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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Dry and lubricated wear of rail steel under rolling contact fatigue - Wear mechanisms and crack growth
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Dry and lubricated wear of rail steel under rolling contact fatigue - Wear mechanisms and crack growth

机译:滚动接触疲劳下钢丝钢的干燥和润滑磨损 - 磨损机构和裂纹生长

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摘要

In this work, the dry and lubricated wear behavior of rail steels (R370CrHT) under Rolling Contact Fatigue (RCF) conditions was studied in laboratory. A twin-disc rolling-sliding machine was used to reproduce contact conditions under high contact pressure (1.1 GPa) and high creepage (5%) with the aim of accelerating RCF failure. Two different types of tests were performed, namely dry and lubricated with a friction modifier, to simulate the mechanisms that cause RCF. The results showed an increase of the wear rate in the tests where a friction modifier was added after an initial stage of 4,000 dry cycles. The damage of the surface proceeded by cracks formation during the dry stage followed by accelerated crack growth and flaking due to the effects induced by the friction modifier entering into the original cracks. After several thousand cycles, the flakes were detached from the surface causing high wear rates. The cracks morphology was observed under SEM. The cracks depth and angle with respect to the contact surface were reported and some correlations were made with the mass loss results. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,在实验室研究了滚动接触疲劳(RCF)条件下的轨道钢(R370CRHT)的干燥和润滑磨损行为。双盘滑动机用于在高接触压力(1.1GPa)和高爬电压(5%)下再现接触条件,目的是加速RCF衰竭。进行两种不同类型的测试,即用摩擦改进剂干燥和润滑,以模拟导致RCF的机制。结果表明,在4,000个干循环的初始阶段加入摩擦改性剂的试验中的磨损率的增加。由于摩擦改性剂进入原始裂缝的摩擦改性剂诱导的效果,通过裂缝形成的表面的损坏通过裂缝形成,然后加速裂纹生长和剥落。经过几千个循环后,从表面上脱离薄片,导致高磨损率。在SEM下观察到裂缝形态。报告了相对于接触表面的裂缝深度和角度,并且通过质量损失结果进行了一些相关性。 (c)2017 Elsevier B.v.保留所有权利。

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