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The Role of Hydrogen on Rolling Contact Fatigue Response of Rolling Element Bearings

机译:氢对滚动元件轴承滚动接触疲劳响应的作用

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It is generally accepted that the rolling contact fatigue (RCF) life of bearing components is strongly reduced when the hardened steel matrix contains hydrogen. Although frequently reported in the literature, a physically sound explanation to this phenomenon has not yet been presented. In recent work on building understanding around the nature of the RCF damage process, we have reported on the development of a physically based fatigue damage model. Here we discuss an attempt to interpret the role of hydrogen on the micro-plastic fatigue damage mechanism on the basis of this concept. In this context, the role of hydrogen on the RCF response has been studied in order to find evidence for and to determine its weakening effect on hardened and low-temperature tempered (bearing) steels. In order to perform valid tests, effort was put in controlling the hydrogen content in bearing components before testing using an electrochemical hydrogen charging process. A number of bearing tests were performed clearly showing differences in fatigue response with different amounts of hydrogen present in the micro-structure. The results of testing of bearings with hydrogen-containing steel matrices are given. It was found that increased hydrogen content in bearing steel at 5 ppm (by weight) will significantly promote bearing spalling failure and enhance the formation and growth of so-called white-etching crack systems. This experimental information is interpreted in the light of the physically based fatigue damage model.
机译:通常接受,当硬化钢基质含有氢气时,轴承部件的滚动接触疲劳(RCF)寿命受到强烈降低。虽然经常在文献中报道,但尚未提出对这种现象的物理声音解释。最近在围绕RCF损伤过程的性质的建立理解的工作中,我们报道了物理基础的疲劳损伤模型的发展。在这里,我们讨论了在此概念的基础上解释氢气对微塑疲劳损坏机制的作用。在这种情况下,研究了氢对RCF响应的作用,以寻找证据并确定其对硬化和低温回火(轴承)钢的弱化效果。为了执行有效的测试,在使用电化学氢气充电过程之前,将努力控制轴承部件中的氢含量。进行了许多轴承测试,清楚地显示出在微结构中存在不同量的氢的疲劳反应的差异。给出了含氢钢基质轴承的测试结果。发现,在5ppm(重量)下增加轴承钢中的氢含量将显着促进轴承剥落的失效,并增强所谓的白色蚀刻裂纹系统的形成和生长。鉴于物理基础的疲劳损伤模型,将该实验信息解释。

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