风险以及增加的测试复杂性,因此在室温下进行刮擦测试。但是,由于诸如基材热软化等因素,室温下获得的结果可能与高温应用中的最终系统性能有所不同。\ ud \ ud在这项工作中,对硬PVD涂层的机械特性进行了简单而可靠的测试根据划痕试验的改进方法,开发了一种高温和开放的气氛,其中用WC压头代替了金刚石尖端。该测试已用于评估温度高达500°C对经受不同表面处理的工具钢上沉积的商用PVD AlCrN涂层的影响。结果表明,随着温度的升高,失效载荷Lc2减小,并且衬底氮化效果非常明显。

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