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Dry Rolling/Sliding Wear of Bainitic Rail Steels under Different Contact Stresses and Slip Ratios

机译:不同接触应力和滑动比率下贝氏体轨道钢的干轧/滑动磨损

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摘要

This study aims to deeply understand the effect of contact stress and slip ratio on wear performances of bainitic rail steels. The results showed that the wear loss increased as the contact stress and slip ratio increased. Based on the surface damage morphology and microstructural analyses, it revealed that the rolling contact fatigue wear mechanism played a significant role under the low slip ratio, but the dominant wear mechanism transferred to the abrasive wear at the high slip ratio. Meanwhile, the bainitic steel specifically presented worse wear resistance under the abrasive wear mode. Compared with the influence of a slip ratio, the increase in contact stress led to severer plastic flows and contributed to the propagation of cracks. In addition, the contact stress and slip ratio had the opposite effect on the friction coefficient, that is, the friction coefficient of bainitic steels behaved the inverse proportion with the contact stress, but positive proportion with the slip ratio. At last, the increase in slip ratio had more significant effect on the reduction of retained austenite (RA) than the enlargement of contact stress due to the fact that the RA would probably be removed before the martensitic transformation occurred under the abrasive wear mechanism.
机译:本研究旨在深入了解接触应力和滑动比对贝氏体轨道钢磨损性能的影响。结果表明,随着接触应力和滑移比增加,磨损损失增加。基于表面损伤形态和微观结构分析,揭示滚动接触疲劳磨损机构在低潮比下发挥了重要作用,但主导磨损机构以高潮比转移到磨料磨损。同时,贝氏体钢在磨料磨损模式下特别呈现较差的耐磨性。与滑动比率的影响相比,接触应力的增加导致更严重的塑料流动,并导致裂缝的传播。另外,接触应力和滑移比对摩擦系数的效果相反,即贝氏体钢的摩擦系数表现出与接触应力的逆比例,但与滑移比相反。最后,由于在磨料磨损机制下发生之前可能被除去,滑移比对残留的奥氏体(Ra)的放大,对残留的奥氏体(Ra)的增加具有更大的影响。

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