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Nd:yttritium-aluminum-garnet laser welding of copper to stainless steel

机译:Nd:钇铝石榴石激光焊接铜与不锈钢

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Systematic laser welding experiments were conducted on dissimilar metal of copper and 300 series stainless steel using a high average power Lumonics JK 701H Nd:yttritium-aluminum-garnet laser. The laser melt penetration depth and width in copper and stainless steel were evaluated as a function of the laser parameters. The results reveal that melting of copper demands much higher average power, shorter pulse duration, and lower welding speed than melting stainless steel. If the laser beam is focused on the interface of the joint or on the stainless steel side, the weld penetration in stainless steel is much deeper than that in copper and the weld formation is poor and solidification cracks emerge. Distributing heat input by positioning the laser beam with respect to the interface of the joint was explored. Good results were achieved while positioning the laser beam 0.4 mm on the copper side. Butt weld penetration can go up to 2.4 mm and fusion zone in both copper and stainless steel is evenly distributed. By adjusting welding parameters, weld defects such as shrinkage, porosity, solidification cracks, etc., can be eliminated. Although isolated hot crack clusters exist along the austenite grain boundary in stainless steel HAZ, the strength of the weld joint is higher than copper and high vacuum tight property can be achieved.
机译:使用高平均功率Lumonics JK 701H Nd:钇铝石榴石激光器对铜和300系列不锈钢的异种金属进行了系统的激光焊接实验。根据激光参数评估激光熔体在铜和不锈钢中的熔深和宽度。结果表明,与熔化不锈钢相比,熔化铜需要更高的平均功率,更短的脉冲持续时间和更低的焊接速度。如果将激光束聚焦在接头的界面或不锈钢侧,则不锈钢中的焊缝熔深比铜中的熔深大,并且焊缝形成不良,并且会出现凝固裂纹。探索了通过相对于关节界面定位激光束来分配热量输入。将激光束放置在铜侧0.4 mm时,取得了良好的结果。对接焊缝熔深可达2.4 mm,铜和不锈钢的熔合区均匀分布。通过调节焊接参数,可以消除焊接缺陷,例如收缩,孔隙率,凝固裂纹等。尽管不锈钢热影响区中沿奥氏体晶界存在孤立的热裂纹团簇,但焊接接头的强度高于铜,可以实现高真空密封性。

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