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首页> 外文期刊>Journal of the European Ceramic Society >Friction surface evolution of carbon fibre reinforced carbon/silicon carbide (C_f/C-SiC) composites
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Friction surface evolution of carbon fibre reinforced carbon/silicon carbide (C_f/C-SiC) composites

机译:碳纤维增强碳/碳化硅(C_f / C-SiC)复合材料的摩擦表面演变

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摘要

A study is reported on the development of friction surface of carbon fibre reinforced ceramic composites through microstructural image registration of the surface after a range of braking stops on a laboratory-scale dynamometer test rig. It has been found that a steady friction transfer layer is developed in silicon regions; in carbon fibre/carbon and most silicon carbide regions, the friction surface is unsteady and any possible friction transfer layer is hardly built up with satisfactory longevity. Large voids and cracks/crevices are likely to be filled with transferred materials, but these compacts are susceptible to be stripped off by further braking operation. From this study, three types of friction surfaces are identified and could exist in bedding stage. Under the current testing configuration and regime, coefficient of friction increases with accumulated braking stops, and no stable friction yet appeared. The development of friction surface and its impact on the friction measurements are discussed.
机译:据报道,通过在实验室规模的测功机上进行一系列制动停止后,通过表面微观结构图像配准,研究了碳纤维增强陶瓷复合材料摩擦表面的发展。已经发现在硅区域中形成了稳定的摩擦传递层。在碳纤维/碳和大多数碳化硅区域中,摩擦表面不稳定,几乎没有建立任何可能的摩擦传递层并具有令人满意的寿命。大的空隙和裂缝/缝隙可能会充满转移的材料,但这些压块很容易被进一步的制动操作剥落。根据这项研究,确定了三种摩擦表面类型,它们可能在层理阶段存在。在当前的测试配置和状态下,摩擦系数随着累积的制动停止而增加,并且尚未出现稳定的摩擦。讨论了摩擦表面的发展及其对摩擦测量的影响。

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