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Microstructure and Mechanical Properties of an Ultrasonic Spot Welded Aluminum Alloy: The Effect of Welding Energy

机译:超声点焊铝合金的组织和力学性能:焊接能量的影响

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摘要

The aim of this study is to evaluate the microstructures, tensile lap shear strength, and fatigue resistance of 6022-T43 aluminum alloy joints welded via a solid-state welding technique–ultrasonic spot welding (USW)–at different energy levels. An ultra-fine necklace-like equiaxed grain structure is observed along the weld line due to the occurrence of dynamic crystallization, with smaller grain sizes at lower levels of welding energy. The tensile lap shear strength, failure energy, and critical stress intensity of the welded joints first increase, reach their maximum values, and then decrease with increasing welding energy. The tensile lap shear failure mode changes from interfacial fracture at lower energy levels, to nugget pull-out at intermediate optimal energy levels, and to transverse through-thickness (TTT) crack growth at higher energy levels. The fatigue life is longer for the joints welded at an energy of 1400 J than 2000 J at higher cyclic loading levels. The fatigue failure mode changes from nugget pull-out to TTT crack growth with decreasing cyclic loading for the joints welded at 1400 J, while TTT crack growth mode remains at all cyclic loading levels for the joints welded at 2000 J. Fatigue crack basically initiates from the nugget edge, and propagates with “river-flow” patterns and characteristic fatigue striations.
机译:这项研究的目的是评估通过固态焊接技术(超声波点焊(USW))在不同能级下焊接的6022-T43铝合金接头的组织,拉伸搭接剪切强度和耐疲劳性。由于发生动态结晶,沿焊接线观察到超细项链状等轴晶粒结构,在较低的焊接能量下晶粒尺寸较小。焊接接头的拉伸搭接剪切强度,破坏能量和临界应力强度首先增加,达到最大值,然后随着焊接能量的增加而降低。拉伸搭接剪切破坏模式从较低能级的界面断裂变为中等最佳能级的金块拔出,以及在较高能级下的横向贯穿厚度(TTT)裂纹扩展。在较高的循环载荷水平下,以1400 J能量焊接的接头的疲劳寿命比2000 J更长。随着1400 J焊接接头的循环载荷降低,疲劳破坏模式从熔核拉拔转变为TTT裂纹扩展,而在2000 J焊接接头的TTT裂纹扩展模式保持在所有循环载荷水平。疲劳裂纹基本上从熔核边缘,并以“河流流动”模式和特征性疲劳条纹传播。

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