Finite Element Cold Bending Residual Stress Evaluation on Submarine Pressure Hull Instability Assessment

Author:

Rogério Franquetto Paulo1,Mattar Neto Miguel2

Affiliation:

1. Navy Technology Center in São Paulo, Avenida Professor Lineu Prestes, 2468, São Paulo, SP, 05508-000, Brazil e-mail:

2. Energetic and Nuclear Research Institute, Avenida Professor Lineu Prestes, 2242, São Paulo, SP, 05508-000, Brazil e-mail:

Abstract

During the pressure hull manufacturing, processes like cold bending and welding are often applied. These processes lead to permanent plastic deformations which are associated with residual stresses. The presence of residual stresses is equivalent to the introduction of an initial preload in the structure, which accelerates the plastification process, decreasing pressure hull resistance. To quantify this reduction, a case study that considers residual stresses due to cold bending on hull plates and frame flanges had been performed using finite element models. The study encompasses hull diameters of 6, 8, and 10 m with hull plates and frame flange thickness from 20 to 30 mm, with HY100 steel. Finite element numerical analyses were done considering material and geometric nonlinearities. First, the cold bending residual stresses were determined using finite element models. Then, these cold bending residual stresses were introduced as initial stresses in the submarine pressure hulls' finite element models. In the end, it was possible to verify that the presence of cold bending residual stress reduces the submarine hull collapse pressure up to 4.3%.

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

Reference18 articles.

1. Banks, E., and Kugles, G., 1986, “Modular Construction of Submarines Using Mechanized Welding,” 34th National Welding Conference and Exhibition, Vol. 31, pp. 153–172.

2. An Experimental Investigation of the Shell-Instability Strength of a Machined, Ring-Stiffened Cylindrical Shell Under Hydrostatic Pressure (Model BR-4A),1957

3. Effect of the Initial Deflection and Residual Welding Stresses on Elastic Behavior and Collapse Pressure of Stiffened Cylinders Subjected to External Hydrostatic Pressure,1960

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1. Experimental Residual Stress and Geometric Imperfections on Pressure Hull Instability Analysis;Journal of Offshore Mechanics and Arctic Engineering;2018-01-02

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