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首页> 外文期刊>Journal of Manufacturing Processes >Numerical simulation of VPPA-GMAW hybrid welding of thick aluminum alloy plates considering variable heat input and droplet kinetic energy
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Numerical simulation of VPPA-GMAW hybrid welding of thick aluminum alloy plates considering variable heat input and droplet kinetic energy

机译:考虑可变热输入和液滴动能的厚铝合金板VPPA-GMAW混合焊接的数值模拟

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In order to realize the high-efficiency and high-quality welding of thick aluminum alloy plates, a paraxial variable-polarity plasma arc-gas metal arc welding (VPPA-GMAW) hybrid welding method was developed in the present study. The target material was a thick plate of 7A52 aluminum alloy, which is widely used in the aerospace field because it offers high specific strength and high corrosion resistance. The thermal action characteristics of paraxial VPPA-GMAW hybrid welding during direct-current electrode-negative and direct-current electrode-positive phases were considered. A variable combined heat source model was developed to investigate the hybrid welding thermal process. In the model, the variable-polarity plasma arc (VPPA) was treated as two curve-rotated body heat sources with different distribution parameters for electrode-negative and electrode positive durations; the two heat sources were loaded periodically to express the heat input form. The GMAW arc was described as a double-ellipsoidal heat source, the overheated droplet was described as a uniform-body heat source, and the impact effect of the overheated droplet on the weld pool was considered by accounting for its kinetic energy. This heat source model was employed to conduct a finite-element analysis of hybrid welding temperature profiles. The numerical simulation results indicated that the VPPA provided deep penetration in the hybrid welding. The subsequent GMAW increased the penetration achieved by the VPPA and filled the weld pool to achieve deep-penetration welding. Experiments were performed to measure weld geometries and thermal cycles, and the weld pool shape was captured by high-speed camera. The calculated weld bead geometry, weld pool shape and thermal cycles showed excellent agreement with the experimental results.
机译:为了实现厚铝合金板的高效率和高质量的焊接,本研究开发了一种近轴变极性等离子弧-气金属电弧焊(VPPA-GMAW)混合焊接方法。目标材料是7A52铝合金的厚板,由于其具有高的比强度和高的耐腐蚀性,因此在航空航天领域得到了广泛的应用。考虑了近轴VPPA-GMAW混合焊接在直流电负极和直流电正极阶段的热作用特性。建立了可变组合热源模型以研究混合焊接热过程。在该模型中,将可变极性等离子弧(VPPA)视为两个曲线旋转的体热源,其电极负和正电极的持续时间具有不同的分布参数。定期加载两个热源以表示热量输入形式。 GMAW电弧被描述为双椭圆形热源,过热的液滴被描述为均匀体热源,并且考虑到其动能来考虑过热的液滴对焊池的冲击效果。该热源模型用于对混合焊接温度曲线进行有限元分析。数值模拟结果表明,VPPA在混合焊接中提供了较深的熔深。随后的GMAW增加了VPPA的熔深并填充了焊缝以实现深熔焊。进行了测量焊缝几何形状和热循环的实验,并通过高速相机捕获了焊缝形状。计算得出的焊缝几何形状,焊缝形状和热循环与实验结果非常吻合。

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