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Wear Enhancement of Wheel-Rail Interaction by Ultrasonic Nanocrystalline Surface Modification Technique

机译:超声纳米晶表面改性技术增强轮-轨相互作用

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摘要

In this study, an ultrasonic nanocrystalline surface modification (UNSM) technique was applied to normal and heat-treated rails made of 60 kgK steel to enhance the wear resistance of the wheel-rail interaction. The hardness and compressive residual stress values of the untreated and UNSM-treated rails were measured by the Brinell hardness tester and X-ray diffraction technique, respectively. It was found, according to the measurement results, that the hardness was increased by about 20% and 8%, whereas the compressive residual stress was induced by about 52% and 62% for the UNSM-treated normal and heat-treated rails, respectively. The UNSM-treated normal rail showed a slightly higher hardness than the heat-treated rail. The wear resistance of rails with respect to rotating speed and rolling time was assessed using a rolling contact wear (RCW) tester under dry conditions. The RCW test results revealed that the wear of the UNSM-treated rails was enhanced in comparison with those of the untreated rails. Also, the wear amount of the rails was increased with increasing the rotation speed. The UNSM-treated normal rail exhibited the highest wear resistance with respect to the rotation speed. The wear mechanisms of the rails are also discussed based on microscopic images of the worn out surfaces.
机译:在这项研究中,将超声纳米晶表面改性(UNSM)技术应用于由60 kgK钢制成的普通和热处理过的钢轨,以增强轮轨相互作用的耐磨性。分别通过布氏硬度计和X射线衍射技术测量未经处理和经UNSM处理的钢轨的硬度和压缩残余应力值。根据测量结果发现,经UNSM处理的普通和经热处理的钢轨,硬度分别增加了约20%和8%,而引起的压缩残余应力分别为约52%和62%。 。经UNSM处理的普通钢轨的硬度略高于经热处理的钢轨。在干燥条件下,使用滚动接触磨损(RCW)测试仪评估了导轨相对于转速和滚动时间的耐磨性。 RCW测试结果表明,与未处理的钢轨相比,经UNSM处理的钢轨的磨损有所增加。而且,轨道的磨损量随着旋转速度的增加而增加。经UNSM处理的普通导轨相对于转速表现出最高的耐磨性。还基于磨损表面的显微图像讨论了导轨的磨损机理。

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