Please use this identifier to cite or link to this item: http://10.1.7.192:80/jspui/handle/123456789/5481
Title: Prediction of Temperature at Weldline in Air and Immersed Friction Stir Welding and Its Experimental Validation
Authors: Ghetiya, N. D.
Patel, K. M
Patel, Anup
Keywords: Aluminiumalloy
Immersed Friction Stir Welding
Temperature Distribution
Thermal Modelling
Mechanical Faculty Paper
Faculty Paper
ITFME020
ITFME009
Issue Date: 28-Feb-2015
Publisher: Springer
Series/Report no.: ITFME020-17;
Abstract: In immersed friction stir welding (FSW), the workpiece is completely immersed in the water environment during welding. The thermal modelling of immersed FSW is carried out using a three-dimensional heat transfer model. Friction stir welding experiments on aluminium AA8011 are carried out to find the temperature distributions in a workpiece in air and immersed state. K-type thermocouples are used to measure the temperature histories at different locations on the workpiece during FSW. A regression analysis is used to forecast the temperatures at the weldline experimentally. The temperature distribution at the weldline is also calculated using numerical simulation. The temperature distribution obtained using this experiment is in good agreement with the temperature distribution obtained using numerical simulation. The result indicates that peak temperature distribution area is significantly narrow, and thermal history showed that temperature rise and fall after FSW is sharp due to higher cooling rate in the presence of water. A comparison is also made between the temperature obtained in air and immersed FSW. It is also observed that the joint tensile strength of immersed FSW is higher than that of air FSW welded joint.
Description: International Journal Advances in Manufacturing Technology, February 28, 2015
URI: http://hdl.handle.net/123456789/5481
Appears in Collections:Faculty Paper, ME

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