Progressive inelastic deformation of a girth-welded stainless steel pipe under internal pressure and cyclic bending

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초록

This study aims to characterize numerically the ratcheting behavior of a girth-welded straight stainless steel pipe in combined action of internal pressure and cyclic bending loading. Finite element (FE) thermal simulation of the girth butt welding process is first performed to identify weld-induced residual stresses. Three-dimensional (3-D) elastic-plastic FE analyses incorporated with the cyclic plasticity constitutive model capable of describing the cyclic plastic performance are next conducted to scrutinize the local (circumferential strain) and global (cross-section diameter change) ratcheting responses of the girth-welded stainless steel pipe under internal pressure and cyclic bending, which take the residual stresses and plastic strains obtained from the preceding thermal simulation as the initial condition. The analytical results demonstrate that welding residual stresses in combination with the internal pressure have significant effects on the hoop strain rate and the in plane and out-of-plane diameter changes, and the degree and shape of the ovalization which occurs during the multiaxial ratcheting are dependent on the applied loads.

키워드

Pressurized girth-welded stainless steel pipe; Weld-induced residual stresses; Cyclic bending; Ratcheting; Cyclic plasticity constitutive model; Finite element analysis; KINEMATIC HARDENING RULES; FINITE-ELEMENT-ANALYSIS; MEAN STRESS-RELAXATION; RESIDUAL-STRESS; RATCHETING SIMULATION; CONSTITUTIVE THEORIES; MULTIAXIAL BEHAVIOR; SOFTENING MATERIALS; UNIAXIAL BEHAVIOR; HOLLOW SECTIONS
제목
Progressive inelastic deformation of a girth-welded stainless steel pipe under internal pressure and cyclic bending
저자
Bae, Wan-Gon; Chang, Kyong-Ho; Lee, Chin-Hyung
DOI
10.1016/j.oceaneng.2016.10.027
발행일
2016-12
유형
Article
저널명
Ocean Engineering
권
128
페이지
81 ~ 93