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首页> 外文期刊>Journal of the European Ceramic Society >Advanced silicon oxycarbide-carbon composites for high temperature resistant friction systems
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Advanced silicon oxycarbide-carbon composites for high temperature resistant friction systems

机译:先进的碳氧化硅-碳复合材料,用于耐高温摩擦系统

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Highly densified bulk silicon oxycarbide-carbon composites (SiOC-C) reinforced with carbon black (CB), active carbon (AC) or graphite (GR) have been obtained through spark plasma sintering. Structural, mechanical, tribological and thermal properties of SiOC-C composites were researched. The SiOC-C composites reinforced with GR and CB tended to give beta-SiC. Wear behavior at room temperature under dry conditions was determined by using a ball on plate configuration and stainless steel balls as counter bodies. The coefficient of friction of the composites decreases down to 40% and the wear rate is also reduced by 1 in the order of magnitude when compared to SiOC. A graphite-like carbon tribolayer is probably formed in the composites; this layer could be responsible for the observed enhancement of such tribological properties. These SiOC-C composites are promising candidates for use in harsh enviroments where an adequate tribological response is required at high temperatures. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过火花等离子体烧结获得了由炭黑(CB),活性炭(AC)或石墨(GR)增强的高致密的块状碳氧化硅-碳复合材料(SiOC-C)。研究了SiOC-C复合材料的结构,力学,摩擦学和热学性能。用GR和CB增强的SiOC-C复合材料倾向于生成β-SiC。室温下在干燥条件下的磨损行为是通过使用平板上的钢球和不锈钢钢球作为相对体来确定的。与SiOC相比,复合材料的摩擦系数降低至40%,磨损率也降低了1个数量级。复合材料中可能会形成类石墨的碳三摩擦层。该层可能负责观察到的此类摩擦学特性的增强。这些SiOC-C复合材料是有希望的候选材料,可用于在高温下需要足够的摩擦响应的恶劣环境中。 (C)2016 Elsevier Ltd.保留所有权利。

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