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Numerical modeling based on coupled Eulerian-Lagrangian approach and experimental investigation of water jet spot welding process

机译:基于欧拉-拉格朗日方法的数值模拟和水射流点焊工艺的实验研究

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摘要

Due to the relatively high degree of complexities involved with water jet spot welding process, the experimental and conventional numerical methods are hardly capable of providing all comprehensive analysis. In present paper, water jet spot welding of copper, brass and aluminum plates has been examined experimentally using a gas-gun. Considering the details of the whole process, numerical modeling of jet formation and interaction between jet and solid surface have been performed, employing the coupled Eulerian-Lagrangian (CEL) approach. In addition, Jonson-Cook damage model has been utilized to predict the damage initiation in solid surfaces. The velocity profiles of jet along axial and radial directions; and also time history of jet are obtained to describe the variation of velocity in different points of jet with time. Results confirm that the presented method has been successful in predicting the behavior of jet during the process, and plate deformation and failure patterns.
机译:由于喷水点焊过程涉及的复杂程度相对较高,因此实验和常规数值方法几乎无法提供所有综合分析。在本文中,已经使用气枪对铜,黄铜和铝板的水射流点焊进行了实验研究。考虑到整个过程的细节,已采用耦合欧拉-拉格朗日(CEL)方法对射流形成以及射流与固体表面之间的相互作用进行了数值模拟。此外,Jonson-Cook损伤模型已用于预测实体表面中的损伤引发。射流沿轴向和径向的速度分布;并获得射流的时间历史,以描述射流不同点的速度随时间的变化。结果证实,所提出的方法已经成功地预测了过程中射流的行为,以及板的变形和破坏模式。

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