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Influence of interlayer dwell time on stress field of thin-walled components in WAAM via numerical simulation and experimental tests

机译:中间间停留时间对通过数值模拟和实验测试的WAAM薄壁组分应力场的影响

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Purpose This paper aims to study the residual stress of deposited components which is a main issue to impede the widespread application of wire and arc additive manufacturing (WAAM). The interlayer dwell time is believed to have an effect on residual stress distributions in WAAM due to variance in heat dissipation condition. A coupled thermomechanical finite element model was established to evaluate the role of dwell time in between layers on the mechanical behavior of thin-walled components in WAAM, mainly involving thermal stress evolutions and residual stress distributions of the component and substrate. Design/methodology/approach Four interlayer dwell times including 0, 120 and 300 s and cooling to ambient temperature were selected in finite element modeling, and corresponding experiments were conducted to verify the reliability of the model. Findings The results show that with the interlayer dwell time, the stress cycling curves become more uniform and the interlayer stress-releasing effect is weakened. The residual stress levels on the substrate decrease with the increasing interlayer dwell time. In the outside surface of the component, the distributions of axial and longitudinal residual stress along the deposition path are the smoothest when the interlayer dwell time is cooling to ambient temperature. In the inside surface, a longer interlayer dwell time leads to an obvious decrease in the longitudinal and axial residual stress along the deposition path. Originality/value The comprehensive study of how the interlayer dwell time influences stress field of components is helpful to improve the deposition defects generated by WAAM.
机译:目的本文旨在研究沉积成分的残余应力,这是妨碍电弧添加剂制造(WAAM)的广泛应用。由于散热条件的方差,相互间隔时间被认为是对WAAM残余应力分布的影响。建立了一种耦合的热机械有限元模型,以评估层间在WAAM中薄壁部件的机械行为之间的停留时间的作用,主要涉及组分和基板的热应力演进和残余应力分布。设计/方法/方法在有限元建模中选择了包括0,120和300s和冷却到环境温度的四个层间停留时间,并进行了相应的实验以验证模型的可靠性。结果表明,随着层间停留时间,应力循环曲线变得更加均匀,并且削弱了层间应力释放效果。随着层间停留时间的增加,基板上的残余应力水平降低。在部件的外表面中,当层间停留时间冷却至环境温度时,沿沉积路径的轴向和纵向残余应力的分布是最平滑的。在内表面中,更长的中间间停留时间导致沿沉积路径的纵向和轴向残余应力的明显减小。原创性/值综合研究了中间层间停留时间如何影响组件应力场有助于改善WAAM产生的沉积缺陷。

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