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A Study on Weldability of Aluminum Alloy-Aluminum-Steel Transition Joints

机译:铝合金 - 铝 - 铝 - 钢化接头焊接性研究

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Aluminum alloy-aluminum-steel cladding plates were manufactured by explosive welding. Microstructures of the cladding plates were observed and the interface bonding properties were tested. Aluminum alloy-aluminum-steel transition joints were produced by welding the explosive cladding plates. The bonding interface configuration and property were investigated and tested after welding. The effects of welding technology on the interface bonding properties were discussed. The results showed that metallurgical behavior has been occurred at the bonding interfaces between aluminum alloy and aluminum and aluminum and steel. Regular sine waves have appeared on the bonding interface between aluminum alloy and aluminum. However, the bonding interfaces between aluminum and steel present line-shape. The shear strength and separate strength of the cladding plates were much higher than the standard strength. After being welded, the configuration of the bonding interface has no marked change. The strength of the bonding interface decrease a little. The welding technology had no remarkable effect on the bonding interface of the aluminum alloy-aluminum-steel cladding plates.
机译:铝合金 - 铝 - 钢包层通过爆炸焊接制造。观察包层的微观结构,并测试界面粘合性能。通过焊接爆炸层板制造铝合金 - 铝钢过渡接头。焊接后,研究并测试了键合界面配置和性能。讨论了焊接技术对界面粘合性能的影响。结果表明,铝合金和铝和铝和铝之间的粘接界面发生了冶金行为。普通正弦波出现在铝合金和铝之间的粘接界面上。然而,铝和钢之间的粘接界面存在线形状。包层板的剪切强度和单独的强度远高于标准强度。焊接后,键合界面的配置没有明显的变化。粘合界面的强度降低了一点。焊接技术对铝合金 - 铝钢包层板的粘接界面没有显着影响。

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