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首页> 外文期刊>Tribology International >Assessing the impact of small amounts of water and iron oxides on adhesion in the wheel/rail interface using High Pressure Torsion testing
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Assessing the impact of small amounts of water and iron oxides on adhesion in the wheel/rail interface using High Pressure Torsion testing

机译:使用高压扭转测试评估少量水和氧化氧化物对车轮/轨道界面粘附的影响

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摘要

A new High Pressure Torsion (HPT) set-up has been developed for assessing the effect of third body materials in the wheel/rail interface in a representative and controlled manner. In this study the technique has been used to investigate the effect of small amounts of water and iron oxides mixtures when subjected to different contact pressures. HPT tests showed reduction in adhesion relative to a dry contact when testing with small amounts of water and/or oxides, however sustained low adhesion (mu < 0.05) was not produced. To aid interpretation of the results a model has been developed to explore the behavior encountered when testing with water and iron oxide mixtures. The model relates the shear properties of water and oxide mixtures (with increasing solid content) to a predicted adhesion. The model shows a narrow window of water to oxide fraction is required for reduced adhesion, particularly on rough surfaces, and this correlates with the behavior observed.
机译:已经开发出一种新的高压扭转(HPT)设置,用于评估代表和受控方式的车轮/轨道接口中的第三个体材料的效果。 在该研究中,该技术已被用于研究少量水和氧化铁混合物在经受不同的接触压力时的影响。 当用少量水和/或氧化物进行测试时,HPT试验显示相对于干燥接触的粘附性降低,但未产生持续低粘附(MU <0.05)。 为了帮助解释结果,已经开发了一种模型来探讨用水和氧化铁混合物测试时遇到的行为。 该模型涉及水和氧化物混合物(随着固体含量的增加)至预测粘合性的剪切性能。 该模型显示对氧化物级分的窄窗口是减少粘附,特别是在粗糙表面上,并且这种与观察到的行为相关。

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