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首页> 外文期刊>Journal of Taibah University for Science >Thermal and tribological characterizations of millscale-particles-reinforced ceramic matrix composites
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Thermal and tribological characterizations of millscale-particles-reinforced ceramic matrix composites

机译:鳞片增强陶瓷基复合材料的热学和摩擦学表征

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ABSTRACT This paper evaluates some basic functional properties of iron-millscale-reinforced ceramic matrix composites (CMCs) as potential material for automobiles and aircraft brake pads’ application. The particulate CMCs were produced by the powder metallurgy method. Iron millscale particles’ addition varied from 3 to 18?wt.% in a matrix comprising a mixture of silica, magnesia and bentonite. After sintering, the composites were subjected to coefficient of friction (COF), wear, thermal and microstructural characterizations. Microstructure of the composites showed a uniform distribution of millscale particles in the ceramic matrix with a strong interfacial bonding between the particles. The composites demonstrated a comparatively high resistance to wear, appreciable COF (0.506–0.561) and a modest thermal conductivity (0.39–0.53 W/m?K) coupled with high thermal stability. Contributions to these superlative performances were provided by the high level of friction induced on composites’ surfaces and strong interfacial bonding developed during sintering.
机译:摘要本文评估了铁制鳞片增强陶瓷基复合材料(CMC)的一些基本功能特性,这些材料可作为汽车和飞机刹车片的潜在材料。通过粉末冶金法生产颗粒状CMC。在包含二氧化硅,氧化镁和膨润土的混合物的基质中,铁鳞的添加量为3至18wt。%。烧结后,对复合材料进行摩擦系数(COF),磨损,热和微观结构表征。复合材料的微观结构表明,在陶瓷基体中铣刨颗粒均匀分布,并且颗粒之间具有牢固的界面结合。该复合材料显示出较高的耐磨性,可观的COF(0.506–0.561)和适度的热导率(0.39–0.53 W / m?K)以及较高的热稳定性。复合材料表面产生的高摩擦力以及烧结过程中形成的牢固的界面结合力,为这些顶级性能做出了贡献。

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