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contributor authorD. Kumaresan
contributor authorA. K. Asraff
contributor authorR. Muthukumar
date accessioned2017-05-09T00:46:36Z
date available2017-05-09T00:46:36Z
date copyrightAugust, 2011
date issued2011
identifier issn0094-9930
identifier otherJPVTAS-28548#041206_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/147448
description abstractIt is a well known fact that during welding, the metal at the welding zone gets melted and then solidifies, which results in shrinkage in all directions. Residual strain and stress distributions coming from shrinking are largely influenced by the nature and configuration of the welding process, metallurgical characteristics of weld, and the geometrical shape of the weld joint. The residual stress mainly depends on the thermal history cycle through which the specimen undergoes in the welding process. So these thermal history cycles are to be known in order to get a better knowledge of the welding phenomenon and to minimize the risk of failures. In this work, a detailed analysis has been carried out for predicting the heat flow pattern and stress distribution in an aluminum alloy plate during welding. In this study, the modified double ellipsoidal heat source distribution pattern is modeled and considered for the weld pool design. Elastic-plastic material properties at various temperatures are also considered for simulation. A detailed finite element analysis is carried out to predict the welding residual stress. In this, thermal analysis is carried out for actual variable welding speed and these transient thermal histories at various locations were numerically predicted and compared with experimental results. Further, these thermal results are used to predict the residual stress on the weld plate using finite element method.
publisherThe American Society of Mechanical Engineers (ASME)
titleNumerical Investigation on Heat Transfer and Residual Stress in a Butt Welded Plate
typeJournal Paper
journal volume133
journal issue4
journal titleJournal of Pressure Vessel Technology
identifier doi10.1115/1.4002859
journal fristpage41206
identifier eissn1528-8978
keywordsHeat
keywordsTemperature
keywordsWelding
keywordsStress
keywordsHeat transfer
keywordsSimulation AND Thermal analysis
treeJournal of Pressure Vessel Technology:;2011:;volume( 133 ):;issue: 004
contenttypeFulltext


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