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首页> 外文期刊>Journal of Materials Engineering and Performance >Processing of Aluminum-Graphite Particulate Metal Matrix Composites by Advanced Shear Technology
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Processing of Aluminum-Graphite Particulate Metal Matrix Composites by Advanced Shear Technology

机译:先进剪切技术处理铝-石墨颗粒金属基复合材料

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To extend the possibilities of using aluminum/graphite composites as structural materials, a novel process is developed. The conventional methods often produce agglomerated structures exhibiting lower strength and ductility. To overcome the cohesive force of the agglomerates, a melt conditioned high-pressure die casting (MC-HPDC) process innovatively adapts the well-established, high-shear dispersive mixing action of a twin screw mechanism. The distribution of particles and properties of composites are quantitatively evaluated. The adopted rheo process significantly improved the distribution of the reinforcement in the matrix with a strong interfacial bond between the two. A good combination of improved ultimate tensile strength (UTS) and tensile elongation (ε) is obtained compared with composites produced by conventional processes.
机译:为了扩展使用铝/石墨复合材料作为结构材料的可能性,开发了一种新颖的方法。常规方法经常产生具有较低强度和延展性的附聚结构。为克服团聚体的内聚力,熔融调节的高压压铸(MC-HPDC)工艺创新地适应了双螺杆机构中公认的高剪切分散混合作用。定量评估了颗粒的分布和复合材料的性能。采用的流变工艺显着改善了增强材料在基体中的分布,两者之间具有牢固的界面结合。与通过常规方法生产的复合材料相比,获得了提高的极限拉伸强度(UTS)和拉伸伸长率(ε)的良好组合。

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