The Effect of Process Parameters on the Performance of the RFSSW of ZK61M-T5 Magnesium Alloy. [PDF]
Jiang D, Ji L, Wang H, Ge X.
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Spot Friction Welding of Ultra High-Strength Automotive Sheet Steel
Jack H. Sederstrom
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Advances in Materials Joining and Additive Manufacturing. [PDF]
Liu X, Shi L.
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Microstructure and Mechanical Properties of Friction Stir Welded the Novel Al-Mg-Zn-Si Alloy. [PDF]
Huang J +11 more
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Microstructure and Friction-Wear Properties of 1Cr13 Coating on SAE 1045 Prepared by Arc Cladding. [PDF]
Chen M, Chen J, Zhu Y, Li X.
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Enhancing mechanical attributes and tribological performance of titanium friction stir welded joints through nanoparticle reinforcement. [PDF]
Giridharan K +5 more
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Microstructure, Mechanical Properties, and Tribological Behavior of Friction Stir Lap-Welded Joints Between SiC<sub>p</sub>/Al-Fe-V-Si Composites and an Al-Si Alloy. [PDF]
Xiao S +6 more
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Friction-based welding processes: friction welding and friction stir welding
Journal of Adhesion Science and Technology, 2020Friction-based welding processes are considered as very efficient solid-state metal joining processes due to soundness of the welded joint with remarkably less energy consumption and environmentall...
Kumar Rajak, Dipen +3 more
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A comparison between friction stir welding, linear friction welding and rotary friction welding
Advances in Manufacturing, 2016Three friction welding processes are compared for temperature, stresses and strains, as well as strain rates developed in the early phases of the processes, which are essential in their successful development. These are friction stir welding (FSW), linear friction welding (LFW) and rotary friction welding (RFW).
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