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A theoretical study of molten pool behavior and humping formation in full penetration high-speed gas tungsten arc welding

机译:全熔透高速气体钨极电弧焊熔池行为和隆起形成的理论研究

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A clear insight into the full penetration humping (FP-humping) formation in high-speed gas tungsten arc welding (GTAW) is difficult owning to the complex and multi-coupled transport phenomena in molten pool. In this paper, sensitivity analysis and dimensional analysis are combined to study the molten pool behavior and FP-humping formation. Firstly, sensitivity analysis and an experimentally-verified numerical model are used to clarify the effect of driving forces on characteristic molten pool behaviors and defect formation quantitatively. The results show that both arc pressure and arc shear stress have considerable effects on promoting defect formation, and their significances are in the same order. The surface tension shows predominant role to suppress defect formation. Subsequently, dimensional analysis based on Buckingham it-theorem is performed to derive some physically meaningful dimensionless variables. The dimensionless humping frequency is a linear function of a dimensionless group containing characteristic molten pool variables and material properties. The reasonability of dimensional analysis result is tested by additional numerical data, and there is a good agreement. This study clarifies the physical origin of FP-humping defect in GTAW, and may also provide some fundamental guidelines for its suppression. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于熔池中存在复杂且多耦合的传输现象,因此很难对高速气体钨极电弧焊(GTAW)中的全熔透峰(FP-humping)形成情况有一个清晰的了解。本文将敏感性分析和尺寸分析相结合,研究了熔池行为和FP驼峰形成。首先,使用敏感性分析和经过实验验证的数值模型来定量阐明驱动力对特征熔池行为和缺陷形成的影响。结果表明,电弧压力和电弧切应力都对促进缺陷的形成有很大的影响,并且它们的意义是相同的。表面张力显示出抑制缺陷形成的主要作用。随后,基于白金汉定理进行尺寸分析,得出一些有意义的无因次变量。无因次驼峰频率是包含特征性熔池变量和材料特性的无因次群的线性函数。通过附加的数值数据对尺寸分析结果的合理性进行了检验,并取得了良好的一致性。这项研究阐明了GTAW中FP驼峰缺陷的物理起源,也可能为抑制它提供一些基本指导。 (C)2018 Elsevier Ltd.保留所有权利。

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