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Research on the microstructure and properties of 5083 aluminium alloy T-Joint with stationary shoulder friction stir welding
Research on the microstructure and properties of 5083 aluminium alloy T-Joint with stationary shoulder friction stir welding
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Research on the microstructure and properties of 5083 aluminium alloy T-Joint with stationary shoulder friction stir welding
Research on the microstructure and properties of 5083 aluminium alloy T-Joint with stationary shoulder friction stir welding

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Research on the microstructure and properties of 5083 aluminium alloy T-Joint with stationary shoulder friction stir welding
Research on the microstructure and properties of 5083 aluminium alloy T-Joint with stationary shoulder friction stir welding
Journal Article

Research on the microstructure and properties of 5083 aluminium alloy T-Joint with stationary shoulder friction stir welding

2025
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Overview
This paper focuses on the T-joints of 3mm thick 5083 aluminium alloy, and the study was conducted by the self-designed welding tool. The results indicated that the trials achieved well-formed, defect-free welds with fillet transitions, and the weld areas experienced varying degrees of thinning. Microstructural analysis indicates that the grains are in equiaxed crystalline state around the nugget zone (NZ), while grown larger within the heat-affected zone (HAZ). The minimum tensile strength have reaches 306 MPa, exceeding 95% of the base material (BM), with fractures occurring in the base material area. The hardness distribution in descending order is NZ, BM and HAZ. Theoretical foundation and technical support are provided for the high-quality welding of thin aluminium alloy plates and has guiding significance for welding applications in production processes.