Structural Analysis of Thermal Diffusion and Non-Uniform Temperature Distribution along the Sidewall Thickness of STS316L during Gas Tungsten Arc Butt Welding

Author:

Na Taehyung1ORCID,Jeong Gwang-Ho2,Kim Kiyoung1,Kim Yongdeog1,Bae Junsung2,Kim Seonmin2,Ahn Sang-Hyun2,Bae Seung-Hoon2,Kim Sang-Kyo2,Cho Dae-Won2

Affiliation:

1. Central Research Institute, Korea Hydro & Nuclear Power, Daejeon 34101, Republic of Korea

2. Department of Nuclear Equipment Qualification and Safety, Korea Institute of Machinery and Materials, Busan 46744, Republic of Korea

Abstract

This study investigated how welding affects the thermal deformation of square cells produced for casks, which are dry storage containers for spent nuclear fuel. We aimed to minimize structural deformation by utilizing STS316L as the material for the square cells. We explored a method of subdividing the square cells and joining them through butt welding. Keeping the upper plate thickness constant, GTA butt welding was conducted while varying the column’s wall thickness, followed by measurement with a laser vision sensor. The heat conduction and thermal strain were then calculated using a finite element analysis (FEM). Both experimental and analytical results confirmed that there was significant thermal deformation in the cases of thick-walled columns due to variations in heat conduction distribution, with the resulting deformation patterns depending on thickness.

Publisher

MDPI AG

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