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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Fracture mechanism on Al-Li alloy T-joint welded by dual laser-beam bilateral synchronous welding
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Fracture mechanism on Al-Li alloy T-joint welded by dual laser-beam bilateral synchronous welding

机译:通过双激光束双侧同步焊接焊接Al-Li合金T关节的断裂机制

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摘要

Dual laser-beam bilateral synchronous welding technique is considered to replace riveting in terms of skin-stringer joints. The 2.0-mm thick Al-Li alloy T-joint, which is welded by dual laser-beam bilateral synchronous welding between 2099-T83 stringer and 2060-T8 skin, is investigated in the current study. Under the tailored process conditions, the examinations and analyses of microstructures, microhardness distribution, hoop tensile mechanical properties, and fractographies of the T-joint are conducted. Experimental results show that the maximum tensile strength of the weld seam is up to 85% of the tensile strength of the skin material. In order to explore the special fracture characteristics of dual laser-beam bilateral synchronous welding joints after tensile test, a three-dimensional finite element model is established and the residual stress of the weldment is analyzed. Considering the scanning electron microscopy results and simulation results comprehensively, stress concentration is the main reason for the weldment failure in tensile test.
机译:双激光束双侧同步焊接技术被认为是在皮肤纵梁关节方面取代铆接。目前研究在2099-T83 Stringer和2060-T8皮肤之间采用双激光束双侧同步焊接焊接2.0mm厚的Al-Li合金T关节。在定制的工艺条件下,进行微观结构,微硬度分布,环旋转力学性能和T关节的特征的考试和分析。实验结果表明,焊缝的最大拉伸强度高达皮肤材料拉伸强度的85%。为了在拉伸试验后探讨双激光束双侧同步焊接接头的特殊断裂特性,建立了三维有限元模型,分析了焊接的残余应力。综合考虑扫描电子显微镜结果和仿真结果,应力集中是拉伸试验中焊接失效的主要原因。

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