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

机译:海底压力船体失稳评估的有限元冷弯残余应力评估

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摘要

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 nonli-nearities. 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%.
机译:在耐压船体制造过程中,经常采用冷弯和焊接等工艺。这些过程导致永久的塑性变形,与残余应力有关。残余应力的存在等同于在结构中引入初始预紧力,从而加速了塑化过程,降低了耐压壳性。为了量化这种减少,已经使用有限元模型进行了一个案例研究,该案例考虑了由于船体板和车架法兰上的冷弯而产生的残余应力。这项研究包括使用HY100钢制成的船体直径为6、8和10 m的船体板和框架法兰厚度为20到30 mm。考虑材料和几何非线性,进行了有限元数值分析。首先,使用有限元模型确定冷弯残余应力。然后,将这些冷弯残余应力作为初始应力引入海底耐压船体的有限元模型中。最后,有可能验证冷弯残余应力的存在将潜艇船体的坍塌压力降低至4.3%。

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