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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Effects of hybrid carbon-aramid fiber on performance of non-asbestos organic brake friction composites
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Effects of hybrid carbon-aramid fiber on performance of non-asbestos organic brake friction composites

机译:杂交碳 - 芳族氨基纤维对非石棉有机制动摩擦复合材料性能的影响

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摘要

The present investigation aims to explore the influence of simultaneous loading of aramid/carbon fibers, as high-performance reinforcements, on thermal, mechanical, and frictional behaviors of phenolic-resin-based nonasbestos organic (NAO) friction materials. The hybrid composite specimens were made at different ratios of carbon and aramid fibers but at a total fixed fiber loading of 8 vol%. The influence of carbon fiber on the improvement of impact strength and thermal conductivity was found to be more prominent than aramid fiber. The thermal stability of friction composites under nitrogen and real condition was investigated. The frictional data drawn from a Chase type friction tester revealed that the coefficient of friction and fade behavior were improved by incorporating aramid fiber. However, carbon fiber improved the wear resistance significantly in comparison with aramid fiber. The surface morphology of the composites was investigated precisely using scanning electron microscopy. Taking all the characterizations (physical, thermal, and tribological) into account, it was revealed that the sample holding 6 vol% aramid fiber and 2 vol% carbon fiber presented the best performance in terms of coefficient of friction, wear rate and fade behavior.
机译:本研究旨在探讨同时加载芳族聚酰胺/碳纤维的影响,作为高性能增强,对酚醛树脂的非方便料组件(NAO)摩擦材料的热,机械和摩擦行为。杂化复合标本以不同的碳和芳族聚酰胺纤维进行,但总固定纤维负载量为8体积%。发现碳纤维对冲击强度和导热率提高的影响比芳族纤维更突出。研究了氮气下摩擦复合材料的热稳定性和实际条件。从追逐型摩擦测试仪中汲取的摩擦数据显示通过掺入芳族纤维来改善摩擦系数和褪色行为。然而,与芳族聚酰胺纤维相比,碳纤维显着提高了耐磨性。精确地使用扫描电子显微镜研究复合材料的表面形态。考虑到所有特征(物理,热和摩擦学),揭示了持有6体积%的芳族纤维和2体积碳纤维的样品在摩擦系数,磨损率和褪色行为方面提出了最佳性能。

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