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Effects of Zn-Based Alloys Coating on Mechanical Properties and Interfacial Microstructures of Steel/Aluminum Alloy Dissimilar Metals Joints Using Resistance Spot Welding

机译:锌基合金涂层对电阻点焊钢/铝合金异种金属接头力学性能和界面微观结构的影响

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摘要

The effects of Zn-based alloys coating (Zn, Al-Zn and Al-Mg-Zn) on the bondability of steel/aluminum alloy dissimilar metals joints were evaluated, in order to achieve strength in lower welding current. In the joint with Zn-based alloys insert, the oxide film on the aluminum alloy was sufficiently removed through eutectic reaction of Zn-based alloys and aluminum. In the joint with Zn-coated steel (GI), higher welding current is necessary to discharge the zinc coating and the oxide film from the bonding interface sufficiently. The thinner aluminum plate after welding and the thick reaction layer cause the decrease of cross tensile strength in the joints with no coating steel (SPCC) and Al-Zn-coated steel. Using Al-Mg-Zn-coated steel, higher strength was achieved in a lower welding current. This is because Al-Mg-Zn-coating melted at lower temperature than Zn and Al-Zn-coating, and the removal of the coating material and the oxide film on the aluminum alloy were sufficiently performed in the lower welding current.
机译:为了在较低的焊接电流下获得强度,评估了锌基合金涂层(Zn,Al-Zn和Al-Mg-Zn)对钢/铝合金异种金属接头粘结性的影响。在具有Zn基合金插入件的接头中,通过Zn基合金和铝的共晶反应充分去除了铝合金上的氧化膜。在使用镀锌钢(GI)的接头中,需要更大的焊接电流才能从结合界面充分排出锌涂层和氧化膜。焊接后的铝板较薄,反应层较厚,导致无涂层钢(SPCC)和镀铝锌的接头的横向拉伸强度降低。使用Al-Mg-Zn涂层钢,可以在较低的焊接电流下获得较高的强度。这是因为,Al-Mg-Zn涂层在比Zn和Al-Zn涂层低的温度下熔融,并且在较低的焊接电流下充分地进行了铝合金上的涂层材料和氧化膜的去除。

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