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Damage mechanisms of plasma, gas and salt bath nitrocarburized steel in lab-scale sliding test

机译:实验室尺度滑动试验中血浆,气体和盐浴氮碳钢钢损伤机理

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Nitrocarburized steel surfaces are often used in tribological forming applications due to their beneficial sliding properties. One typical application field can be found in bending machines where the nitrocarburized layer can withstand massive volume loss and prevent from adhesion of the work sheet material. However, under non-lubricated sliding conditions abrupt failure of the nitrocarburized layer can occur, which results in pronounced increase of friction and wear. In order to characterise the wear mechanisms of nitrocarburized surfaces under non-lubricated sliding conditions, a lab-scale study was carried out. Different nitrocarburizing processes including plasma, gas and salt bath nitrocarburizing were investigated. Oscillating sliding tests with DIN 100Cr6 bearing steel cylinder sliding against nitrocarburized plate were performed at contact pressures typical for bending machines. Evaluation of wear was performed by white-light interferometer with measurements of the wear-scar topography and a subsequent calculation of the average wear depth. A strong influence of the nitrocarburizing process on friction and wear behaviour was observed. This behaviour could be correlated with the microstructure of the compound layer.
机译:由于其有益的滑动性能,氮碳脱碳钢表面通常用于摩擦形成应用。可以在弯曲机中找到一个典型的涂布田,其中氮碳冻极层可以承受大量体积损失并防止工作片材的粘附性。然而,在非润滑的滑动条件下,可能发生氮碳硫化层的突然失效,这导致摩擦和磨损的显着增加。为了在非润滑滑动条件下表征氮烧碳表面的磨损机制,进行了实验室规模研究。研究了不同的氮碳脱碳方法,包括血浆,气体和盐浴氮乙碳脱碳。在典型的弯曲机器典型的接触压力下,在弯曲压力下滑动与氮气燃烧板的DIN 100Cr6轴承钢缸滑动的滑动试验。白光干涉仪进行磨损评估,具有耐磨瘢痕形貌的测量和随后计算平均磨损深度。氮甲碳脱碳过程对摩擦和磨损行为的强烈影响。这种行为可以与复合层的微观结构相关。

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