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Effect of Coating Layer on Advanced Stud Welding of 2024 Aluminum Alloy to Galvanized and Galvannealed Steel Sheet

机译:涂层对2024铝合金到镀锌和镀锌钢板高级螺柱焊接的影响

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High strength 2024 aluminum alloy studs were joined to galvanized, galvannealed and non-coated steel sheets by using an advanced stud welding method. Effect of the coating layer on the interfacial microstructure and the tensile fracture load of the joints were evaluated. A specially-designed stud having a circular projection at its bottom was pressed against a sheet surface. A discharge current was introduced from the upper part of the stud. Local heating could be achieved by a high current density at a contact point between the projection and sheet. The observation of joint area revealed the projection was severely deformed and spread along the sheet surface. The coating layer of the galvanized steel sheet was removed at the joint interface under the charging voltage of 200 V, while that of the galvannealed one locally remained on the steel surface even at 400 V. This would be strongly related to the melting or liquidus and solidus temperatures of each coating layer. Joining was not achieved at a low charging voltage in the non-coated and galvannealed steel sheets, while high tensile fracture load was obtained even at 200 V in the galvanized ones.
机译:通过使用先进的螺柱焊接方法,将高强度的2024铝合金螺柱连接到镀锌,镀锌和未涂层的钢板上。评估了涂层对界面微观结构和接头拉伸断裂载荷的影响。在底部具有圆形凸起的特殊设计的螺栓被压在薄板表面上。从螺柱的上部引入了放电电流。通过在凸起和薄片之间的接触点处的高电流密度可以实现局部加热。对接缝区域的观察表明,突起严重变形并沿板表面散布。镀锌钢板的涂层在200 V的充电电压下在接头界面处被去除,而镀锌钢板的涂层甚至在400 V时仍残留在钢表面上。这与熔化或液相线和强度密切相关。每个涂层的固相线温度。在未镀覆和热镀锌的钢板中,在低充电电压下无法实现接合,而即使在200 V的镀锌钢板中,也能获得高的拉伸断裂载荷。

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