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Effect of Cu content and number of passes on evolution of microstructure and mechanical properties of ECAPed Al/Cu alloys

机译:Cu含量和通过次数对ECAPed Al / Cu合金组织和力学性能的影响

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摘要

Equal channel angular pressing (ECAP) is a materials processing method that allows very high strains to be imposed, leading to extreme work hardening and microstructural refinement. Billets of pure aluminum and cast, homogenized Al-2,3 and 5 wt.%Cu alloys were successfully processed up to 10 passes at room temperature using ECAP in a die with an internal channel angle of 110°. The imposed strain resulted in a large reduction in the grain size to a submicron level and breakdown of the hard 9 phase to the nano size. The tensile test shows that the ultimate tensile and proof strengths increase with number of passes and with copper content while the %elongation decreases with increase in the number of passes for both pure aluminum and Al-2%Cu alloy. For Al-3 and 5 wt.%Cu alloys, the %elongation decreases after the first pass then increases with more passes. The homogeneity of deformation indicated by microhardness measurements was higher for route A compared with route Bc and increases with the increase of the ECAP number of passes.
机译:等通道角向压制(ECAP)是一种材料加工方法,可施加非常高的应变,从而实现极高的加工硬化和微结构细化。在室温下,使用ECAP在内部通道角为110°的模具中成功地将纯铝和均质的Al-2,3和5 wt。%Cu铸铝坯锭加工多达10道次。施加的应变导致晶粒尺寸大大减小至亚微米水平,并且使硬质9相分解为纳米尺寸。拉伸试验表明,纯铝和Al-2%Cu合金的极限拉伸强度和屈服强度随通过次数和铜含量的增加而增加,而%伸长率随通过次数的增加而降低。对于Al-3和5 wt。%Cu合金,伸长率在第一次通过后降低,然后随着更多次通过而增加。与路线Bc相比,路线A的显微硬度测量结果表明变形的均匀性更高,并且随着ECAP通过次数的增加而增加。

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