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首页> 外文期刊>Materials Science and Engineering >Influence of temperature cycles on the microstructures and mechanical properties of the partially melted zone in the fusion welded joints of 2219 aluminum alloy
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Influence of temperature cycles on the microstructures and mechanical properties of the partially melted zone in the fusion welded joints of 2219 aluminum alloy

机译:温度循环对2219铝合金熔焊接头部分熔化区组织和力学性能的影响。

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摘要

The partially melted zone (PMZ) is a weakness region in the fusion welded joints of 2219 aluminum alloy due to the microsegregation of brittle eutectics (α(Al)+θ(Al_2Cu)). The influence factors on the microstructures and mechanical properties of the PMZ in the joint have not been well understood. In this study, the microstructures of the PMZ were simulated using Gleeble thermal simulator with different temperature cycles. The microsegregation extents in the simulated PMZs were quantitatively analyzed through measuring the lattice parameters of α phase using X-ray diffraction technique. The mechanical properties of the PMZ were measured by the tensile test. It was found that the peak temperature of the temperature cycle was the main influence factor on the microstructures and mechanical properties of the PMZ. With the peak temperature increasing from 550 to 630 ℃, the amount of the microsegregated eutectics increased, the concentration of the solutionized Cu in the a phase decreased, and the mechanical properties of the PMZ decreased. The mechanical properties of the PMZs with different temperature cycles showed that the PMZ was solid solution strengthened by Cu. The true stress of the tensile tested PMZ at various strain levels increased linearly with the Cu concentration in the α phase matrix. In order to explain the influence of temperature cycle on the microsegregation of PMZ, a semi-analytical model that takes into account both the melting process and solidification process of the PMZ was derived basing on the Clyne-Kurz's model. The predicted results of the model partially agreed with the experimental results.
机译:由于脆性共晶(α(Al)+θ(Al_2Cu))的微观偏析,部分熔化区(PMZ)是2219铝合金熔焊接头中的弱点区域。接头中PMZ的微观结构和力学性能的影响因素尚未广为人知。在这项研究中,使用具有不同温度循环的Gleeble热模拟器对PMZ的微观结构进行了模拟。通过使用X射线衍射技术测量α相的晶格参数,对模拟PMZ中的微观偏析程度进行了定量分析。 PMZ的机械性能通过拉伸试验测量。结果发现,温度循环的峰值温度是影响PMZ组织和力学性能的主要因素。随着峰值温度从550℃升高到630℃,微偏析共晶量增加,a相中固溶Cu的浓度降低,PMZ的力学性能降低。不同温度循环的PMZ的力学性能表明,PMZ是固溶态的Cu强化。拉伸测试的PMZ在各种应变水平下的真实应力随α相基质中的Cu浓度线性增加。为了解释温度循环对PMZ微观偏析的影响,基于Clyne-Kurz模型推导了同时考虑PMZ熔融过程和凝固过程的半分析模型。该模型的预测结果与实验结果部分吻合。

著录项

  • 来源
    《Materials Science and Engineering》 |2015年第19期|38-48|共11页
  • 作者单位

    Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China,Key Laboratory for Advanced Materials Processing Technology, Ministry of Education, China;

    Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China,Key Laboratory for Advanced Materials Processing Technology, Ministry of Education, China;

    Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China,Key Laboratory for Advanced Materials Processing Technology, Ministry of Education, China;

    Beijing Institute of Astronautics Systems Engineering, Beijing 100076, China;

    Beijing Institute of Astronautics Systems Engineering, Beijing 100076, China;

    Capital Aerospace Machinery Company, Beijing 100076, China;

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

    2219 aluminum alloy; Partially melted zone (PMZ); Thermal simulation; Mechanical property; Microsegregation; Fusion behavior;

    机译:2219铝合金;部分熔化区(PMZ);热模拟;机械性能微偏析;融合行为;

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