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Effects of friction film mechanical properties on the tribological performance of ceramic enhanced resin matrix friction materials

机译:摩擦膜力学性能对陶瓷增强树脂基摩擦材料摩擦学性能的影响

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In the tribological properties of ceramic enhanced resin matrix friction materials, friction film created at tribological interface plays significant roles. Herein, the present study primarily focused on the correlation between friction film mechanical properties and friction performance, which had been rarely reported. Bigger quartz particles were designedly selected to reinforce one certain resin matrix. The friction performance was tested on a pad-on-disc friction machine. The mechanical features of friction film formed on particles surface were characterized through the Nano/Micro indentation method, and the micro-topography was observed by SEM. Results showed that friction coefficient decreases with the increasing binders in the range of 21.9–29.4?wt.%. It was ascribed to the gradual decrease of friction film strength which reduced the resistance during adhesive friction. The fade resistance was inversely proportional to the friction film thickness. It was attributed to the degradation of organic binders at high temperatures which adversely affected the friction film integrality. The materials wear was not detectable due to the ceramic particles having great wear resistance.
机译:在陶瓷增强树脂基摩擦材料的摩擦性能中,在摩擦界面处形成的摩擦膜起着重要作用。在此,本研究主要集中在摩擦膜的机械性能和摩擦性能之间的相关性,这鲜有报道。设计选用较大的石英颗粒以增强一种特定的树脂基体。摩擦性能在圆盘摩擦机上进行了测试。通过纳米/微压痕法表征了形成在颗粒表面的摩擦膜的力学性能,并通过SEM观察了微观形貌。结果表明,在21.9-29.4wt。%的范围内,摩擦系数随粘结剂的增加而降低。归因于摩擦膜强度的逐渐降低,这降低了粘合剂摩擦期间的电阻。耐褪色性与摩擦膜的厚度成反比。这归因于有机粘合剂在高温下的降解,这不利地影响了摩擦膜的整体性。由于陶瓷颗粒具有很高的耐磨性,因此无法检测到材料磨损。

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