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首页> 外文期刊>Materials Science and Engineering >Influence of the pre-homogenization treatment on the microstructure evolution and the mechanical properties of Al-Cu alloys processed by ECAP
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Influence of the pre-homogenization treatment on the microstructure evolution and the mechanical properties of Al-Cu alloys processed by ECAP

机译:预均质处理对ECAP处理的Al-Cu合金组织演变和力学性能的影响

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摘要

Equal channel angular pressing (ECAP) is a material processing method that allows very high strains to be imposed, leading to extreme work hardening and microstructural refinement. Billets of nonhomogenized (ascast) and homogenized Al-2 and 3wt.%Cu alloys were successfully processed by ECAP up to different number of passes at room temperature. The microstructure was evaluated into ultrafine grained (UFG) microstructure with high grain boundary misorientation angle in the case of Al-Cu homogenized and nonhomogenized alloys due to imposed strain resulted. It was observed that more homogenized microstructures with smaller grain sizes and higher values of high grain boundary misorientation angle were obtained in the case of homogenized alloys. Higher improvement in the tensile properties and the microhardness values was noted in the case of Al-Cu homogenized alloys. The elongation% and uniform elongation% were observed to decrease with increase of the number of passes for all of the Al-Cu alloys except in the case of Al-3%Cu homogenized alloy. In the case of Al-3 wt.%Cu alloy, the elongation% and uniform elongation% were decrease after the second pass then it increases with the addition of more passes. The microhardness distribution and the deformation homogeneity across the transverse direction of the billet were measured. The homogeneity of deformation was observed to increase with the increase of the ECAP number of passes and the copper content. Higher degree of the homogeneity of deformation was observed in the case of the homogenized alloys comparing to that in the case of the nonhomogenized alloys.
机译:等通道角向压制(ECAP)是一种材料加工方法,可以施加很高的应变,从而实现极高的加工硬化和微结构细化。在室温下,通过ECAP成功地处理了非均质(铸造)和均质的Al-2和3wt。%Cu合金的坯料,直至通过次数不同。在Al-Cu均质合​​金和非均质合金由于施加应变而导致的情况下,将其显微组织评估为具有高晶界失取向角的超细晶粒(UFG)显微组织。观察到,在均质合金的情况下,获得了更均质的,具有较小晶粒尺寸和较高值的高晶界失取向角的显微组织。在Al-Cu均质合​​金的情况下,拉伸性能和显微硬度值得到了更高的改善。对于所有的Al-Cu合金,除了Al-3%Cu均质合​​金的情况,随着通过次数的增加,观察到伸长率和均匀伸长率降低。对于Al-3 wt。%Cu合金,第二道次后伸长率和均匀伸长率降低,然后增加更多道次而增加。测量了钢坯横向的显微硬度分布和变形均匀性。观察到变形的均匀性随ECAP道次和铜含量的增加而增加。与非均质合金相比,均质合金的变形均质性更高。

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