Colegrove, P. (2000, June). 3 dimensional flow and thermal modelling of the friction stir welding process. 2nd International Symposium.
Colegrove P. "3 dimensional flow and thermal modelling of the friction stir welding process". 2nd International Symposium (Jun.2000).
Colegrove, P. "3 dimensional flow and thermal modelling of the friction stir welding process". 2nd International Symposium (Jun.2000).
Colegrove P.3 dimensional flow and thermal modelling of the friction stir welding process. 2nd International Symposium. 2000 Jun; .
Colegrove 2000, '3 dimensional flow and thermal modelling of the friction stir welding process', 2nd International Symposium. Available from: https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-200006-4Paper02.pdf.
Colegrove P. dimensional flow and thermal modelling of the friction stir welding process. 2nd International Symposium. 2000;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-200006-4Paper02.pdf.
Colegrove PP. dimensional flow and thermal modelling of the friction stir welding process. 2nd International Symposium. 2000 Jun;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-200006-4Paper02.pdf.
3 dimensional flow and thermal modelling of the friction stir welding process
- Colegrove P.
- Colegrove P.
June 2000
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Models were developed for the temperature distribution and material flow during friction stir welding. Both friction and material shearing were presumed to generate heat, and finite element analysis was used to determine the temperature distributions in 5083-0 aluminium alloy plate of 12 mm thickness using a model which included the material, the tool and a steel backing plate. The model predictions were compared with experimental measurements. A local flow model was used, considering material adjacent to the rotating tool, with the finite element mesh attached to the rotating pin. The model was used to compare material flow with and without a translational tool movement.
2nd International Symposium, 26-28 Jun 2000, Session 4, Paper 02
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