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The effects of microstructural stability on the compressive response of two cast aluminum alloys up to 300 ℃

机译:显微组织稳定性对两种铸造铝合金在300℃以下压缩响应的影响

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摘要

In this study, the high temperature compressive response of cast aluminum alloys 319 and RR350 are compared in light of their microstructures. The 319 alloy is widely used in thermally critical automotive applications and provides a baseline for comparison with the RR350 alloy, whose microstructural stability at high homologous temperatures was recently reported. Cylindrical compression samples from each alloy were tested at four temperatures up to 300 ℃ at a constant true strain rate varied over four orders of magnitude. Although both alloys are strengthened by metastable θ' precipitates (nominally Al_2Cu) in the as-aged condition, their mechanical response diverges at temperatures greater than 250 ℃ as the strengthening precipitates coarsen and evolve in the 319 alloy while they retain their as-aged morphology in the RR350 alloy. Deformation mechanisms of each alloy are examined using microstructural analysis and empirical activation energy calculations. The stability of the θ' phase in the RR350 alloy leads to effective precipitation hardening at homologous temperatures up to 0.6 and an extensive regime of grain boundary controlled deformation.
机译:在这项研究中,根据铸造铝合金319和RR350的微观结构比较了它们的高温压缩响应。 319合金广泛用于热敏性汽车应用,并为与RR350合金进行比较提供了基准,RR350合金最近在高同源温度下具有微结构稳定性。在高达300℃的四个温度下,以恒定的真实应变速率在四个数量级上变化,对每种合金的圆柱压缩样品进行了测试。尽管两种合金在时效条件下均通过亚稳态θ'析出物(名义上为Al_2Cu)进行了强化,但在319合金中,随着强化析出物的变粗和析出,它们的机械响应在大于250℃的温度下发散,而它们仍保持了时效形态。在RR350合金中。使用微观结构分析和经验活化能计算来检查每种合金的变形机理。 RR350合金中θ'相的稳定性可导致在最高至0.6的同源温度下有效的沉淀硬化,以及广泛的晶界控制变形机制。

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  • 来源
    《Materials Science and Engineering》 |2017年第17期|519-529|共11页
  • 作者单位

    Oak Ridge National laboratory, Materials Science and Technology Division, Oak Ridge, TN, United States,The Bredesen Center for Interdisciplinary Research and Graduate Education, University of Tennessee, Knoxville, TN, United Stares;

    Oak Ridge National laboratory, Materials Science and Technology Division, Oak Ridge, TN, United States,Materials Science Center, Indian Institute of Technology, Kharagpur, India;

    Oak Ridge National laboratory, Materials Science and Technology Division, Oak Ridge, TN, United States;

    Oak Ridge National laboratory, Materials Science and Technology Division, Oak Ridge, TN, United States,The Bredesen Center for Interdisciplinary Research and Graduate Education, University of Tennessee, Knoxville, TN, United Stares;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cast aluminum; Elevated temperature mechanical properties; Thermal phase stability;

    机译:铸铝;高温机械性能;热相稳定性;

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