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RESEARCH ON ALLOYING TECNIQUES OF MISCHMETAL IN DIE CASTING MAGNESIUM ALLOY

机译:压铸镁合金中成分的合金化工艺研究

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摘要

An aim of the experiments is to study alloying techniques of dollop-like MM, as-cast and extruded Mg-MM master alloy in die casting AZ91D magnesium alloy at conventional cold chamber die casting temperature. The as-cast AZ91D-1.2wt%MM alloys were prepared and MM was added by different way at 720°C. The results showed that the efficiency of alloying achieved less than 50% within 30 min when dollop-like MM was added. When MM was added by as-cast and extruded Mg-21wt%MM master alloy, the efficiency of alloying was improved significantly. The microstructure and analytical studies were carried out using optical microscopy and differential scanning calrimetry (DSC). Testing results showed the Mg-MM master alloy could melt easily down at die casting temperature because Mg-RE phases with lower melting point were formed. The grain refining efficiency of the master alloy was improved by extrusion. The improvement could be attributed to the decrease in Mg-RE particle size and increase in the number of nucleating sizes for Mg. Then die-casting AZ91D-0.44wt%MM test bars were produced with addition of extruded Mg-21wt%MM master alloy and the efficiency of alloying was around 80%.
机译:实验的目的是研究在常规冷室压铸温度下压铸AZ91D镁合金中的团状MM,铸态和挤压Mg-MM中间合金的合金化技术。制备铸态的AZ91D-1.2wt%MM合金,并在720°C下以不同方式添加MM。结果表明,加入团状MM后30min内合金化效率不足50%。用铸态Mg-21wt%MM中间合金添加MM时,合金化效率显着提高。使用光学显微镜和差示扫描量热法(DSC)进行了微观结构和分析研究。测试结果表明,Mg-MM中间合金在压铸温度下很容易熔化,因为形成了熔点较低的Mg-RE相。通过挤压提高了母合金的晶粒细化效率。改善归因于Mg-RE颗粒尺寸的减少和Mg的成核尺寸数量的增加。然后,通过添加挤压的Mg-21wt%MM中间合金,生产压铸AZ91D-0.44wt%MM测试棒,合金化效率约为80%。

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