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首页> 外文期刊>International Journal Cast Metals Research >Microstructure and mechanical properties of die-casting ADC12+x(La+Yb) alloy
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Microstructure and mechanical properties of die-casting ADC12+x(La+Yb) alloy

机译:压铸ADC12 + X(LA + YB)合金的微观结构和力学性能

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摘要

Both the mechanical properties and microstructure of die-casting ADC12 + x(La+Yb) alloy (x = 0, 0.3 wt.%, 0.6 wt.%, 0.9 wt.%) were investigated. It was found that the main compounds of the ADC12 matrix die-casting alloy are block-shaped and strip-shaped alpha-AlFeMnSi phase and net-shaped copper phase which was located at the grain boundary. Mixed rare earth (La+Yb) refined the microstructure and improved the mechanical properties of the alloy. Due to the addition of rare earth, the grain structure of the alloy was refined, the eutectic silicon was modified, and the mechanical properties were improved. At a rare earth addition of 0.6 wt.%, the tensile strength of the alloy increases from 280 MPa to 313 MPa and the elongation increases from 4% to 4.5%, which indicate increases of 12% and 12.5%, respectively. When the rare earth content was further increased, larger-sized rare earth compounds appeared in the alloy, thereby reducing its mechanical properties.
机译:研究了压铸ADC12 + X(La + Yb)合金的机械性能和微观结构(X = 0,0.3重量%,0.6重量%,0.9重量%)。 发现ADC12基质压铸合金的主要化合物是块状和条形α-Alfemnsi相和净形铜相位,其位于晶界处。 混合稀土(La + Yb)精制微观结构并改善了合金的机械性能。 由于添加稀土,改进了合金的晶粒结构,修饰了共晶硅,改善了机械性能。 在稀土加入0.6重量%。%,合金的拉伸强度从280MPa增加到313MPa,伸长率从4%增加到4.5%,表示分别增加12%和12.5%。 当稀土含量进一步增加时,合金中出现较大尺寸的稀土化合物,从而降低其机械性能。

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