Paper
30 August 2022 Study on welding residual stress redistribution of AH36 marine high strength steel considering the crack propagation
JunCheng Liu, GuangEn Luo, Shuai Zhang, ShuHong Jing
Author Affiliations +
Proceedings Volume 12309, International Conference on Advanced Manufacturing Technology and Manufacturing Systems (ICAMTMS 2022); 123091M (2022) https://doi.org/10.1117/12.2645612
Event: International Conference on Advanced Manufacturing Technology and Manufacturing System (ICAMTMS 2022), 2022, Shijiazhuang, China
Abstract
Fatigue fracture is the main failure mode of ship structures. The redistribution of welding residual stresses during crack propagation has a great influence on fatigue life. In this paper, the welding residual stress redistribution law of AH36 marine high strength steel under crack propagation condition is studied. The initial welding residual stress is calculated by the finite element method. The life-death element method is used to study the redistribution of welding residual stress under the given crack size, and the results are compared with the calculation results of the welding residual stress redistribution formula proposed by Terada to verify the feasibility of the finite element method. On this basis, the redistribution of welding residual stresses in the crack propagation along the weld direction was studied, and the influence of crack propagation with different shapes on the redistribution of welding residual stresses was further studied and the redistribution of transverse welding residual stresses during crack propagation was obtained. The calculation method can lay the foundation for the prediction of structural fatigue crack propagation considering the welding residual stress redistribution in subsequent studies.
© (2022) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
JunCheng Liu, GuangEn Luo, Shuai Zhang, and ShuHong Jing "Study on welding residual stress redistribution of AH36 marine high strength steel considering the crack propagation", Proc. SPIE 12309, International Conference on Advanced Manufacturing Technology and Manufacturing Systems (ICAMTMS 2022), 123091M (30 August 2022); https://doi.org/10.1117/12.2645612
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KEYWORDS
Numerical simulations

Finite element methods

Oceanography

Data modeling

Lithium

3D modeling

Aluminum

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