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Research Papers

Enhanced mechanical properties of 70/30 brass joint by multi-pass friction stir welding with rapid cooling

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Pages 91-99 | Received 02 Oct 2014, Accepted 04 Nov 2014, Published online: 18 Nov 2014

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Read on this site (7)

Simeon A. Babalola, Samik Dutta, Himadri Roy & Naresh C. Murmu. (2023) Deciphering the interdependent impact of process parameters in friction stir welding - Part I: an overview of the challenges and way forward. Materials and Manufacturing Processes 38:11, pages 1339-1360.
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Mengran Zhou, Gaoqiang Chen, Jianjun Wu, Qu Liu, Bingwang Lei, Yunxi Gao, Yijun Liu, Shuai Zhang & Qingyu Shi. (2022) The Cu/Fe magnetic yoke with novel interface and excellent mechanical properties by friction stir welding. Science and Technology of Welding and Joining 27:5, pages 339-352.
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Xiaopeng Li, Chenshuo Li, Zhimin Liang, Qian Xusheng & Dianlong Wang. (2021) Research on the corrosion behavior of double-side friction stir welded 6082Al alloy thick plate. Journal of Adhesion Science and Technology 35:9, pages 993-1005.
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Nan Xu, Qining Song & Yefeng Bao. (2019) Microstructure and mechanical properties’ modification of friction stir welded Invar 36 alloy joint. Science and Technology of Welding and Joining 24:1, pages 79-82.
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Nan Xu, Qining Song, Yuan Jiang, Yefeng Bao & Hidetoshi Fujii. (2018) Large load friction stir welding of Mg–6Al–0.4Mn–2Ca magnesium alloy. Materials Science and Technology 34:9, pages 1118-1130.
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Y. C. Lim, S. Sanderson, M. Mahoney, Y. Wang, J. Chen, S. A. David & Z. Feng. (2016) Fabrication of thick multilayered steel structure using A516 Grade 70 by multipass friction stir welding. Science and Technology of Welding and Joining 21:7, pages 564-569.
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S. M. Mousavizade, M. Pouranvari, F. M. Ghaini, H. Fujii & Y. D. Chung. (2016) Laser-assisted friction stir processing of IN738LC nickel-based superalloy: stir zone characteristics. Science and Technology of Welding and Joining 21:5, pages 374-380.
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Articles from other publishers (18)

Nan Xu, Yuzhui Xu, Boshuo Zhang, Qining Song, Jianhua Zhao & Yefeng Bao. (2023) Effect of Heterogeneous Lamella Structure on Mechanical Properties of Double-Pass Friction Stir Processed Cu–30%Zn Alloy. Metals and Materials International 29:11, pages 3222-3234.
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Mohammad Amin Yaghoubi, Nozar Anjabin & Hyoung Seop Kim. (2023) Effect of Y2O3 Nanoparticles on the Evolution of the Microstructure and Mechanical Properties of Severely Plastic Deformed Cu Sheets During Friction Stir Processing. Metals and Materials International 29:9, pages 2710-2725.
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M. Khalili, A.R. Eivani, S.H. Seyedein & H.R. Jafarian. (2022) The effect of multi-pass friction stir processing on microstructure and mechanical properties of dual-phase brass alloy. Journal of Materials Research and Technology 21, pages 1177-1195.
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Mithlesh Kumar Mahto, Adarsh Kumar, Avinash Ravi Raja, Meghanshu Vashista & Mohd Zaheer Khan Yusufzai. (2021) Cladding of copper sheet on mild steel using friction stir welding. The International Journal of Advanced Manufacturing Technology 118:9-10, pages 3345-3360.
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N. Xu, L. Chen, R.N. Feng, Q.N. Song & Y.F. Bao. (2020) Recrystallization of Cu-30Zn brass during friction stir welding. Journal of Materials Research and Technology 9:3, pages 3746-3758.
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Alexis T. Kermanidis. 2020. Revolutionizing Aircraft Materials and Processes. Revolutionizing Aircraft Materials and Processes 21 55 .
Xiaopeng Li, Xue Wang, Zhimin Liang & Dianlong Wang. (2019) Influence of FSW Repairing Process on the Microstructures and Mechanical Properties of Friction Stir-Welded 6082Al Alloy. Journal of Materials Engineering and Performance 28:9, pages 5299-5306.
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Huihong Liu, Kohsaku Ushioda & Hidetoshi Fujii. (2019) Elucidation of interface joining mechanism during friction stir welding through Cu/Cu-10Zn interfacial observations. Acta Materialia 166, pages 324-334.
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X. C. Liu, Y. F. Sun, T. Nagira, K. Ushioda & H. Fujii. (2018) Microstructure evolution of Cu–30Zn during friction stir welding. Journal of Materials Science 53:14, pages 10423-10441.
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Nan Xu, Qining Song & Yefeng Bao. (2018) Investigation on microstructure development and mechanical properties of large-load and low-speed friction stir welded Cu-30Zn brass joint. Materials Science and Engineering: A 726, pages 169-178.
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X.C. Liu, Y.F. Sun & H. Fujii. (2017) Clarification of microstructure evolution of aluminum during friction stir welding using liquid CO2 rapid cooling. Materials & Design 129, pages 151-163.
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Yoshihiko Hangai, Yukiko Nakano, Takao Utsunomiya, Osamu Kuwazuru & Nobuhiro Yoshikawa. (2016) Drop Weight Impact Behavior of Al-Si-Cu Alloy Foam-Filled Thin-Walled Steel Pipe Fabricated by Friction Stir Back Extrusion. Journal of Materials Engineering and Performance 26:2, pages 894-900.
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Yoshihiko Hangai, Tomoaki Morita, Shinji Koyama, Osamu Kuwazuru & Nobuhiro Yoshikawa. (2016) Functionally Graded Aluminum Foam Fabricated by Friction Powder Sintering Process with Traversing Tool. Journal of Materials Engineering and Performance 25:9, pages 3691-3696.
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Mustafa Kemal Kulekci, Ugur Esme & Baris Buldum. (2015) Critical analysis of friction stir-based manufacturing processes. The International Journal of Advanced Manufacturing Technology 85:5-8, pages 1687-1712.
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Nan Xu & Yefeng Bao. (2016) Enhanced mechanical properties of tungsten inert gas welded AZ31 magnesium alloy joint using two-pass friction stir processing with rapid cooling. Materials Science and Engineering: A 655, pages 292-299.
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Yoshihiko Hangai, Tomoaki Morita & Takao Utsunomiya. (2016) Foaming Behavior of Aluminum Foam Precursor Using Only Friction Heat of Rotating Tool. MATERIALS TRANSACTIONS 57:6, pages 1014-1016.
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Yoshihiko Hangai, Yukiko Nakano, Takao Utsunomiya, Osamu Kuwazuru, Soichiro KitaharaNobuhiro Yoshikawa. (2016) Control of Deformation Behavior of Aluminum Foam-Filled Tube by Introducing Slit on Pipe. Journal of the Japan Institute of Metals Journal of the Japan Institute of Metals and Materials 80:11, pages 707-712.
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Yoshihiko Hangai, Yukiko Nakano, Takao Utsunomiya, Osamu Kuwazuru, Soichiro KitaharaNobuhiro Yoshikawa. (2016) Aluminum Foam-Filled Pipe Using Thin-Wall Aluminum Pipe Fabricated from Plate. Journal of the Japan Institute of Metals Journal of the Japan Institute of Metals and Materials 80:6, pages 386-389.
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