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Influence of dispersoids on microstructure evolution and work hardening of aluminium alloys during tension and cold rolling

机译:分散体对铝合金拉伸和冷轧组织演变及加工硬化的影响

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摘要

The influence of dispersoids on work hardening of aluminium during tension and cold rolling has been studied by comparing Al–Mn alloys containing similar amounts of solutes but various dispersoid densities. The microstructure evolution with deformation strain was examined in transmission and scanning electron microscopy. It is found that a high density of fine dispersoids strengthens the materials significantly, but their strengthening effect diminishes as the strain increases. From a series of Bauschinger tests, it is found that the internal stress, due to particles, increases rapidly at the initial stage of deformation, but saturates at strains larger than 5%. It is concluded that the internal stress makes a small contribution to the work hardening and contributes to less than 10% of the total flow stress during monotonic loading at strains larger than 5%. The work-hardening behaviour has been correlated to the corresponding microstructure, and the strengthening mechanisms are discussed.
机译:通过比较含有相似溶质量但具有不同弥散体密度的Al-Mn合金,研究了弥散体对铝在拉伸和冷轧过程中加工硬化的影响。在透射和扫描电子显微镜中检查了具有形变应变的显微组织演变。已经发现,高密度的细分散体显着增强了材料的强度,但是随着应变的增加,它们的增强效果减弱。根据一系列的Bauschinger测试,发现由于颗粒引起的内应力在变形的初始阶段迅速增加,但在大于5%的应变下达到饱和。结论是,在大于5%的应变下,单调加载期间,内部应力对工作硬化的贡献很小,并且占总流动应力的不到10%。加工硬化行为已与相应的显微组织相关,并讨论了强化机理。

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