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首页> 外文期刊>Optics & Laser Technology >Shielding gas effect on weld characteristics in arc-augmented laser welding process of super austenitic stainless steel
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Shielding gas effect on weld characteristics in arc-augmented laser welding process of super austenitic stainless steel

机译:保护气体对超级奥氏体不锈钢电弧增强激光焊接工艺中焊接特性的影响

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摘要

A series of hybrid welding (gas metal arc welding-CO _2 laser beam welding) experiments were conducted on AISI 904L super austenitic stainless steel sheet of 5 mm thickness. A detailed study of CO _2 Laser-GMAW hybrid welding experiments with different shielding gas mixtures (100% He, 50% He50% Ar, 50%He45% Ar5% O _2, and 45% He45% Ar10% N _2) were carried out and the results are presented. The resultant welds were subjected to detailed mechanical and microstructural characterization. Hardness testing revealed that the hardness values in the fusion zone were higher than the base material irrespective of the parameters. Transverse tensile testing showed that the joint efficiency is 100% with all the shielding gas experimented. Impact energy values of the welds were also found to be higher than the base material and the fractrograph taken in scanning electron microscope (SEM) has shown that the welds exhibited dimple fracture similar to the base material.
机译:在厚度为5 mm的AISI 904L超级奥氏体不锈钢板上进行了一系列混合焊接(气体金属电弧焊-CO _2激光束焊接)实验。对不同保护气体混合物(100%He,50%He50%Ar,50%He45%Ar5%O _2和45%He45%Ar10%N _2)的CO _2 Laser-GMAW混合焊接实验进行了详细研究。并显示结果。对所得焊缝进行详细的机械和微观结构表征。硬度测试表明,与参数无关,熔合区的硬度值高于基材。横向拉伸试验表明,所有试验保护气体的结合效率均为100%。还发现焊缝的冲击能值高于基础材料,并且在扫描电子显微镜(SEM)中获得的分光仪显示,焊缝表现出与基础材料相似的凹痕断裂。

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