Enhanced Ductility of High-Strength Ultrafine-Grained Aluminum Alloys at Ambient Temperature (Review)

D. Sadykov, A. Mavlyutov, T. Orlova
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Abstract

Bulk nanostructured, or ultrafine-grained metals and alloys structured by severe plastic deformation (SPD) methods usually demonstrate high strength and reduced ductility. The poor ductility is a critical issue which limits their practical applications. Significant efforts were made to improve tensile ductility of the SPD-processed metallic materials while keeping sufficiently high strength. In this paper we present a short overview of the developed approaches for simultaneous improvement of the strength and ductility of Al-based alloys with an emphasis on the recent finding and physical reasons of the plasticity enhancement. The main attention is paid to achieving increased ductility of high strength aluminum alloy at room temperature.
室温下高强度超细晶铝合金塑性增强研究进展
通过严重塑性变形(SPD)方法组织的大块纳米结构或超细晶金属和合金通常具有高强度和低延展性。延性差是制约其实际应用的关键问题。在保持足够高的强度的同时,为提高spd加工金属材料的拉伸延展性做出了重大努力。在本文中,我们简要概述了同时提高铝基合金的强度和塑性的发展方法,重点是最近的发现和塑性增强的物理原因。提高高强度铝合金在室温下的延展性是目前研究的重点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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