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Processing, microstructure and mechanical properties of bimodal size SiCp?reinforced AZ31B magnesium matrix composites

机译:双峰尺寸SiCp增强AZ31B镁基复合材料的加工,显微组织和力学性能

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The bimodal size SiC particulates (SiCp) reinforced magnesium matrix composites with different ratios of micron SiCp and nano SiCp (M-SiCp:N-SiCp?=?14.5:0.5, 14:1, and 13.5:1.5) were prepared by semisolid stirring assisted ultrasonic vibration method. The AZ31B alloy and all as-cast SiCp/AZ31B composites were extruded at 350?°C with the ratio of 12:1. Microstructural characterization of the extruded M14?+?N1 (M-SiCp:N-SiCp?=?14:1) composite revealed the uniform distribution of bimodal size SiCp and significant grain refinement. Optical Microscopy(OM) observation showed that, compared with the M14.5?+?N0.5 (M-SiCp:N-SiCp?=?14.5:0.5) composite, there are more recrystallized grains in M14?+?N1 (M-SiCp:N-SiCp?=?14:1) and M13.5?+?N1.5 (M-SiCp:N-SiCp?=?13.5:1.5) composites, but in comparison to the M13.5?+?N1.5 composite, the average grain size of the M14?+?N1 composite is slightly decreased. The evaluation of mechanical properties indicated that the yield strength and ultimate tensile strength of the M14?+?N1 composite were obviously increased compared with other composites.
机译:通过半固态搅拌制备具有不同比例的微米SiCp和纳米SiCp(M-SiCp:N-SiCp?=?14.5:0.5、14:1和13.5:1.5)的双峰尺寸SiC颗粒(SiCp)增强镁基复合材料辅助超声振动法。将AZ31B合金和所有铸态SiCp / AZ31B复合材料在350°C下以12:1的比例挤出。挤出的M14 ++ N1(M-SiCp:N-SiCp == 14:1)复合材料的微观结构表征显示出双峰尺寸SiCp的均匀分布和明显的晶粒细化。光学显微镜(OM)观察表明,与M14.5?+?N0.5(M-SiCp:N-SiCp?=?14.5:0.5)复合材料相比,M14?+?N1( M-SiCp:N-SiCp≥14:1)和M13.5 ++ N1.5(M-SiCp:N-SiCp≥13.5:1.5)复合材料,但与M13.5相比? +ΔN1.5复合材料,M14 ++ΔN1复合材料的平均晶粒尺寸略有减小。力学性能的评价表明,与其他复合材料相比,M14 ++ N1复合材料的屈服强度和极限抗拉强度明显提高。

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