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Influence of iron content on mechanical properties of Al-Mg-Si alloy sheets

机译:铁含量对Al-Mg-Si合金薄板力学性能的影响

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摘要

The influence of iron content on mechanical properties of Al-1.0mass percent Si-0.5mass percent Ng-0.1 mass percent Mn alloy T4 sheets was investigated. The amount of Al-Fe-Si second phase particles increased with iron content, thus silicon atoms were consumed by formation of Al-Fe-Si particles. Furthermore, tensile strength of the samples in T4 condition was not influenced by iron content, but the paint bake response decreased over 0.5 mass percent. This was the result of lowering age hardening rate at the early stage of artificial aging because of the loss of silicon atoms. Also, bendability of the samples became worse with iron content. But, it was the worst at 0.5 mass percent of iron content, while it at over 0.5 mass percent became better or the same. The reason was considered as below. Cracking by bending occurred along the second phase particles and the shear bands. And the amount of second phase particles increased with iron content, whereas the formation of shear bands decreased with iron content over 0.5 mass percent because of the loss of silicon. In addition, formability became worse slightly with iron content.
机译:研究了铁含量对Al-1.0质量%Si-0.5质量%Ng-0.1质量%Mn合金T4薄板力学性能的影响。 Al-Fe-Si第二相颗粒的数量随着铁含量的增加而增加,因此硅原子被Al-Fe-Si颗粒的形成所消耗。此外,在T4条件下样品的抗张强度不受铁含量的影响,但是涂料烘烤响应下降超过0.5质量%。这是由于硅原子的损失而在人工时效早期降低了时效硬化率的结果。另外,样品的弯曲性随着铁含量而变差。但是,铁含量为0.5质量%时最差,而铁含量超过0.5质量%时变得更好或相同。认为原因如下。沿着第二相颗粒和剪切带发生弯曲破裂。随着铁含量的增加,第二相颗粒的数量增加,而当铁含量超过0.5质量%时,剪切带的形成减少,这是因为硅的损失。另外,含铁量使成形性稍微变差。

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