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http://dx.doi.org/10.3744/SNAK.2002.39.1.082

Determination of Inherent Strain Regions to Estimate Plate Deformation by Line Heating  

Chang-Doo Jang (서울대학교 조선해양공학과)
Yun-Sok Yun (서울대학교 조선해양공학과)
Dae-Eun Ko (서울대학교 조선해양공학과)
Sung-Choon Moon (서울대학교 조선해양공학과)
Publication Information
Journal of the Society of Naval Architects of Korea / v.39, no.1, 2002 , pp. 82-89 More about this Journal
Abstract
The inherent strain method is known to be very effective in predicting the plate deformation by line heating. Traditionally the inherent strain regions have been determined from the temperature distribution and the phase transformation regions(Ac3) of welding experiments. Since the phenomena of line heating are similar to those of welding, the experimental results under the same welding conditions have been applied directly to line heating analysis. The results cannot, however, reflect the effect of heating pattern and plate thickness. Besides, water-cooling in the actual heating process can alter the steel's phase to martensite and shear plastic deformation occurs during the transformation. In this study, the experimental measurement of temperature distribution was substituted with a transient heat transfer analysis using FEM so that we could obtain the temperature distribution according to heat flux models of the heating pass. In order to consider plastic strains occurring additionally under phase transformation, inherent strain regions were assumed to be limited to the eutectoid temperature(Ac1). Using the regions, plate deformations could be predicted to validate our method and the results were in good agreement with the experimental ones
Keywords
line-heating; inherent strain; water-cooling; phase transformation; thermal elasto-plastic analysis;
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