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首页> 外文期刊>Journal of Composite Materials >Performance and evaluation of nonasbestos organic brake friction composites with SiC particles as an abrasive
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Performance and evaluation of nonasbestos organic brake friction composites with SiC particles as an abrasive

机译:SiC颗粒作为磨料的非石棉有机制动摩擦复合材料的性能和评价

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摘要

The effects of silicon carbide (SiC) as an abrasive on friction and wear performance of nonasbestos organic brake friction composites were studied using a tailored series of samples with 0-14.6 vol.% SiC. Friction coefficient of the friction composites containing SiC increased with increasing SiC content; especially, the thermal fade of the friction material without SiC (SiC-0) improved. The specific wear rate of the friction composites containing SiC increased with SiC added up to 9.0 vol.% and then turned down, but the negative specific wear rate of SiC-0 obviously improved. With elevating friction temperature, an increase in both friction coefficient and wear of all the samples was observed. The extension evaluation method represents an effective tool to rank the friction composites. The ranking of five friction materials, described in the weighted average dependent degrees, was evaluated in the order from the best to the worst: SiC-3.4, SiC-14.6, SiC-5.6, SiC-0, and SiC-9.0. The formulation SiC-3.4 exhibited the best overall quality, and was recommended for future optimization of the brake friction composites. Microstructures of friction surfaces of the brake friction composites were characterized using scanning electron microscopy with energy dispersive X-ray microanalysis and electron microprobe analysis, and phase analysis was performed using X-ray powder diffraction methods. Formation and development of the friction layer were discussed. The friction layer, known as secondary plateaus, was easily formed and it grew among the adjacent or lined-up primary plateaus, which were helpful for improving the friction stability and wear resistance.
机译:使用一系列量为0-14.6%SiC的定制样品,研究了碳化硅(SiC)作为磨料对非石棉有机制动摩擦复合材料的摩擦和磨损性能的影响。含SiC的摩擦复合材料的摩擦系数随SiC含量的增加而增加。特别是,无SiC(SiC-0)的摩擦材料的热褪色得到改善。含SiC的摩擦复合材料的比磨损率随SiC含量的增加而增加,达到9.0 vol。%,然后降低,但SiC-0的负比磨损率明显改善。随着摩擦温度的升高,所有样品的摩擦系数和磨损均增加。延伸评估方法代表了一种对摩擦复合材料进行排名的有效工具。按照从最佳到最差的顺序评估了五种摩擦材料的排名,以加权平均依赖度来描述:SiC-3.4,SiC-14.6,SiC-5.6,SiC-0和SiC-9.0。配方SiC-3.4表现出最佳的整体质量,建议将其用于制动摩擦复合材料的未来优化。使用扫描电子显微镜,能量色散X射线显微分析和电子显微探针分析对制动摩擦复合材料的摩擦表面的微观结构进行表征,并使用X射线粉末衍射法进行相分析。讨论了摩擦层的形成和发展。摩擦层称为次要高原,很容易形成,并在相邻或排列的主要高原之间生长,这有助于改善摩擦稳定性和耐磨性。

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