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VPPA welds of Al-2024 alloys: analysis and modelling of local microstructure and strength

机译:Vppa焊接al-2024合金:局部微观结构和强度的分析和建模

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摘要

The microstructural features of variable polarity plasma arc welded Al-Cu-Mg 2024-T351 with 2319 filler have been studied by TEM, SEM and DSC. Fusion zone, partial melting zone, re-solutionising zone, overageing (for S phase), peak ageing (for S phase) and under ageing zones (for S phase) have been identified. The omega phase has been observed between re-solutionising zone and peak ageing zone. The hardness profile contains two peaks. The microstructure development, and resulting hardness and yield strength profiles are modelled using a model which combines primary precipitation, resolution, partial/full melting and resolidification (Scheil type) and re-precipitation, in a two precipitate – two mechanism approach. Hardness profiles and microstructures are accurately predicted. The hardness peak in the re-solutionising zone is due to re-solutionising and subsequent Cu-Mg co-cluster formation; and the second hardness peak is caused by S phase strengthening.
机译:通过TEM,SEM和DSC研究了可变极性等离子弧焊Al-Cu-Mg 2024-T351与2319填料的组织结构。确定了熔合区,部分熔融区,再溶解区,过时效(对于S相),峰值时效(对于S相)和欠时效区(对于S相)。在再溶解区和峰值老化区之间观察到了ω相。硬度分布包含两个峰。微观结构的发展,以及由此产生的硬度和屈服强度分布,是通过以下两种模式进行建模的:将初次析出,析出,部分/完全熔融和再凝固(Scheil型)和再沉淀结合在一起,采用两种沉淀物-两种机理的方法。可以准确预测硬度分布和微观结构。再溶解区的硬度峰值是由于再溶解和随后形成的Cu-Mg共团簇所致。第二硬度峰是由S相强化引起的。

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