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Temperature and Microstructure Evolution in Gas Tungsten Arc Welding Wire Feed Additive Manufacturing of Ti-6Al-4V

机译:Ti-6Al-4V钨极氩弧焊丝进料增材制造中的温度和组织演变

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摘要

In the present study, the gas tungsten arc welding wire feed additive manufacturing process is simulated and its final microstructure predicted by microstructural modelling, which is validated by microstructural characterization. The Finite Element Method is used to solve the temperature field and microstructural evolution during a gas tungsten arc welding wire feed additive manufacturing process. The microstructure of titanium alloy Ti-6Al-4V is computed based on the temperature evolution in a density-based approach and coupled to a model that predicts the thickness of the α lath morphology. The work presented herein includes the first coupling of the process simulation and microstructural modelling, which have been studied separately in previous work by the authors. In addition, the results from simulations are presented and validated with qualitative and quantitative microstructural analyses. The coupling of the process simulation and microstructural modeling indicate promising results, since the microstructural analysis shows good agreement with the predicted alpha lath size.
机译:在本研究中,模拟了钨极氩弧焊丝进料添加剂的制造过程,并通过微观结构模型预测了其最终的微观结构,并通过微观结构表征对其进行了验证。有限元方法用于解决钨极氩弧焊丝进料添加剂制造过程中的温度场和微观结构演变。钛合金Ti-6Al-4V的微观结构是基于密度变化法基于温度演变计算的,并与预测α板条形貌厚度的模型耦合。本文介绍的工作包括过程仿真和微观结构建模的首次结合,作者在先前的工作中已分别对其进行了研究。此外,还提供了模拟结果,并通过定性和定量的微观结构分析进行了验证。由于微观结构分析表明与预测的α板条尺寸具有很好的一致性,因此过程模拟与微观结构建模的耦合显示出可喜的结果。

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