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A corotational flat triangular element for large strain analysis of thin shells with application to soft biological tissues

机译:一种适用于薄壳大应变分析的平面形三角形单元,适用于软组织

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摘要

A flat triangular element for the nonlinear analysis of thin shells is presented. The formulation relies on (i) a polar decomposition based corotational framework and (ii) a core-element kinematic description adopting the multiplicative superposition of membrane and bending actions. The resulting element is a refined yet simple three-node displacement-based triangle accounting for thickness extensibility and initial shell curvature, and equipped with a fully consistent tangent stiffness. Numerical tests involving shell structures made of rubber-like materials or fibred biological tissues showthe effectiveness of the proposed element and its suitability to problems characterized by large displacements, large rotations, large membrane strains and bending. AMatlab toolkit implementing the present formulation is provided as supplementary material.
机译:提出了用于薄壳非线性分析的平面三角形单元。该公式依赖于(i)基于极性分解的坐标系和(ii)采用膜和弯曲作用的乘积叠加的核心单元运动学描述。生成的元素是精简而简单的基于三节点位移的三角形,考虑了厚度可扩展性和初始壳体曲率,并配备了完全一致的切线刚度。涉及由橡胶样材料或纤维生物组织制成的壳结构的数值测试表明,该元件的有效性及其对位移大,旋转大,膜应变大和弯曲等问题的适用性。实现本配方的AMatlab工具包作为补充材料提供。

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