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Research Papers

Microcavities accompanying a zigzag line in friction stir welded A6082-T6 alloy joint

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Pages 68-74 | Received 21 Aug 2014, Accepted 11 Oct 2014, Published online: 23 Oct 2014

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Anugrah Singh & Vikas Upadhyay. (2022) Effect of Welding Parameters and Tool pin features on Mechanical Properties of Dissimilar Aluminum Alloy Friction Stir Welds. Advances in Materials and Processing Technologies 0:0, pages 1-11.
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Articles from other publishers (13)

Gaoqiang Chen, Huijie Liu & Qingyu Shi. (2023) Development of Computational Approach for Analyzing In-Process Thermal-Mechanical Condition during Friction Stir Welding for Prediction of Material Bonding Defect. Materials 16:23, pages 7473.
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Tie Yi, Shengdan Liu, Chen Fang & Gengduo Jiang. (2022) Eliminating hole defects and improving microstructure and mechanical properties of friction stir welded joint of 2519 aluminum alloy via TIG arc. Journal of Materials Processing Technology 310, pages 117773.
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Tie Yi, Sheng-dan Liu, Chen Fang & Geng-duo Jiang. (2023) Role of oxides in the formation of hole defects in friction stir welded joint of 2519-T87 aluminum alloy氧化物在2519-T87铝合金搅拌摩擦焊接头孔洞缺陷形成中的作用. Journal of Central South University 29:12, pages 3836-3846.
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J.Y. Li, Z. Zhang, D.X. Ren, W. Zhang & Z.J. Tan. (2022) The experimental and numerical studies on load bearing capacity in lamellar tearing of friction stir lap weld. Engineering Fracture Mechanics 271, pages 108609.
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Ruishan Xie, Tongshuai Liang, Yanchao Shi & Haibin Liu. (2022) Revealing the bonding mechanisms between deposit and substrate of the friction rolling additive manufactured hybrid aluminum alloys. Additive Manufacturing 56, pages 102942.
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Hang Zhang, Yu-meng Sun, Wen-biao Gong & Heng Cui. (2021) Growth mechanism and motion trajectory of lazy “S” in friction stir welding joint of 6082-T6 aluminum alloy. SN Applied Sciences 3:2.
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Shenbo Zeng, Gaoqiang Chen, Isaac Dinaharan, Qu Liu, Shuai Zhang, Prakash Kumar Sahu, Jianjun Wu, Gong Zhang & Qingyu Shi. (2020) Microstructure and Tensile Strength of AA6082 T-joints by Corner Stationary Shoulder Friction Stir Welding: Effect of Tool Rotation Speed. Journal of Materials Engineering and Performance 29:11, pages 7094-7103.
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Anton Naumov, Iuliia Morozova, Evgenii Rylkov, Aleksei Obrosov, Fedor Isupov, Vesselin Michailov & Andrey Rudskoy. (2019) Metallurgical and Mechanical Characterization of High-Speed Friction Stir Welded AA 6082-T6 Aluminum Alloy. Materials 12:24, pages 4211.
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Huijie Zhang, Shaohua Luo & Wei Xu. (2019) Influence of Welding Speed on Zigzag Line Feature and Tensile Property of a Friction-Stir-Welded Al-Zn-Mg Aluminum Alloy. Journal of Materials Engineering and Performance 28:3, pages 1790-1800.
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Gaoqiang Chen, Han Li & Qingyu Shi. 2019. Friction Stir Welding and Processing X. Friction Stir Welding and Processing X 99 108 .
Yongxian Huang, Yuming Xie, Xiangchen Meng, Zongliang Lv & Jian Cao. (2018) Numerical design of high depth-to-width ratio friction stir welding. Journal of Materials Processing Technology 252, pages 233-241.
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M. Tabatabaeipour, J. Hettler, N. T. Sewell, J. R. Wright, J. C. S. Wright, S. Delrue & K. Van Den Abeele. (2017) Pulse-Inversion Chirp-Coded Weld Harmonic Imaging (PI-CWHI) of Friction Stir Welded Butt-Joint. Journal of Nondestructive Evaluation 36:4.
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Abbas Tamadon, Dirk Pons, Kamil Sued & Don Clucas. (2017) Development of Metallographic Etchants for the Microstructure Evolution of A6082-T6 BFSW Welds. Metals 7:10, pages 423.
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