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干滑动条件下机车轮轨材料磨损与损伤行为的试验研究

Experimental Investigation on the Wear and Damage Behaviors of Machined Wheel-Rail Materials under Dry Sliding Conditions.

作者信息

Liu Peijie, Quan Yanming, Wan Junjie, Yu Lang

机构信息

School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510640, China.

出版信息

Materials (Basel). 2021 Jan 23;14(3):540. doi: 10.3390/ma14030540.

Abstract

Rail grinding and wheel turning can effectively remove surface defects and unevenness, which is a crucial process for the safe and smooth operation of trains. Machined surface integrity of wheel/rail materials significantly influences their tribological property. In this study, firstly, the rail blocks were ground via a cylindrical grinding machine, and the wheel rings were turned by a computer numerical control (CNC) lathe with varied parameters. Then, the sliding wear and damage characteristics of the machined wheel/rail samples under dry conditions were studied by virtue of a block-on-ring tribometer. The results show that the surface microhardness of the ground rail blocks is larger than that of wheel rings, while the surface roughness and the thickness of the subsurface plastic deformation layer (SPDL) of rail blocks are much smaller than those of wheel rings. After sliding, the surface microhardness of wheel/rail samples increases remarkably. The thickness of the SPDL, the wear loss, and the increase degree of surface microhardness of rail blocks are larger than those of wheel rings. Surface microhardness, roughness and the SPDL of the machined wheel/rail samples impose a combined influence on the anti-wear property, and the tribological pair with proper initial surface roughness and microhardness engenders the smallest amount of total wear loss.

摘要

钢轨打磨和车轮车削可以有效去除表面缺陷和不平整,这是列车安全平稳运行的关键工序。轮轨材料的加工表面完整性显著影响其摩擦学性能。在本研究中,首先,通过外圆磨床对钢轨试块进行磨削,并使用计算机数控(CNC)车床以不同参数对车轮轮圈进行车削。然后,借助销盘摩擦磨损试验机研究了加工后的轮轨试样在干燥条件下的滑动磨损及损伤特性。结果表明,磨削后的钢轨试块表面显微硬度大于车轮轮圈,而钢轨试块的表面粗糙度和亚表面塑性变形层(SPDL)厚度远小于车轮轮圈。滑动后,轮轨试样的表面显微硬度显著增加。钢轨试块的SPDL厚度、磨损量以及表面显微硬度的增加程度均大于车轮轮圈。加工后的轮轨试样的表面显微硬度、粗糙度和SPDL对耐磨性能产生综合影响,具有适当初始表面粗糙度和显微硬度的摩擦副产生的总磨损量最小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd5d/7866242/e560f43dcb3e/materials-14-00540-g001.jpg

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