利用弗吉尼亚理工大学滚轮钻机评估天然第三体层对摩擦的影响

Ahmad Radmehr, Karan Kothari, M. Ahmadian
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引用次数: 2

摘要

在本研究中,使用弗吉尼亚理工大学-联邦铁路管理局(VT-FRA)滚轮钻机设备评估了天然第三体层对摩擦系数和接触力的影响。该试验台使我们能够精确控制接触面,研究其对轮轨界面力和力矩的影响。实验表明,在运行测试时,运行表面发生轻微磨损。磨损的材料沉积在表面,在接触处表现得像一个“自然的”第三体层,导致牵引系数和蠕变力的变化。物料磨损及其在运行表面的积累随车轮纵向载荷和爬电而变化。通过一系列有组织的基于时间的试验,在试验开始时对运行表面进行清洗,研究材料磨损积累对牵引系数和蠕变力等选定参数随时间的影响。为了突出天然第三体层对轮轨接触力的影响,进行了一系列实验,在一种情况下,车轮和滚轮表面被清洁,另一种情况下不被清洁。实验的结果很有启发性。结果表明,每次试验后对跑道表面进行清洗时,最大蠕变力(或附着力)远低于不清洗时,即允许天然的第三体层在跑道表面积聚。结果表明,磨屑对摩擦的增强作用大于减摩作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating the Effect of Natural Third Body Layers on Friction Using the Virginia Tech Roller Rig
In this study, the effect of natural third body layers on the coefficient of friction and contact forces is evaluated using the Virginia Tech-Federal Railroad Administration (VT-FRA) roller rig facility. The test rig allows us to precisely control the contacting surfaces to study its effect on the wheel-rail interface forces and moments. Experiments have shown while running the tests, a slight amount of wear occurs at the running surfaces. The worn material deposits at the surface and behaves like a “natural” third-body layer at the contact, resulting in changes in traction coefficient and creep forces. The material wear and its accumulation on the running surfaces change with wheel longitudinal load and creepage. A series of organized time-based experiments have been conducted with the running surfaces cleaned at the beginning of the test to study the effect of material wear accumulation on selected parameters including traction coefficient and creep forces over time. In order to highlight the effect of the natural third body layer on the wheel-rail contact forces, a series of experiments were conducted, in which the wheel and roller surfaces were cleaned in one case and left uncleaned in another. The results of the experiments are quite revealing. They indicate that when the running surfaces are cleaned after each test, the maximum creep force (or adhesion) is far lower than when the running surfaces are not cleaned, i.e., the natural third-body layer is allowed to accumulate at the surfaces. The results indicate that the wear debris act as a friction enhancer rather than a friction reducer.
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