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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effect of dual-size particles on processing and properties of AZ91D/SiCp magnesium matrix composites prepared by rotation cylinder method
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Effect of dual-size particles on processing and properties of AZ91D/SiCp magnesium matrix composites prepared by rotation cylinder method

机译:双重粒径对旋转圆筒法制备AZ91D / SiCp镁基复合材料加工性能的影响

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摘要

Spiral fluidity and hardness and wear experiments were carried out to investigate the effect of dual size (5 and 50 mum) SiC particle distributions on the fluidity, hardness, and wear resistance of Mg-9.1Al-0.7Zn (wt-%) alloy containing 10 vol.-% SiC particles, with the aim of tailoring properties to specific applications. Although a decrease in the fluidity of the composites is observed, as expected, in the presence of SiC particles, the fluidity of the composites with dual size particle distributions was in some instances better than that of composites containing the same volume fraction of single size particles. The hardness and wear resistance of the composites with dual size distributions were weakly dependent on the mixing ratio. In terms of complete molten processing and tailored mechanical properties, the optimum mixing ratio of 5 and 50 mum particles appears to be 1:2. [References: 30]
机译:进行了螺旋流动性,硬度和磨损实验,以研究双重尺寸(5和50微米)SiC颗粒分布对含Mg-9.1Al-0.7Zn(wt%)合金的流动性,硬度和耐磨性的影响10体积%的SiC颗粒,旨在针对特定应用调整性能。尽管观察到复合材料的流动性降低,但正如预期的那样,在存在SiC颗粒的情况下,具有双重尺寸颗粒分布的复合材料的流动性在某些情况下要好于包含相同体积分数的单一尺寸颗粒的复合材料。 。具有双重尺寸分布的复合材料的硬度和耐磨性几乎不取决于混合比。就完整的熔融加工和定制的机械性能而言,5和50微米颗粒的最佳混合比似乎为1:2。 [参考:30]

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