首页> 外文期刊>Archives of Metallurgy and Materials >Effect of Wetting Agent and Carbide Volume Fraction on the Wear Response of Aluminum Matrix Composites Reinforced by WC Nanoparticles and Aluminide Particles
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Effect of Wetting Agent and Carbide Volume Fraction on the Wear Response of Aluminum Matrix Composites Reinforced by WC Nanoparticles and Aluminide Particles

机译:润湿剂和碳化物体积分数对WC纳米颗粒和铝化物颗粒增强的铝基复合材料磨损响应的影响

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Aluminum matrix composites were prepared by adding submicron sized WC particles into a melt of Al 1050 under mechanical stirring, with the scope to determine: (a) the most appropriate salt flux amongst KBF4, K2TiF6, K3AlF6 and Na3AlF6 for optimum particle wetting and distribution and (b) the maximum carbide volume fraction (CVF) for optimum response to sliding wear. The nature of the wetting agent notably affected particle incorporation, with K2TiF6 providing the greatest particle insertion. A uniform aluminide (in-situ) and WC (ex-situ) particle distribution was attained. Two different sliding wear mechanisms were identified for low CVFs (≤1.5%), and high CVFs (2.0%), depending on the extent of particle agglomeration.
机译:通过在机械搅拌下将亚微米级WC颗粒添加到Al 1050熔体中来制备铝基复合材料,其范围应确定:(a)KBF4,K2TiF6,K3AlF6和Na3AlF6中最合适的盐通量,以实现最佳的颗粒润湿和分布;以及(b)最大碳化物体积分数(CVF),以最佳地响应滑动磨损。润湿剂的性质显着影响颗粒的掺入,其中K2TiF6提供最大的颗粒插入。获得均匀的铝化物(原位)和WC(异位)颗粒分布。对于低CVFs(≤1.5%)和高CVFs(2.0%),确定了两种不同的滑动磨损机理,具体取决于颗粒团聚的程度。

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