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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Analysis on the effects of rotational speed of grinding stone on removal behavior of rail material
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Analysis on the effects of rotational speed of grinding stone on removal behavior of rail material

机译:磨石转速对轨道材料去除行为的影响分析

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The grinding process for maintaining the railroad rails can affect their performance. A rail grinding friction testing apparatus was developed to investigate the effects of rotational speed of grinding stone on removal behavior of rail material. The rail-grinding stone contact consists of a round, flat grinding stone and two test specimens made from Mn-steel rails that are pressed against the face of the stone. The effects of grinding wheel rotational speed on the abrasive removal mechanism of rail material are explored in detail. The results indicate that as the grinding wheel rotational speed increases, the friction coefficient, the surface roughness of rail specimens and the width of the wear grooves decrease. The grinding wear volume, the rnicroindentation hardness of the rail specimens and the surface temperature-rise all increase as the number of grinding cycles increase. Wear debris collected during the test is composed of round particles and curled cutting chips. The debris is mainly composed of Fe3O4, FeO and Fe. As grinding rotational speed increases, the content of Fe3O4 and FeO increases but the width of the cutting chips decreases. (C) 2015 Elsevier B.V. All rights reserved.
机译:维护铁轨的研磨过程会影响其性能。开发了一种轨道研磨摩擦测试设备,以研究磨石转速对轨道材料去除行为的影响。轨道磨石接触件包括一个圆形的扁平磨石和两个由Mn钢轨制成的试样,将其压在石的表面上。详细探讨了砂轮转速对轨道材料的磨料去除机理的影响。结果表明,随着砂轮转速的增加,摩擦系数,轨道试件的表面粗糙度和磨损槽的宽度减小。随着磨削循环次数的增加,磨削磨损量,钢轨试样的显微压痕硬度和表面温度升高都增加。测试期间收集的磨损碎片由圆形颗粒和卷曲的切屑组成。碎片主要由Fe3O4,FeO和Fe组成。随着磨削转速的增加,Fe3O4和FeO的含量增加,但切屑的宽度减小。 (C)2015 Elsevier B.V.保留所有权利。

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