钎焊
材料科学
焊接
铜
极限抗拉强度
奥氏体不锈钢
复合材料
激光束焊接
填充金属
冶金
母材
辐照
抗剪强度(土壤)
激光器
激光功率缩放
合金
电弧焊
腐蚀
光学
核物理学
土壤水分
土壤科学
物理
环境科学
作者
Tetsuo Suga,Yasuoa Murai,Taizo Kobashi,Kunika Ueno,Minoru Shindo,Katsunori Kanno,Kazuhiro Nakata
标识
DOI:10.1080/09507116.2014.921090
摘要
In many industries, there are applications that require the joining of stainless steel and copper components; therefore, the welding of dissimilar stainless steel/copper joints is a common process. For this investigation, the optimal brazing conditions and suitable filler metals for laser brazing of stainless steel/copper lap joints were studied. Tensile shear force increases with increases in the laser spot diameter or in the laser irradiation angle, which is associated with increased bonding width; however, as bonding width approaches 2 mm, tensile shear force reaches a saturated value due to fracturing at the HAZ of the Cu base plate. In order to obtain joints with high tensile shear strength, laser brazing was optimized by using Cu–Si-based filler metal under the following conditions: laser power, 4 kW; spot diameter, 3 mm; laser irradiation angle, 80°; irradiation position shift, 0.6 mm; brazing speed, 0.30 m/min; and filler metal feed speed, 0.30 min. Concerning filler metals, it was found that the Ni–Cu type showed relatively large tensile shear force even at high welding speeds in comparison with those of the Cu–Si, Cu, Cu–Ni, Ni–Cu and Ni types, respectively.
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