Science and Technology of Welding & Joining · 2011 · 32 citations · 23 references
Friction WeldingEngineeringMechanical EngineeringHigh Strength Low Alloy SteelCorrosionWelding ProcessMicrostructural EvolutionMicrostructure-strength RelationshipMaterials ScienceSolid MechanicsUnderwater FswWeld Pool SolidificationUnderwater Friction StirMicrostructureUnderwater JointAlloy Design2219-T6 Aluminium AlloyWeld Nugget ZoneMechanics Of Materials
Underwater friction stir welding (FSW) has been demonstrated to be an effective method to improve the mechanical properties of joints. To illuminate the characteristics of underwater FSW, the microstructural evolution and its effect on mechanical performance of an underwater joint were investigated in the present paper. The weld nugget zone (WNZ) is characterised by the homogeneity of refined grain structures in the direction of thickness. The precipitate deterioration is gradually strengthened from the heat affected zone (HAZ) to the WNZ. The dislocation movement featured by different types of grain boundaries suggests that continuous dynamic recrystallisation has occurred in the WNZ during FSW. The evolutions of strengthening precipitates and grain structures have significant influence on hardness distributions and the tensile fracture features of the underwater joint.
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Low-temperature friction-stir welding of 2024 aluminum
Samuel Benavides, Y Li, L.E. Murr et al. · Scripta Materialia · 1999 · 337 citations
Materials Engineering, Materials Science, Friction Welding +5