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Influencing Mechanism of Rubber Wheel on Contact Pressure and Metal Removal in Corrugated Rail Grinding by Abrasive Belt

机译:橡胶轮对磨蚀带磨断磨削瓦楞轨道磨削的橡胶轮和金属去除机理

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摘要

Rail grinding has been widely recognized as an essential measure in routine maintenance of railway network in the world. Compared with other technologies, the emerging abrasive belt grinding process for direct rail maintenance rather than limited polishing finish has shown the convincing potential to improve metal removal rate and surface quality. However, the influencing mechanism of the rubber wheel on contact pressure and metal removal for the corrugated rails is yet unknown. This paper develops a contact pressure model to obtain the boundary curve and the stress distribution of the contact zone between the rubber wheel with concave peripheral surface and the rail surface with corrugation. Based on this, the metal removal model is subsequently established through the abrasive processing theory. Finite element (FE) simulations and grinding tests are finally implemented. Results confirm the above-mentioned theoretical models of contact pressure and metal removal and show the significant influences of the rubber wheel's feature on contact pressure and metal removal.
机译:轨道研磨被广泛认可成为世界上铁路网络常规维护的重要措施。与其他技术相比,用于直接轨道维护而非限量抛光表面的新出现的磨料带研磨过程表明了提高金属去除率和表面质量的令人信服的潜力。然而,橡胶轮对波纹轨道接触压力和金属去除的影响机理尚未赘言。本文开发了接触压力模型,以获得边界曲线和具有波纹的凹形外围表面和轨道表面之间的橡胶轮之间的接触区域的应力分布。基于此,随后通过研磨加工理论建立金属去除模型。有限元(FE)模拟和研磨测试最终实施。结果证实了上述接触压力和金属去除的理论模型,并显示了橡胶轮的特征对接触压力和金属去除的显着影响。

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