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Pin-on-disc study of the effects of railway friction modifiers on airborne wear particles from wheel-rail contact

机译:铁路摩擦改进剂对轮-轨接触产生的空气传播磨损颗粒影响的针-盘研究

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摘要

Knowledge of wheel–rail interaction is crucial to wheel and rail maintenance. In this interaction, some of theworn-off material is transformed into airborne particles. Although such wear is well understood, few studiestreat the particles generated. We investigated friction modifiers' effects on airborne particles characteristicsgenerated in wheel-rail contacts in laboratory conditions. Pin-on-disc machine testing with a round-head pinloaded by a dead weight load 40 N simulated maximum contact pressure over 550 MPa. Airborne particlecharacteristics were investigated in dry contacts and in ones lubricated with biodegradable rail grease andwater- and oil-based friction modifiers. The number of particles declined with the grease; the number ofultrafine particles increased with the water-based friction modifier, mainly due to water vaporization.
机译:轮轨相互作用的知识对于轮轨维护至关重要。在这种相互作用中,一些磨损的材料转化为空气中的颗粒。尽管已经很好地了解了这种磨损,但很少进行研究处理产生的颗粒。我们在实验室条件下研究了摩擦改进剂对轮轨接触中产生的气载颗粒特性的影响。圆头针式圆盘机器测试,负载40 N的自重负载,模拟最大接触压力超过550 MPa。在干式接触中以及在使用可生物降解的轨道润滑脂以及水基和油基摩擦改进剂润滑的接触点中,研究了空气传播的颗粒特性。油脂减少了颗粒的数量。超细颗粒的数量随着水基摩擦改进剂的增加而增加,这主要是由于水的汽化。

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