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Investigating the Process of White Etching Crack Initiation in Bearing Steel

机译:轴承钢白蚀裂纹萌生过程的研究

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White etching cracks (WECs) have been identified as a dominant mode of premature failure within wind turbine gearbox bearings. Though WECs have been reported in the field for over a decade, the conditions leading to WECs and the process by which this failure culminates are both highly debated. In previously published work, the generation of WECs on a benchtop scale was linked to sliding at the surface of the test sample, and it was also postulated that the generation of WECs was dependent on the cumulative energy that had been applied to the sample over the entirety of the test. In this paper, a three-ring-on-roller benchtop test rig is used to systematically alter the cumulative energy that a sample experiences through changes in normal load, sliding, and run-time, in an attempt to correlate cumulative energy with the formation of WECs. It was determined that, in the current test setup, the presence of WECs can be predicted by this energy criterion. The authors then used this information to study the process by which WECs initiate. It was found that, under the current testing conditions, the formation of a dark etching microstructure precedes the formation of a crack, and a crack precedes the formation of white etching microstructure.
机译:白色蚀刻裂纹(WEC)已被确定为风力涡轮机齿轮箱轴承内过早失效的主要方式。尽管已经在该领域报告了WEC十多年,但是引起WEC的条件和最终失败的过程都受到了激烈的争论。在先前发表的工作中,台式规模的WEC的产生与测试样品表面的滑动有关,并且还假定WEC的产生取决于在样品表面施加的累积能量。整个测试。在本文中,使用三环滚轮台式试验台来系统地改变样品通过正常载荷,滑动和运行时间的变化所经历的累积能量,以使累积能量与地层相关联。 WEC。已经确定,在当前的测试设置中,可以通过该能量标准来预测WEC的存在。然后,作者使用此信息来研究WEC发起的过程。已经发现,在当前的测试条件下,暗蚀刻微结构的形成先于裂纹的形成,而裂纹先于白色蚀刻微结构的形成。

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