Treatment of Bending Deformations in Maritime Crash Analyses

M. Kõrgesaar, Martin Storheim
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引用次数: 3

Abstract

This paper focuses on the bending deformation experienced by metallic materials and its characterization during the crash analysis of ship structures. These analyses are conducted with plane stress shell elements for computational reasons. The inherent nature of through thickness plane stress poses restrictions on how the bending associated stress and strain distribution are resolved. Namely, fracture criteria used in crash analysis account bending damage accumulation differently. Most criteria do not specifically address the issue as element erosion is activated once all through thickness integration points have reached the predefined failure condition. However, when elements are bent, material layers (top and bottom) display strong variations in mechanical field variables that are commonly used to control element deletion. Therefore, the focus of current analyses is to show how different fracture criteria account bending deformation and how sensitive are the results depending on the chosen element size.
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海上碰撞分析中弯曲变形的处理
本文主要研究船舶结构碰撞分析中金属材料的弯曲变形及其表征。由于计算原因,这些分析都是用平面应力壳单元进行的。通过厚度平面应力的固有性质对如何解决弯曲相关应力和应变分布提出了限制。也就是说,在碰撞分析中使用的断裂准则不同地考虑了弯曲损伤累积。大多数标准没有明确地解决这个问题,因为一旦所有的厚度集成点达到预定的破坏条件,元件侵蚀就会被激活。然而,当元件弯曲时,材料层(顶部和底部)在通常用于控制元件删除的力学场变量中显示出强烈的变化。因此,当前分析的重点是显示不同的断裂准则如何考虑弯曲变形,以及所选择的单元尺寸对结果的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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