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A review of the design of high-entropy aluminum alloys: a pathway for novel Al alloys

机译:高熵铝合金设计综述:新型铝合金的途径

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摘要

Aluminum (Al) alloys are of great importance and interest because of their extensive applications in various engineering fields. Lightweighting of our infrastructure has been a driver for more than the last two decades as our need to reduce carbon footprint on a global scale has become an inevitable reality. As a result, we have witnessed much progress in alloy development in Al alloys, especially with the advent of Integrated Computational Materials Engineering (ICME) and other computational tools. However, the limitations of the properties one may attain through alloy development to date have relied on the traditional solvent/solute model, where the matrix is Al with additions of elements (solute) to the matrix. Despite making much progress, we are still locked-in to the strength-ductility curve without any appreciable increase in modulus (stiffness) of the alloy. High Entropy Alloys (HEAs) provide a new paradigm as they differ from conventional alloys in entropy-based mixing logic of various elements, which is different from the solvent/solute model. HEAs offer the opportunity to move out of the strength-ductility curve as well as the opportunity to increase the alloy's modulus. In this paper, we present a retrospective view of Al alloys, followed with an understanding of the principles of HEAs, and lastly, with the idea of applying high entropy concept to conventional Al alloys to develop a novel Al alloy category, which we have coined HEAl. Preliminary results with a commentary on potential future opportunities are also given.
机译:铝(Al)合金因其在各种工程领域的广泛应用而备受关注。过去20多年来,随着我们需要在全球范围内减少碳足迹,基础设施的轻量化一直是一个驱动因素。因此,我们见证了铝合金合金发展的巨大进步,尤其是随着集成计算材料工程(ICME)和其他计算工具的出现。然而,迄今为止,通过合金开发可能获得的性能限制依赖于传统的溶剂/溶质模型,其中基体是铝,基体中添加了元素(溶质)。尽管取得了很大的进展,但我们仍然锁定在强度-延性曲线上,合金的模量(刚度)没有明显增加。高熵合金(HEA)提供了一种新的模式,因为它们不同于传统合金,不同于溶剂/溶质模型,而是基于熵的各种元素的混合逻辑。HEA提供了脱离强度-延性曲线的机会,也提供了增加合金模量的机会。在本文中,我们回顾了铝合金,了解了HEA的原理,最后将高熵概念应用于传统铝合金,开发了一个新的铝合金类别,我们创造了HEA。还给出了初步结果,并对潜在的未来机会进行了评论。

著录项

  • 来源
    《Journal of Materials Science》 |2021年第21期|共18页
  • 作者单位

    Worcester Polytech Inst Mech Engn Dept Worcester MA 01609 USA;

    Worcester Polytech Inst Mech Engn Dept Worcester MA 01609 USA;

    Worcester Polytech Inst Mech Engn Dept Worcester MA 01609 USA;

    Worcester Polytech Inst Mech Engn Dept Worcester MA 01609 USA;

    Worcester Polytech Inst Met Proc Inst Worcester MA 01609 USA;

    Worcester Polytech Inst Mech Engn Dept Worcester MA 01609 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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