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Articles

Experimental investigation of material flow during friction stir spot welding

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Pages 666-670 | Published online: 04 Dec 2013

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Read on this site (9)

Zhikang Shen, Yuquan Ding & Adrian P. Gerlich. (2020) Advances in friction stir spot welding. Critical Reviews in Solid State and Materials Sciences 45:6, pages 457-534.
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Akihiko Ikuta, Thomas H North & Yoshihiko Uematsu. (2018) Characteristics of keyhole refill process using friction stir spot welding. Welding International 32:6, pages 417-426.
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D. Zhang & T. Shibayanagi. (2015) Material flow during friction stir spot welding of dissimilar Al2024/Al materials. Materials Science and Technology 31:9, pages 1077-1087.
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H. K. Ma, D. Q. He & J. S. Liu. (2015) Ultrasonically assisted friction stir welding of aluminium alloy 6061. Science and Technology of Welding and Joining 20:3, pages 216-221.
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Y. Morisada, T. Imaizumi & H. Fujii. (2015) Clarification of material flow and defect formation during friction stir welding. Science and Technology of Welding and Joining 20:2, pages 130-137.
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J. Shen, L. Wen, X. Luo, N. Xu, D. Wang & M. Liu. (2014) Development of novel heating tool friction stir spot welding (HT-FSSW) for AZ31 magnesium alloy. Science and Technology of Welding and Joining 19:5, pages 369-375.
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M Pouranvari & S P H Marashi. (2013) Critical review of automotive steels spot welding: process, structure and properties. Science and Technology of Welding and Joining 18:5, pages 361-403.
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Articles from other publishers (15)

Tiwan, M.N. Ilman, Kusmono & Sehono. (2023) Microstructure and mechanical performance of dissimilar friction stir spot welded AA2024-O/AA6061-T6 sheets: Effects of tool rotation speed and pin geometry. International Journal of Lightweight Materials and Manufacture 6:1, pages 1-14.
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A. Habibizadeh, M. Honarpisheh & S. Golabi. (2022) Effect of friction stir spot welding parameters on the microstructure and properties of joints between aluminium and copper. Welding in the World 66:9, pages 1757-1774.
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Akihiko IKUTA. (2021) Influence of Material Adhered to Welding Tool in Consideration of Shape of Cutting Tools on Friction Stir Spot Welds摩擦攪拌点接合継手におよぼす切削工具の形状を考慮した接合ツールへの付着物の影響. QUARTERLY JOURNAL OF THE JAPAN WELDING SOCIETY 39:3, pages 190-199.
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Akihiko IKUTA. (2020) Characteristics of Material Flow in Friction Stir Spot Welding Tools in Consideration of Cutting Tools切削工具を考慮した摩擦攪拌点接合ツールの塑性流動の特徴. QUARTERLY JOURNAL OF THE JAPAN WELDING SOCIETY 38:3, pages 125-133.
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Mingshen Li, Chaoqun Zhang, Dayong Wang, Li Zhou, Daniel Wellmann & Yingtao Tian. (2019) Friction Stir Spot Welding of Aluminum and Copper: A Review. Materials 13:1, pages 156.
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Olatunji Oladimeji Ojo, Emel Taban & Erdinc Kaluc. (2018) Effect of residual Alclad on friction stir spot welds of AA2219 alloys. Materials Testing 60:10, pages 979-988.
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Weiming Wang, Kaifeng Wang, Haris Ali Khan, Jingjing Li & Scott Miller. (2018) Numerical Analysis of Magnesium to Aluminum Joints in Friction Stir Blind Riveting. Procedia CIRP 76, pages 94-99.
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A. Boucherit, M.-N. Avettand-Fènoël & R. Taillard. (2017) Effect of a Zn interlayer on dissimilar FSSW of Al and Cu. Materials & Design 124, pages 87-99.
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Akihiko IKUTA & Thomas H. North. (2017) Influence of Material Adhered to Tool on Friction Stir Spot Welds. QUARTERLY JOURNAL OF THE JAPAN WELDING SOCIETY 35:4, pages 171-178.
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Ojo Olatunji Oladimeji, Emel Taban & Erdinc Kaluc. (2016) Understanding the role of welding parameters and tool profile on the morphology and properties of expelled flash of spot welds. Materials & Design 108, pages 518-528.
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Akihiko IKUTA, Thomas H. NORTH & Yoshihiko UEMATSU. (2016) Characteristics of Keyhole Refill Process using Friction Stir Spot Welding. QUARTERLY JOURNAL OF THE JAPAN WELDING SOCIETY 34:3, pages 159-166.
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Marie-Noëlle Avettand-Fènoël, Roland Taillard, Julien Laye & Thierry Odièvre. (2013) Experimental Investigation of Three-Dimensional (3-D) Material Flow Pattern in Thick Dissimilar 2050 Friction-Stir Welds. Metallurgical and Materials Transactions A 45:2, pages 563-578.
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Yuan-Ching Lin, Ju-Jen Liu & Jiun-Nan Chen. (2013) Material Flow Tracking for Various Tool Geometries During the Friction Stir Spot Welding Process. Journal of Materials Engineering and Performance 22:12, pages 3674-3683.
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Leonardo Contri Campanelli, Nelson Guedes de Alcântara & Jorge Fernandez dos Santos. (2011) Soldagem por ponto no estado sólido de ligas leves. Soldagem & Inspeção 16:3, pages 301-307.
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Shohei HORIE, Kenji SHINOZAKI, Motomichi YAMAMOTO, Kota KADOI & T. H. NORTH. (2011) Effects of Tool Geometry and Process Conditions on Material Flow and Strength of Friction Stir Spot Welded Joint. QUARTERLY JOURNAL OF THE JAPAN WELDING SOCIETY 29:3, pages 119s-123s.
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