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Articles

Current state and development of friction stir welding Part 3. Industrial application of friction stir welding

Pages 806-815 | Published online: 21 Nov 2008

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Read on this site (3)

Amin Rabiezadeh, Ali Salafzon & Nazanin Mostafavi. (2023) Dissimilar welding of AA5083/AA7039 by self-reacting friction stir welding. Journal of Adhesion Science and Technology 0:0, pages 1-22.
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S. Yu Ivanov, O. V. Panchenko, S. A. Ginsburg & V. G. Mikhaylov. (2021) Analysis of local mechanical properties for welded joints of Al-Mg-Si alloys at friction stir welding. Welding International 35:7-9, pages 333-337.
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V. M. Magalhães, C. Leitão & D. M. Rodrigues. (2018) Friction stir welding industrialisation and research status. Science and Technology of Welding and Joining 23:5, pages 400-409.
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Articles from other publishers (23)

Behrouz Abnar, Samaneh Gashtiazar & Mousa Javidani. (2023) Friction Stir Welding of Non-Heat Treatable Al Alloys: Challenges and Improvements Opportunities. Crystals 13:4, pages 576.
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Harish Suthar, Anirban Bhattacharya & Surajit Kumar Paul. (2022) Characterizing the anisotropic response of similar and dissimilar FSW joints by DIC-based simultaneous strain measurements on two orthogonal surfaces. Journal of Manufacturing Processes 84, pages 697-712.
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Md Helal Miah, Dharmahinder Singh Chand & Gurmail Singh Malhi. (2022) A novel technique for repairing Keyhole in the aircraft assembly technology employing friction stir additive manufacturing. Materials Today: Proceedings.
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N. Taheri Moghaddam, Amin Rabiezadeh, Ali Khosravifard & L. Ghalandari. (2022) Self-Reacting Friction Stir Welding of Al–Zn–Mg Aluminum Alloy. Arabian Journal for Science and Engineering 47:7, pages 9085-9098.
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Satish Kumar, Naseem Ahamad, Shahazad Ali, Uma Sharma & Pallav Gupta. (2022) Investigation of the influence of bimetallic micro SiC particles reinforced in FSW of Al6061-Al7075 composite. Materials Today: Proceedings 52, pages 2121-2124.
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Deepak Kaushal & Akhilesh Kumar Choudhary. 2022. Advances in Mechanical and Materials Technology. Advances in Mechanical and Materials Technology 1443 1452 .
Atul Kumar Choudhary & Rahul Jain. 2021. Welding Technology. Welding Technology 41 90 .
Aleksandra Laska & Marek Szkodo. (2020) Manufacturing Parameters, Materials, and Welds Properties of Butt Friction Stir Welded Joints–Overview. Materials 13:21, pages 4940.
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Lise Sandnes, Øystein Grong, Torgeir Welo & Filippo Berto. (2020) Fatigue properties of AA6060‐T6 butt welds made by hybrid metal extrusion & bonding. Fatigue & Fracture of Engineering Materials & Structures 43:10, pages 2349-2358.
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D. Texier, F. Atmani, P. Bocher, F. Nadeau, J. Chen, Y. Zedan, N. Vanderesse & V. Demers. (2018) Fatigue performances of FSW and GMAW aluminum alloys welded joints: Competition between microstructural and structural-contact-fretting crack initiation. International Journal of Fatigue 116, pages 220-233.
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Sergio Delijaicov, Patricia Aparecida de Oliveira Silva, Hugo Borelli Resende & Mario Henrique Fernandes Batalha. (2018) Effect of Weld Parameters on Residual Stress, Hardness and Microstructure of Dissimilar AA2024-T3 and AA7475-T761 Friction Stir Welded Joints. Materials Research 21:6.
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Rosa De Finis, Livia Maria Serio & Luigi Alberto Ciro De Filippis. (2018) Capability of infrared thermography for studying the friction stir welding process. Capability of infrared thermography for studying the friction stir welding process.
Luigi De Filippis, Livia Serio, Davide Palumbo, Rosa De Finis & Umberto Galietti. (2017) Optimization and Characterization of the Friction Stir Welded Sheets of AA 5754-H111: Monitoring of the Quality of Joints with Thermographic Techniques. Materials 10:10, pages 1165.
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Antonio Carlos de Oliveira Miranda, Adrian Gerlich & Scott Walbridge. (2015) Aluminum friction stir welds: Review of fatigue parameter data and probabilistic fracture mechanics analysis. Engineering Fracture Mechanics 147, pages 243-260.
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P. Karthikeyan & K. Mahadevan. (2015) Investigation on the effects of SiC particle addition in the weld zone during friction stir welding of Al 6351 alloy. The International Journal of Advanced Manufacturing Technology 80:9-12, pages 1919-1926.
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Jau-Wen Lin, Hsi-Cherng Chang & Ming-Hsiu Wu. (2014) Comparison of mechanical properties of pure copper welded using friction stir welding and tungsten inert gas welding. Journal of Manufacturing Processes 16:2, pages 296-304.
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M. Nourani, A. Milani, S. Yannacopoulos & C. Yan. (2014) An integrated multiphysics model for friction stir welding of 6061 Aluminum alloy. The International Journal of Multiphysics 8:1, pages 29-48.
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P. Karthikeyan & K. Mahadevan. (2014) Evaluation of Mechanical Properties of Friction Stir Welded Al 6351 Aluminium Alloy with Reinforcement Particles in the Weld Region. Advanced Materials Research 893, pages 361-364.
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Mohamadreza Nourani, Abbas S. Milani, Spiro Yannacopoulos & Claire Yu Yan. (2013) Predicting Residual Stresses in Friction Stir Welding of Aluminum Alloy 6061 Using an Integrated Multiphysics Model. Materials Science Forum 768-769, pages 682-689.
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Yeui Han Jeong & Seon Jin Kim. (2013) Experimental Investigation of Fatigue Crack Growth Behavior in Friction Stir Welded 7075-T651 Aluminum Alloy Joints under Constant Stress Intensity Factor Range Control Testing (For LT Orientation Specimen). Transactions of the Korean Society of Mechanical Engineers A 37:6, pages 775-782.
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M. JAYARAMAN & V. BALASUBRAMANIAN. (2013) Effect of process parameters on tensile strength of friction stir welded cast A356 aluminium alloy joints. Transactions of Nonferrous Metals Society of China 23:3, pages 605-615.
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Murshid Imam, Kajal Biswas & Vikranth Racherla. (2013) Effect of weld morphology on mechanical response and failure of friction stir welds in a naturally aged aluminium alloy. Materials & Design 44, pages 23-34.
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Chi-Ok Kim, Hye-Jeong Sohn & Seon-Jin Kim. (2011) Friction Stir Welding of 7075-T651 Aluminum Plates and Its Fatigue Crack Growth Property. Transactions of the Korean Society of Mechanical Engineers A 35:10, pages 1347-1353.
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