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A new axi-symmetric element for thin walled structures

机译:一种用于薄壁结构的新型轴对称元件

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A new axi-symmetric finite element for thin walled structures is presented in this work. It uses the solid-shell element’s concept with only a single element and multiple integration points along the thickness direction. The cross-section of the element is composed of four nodes with two degrees of freedom each. The proposed formulation overcomes many locking pathologies including transverse shear locking, Poisson’s locking and volumetric locking. For transverse shear locking, the formulation uses the selective reduced integration technique, for Poisson’s locking it uses the enhanced assumed strain (EAS) method with only one enhancing variable. The B-bar approach is used to eliminate the isochoric deformations in the hourglass field while the EAS method is used to alleviate the volumetric locking in the constant part of the deformation tensor. Several examples are shown to demonstrate the performance and accuracy of the proposed element with special focus on the numerical simulations for the beverage can industry. Keywords Axi-symmetric element - Reduced integration - EAS method - Solid-shell concept
机译:这项工作提出了一种新的薄壁结构轴对称有限元。它使用了实体元素的概念,即只有一个元素并且沿厚度方向具有多个积分点。单元的横截面由四个节点组成,每个节点具有两个自由度。拟议的方案克服了许多锁定问题,包括横向剪切锁定,泊松锁定和体积锁定。对于横向剪力锁,该配方采用选择性减少积分技术,对于泊松锁,该配方使用仅具有一个增强变量的增强假定应变(EAS)方法。 B-bar方法用于消除沙漏场中的等速变形,而EAS方法则用于缓解变形张量恒定部分中的体积锁定。展示了几个示例,以证明所提出元素的性能和准确性,并特别关注饮料罐行业的数值模拟。关键词轴对称单元-简化积分-EAS方法-固体概念

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