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Post-testing measurement of freely movable and diffusible hydrogen in context of WEC formation at cylindrical roller thrust bearings from 100Cr6

机译:在100Cr6的圆柱滚子推力轴承在WEC形成背景下自由移动和扩散氢的测试后测量

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Sub-surface crack networks in areas of altered microstructure are a common cause for bearing failures. Due to its appearance under light microscopy, the damage pattern is referred to as White Etching Cracks (WEC). The root causes leading to the formation of WEC are still under debate. Nevertheless, it has already been shown that atomic hydrogen can have an accelerating effect on the formation and propagation of WEC. In addition to hydrogen pre-charging, hydrogen can be released and absorbed during rolling/sliding due to the decomposing of the lubricant and water. The current work focuses on the analysis of the hydrogen content of cylindrical roller thrust bearings after testing in a FE8 type test rig using two different lubricants. Within the framework of this work, two different hydrogen analysis methods were used and assessed regarding their applicability. The results show that the so-called Hydrogen Collecting Analysis (HCA) is more suitable to investigate the correlation between lubricant chemistry and hydrogen content in the test bearings than the Local Hydrogen Analysis (LHA). The measurements with the HCA show a continuously increasing freely movable and diffusible hydrogen content under tribological conditions, which leads to the formation of WEC. Comparative tests with an oil without hydrogen showed that the tendency of the system to fail as a result of WEC can be reduced by using a lubricant without hydride compounds.
机译:改变微观结构区域的子表面裂缝网络是轴承故障的常见原因。由于其在光学显微镜下的外观,损伤图案被称为白色蚀刻裂缝(WEC)。导致WEC形成的根本原因仍在辩论下。然而,已经证明了原子氢可以对WEC的形成和繁殖具有加速影响。除了氢气预充电之外,由于润滑剂和水分分解,氢气可以在轧制/滑动期间释放和吸收。目前的工作侧重于使用两种不同的润滑剂在FE8型试验台上测试后圆柱辊推力轴承氢含量的分析。在这项工作的框架内,使用两种不同的氢分析方法并评估其适用性。结果表明,所谓的氢收分析(HCA)更适合于研究测试轴承中润滑油化学和氢含量之间的相关性而不是局部氢分析(LHA)。用HCA的测量显示在摩擦学条件下连续增加可自由的可移动和可扩散的氢含量,这导致WEC的形成。用没有氢的油的对比试验表明,通过使用没有氢化物化合物的润滑剂,可以减少系统由于WEC而失效的趋势。

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