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Effects of process parameters on morphology and distribution of externally solidified crystals in microstructure of magnesium alloy die castings

机译:工艺参数对镁合金压铸件显微组织中外部凝固晶体形态和分布的影响

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During the cold-chamber high pressure die casting (HPDC) process, samples were produced to investigate the microstructure characteristics of AM60B magnesium alloy. Special attention was paid to the effects of process parameters on the morphology and distribution of externally solidified crystals (ESCs) in the microstructure of magnesium alloy die castings, such as slow shot phase plunger velocity, delay time of pouring and fast shot phase plunger velocity. On the basis of metallographic observation and quantitative statistics, it is concluded that a lower slow shot phase plunger velocity and a longer delay time of pouring both lead to an increment of the size and percentage of the ESCs, due to the fact that a longer holding time of the melt in the shot sleeve will cause a more severe loss of the superheat. The impingement of the melt flow on the ESCs is more intensive with a higher fast shot phase plunger velocity, in such case the ESCs reveal a more granular and roundish morphology and are dispersed throughout the cross section of the castings. Based on analysis of the filling and solidification processes of the melt during the HPDC process, reasonable explanations were proposed in terms of the nucleation, growth, remelting and fragmentation of the ESCs to interpret the effects of process parameters on the morphology and distribution of the ESCs in the microstructure of magnesium alloy die castings.
机译:在冷室高压压铸(HPDC)过程中,制备了样品以研究AM60B镁合金的显微组织特征。特别注意工艺参数对镁合金压铸件微观结构中外部凝固晶体(ESC)的形态和分布的影响,例如慢喷相柱塞速度,浇注延迟时间和快喷相柱塞速度。根据金相观察和定量统计,得出的结论是,较低的慢速注射阶段柱塞速度和较长的浇注延迟时间均会导致电调的尺寸和百分比增加,原因是保持时间更长注射套筒中融化的时间将导致过热的更严重损失。熔体流在ESC上的冲击更加强烈,并且具有较高的快射阶段柱塞速度,在这种情况下,ESC展现出更加颗粒状和圆形的形态,并散布在整个铸件的横截面上。在对HPDC过程中熔体的填充和凝固过程进行分析的基础上,就ESC的成核,生长,重熔和破碎提出了合理的解释,以解释工艺参数对ESC形态和分布的影响。在镁合金压铸件的显微组织中。

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