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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribological study of Fe-Cu-Cr-graphite alloy and cast iron railway brake shoes by pin-on-disc technique
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Tribological study of Fe-Cu-Cr-graphite alloy and cast iron railway brake shoes by pin-on-disc technique

机译:铁-铜-铬-石墨合金和铸铁铁路闸瓦的摩擦学研究

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摘要

A new class of materials is being installed in railway brake blocks to substitute classic cast iron in order to reduce the rolling noise produced by the roughness of the tread-wheel surface. The tribological properties of cast iron and Fe-Cu-Cr-graphite sintered alloy brake shoes were analyzed. Kinetic friction coefficient (μ,) and wear were monitored by means of a pin-on-disc technique. The sintered alloy brake showed an increase in μ at higher braking velocities while the cast iron brake exhibited a decrease in μ. Wear was greater on the sintered alloy, explained by its low shear strength which decreased due to its low thermal conductivity. The roughness produced by the sintered brake shoes in wheel-tread surface was 10 times lower than that produced by cast iron.
机译:铁路制动块中正在安装一类新型材料,以替代传统的铸铁,以减少由于胎轮表面粗糙度而产生的滚动噪音。分析了铸铁和Fe-Cu-Cr-石墨烧结合金刹车蹄的摩擦学性能。动摩擦系数(μ)和磨损通过销盘技术进行监测。在较高的制动速度下,烧结合金制动器的μ值增大,而铸铁制动器的μ值减小。烧结合金的磨损更大,这是由于其低剪切强度而降低的,这是由于其低导热性而降低的。轮毂表面的烧结制动蹄产生的粗糙度比铸铁产生的粗糙度低10倍。

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