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Original Articles

An analytical model to calculate the peak temperature for friction stir welding

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Pages 520-525 | Received 12 Sep 2016, Accepted 29 Nov 2016, Published online: 20 Dec 2016

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Read on this site (3)

Danilo Ambrosio, Egoitz Aldanondo, Vincent Wagner, Gilles Dessein, Christian Garnier, Javier Vivas & Olivier Cahuc. (2022) A semi-empirical model for peak temperature estimation in friction stir welding of aluminium alloys. Science and Technology of Welding and Joining 27:7, pages 491-500.
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Vivek Patel, Wenya Li, Achilles Vairis & Vishvesh Badheka. (2019) Recent Development in Friction Stir Processing as a Solid-State Grain Refinement Technique: Microstructural Evolution and Property Enhancement. Critical Reviews in Solid State and Materials Sciences 44:5, pages 378-426.
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V. K. Parikh, A. D. Badgujar & N. D. Ghetiya. (2019) Joining of metal matrix composites using friction stir welding: a review. Materials and Manufacturing Processes 34:2, pages 123-146.
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Articles from other publishers (7)

Shashank Sharma, K.V. Mani Krishna, M. Radhakrishnan, Mangesh V. Pantawane, Shreyash M. Patil, Sameehan S. Joshi, Rajarshi Banerjee & Narendra B. Dahotre. (2022) A pseudo thermo-mechanical model linking process parameters to microstructural evolution in multilayer additive friction stir deposition of magnesium alloy. Materials & Design 224, pages 111412.
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S. D. Dhanesh Babu, P. Sevvel, R. Senthil Kumar, V. Vijayan & J. Subramani. (2021) Development of Thermo Mechanical Model for Prediction of Temperature Diffusion in Different FSW Tool Pin Geometries During Joining of AZ80A Mg Alloys. Journal of Inorganic and Organometallic Polymers and Materials 31:7, pages 3196-3212.
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Hoda Agha Amini Fashami, Nasrollah Bani Mostafa Arab, Mohammad Hoseinpour Gollo & Bahram Nami. (2021) Numerical and experimental investigation of defects formation during friction stir processing on AZ91. SN Applied Sciences 3:1.
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Manish Kumar Singh, Rajesh Kumar Porwal & Sanjay Mishra. (2019) A State of the Art Review on Modelling Work Carried Out During Friction Stir Welding. IOP Conference Series: Materials Science and Engineering 653:1, pages 012002.
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Bhavesh Chaudhary, Vivek Patel, P. L. Ramkumar & Jay Vora. (2019) Temperature Distribution During Friction Stir Welding of AA2014 Aluminum Alloy: Experimental and Statistical Analysis. Transactions of the Indian Institute of Metals 72:4, pages 969-981.
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Jian Liu, Biao Cao & Jingwei Yang. (2018) Modelling intermetallic phase growth during high-power ultrasonic welding of copper and aluminum. Journal of Manufacturing Processes 35, pages 595-603.
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Xianjun Pei & Pingsha Dong. (2017) An improved friction stir shear localization model and applications in understanding weld formation process in alloy Ti-6-4. The International Journal of Advanced Manufacturing Technology 95:9-12, pages 3549-3562.
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