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首页> 外文期刊>International Journal Cast Metals Research >Microstructure and mechanical properties of AI-Cu-Mg alloy matrix hybrid composites fabricated by squeeze casting
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Microstructure and mechanical properties of AI-Cu-Mg alloy matrix hybrid composites fabricated by squeeze casting

机译:挤压铸造制备Al-Cu-Mg合金基杂化复合材料的组织和力学性能

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Hybrid composites in which Al{sub}2O{sub}3 particles were distributed among Al{sub}2O{sub}3 continuous fibres were fabricated by squeeze casting, using Al-Cu-Mg alloy as the matrix. Their microstructures and mechanical properties were investigated, with special attention paid to the effect of the presence of the Al{sub}2O{sub}3 particles. The particles were found to minimise contraction of the preform as well as the resultant fibre-to-fibre contact caused by compression. There were few reactions at the interface between the fibres and the matrix. The tensile strength parallel to the fibre axis increased as the volume fraction of the fibres increased, and was further improved by the introduction of the particles. The tensile strength of the hybrid composite perpendicular to the fibre axis was about the same as that of the unreinforced alloy, while that of the composite without particles decreased as the volume fraction of the fibres increased. Tensile fractures perpendicular to the fibre axis occurred mainly at the interface in composites without particles, but occurred in the matrix in the hybrid composites.
机译:以Al-Cu-Mg合金为基体,通过挤压铸造制备了Al {sub} 2O {sub} 3颗粒分布在Al {sub} 2O {sub} 3连续纤维中的杂化复合材料。研究了它们的微观结构和力学性能,并特别注意了Al {sub} 2O {sub} 3颗粒的存在。发现颗粒使预成型件的收缩以及由压缩引起的最终的纤维间接触最小化。在纤维和基质之间的界面处几乎没有反应。平行于纤维轴的抗拉强度随着纤维的体积分数的增加而增加,并且通过引入颗粒而进一步提高。垂直于纤维轴的杂化复合材料的抗张强度与未增强合金的抗张强度大致相同,而没有颗粒的复合材料的抗张强度随着纤维体积分数的增加而降低。垂直于纤维轴的拉伸断裂主要发生在无颗粒复合材料的界面处,但发生在杂化复合材料的基体中。

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