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(2008, May). An investigation of hardness, microstructure and crystallographic texture in thick sectioned friction stir welded AA6082. 7th International Symposium.
. "An investigation of hardness, microstructure and crystallographic texture in thick sectioned friction stir welded AA6082". 7th International Symposium (May.2008).
. "An investigation of hardness, microstructure and crystallographic texture in thick sectioned friction stir welded AA6082". 7th International Symposium (May.2008).
An investigation of hardness, microstructure and crystallographic texture in thick sectioned friction stir welded AA6082. 7th International Symposium. 2008 May; .
2008, 'An investigation of hardness, microstructure and crystallographic texture in thick sectioned friction stir welded AA6082', 7th International Symposium. Available from: https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-200805-4APaper03.pdf.
. An investigation of hardness, microstructure and crystallographic texture in thick sectioned friction stir welded AA6082. 7th International Symposium. 2008;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-200805-4APaper03.pdf.
. An investigation of hardness, microstructure and crystallographic texture in thick sectioned friction stir welded AA6082. 7th International Symposium. 2008 May;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-200805-4APaper03.pdf.

An investigation of hardness, microstructure and crystallographic texture in thick sectioned friction stir welded AA6082

7th International Symposium
May 2008

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A high force, multi-axis friction stir welding (FSW) machine was employed to perform one-run welding experiments on thick plates (thickness 75 mm) of AA 6082-T6 alloys, and the hardness, microstructure and crystallographic texture of the joints were investigated. FSW was performed at a tool rotational speed of 230 rpm and traverse speed of 40 mm/min. Vickers hardness was measured under 5 kg load. Microstructure was observed by optical microscopy and SEM, texture was examined by electron backscattered diffraction analysis. The identification of three distinct regions in the nugget corresponding to different dominant deformation parts of the tool is discussed.

7th International Symposium, 20-22 May 2008, 4A: Process/Microstructure 1, Paper 03

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