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Simultaneously Enhanced Strength and Ductility of Al–Mg–Si Alloys during Aging Process Induced by Electro-Pulsing Treatment

机译:电脉冲处理在时效过程中同时增强了Al-Mg-Si合金的强度和延展性

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摘要

Most methods used for strengthening metallic materials, such as thermal-mechanical treatment, will sacrifice the ductility. A novel technology, electric pulsing treatment (EPT), is applied to break this trade-off, which produces an Al–Mg–Si alloy with superior ductility and higher strength within only 560 ms. Systematic electron microscopy characterization and finite element simulation reveal that EPT promotes the formation of clusters Mg2(Si,Cu)3 and sub-grain boundaries. The results of quantitative calculation indicate that the dislocation entanglement is delayed due to the existence of clusters and longer dislocation glide distance, so that ultimate strength is fully improved. Moreover, the superior ductility is mainly governed by sub-grains which lead to higher mobile dislocation density, appearance of new crystal orientations, and prevention of crack propagation. Thereupon, this interesting finding paves the way in developing the Al–Mg–Si alloy with higher mechanical properties efficiently.
机译:大多数用于加固金属材料的方法(例如热机械处理)都会牺牲其延展性。一种新颖的技术,即电脉冲处理(EPT)被用来打破这种折衷,从而在560毫秒内生产出具有出色延展性和更高强度的Al-Mg-Si合金。系统电子显微镜表征和有限元模拟表明,EPT促进了团簇Mg2(Si,Cu)3和亚晶界的形成。定量计算结果表明,由于团簇的存在和位错滑行距离的延长,位错缠结被延迟,从而充分提高了极限强度。此外,优异的延展性主要由亚晶粒决定,这些亚晶粒导致较高的移动位错密度,出现新的晶体取向并防止裂纹扩展。因此,这一有趣的发现为有效开发具有更高机械性能的Al-Mg-Si合金铺平了道路。

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