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Influence of melt flow in the gating system on microstructure and mechanical properties of high pressure die casting AZ91D magnesium alloy

机译:浇口系统中的熔体流动对高压压铸AZ91D镁合金的组织和力学性能的影响

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The influence of melt flow in the gating system on microstructure and mechanical properties of high pressure die casting AZ91D magnesium alloy was investigated. Experimental and theoretical results showed that the externally solidified crystals (ESCs) were broken and eliminated by the shear stress caused by the turbulent melt flow in gating system. In comparison with the casting fabricated with conventional gating system, a simultaneous increase in both strength (~ 16% higher ultimate tensile strength) and ductility (~ 70% higher elongation) were achieved in the casting fabricated with modified gating system. Furthermore, different modes of crack initiation and propagation were found. For the one fabricated with the conventional gating system, the crack initiated at the shrinkage pore and propagated in a quasi-cleavage fracture form. In contrast, for the other one fabricated with the modified gating system, micro-voids appeared between the α-Mg grains and β-Mg17Al12phase, and crack propagated in a ductile form.
机译:研究了浇口系统中熔体流动对高压压铸AZ91D镁合金的组织和力学性能的影响。实验和理论结果表明,由于浇口系统中湍流熔体流动引起的切应力,使外部凝固的晶体破裂并消失。与使用常规浇口系统制造的铸件相比,采用改进浇口系统制造的铸件在强度(极限拉伸强度高约16%)和延展性(伸长率高约70%)方面同时提高。此外,发现了裂纹萌生和扩展的不同模式。对于用常规浇口系统制造的裂纹,裂纹在收缩孔处开始并以准裂解断裂形式扩展。相反,对于用改进的门控系统制造的另一种,在α-Mg晶粒与β-Mg17Al12相之间出现微孔,并且裂纹以延展形式扩展。

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