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Development of a fretting wear test rig and preliminary studies for understanding the fretting wear properties of steels

机译:开发微动磨损试验台并进行初步研究,以了解钢的微动磨损特性

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摘要

Rolling element bearings experience fretting wear type of failures due to small relative oscillatory motion existing between races and rolling elements of the bearing. Small oscillatory motion between contacting surfaces that occur due to overall machine or system vibration and unexpected loads in service causes accumulation of wear debris in the contact zone and accelerate the wear process. A fretting wear test rig is designed and developed in the laboratory for understanding the fretting wear behavior of bearing materials. The test rig is designed for testing at slip amplitudes ranging from 20 to 200 um and test frequencies ranging from 1 to 30 Hz. Preliminary studies for understanding the fretting wear characteristics were conducted on hardened and tempered bearing steel, En31 and widely employed hardened and tempered structural steel, En24 at various normal loads. Coefficient of friction during fretting tests was high during the initial stages of fretting tests and reached a steady state. The coefficient of friction depends on the normal load. Wear scar morphology reveals the nature of contact exhibited by the fretting contacts.
机译:由于轴承的座圈和滚动元件之间存在较小的相对振荡运动,因此滚动轴承会经历微动磨损类型的故障。由于整个机器或系统的振动以及工作中的意外负载而导致的接触面之间的小振动运动会在接触区域中造成磨损碎屑的堆积,并加速磨损过程。在实验室中设计并开发了微动磨损试验台,以了解轴承材料的微动磨损行为。该测试设备设计用于在20至200 um的滑差幅度和1至30 Hz的测试频率下进行测试。对硬化和回火的轴承钢En31以及在各种正常载荷下广泛使用的淬火和回火的结构钢En24进行了初步的研究,以了解微动磨损特性。在微动试验的初始阶段,微动试验的摩擦系数很高,并达到了稳定状态。摩擦系数取决于正常负载。磨损疤痕形态揭示了微动接触所表现出的接触性质。

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