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Evaluation of Cryogenic Fracture Performance of Insulation Panel in LNG Carrier using Computational Method

机译:计算法评价LNG船保温板的低温断裂性能。

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This article proposes a methodology to evaluate the fracture performance using finite element analysis based on viscoplastic-damage model. The model is implemented to the commercial FEA code ABAQUS user defined subroutine UMAT. For validation, the primary barrier of the Liquefied Natural Gas carrier insulation system which comprises austenitic stainless steel 304L is assessed the fracture performance by experiment and simulation. Fracture test is carried out with respect to the double-edge-cracked tension (DECT) and the center-cracked tension (CCT) specimens at ambient temperature and cryogenic. Obtained simulation results are compared with experimental results and comparison results show overall good agreements. Advantages in the use of the proposed method for assessment of practical structural fracture performance are discussed.
机译:本文提出了一种基于粘塑性损伤模型的有限元分析方法来评价断裂性能。该模型已实现为商业FEA代码ABAQUS用户定义的子例程UMAT。为了进行验证,通过实验和模拟评估了包括奥氏体不锈钢304L的液化天然气载体绝缘系统的主要屏障。在环境温度和低温下,对双边缘裂纹张力(DECT)和中心裂纹张力(CCT)样品进行了断裂测试。将获得的仿真结果与实验结果进行比较,并且比较结果表明总体良好的一致性。讨论了使用所提出的方法评估实际结构断裂性能的优势。

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