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Effect of solid-state phase transformation on residual stress of selective laser melting Ti6Al4V

机译:固态相变对选择性激光熔化Ti6Al4V残余应力的影响

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摘要

Residual stress in selective laser melting (SLM) is one of the key challenges in terms of precision control, success rate and the performance of deposited components. Ti6Al4V belongs to α+β titanium alloy, the residual stress of selective laser melted (SLMed) Ti6Al4V component maybe affected by solid-state phase transformation result from complex thermal history of SLM. In the present study, effect of solid-state phase transformation on residual stress of SLM Ti6Al4V was investigated. A coupled modeling method of thermo-metallurgical-mechanical considering solid-state phase transition is provided and validated by microstructure observation and residual stress measurements. Then the solid-state phase transformation strain was neglected in the validated model, the computed residual stress is used to investigate the effect of solid-state phase transformation strain on residual stress by comparing with experimental measurements. In addition, the influence of the difference in yield strength and thermal expansion coefficient between the original phase and the transition phase on the residual stress is discussed. It has been found that the residual stress of SLMed Ti6Al4V is related to the direction, the longitudinal residual stress is about twice transverse, and they are all tensile stresses. The microstructure and residual stress predicted by the simulation are in good agreement with the experimental measurements. The microstructure of SLM Ti6Al4V is mainly composed of martensite a', and the average error between the predicted longitudinal stress and measurement is 2.1%. The solid-state phase transformation has a stress relaxation effect during the SLM Ti6Al4V, predicted longitudinal and transverse residual stress exceeds the experimental measurement by up to 80.7% and 53.9%, when neglecting the solid-state phase transformation strain. The influence of the solid-state phase transformation of SLM Ti6Al4V on the residual stress is mainly determined by the volume change between the solid-state phases.
机译:选择性激光熔化(SLM)中的残余应力是精密控制,成功率和沉积组件性能方面的关键挑战之一。 Ti6Al4V属于α+β钛合金,选择性激光熔化(SLMED)Ti6Al4V组分的残余应力可能受到SLM的复杂热历史的固态相变效果的影响。在本研究中,研究了固态相变对SLM Ti6Al4V的残余应力的影响。考虑固态相转变的热冶金 - 机械耦合建模方法,并通过微结构观察和残余应力测量验证。然后在验证的模型中忽略了固态相变应变,通过与实验测量相比,使用计算的残余应力来研究固态相变应变对残余应力的影响。此外,讨论了屈服强度和热膨胀系数之间的影响原始相和转变阶段对残余应力的影响。已经发现,SLMED TI6AL4V的残余应力与方向有关,纵向残余应力是横向的两次,它们是所有拉伸应力。模拟预测的微观结构和残余应力与实验测量有关。 SLM Ti6Al4V的微观结构主要由马氏体A'组成,并且预测的纵向应力和测量之间的平均误差为2.1%。在SLM Ti6Al4V期间,固态相转变具有应力松弛效果,预测纵向和横向残余应力在忽略固态相转化菌株时高达80.7%和53.9%的实验测量。 SLM Ti6Al4V的固态相变对残余应力的影响主要由固态相之间的体积变化决定。

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  • 来源
    《Materials Science and Engineering》 |2021年第5期|141299.1-141299.13|共13页
  • 作者单位

    State Key Laboratory of Virtual Reality Technology and Systems School of Mechanical Engineering and Automation Beijing University of Aeronautics and Astronautics Beijing 100191 China;

    State Key Laboratory of Virtual Reality Technology and Systems School of Mechanical Engineering and Automation Beijing University of Aeronautics and Astronautics Beijing 100191 China;

    State Key Laboratory of Virtual Reality Technology and Systems School of Mechanical Engineering and Automation Beijing University of Aeronautics and Astronautics Beijing 100191 China;

    Anhui Hengli Additive Manufacturing Technology Limited Company Wuhu 241000 China;

    State Key Laboratory of Virtual Reality Technology and Systems School of Mechanical Engineering and Automation Beijing University of Aeronautics and Astronautics Beijing 100191 China;

    State Key Laboratory of Virtual Reality Technology and Systems School of Mechanical Engineering and Automation Beijing University of Aeronautics and Astronautics Beijing 100191 China;

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

    Elective laser melting; Solid phase transition; Residual stress; Additive manufacturing;

    机译:选修激光熔化;固相转变;残余压力;添加剂制造;

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