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Effect of abrasive grain size on surface particle deposition behaviour of PTFE/bronze composites during abrasive wear

机译:磨粒对磨料磨损过程中PTFE /青铜复合材料表面颗粒沉积行为的影响

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摘要

in this study, we explored the effects of abrasive grain size, applied load and sliding speed on the particle distribution density of polytetrafluoroethylene/bronze composite at the worn surface. Wear tests were performed against different sandpapers under varied loads and speeds. Results show that the surface density can be divided into three types, namely, lesser than, close to and more than the original volume fraction value of particle (15%), as the grain size decreases. This finding can be explained by the change in wear mechanisms. Micro-ploughing is the main mechanism of all the abrasive wears. When the grain size is large, the peeling-off of bronze particles occurs. On the contrary, when the grain size is small, the 'rolling-effect' of debris happens.
机译:在这项研究中,我们探讨了磨粒粒度,施加负荷和滑动速度对磨损表面的聚四氟乙烯/青铜复合材料颗粒分布密度的影响。 在不同载荷和速度下对不同的纸影进行磨损测试。 结果表明,表面密度可以分为三种类型,即,较小,靠近且超过颗粒的原始体积分数(15%),因为晶粒尺寸降低。 这一发现可以通过磨损机制的变化来解释。 微耕是所有磨料磨损的主要机理。 当晶粒尺寸大时,发生青铜颗粒的剥离。 相反,当晶粒尺寸很小时,碎片的“滚动效应”会发生。

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