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Processing and mechanical properties of Mg-2.8Al-0.8Zn alloy containing bimodal size distribution

机译:含有双峰尺寸分布的Mg-2.8Al-0.8Zn合金的加工和力学性能

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The effect of bimodal size(nano?+?micron) distribution on the microstructure and mechanical properties of Mg-2.8Al-0.8Zn(AZ31B) fabricated by ultrasonic dispersion method was discussed. The grain refinement-degrees of composites not only connect with double size distribution, but also with the proportion of double size distribution. Compared to other samples, microstructural characterizations of AZ31B alloy containing (4.0%micron+1.0%nano)SiC revealed presence of uniformly distributed micro-SiC(SiCMP) hybridized with nano-SiC(SiCNP) and reduction in average matrix grain size. At room temperature, tensile tests results showed a superior combination of strength and ductility for Mg-(4.0SiCMP+1.0%SiCNP) composite compared with other composites. The reasons are mainly attributed to the presence of double size distribution, the lowest level of agglomeration of SiCMPhybridized with SiCNPand the better interface wettability between the matrix and the hybridized particles.
机译:讨论了双模尺寸(纳米+ +×××micron)分布对超声波分散法制造的Mg-2.8At-0.8Zn(AZ31B)的微观结构和机械性能的影响。晶粒细化 - 复合材料不仅与双尺寸分布连接,还具有双尺寸分布的比例。与其他样品相比,含有(4.0%微米+ 1.0%纳米)SiC的AZ31B合金的微观结构表征揭示了与纳米SiC(SiCNP)杂交的均匀分布的微SiC(SiCMP)的存在,并降低了平均基质晶粒尺寸。在室温下,拉伸试验结果表明,与其他复合材料相比,Mg-(4.0siCMP + 1.0%SiCNP)复合材料的强度和延展性的优异组合。原因主要归因于双尺寸分布的存在,用SiCNPAND的SiCmphybrided凝聚的最低水平的凝聚率较好的基质和杂交颗粒之间的更好的界面润湿性。

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