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Friction Management as a Sustainable Solution for Controlling Noise at the Wheel-Rail Interface

机译:摩擦管理作为用于控制轮轨接口噪声的可持续解决方案

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Noise phenomena generated by the rail/wheel interface can pose a major problem for urban railway operations. Friction Management can provide a sustainable strategy to mitigate multiple rail/wheel contact related noise effects including rolling noise, rumbling noise (caused by corrugation), wheel squeal, flanging noise and impact noise. As the term friction management refers to a combined application of gauge face lubrication and top of rail (TOR) friction control, special emphasis needs to be placed on the differences between the two aspects with respect to consumable products and their resultant noise mitigation capabilities. By analysing recent trial results and successful implementations as well as by referring to already published data, the opportunity for managing and controlling noise with optimised Friction Management strategies will be highlighted. This paper will primarily focus on the functional characteristics of a water based, drying friction modifier (FM) that was used in most of the referred studies and implementations. The positive implications of friction management are not only limited to noise mitigation. Consequently a wider, system based implementation approach needs to be considered in order to derive sustainable benefits for quiet and cost efficient railway operations.
机译:轨道/轮界面产生的噪声现象可以为城市铁路运营构成一个主要问题。摩擦管理可以提供可持续的策略来减轻多个轨道/车轮接触相关噪声效果,包括滚动噪音,隆隆声噪声(由波纹引起的),轮尖,法兰噪声和冲击噪声。随着术语摩擦管理是指仪表面部润滑和轨道(波纹)摩擦控制的综合应用,需要特别强调对消耗产品的两个方面之间的差异以及其所产生的噪声缓解能力。通过分析最近的试验结果和成功实现以及参考已经公布的数据,将突出显示具有优化摩擦管理策略的管理和控制噪声的机会。本文主要集中在大多数参考研究和实施中使用的水分,干燥摩擦改性剂(FM)的功能特性。摩擦管理的积极影响不仅限于噪音缓解。因此,需要考虑更广泛的基于系统的实施方法,以获得安静和成本高效的铁路操作的可持续利益。

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