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A unified formulation of small-strain corotational finite elements: I. Theory

机译:小应变电晕有限元的统一表述:I.理论

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This paper presents a unified theoretical framework for the corotational (CR) formulation of finite element s in geometrically nonlinear structural analysis. The key assumptions behind CR are: (ⅰ) strains from a corotated configuration are small while (ⅱ) the magnitude of rotations from a base configuration is not restricted. Following a historical outline the basic steps of the element independent CR formulation are presented. The element internal force and consistent tangent stiffness matrix are derived by taking variations of the internal energy with respect to nodal freedoms. It is shown that this framework permits the derivation of a set of CR variants through selective simplifications This set includes some previously used by other investigators. The different variants are compared with respect to a set of desirable qualities, including self-equilibrium in the deformed configuration, tangent stiffness consistency, invariance, sym-metrizability, and element independence. We discuss the main benefits of the CR formulation as well as its modeling limitations.
机译:本文为几何非线性结构分析中的有限元的比例(CR)表示提供了统一的理论框架。 CR背后的关键假设是:(ⅰ)同构构形的应变很小,而(ⅱ)基本构形的旋转幅度不受限制。根据历史概述,介绍了独立于元素的CR公式化的基本步骤。单元内力和一致的切线刚度矩阵是通过考虑内部能量相对于节点自由度的变化而得出的。结果表明,该框架允许通过选择性简化来推导一组CR变异体。该组变异体包括一些其他研究人员先前使用的变异体。相对于一组期望的质量比较了不同的变体,这些期望的质量包括变形构型中的自平衡,切线刚度一致性,不变性,对称性和元素独立性。我们讨论了CR公式的主要优点及其建模局限性。

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