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Dual beam laser keyhole welding of steel/aluminum lapped joints

机译:双光束激光钥匙孔焊接钢/铝研磨接头

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摘要

Laser welding of Q235 low carbon steel and 6061 aluminum (Al) alloy was carried out by using a dual beam fiber laser in keyhole welding mode in a steel-on-Al lapped configuration. The influence of processing parameters of power distribution ratios (R-s) and dual beam laser distances (d(1)) on the weld shapes, microstructures of inter metallic compound (IMC) layers, microhardness and tensile resistance of the steel/Al joints was studied. Soundly welded steel/Al joints have been achieved by using dual beam laser keyhole welding at R-s = 0.67 and d(1) = 1.5 mm. The key factor affecting welding defects is the control of the penetration depth of the welds, and good weld shape has been achieved when the penetration depth of the welds is below 700 m. The formation of IMC phases consisted of Fe4Al13, Fe2Al5 and FeAl2 phases is only limited to the weld/Al interface when the steel/ Al joint has a relatively low penetration depth of the welds in the steel/Al joint. The maximum tensile resistance of the steel/Al alloy joints of 115.6 N/mm is obtained under the conditions of R-s = 0.67 and d(1) = 1.5 nun. The fracture surface reveals a mixed failure occurred in the Al alloy leading to high tensile resistance of the steel/Al joints.
机译:通过在钢上焊接模式下使用双梁光纤激光器进行Q235低碳钢和6061铝(Al)合金的激光焊接。研究了配电比率(RS)和双光束激光距离(D(1))对焊接形状的影响,金属化合物(IMC)层的微观结构,微硬度和钢/ Al接头的拉伸电阻的影响。通过在R-S = 0.67和D(1)= 1.5mm处,通过使用双光束激光锁孔焊接来实现合理焊接的钢/ Al接头。影响焊接缺陷的关键因素是控制焊缝的穿透深度,并且当焊缝的穿透深度低于700米时,已经实现了良好的焊接形状。当钢/铝接头具有钢/铝合脉焊缝的焊缝相对较低的渗透深度时,IMC阶段的形成由Fe4Al13,Fe2Al5和Feal2相位仅限于焊接/ Al接口。在R-S = 0.67和D(1)= 1.5尼向的条件下获得115.6n / mm的钢/ Al合金接头的最大拉伸性。裂缝表面揭示了在Al合金中发生的混合发生故障,导致钢/ Al接头的高抗拉性电阻。

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