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Prediction of mechanical properties in friction stir welds of pure copper
Highlights Range of parameters for defect-free friction stir welded pure copper was reached. Models were developed for predicting UTS, TE and hardness of pure copper joints. Analysis of variance was used to validate the developed models. Effect of welding parameters on mechanical behavior of welded joints was explored. The microstructure and fracture surface of welded joints were investigated.
Abstract This research was carried out to predict the mechanical properties of friction stir welded pure copper joints. Response surface methodology based on a central composite rotatable design with three parameters, five levels, and 20 runs, was used to conduct the experiments and to develop the mathematical regression model by using of Design-Expert software. The three welding parameters considered were rotational speed, welding speed, and axial force. Analysis of variance was applied to validate the predicted models. Microstructural characterization and fractography of joints were examined using optical and scanning electron microscopes. Also, the effects of the welding parameters on mechanical properties of friction stir welded joints were analyzed in detail. The results showed that the developed models were reasonably accurate. The increase in welding parameters resulted in increasing of tensile strength of the joints up to a maximum value. Elongation percent of the joints increased with increase of rotational speed and axial force, but decreased by increasing of welding speed, continuously. In addition, hardness of the joints decreased with increase of rotational speed and axial force, but increased by increasing of welding speed. The joints welded at higher heat input conditions revealed more ductility fracture mode.
Prediction of mechanical properties in friction stir welds of pure copper
Highlights Range of parameters for defect-free friction stir welded pure copper was reached. Models were developed for predicting UTS, TE and hardness of pure copper joints. Analysis of variance was used to validate the developed models. Effect of welding parameters on mechanical behavior of welded joints was explored. The microstructure and fracture surface of welded joints were investigated.
Abstract This research was carried out to predict the mechanical properties of friction stir welded pure copper joints. Response surface methodology based on a central composite rotatable design with three parameters, five levels, and 20 runs, was used to conduct the experiments and to develop the mathematical regression model by using of Design-Expert software. The three welding parameters considered were rotational speed, welding speed, and axial force. Analysis of variance was applied to validate the predicted models. Microstructural characterization and fractography of joints were examined using optical and scanning electron microscopes. Also, the effects of the welding parameters on mechanical properties of friction stir welded joints were analyzed in detail. The results showed that the developed models were reasonably accurate. The increase in welding parameters resulted in increasing of tensile strength of the joints up to a maximum value. Elongation percent of the joints increased with increase of rotational speed and axial force, but decreased by increasing of welding speed, continuously. In addition, hardness of the joints decreased with increase of rotational speed and axial force, but increased by increasing of welding speed. The joints welded at higher heat input conditions revealed more ductility fracture mode.
Prediction of mechanical properties in friction stir welds of pure copper
Heidarzadeh, A. (author) / Saeid, T. (author)
2013-06-27
11 pages
Article (Journal)
Electronic Resource
English
Prediction of mechanical properties in friction stir welds of pure copper
British Library Online Contents | 2013
|Prediction of mechanical properties in friction stir welds of pure copper
British Library Online Contents | 2013
|Prediction of mechanical properties in friction stir welds of pure copper
British Library Online Contents | 2013
|Prediction of mechanical properties in friction stir welds of pure copper
British Library Online Contents | 2013
|