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Relations between microstructure, precipitation, age-formability and damage tolerance of Al-Cu-Mg-Li (Mn,Zr,Sc) alloys for age forming

机译:al-Cu-mg-Li(mn,Zr,sc)合金的显微组织,析出,时效性和损伤容限之间的关系

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摘要

Age forming of Al based alloys for damage tolerant applications requires an alloy with good age formability and good post-forming mechanical properties. To investigate optimisation of this balance, several newly designed Al–Cu–Mg–Li (Mn, Zr, Sc) alloys were subjected to artificial ageing representative of age forming. It was seen that combinations of yield strength and fatigue crack growth resistance could be achieved that are at least comparable to the incumbent damage tolerant material for such applications, whilst creep rates at the ageing temperatures applied were better than those achieved in commercially applied age forming processes of heat treatable Al based alloys. Coarse grain structure and high Li content are associated with good fatigue crack growth resistance but reduce age formability. The underlying physical aspects responsible for the balance between creep rates and resulting properties are discussed. The metallurgical and micromechanical mechanisms analysed and discussed provide a framework for optimisation of composition and forming conditions for age forming of damage tolerant parts.
机译:用于耐损伤性应用的Al基合金的时效成形要求合金具有良好的时效成形性和良好的后成形机械性能。为了研究这种平衡的优化,对几种新设计的Al–Cu–Mg–Li(Mn,Zr,Sc)合金进行了人工时效处理,以表征时效。可以看出,可以达到至少与此类应用中现有的耐损伤材料相当的屈服强度和抗疲劳裂纹扩展性能的组合,而在所施加的时效温度下的蠕变速率要比在商业应用的时效成形工艺中所达到的蠕变速率更好。可热处理的铝基合金。粗大的晶粒结构和高的Li含量与良好的抗疲劳裂纹扩展性有关,但会降低时效性。讨论了负责蠕变速率和所得特性之间平衡的基本物理方面。分析和讨论的冶金和微机械机理为耐损伤零件的时效成形提供了优化成分和成形条件的框架。

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