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Original Article

Minimising electrode wear in resistance spot welding of aluminium alloys

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Pages 509-513 | Received 09 Mar 2011, Accepted 25 Apr 2011, Published online: 12 Nov 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Harry Atherton, Yuying Xia & John Kamalu. (2017) The mechanical properties and geometrical configuration efficiency of multiple resistance spot welds. Advances in Materials and Processing Technologies 3:3, pages 449-462.
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W. J. Zhang, I. Cross, P. Feldman, S. Rama, S. Norman & M. Del Duca. (2017) Electrode life of aluminium resistance spot welding in automotive applications: a survey. Science and Technology of Welding and Joining 22:1, pages 22-40.
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Primož Podržaj & Samo Simončič. (2013) Resistance spot welding control based on the temperature measurement. Science and Technology of Welding and Joining 18:7, pages 551-557.
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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 (13)

Mingyu Kim, Sooyoung Jo, Seung Hwan Lee & Jiyoung Yu. (2023) Misalignment monitoring between electrodes and a rivet in three-sheet resistance element welding based on dynamic resistance. The International Journal of Advanced Manufacturing Technology.
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Stefan Heilmann, Martin Baumgarten, Johannes Koal, Jörg Zschetzsche & Uwe Füssel. (2022) Electrode wear investigation of aluminium spot welding by motion overlay. The International Journal of Advanced Manufacturing Technology 123:3-4, pages 749-760.
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Mingfeng Li, Yanjun Wang, Shanglu Yang, Wu Tao & Guotao Zhang. (2021) Improving mechanical properties and electrode life for joining aluminum alloys with innovatively designated Newton ring electrode. Journal of Manufacturing Processes 64, pages 948-959.
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Anil Kumar Deepati, Waleed Alhazmi & Indira Benjeer. (2021) Mechanical characterization of AA5083 aluminum alloy welded using resistance spot welding for the lightweight automobile body fabrication. Materials Today: Proceedings 45, pages 5139-5148.
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Eric Schulz, Ahmed Mahjoubi, Matthias Wagner, Holger Schubert, Bharat Balasubramanian & Luke N. Brewer. (2020) Electrode wear in short-pulse resistance spot welding of aluminum AA 6016-T4. Welding in the World 65:1, pages 127-141.
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Gao-hui Li, Li Zhou, Ling-yun Luo, Xi-ming Wu & Ning Guo. (2021) Material flow behavior and microstructural evolution during refill friction stir spot welding of alclad 2A12-T4 aluminum alloy. International Journal of Minerals, Metallurgy and Materials 28:1, pages 131-141.
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Marcell Gáspár, Ádám Dobosy, Miklós Tisza, Imre Török, Yangchun Dong & Kailun Zheng. (2020) Improving the properties of AA7075 resistance spot-welded joints by chemical oxide removal and post weld heat treating. Welding in the World 64:12, pages 2119-2128.
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Gaohui Li, Li Zhou, Lingyun Luo, Ximing Wu & Ning Guo. (2019) Microstructural evolution and mechanical properties of refill friction stir spot welded alclad 2A12-T4 aluminum alloy. Journal of Materials Research and Technology 8:5, pages 4115-4129.
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Ádám Dobosy, Marcell Gáspár & Imre Török. 2018. Vehicle and Automotive Engineering 2. Vehicle and Automotive Engineering 2 679 693 .
S. M. Manladan, F. Yusof, S. Ramesh, M. Fadzil, Z. Luo & S. Ao. (2016) A review on resistance spot welding of aluminum alloys. The International Journal of Advanced Manufacturing Technology 90:1-4, pages 605-634.
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Primoz Podrzaj & Samo Simoncic. (2013) Welding force as a variable in resistance spot welding control. Welding force as a variable in resistance spot welding control.
Primoz Podrzaj & Samo Simoncic. (2013) Temperature measurement during resistance spot welding using a digital camera. Temperature measurement during resistance spot welding using a digital camera.
Fatih Hayat. (2012) Effect of aging treatment on the microstructure and mechanical properties of the similar and dissimilar 6061-T6/7075-T651 RSW joints. Materials Science and Engineering: A 556, pages 834-843.
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