Asymmetric molten zone and hybrid heat source modeling in laser welding carbon steel and cast iron with nickel alloy wires

IF 6.8 1区 工程技术 Q1 ENGINEERING, MANUFACTURING Journal of Manufacturing Processes Pub Date : 2025-05-30 Epub Date: 2025-03-30 DOI:10.1016/j.jmapro.2025.03.074
Renzhi Zhang , Daichi Nishimoto , Ninshu Ma , Kunio Narasaki , Qian Wang , Tetsuo Suga , Shota Tsuda , Takayuki Tabuchi , Syuichi Shimada
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Abstract

Molten pool morphology in dissimilar metals welding is different from that in same metal and influenced by the position of the welding wire, which concerns the welding crack occurrence. In this study, a newly designed ring gear and differential case of electric vehicle whose materials are carbon steel and cast iron, respectively, was welded by laser beam. The nickel-based alloy was used as welding wire. The location of welding wire in transverse direction can result in an asymmetric shape of the molten zone defined by the wire offset position “e” and form a “golf club-like” molten pool, which was clearly observed in experiments. A novel hybrid heat source model consists of a cylinder heat source model and a Goldak heat source model was developed in numerical calculation. The value “es” defined the offset distance between the center of heat source and seam of base metal as eccentricity to simulate heat flux that changed with the welding wire position. The results predicted a well asymmetric molten pool shape which was consistent with the experiment when “e” changed from −0.4 mm to 0.2 mm. And the predicted cooling rate in the metal surface was about 1200 °C/s, which consistent with the experimentally measured value. This study can be guidance for understanding the morphology of molten zone and temperature field at different welding wire positions.
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碳钢和铸铁与镍合金丝激光焊接的不对称熔区和混合热源建模
异种金属焊接时熔池形貌与同种金属焊接时不同,且受焊丝位置的影响,这关系到焊接裂纹的产生。采用激光焊接技术对新设计的电动汽车环形齿轮和差速器壳体进行焊接,材料分别为碳钢和铸铁。采用镍基合金作为焊丝。在实验中可以清楚地观察到,焊丝的横向位置会导致焊丝偏移位置“e”所定义的熔区形状不对称,形成“高尔夫球杆状”熔池。在数值计算中建立了一种由圆柱热源模型和Goldak热源模型组成的新型混合热源模型。值“es”将热源中心与母材焊缝之间的偏移距离定义为偏心,以模拟随焊丝位置变化的热流密度。结果表明,当“e”从−0.4 mm变化到0.2 mm时,熔池形状与实验结果一致。预测金属表面的冷却速率约为1200℃/s,与实验测量值一致。该研究对了解不同焊丝位置熔区形态和温度场具有指导意义。
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来源期刊
Journal of Manufacturing Processes
Journal of Manufacturing Processes ENGINEERING, MANUFACTURING-
CiteScore
10.20
自引率
11.30%
发文量
833
审稿时长
50 days
期刊介绍: The aim of the Journal of Manufacturing Processes (JMP) is to exchange current and future directions of manufacturing processes research, development and implementation, and to publish archival scholarly literature with a view to advancing state-of-the-art manufacturing processes and encouraging innovation for developing new and efficient processes. The journal will also publish from other research communities for rapid communication of innovative new concepts. Special-topic issues on emerging technologies and invited papers will also be published.
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