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Modeling the precipitation kinetics and tensile properties in Al-7Si-Mg cast aluminum alloys

机译:模拟Al-7Si-Mg铸造铝合金中的沉淀动力学和拉伸性能

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摘要

The extensive application of Al-7Si-Mg cast aluminum alloys in the automotive and aerospace industries raises the need to better understand the relationship between microstructures and properties. In present work, an integrated precipitation/strengthening/strain-hardening numerical model is developed in order to model the precipitation kinetics and tensile properties in Al-7Si-Mg alloys. The influence of solidification and solution treatment conditions on yield strength is reflected by a term Δσ_0. The strain hardening model takes into account the effect of Orowan loops on the dislocation storage and recovery as well as kinematic contributions. Application of this integrated model to various aging treatments of Al-7Si-Mg alloys is conducted and the predictions both for precipitate microstructure and yield strength are compared well with experimental results. The influence of aging temperature, solution treatment temperature as well as Mg concentration on yield strength is investigated. Using the strain hardening model, the stress-strain curves are predicted and the influence of aging treatment on k_1 and k~0_2 parameters as well as the strain hardening behavior is analyzed. Through combining with the empirical expression (σ_UTS-σ_YS)=m·σ_YS+n+f(T_(ss), the ultimate tensile strength and elongation for the samples in Al-7Si-Mg alloys aged at 160 ℃ and 180 ℃ are predicted. Finally, the limitations of present model and the factors influencing the prediction precision of tensile properties are discussed.
机译:Al-7Si-Mg铸造铝合金在汽车和航空航天工业中的广泛应用引起了对更好地了解微观结构与性能之间关系的需求。在目前的工作中,开发了一个集成的沉淀/强化/应变硬化数值模型,以模拟Al-7Si-Mg合金的沉淀动力学和拉伸性能。凝固和固溶处理条件对屈服强度的影响由项Δσ_0反映。应变硬化模型考虑了Orowan环对位错存储和恢复以及运动学贡献的影响。将该集成模型应用于Al-7Si-Mg合金的各种时效处理,并将析出物组织和屈服强度的预测与实验结果进行了比较。研究了时效温度,固溶处理温度以及Mg浓度对屈服强度的影响。使用应变硬化模型,预测了应力-应变曲线,并分析了时效处理对k_1和k〜0_2参数以及应变硬化行为的影响。结合经验表达式(σ_UTS-σ_YS)= m·σ_YS+ n + f(T_(ss),可以预测Al-7Si-Mg合金在160℃和180℃时效时的极限拉伸强度和伸长率最后,讨论了当前模型的局限性以及影响拉伸性能预测精度的因素。

著录项

  • 来源
    《Materials Science and Engineering》 |2017年第8期|403-416|共14页
  • 作者单位

    Key Laboratory for Advanced Materials Processing Technology (MOE), School of Materials Science and Engineering, Tsinghua University, Beijing 100084, China;

    Key Laboratory for Advanced Materials Processing Technology (MOE), School of Materials Science and Engineering, Tsinghua University, Beijing 100084, China;

    Mingzhi Technology Co. Limited, Jiangsu, Suzhou 215006, China;

    Mingzhi Technology Co. Limited, Jiangsu, Suzhou 215006, China;

    Mingzhi Technology Co. Limited, Jiangsu, Suzhou 215006, China;

    Key Laboratory for Advanced Materials Processing Technology (MOE), School of Materials Science and Engineering, Tsinghua University, Beijing 100084, China;

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

    Al-7Si-Mg alloys; Heat treatment; Precipitation; Solidification microstructure; Tensile property; Modeling;

    机译:Al-7Si-Mg合金;热处理;沉淀;凝固组织;拉伸性能;造型;

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