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Effect of Cd and Sn Addition on the Microstructure and Mechanical Properties of Al-Si-Cu-Mg Cast Alloy

机译:CD和Sn添加对Al-Si-Cu-mg铸造合金微观结构和力学性能的影响

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The present work has investigated the effect of trace elements Cd and Sn on the microstructure and mechanical properties of Al-Si-Cu-Mg cast alloy. With the increase of Cd addition the strength of alloy rises at first and then drops. The optimal amount of Cd and Sn addition for Al-Si-Cu-Mg alloy is about 0.27 percent and 0.1 percent respectively. Due to the formation of some coarse Cd-rich phases and pure Cd particles the mechanical properties of alloy decrease when Cd amount exceeds 0.27 percent. When more than 0.1 percent Sn added, some Sn atoms form low-melting eutectic compound at grain boundary, and then cause over-burning in alloy when solution treated, which may deteriorate properties of alloy, especially ductility of alloy. On the other hand, the addition of Cd and Sn remarkably increases the peak hardness and reduces the time to reach aging peak in Al-Si-Cu-Mg alloy. The action of Cd /Sn in quaternary Al-Si-Cu-Mg alloy is effectively the same as that occur in binary Al-Cu alloy that the enhanced hardening associated with Cd / Sn addition is due to the promotion of the theta' phase.
机译:本作本作研究了微量元素CD和Sn对Al-Si-Cu-Mg铸造合金的微观结构和力学性能的影响。随着CD的增加,合金强度首先升高,然后滴下。 Al-Si-Cu-Mg合金的最佳Cd和Sn添加量分别为约0.27%和0.1%。由于形成一些粗霉菌的相和纯CD颗粒,当Cd量超过0.27%时,合金的机械性能降低。当增加0.1%以上的Sn时,一些Sn原子在晶界形成低熔点的共晶化合物,然后在处理溶液时导致合金的过度燃烧,这可能劣化合金的性质,尤其是合金的延展性。另一方面,添加CD和Sn显着增加了峰值硬度,并减少了在Al-Si-Cu-Mg合金中达到老化峰的时间。在季甲基Al-Si-Cu-Mg合金中的Cd / Sn的作用是有效的,因为在二元Al-Cu合金中发生的是,与CD / Sn添加相关的增强硬化是由于θ相的促进。

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