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Processing, microstructure, and properties of Mg-SiC composites synthesised using fluxless casting process

机译:无熔铸造工艺合成Mg-SiC复合材料的工艺,组织与性能

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In the present study, elemental magnesium and magnesium-silicon carbide composites were synthesised using the methodology of fluxless casting followed by hot extrusion. Microstructural characterisation studies revealed low porosity and a completely recrystallised matrix in every material. The average size of the recrystallised grains was found to decrease with an increasing presence of SiC particulates. For the reinforced magnesium, fairly uniform distribution of SiC particulates and good SiC-Mg interfacial integrity was realised. The results of X-ray diffraction studies indicated the absence of oxide phases and no evidence of interfacial reaction products except in the case of Mg-26.0 wt-percent SiC sample. Results of physical and mechanical properties characterisation revealed that an increase in the amount of SiC particulates incorporated leads to an increase in macrohardness and elastic modulus, which does not affect the 0.2 percent yield strength and reduces the ultimate tensile strength, ductility, and coefficient of thermal expansion. The weight percentage of SiC particulates when plotted against hardness and 0.2 percent yield strength revealed a linear correlationship. An attempt is made to investigate the effect of increasing amount of SiC particulates on the microstructural features, and physical and mechanical properties of the magnesium matrix.
机译:在本研究中,使用无熔剂浇铸然后热挤压的方法合成了元素镁和镁-碳化硅复合材料。微观结构表征研究表明,每种材料中的孔隙率均低且基质完全重结晶。发现再结晶晶粒的平均尺寸随着SiC颗粒含量的增加而减小。对于增强镁,实现了SiC颗粒的相当均匀的分布和良好的SiC-Mg界面完整性。 X射线衍射研究的结果表明,除了Mg-26.0 wt%SiC样品外,没有氧化物相,也没有界面反应产物的证据。物理和机械性能表征的结果表明,所掺入的SiC颗粒数量的增加会导致宏观硬度和弹性模量的增加,这不会影响0.2%的屈服强度,并且会降低极限拉伸强度,延展性和热系数扩张。相对于硬度和0.2%的屈服强度绘制的SiC颗粒的重量百分比显示出线性相关性。试图研究增加SiC颗粒数量对镁基体的微观结构特征以及物理和机械性能的影响。

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