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Evaluation of hardness, tribological behaviour and impact load of carbon-based hard composite coatings exposed to the influence of humidity

机译:评估受湿度影响的碳基硬质复合涂层的硬度,摩擦学行为和冲击载荷

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Diamond-like composite coatings were deposited by PACVD with an interface magnetron sputtered metallic layer prepared by d.c. unbalanced magnetron sputtering onto HSS substrates. The focus of the present work was on the study of the humidity effect on the tribological properties, hardness and impact resistance of the deposited coatings. The coatings were tested under both dry and humid conditions using several testing methods, like the pin-on-disc test equipped with linear reciprocating movement, impact test and depth sensing indentation test. It was found that the humidity may substantially influence not only the results of tribological tests, but surprisingly, also the results of the dynamic wear and hardness tests. By increasing the relative humidity, the value of dynamic impact resistance increased at an equivalent stress of 1.6 GPa more than three times. On the other hand, the wear rate of the coated part increased by more than four orders of magnitude. The results of the indentation test were influenced by humidity mainly at nanometre scales. The hardness measured at dry conditions was higher by 25% than the values obtained by the measurements under humid conditions.
机译:通过PACVD沉积类金刚石复合涂层,其具有由d.c.制备的界面磁控溅射金属层。在HSS基板上进行不平衡的磁控溅射。本工作的重点是研究湿度对沉积涂层的摩擦学性能,硬度和抗冲击性的影响。使用几种测试方法在干燥和潮湿条件下对涂层进行了测试,例如配备线性往复运动的针盘测试,冲击测试和深度感应压痕测试。已经发现,湿度不仅会严重影响摩擦学测试的结果,而且还会令人惊讶地影响动态磨损和硬度测试的结果。通过增加相对湿度,在1.6 GPa的等效应力下,动态抗冲击性值增加了三倍以上。另一方面,涂层部件的磨损率增加了四个以上的数量级。压痕测试的结果主要受纳米尺度的湿度影响。在干燥条件下测得的硬度比在潮湿条件下测得的硬度高25%。

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