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Adaptive isogeometric analysis in structural frames using a layer-based discretization to model spread of plasticity

机译:使用基于层的离散化对可塑性分布进行建模的结构框架中的自适应等几何分析

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A distributed plasticity isogeometric frame model utilizing a layer-based discretization is formulated to capture the plasticity growth in large-deformation frames. In our formulation, B-spline basis functions are employed to define the deformation along the length, while a layer-based through-the-thickness discretization is adopted to capture the gradual plastification of the section. This separation of the thickness integration from the length direction enables the full 2D yielding development to be captured while maintaining a 1D data structure. The member-level geometrically nonlinear effects are also included. By introducing a continuity constraint in between two patches, rigid connection between two members is achieved in a multi-patch analysis setting. The formulation includes an adaptive analysis in which knots are inserted based on yield locations. In comparison to conventional layer-based finite elements, fewer degrees of freedom are needed to achieve the same level of accuracy due to the high-order smoothness of B-splines. Compared to existing isogeometric beam elements, the appealing feature is its capability of adaptively capturing the 2D spread of plasticity while maintaining a 1D data structure. The performance of the proposed model is assessed through several numerical examples involving gradual yielding of beams and frames under small and large deformations. (C) 2017 Elsevier Ltd. All rights reserved.
机译:制定了基于层离散的分布式可塑性等几何框架模型,以捕获大变形框架中的可塑性增长。在我们的公式中,使用B样条基函数定义沿长度的变形,同时采用基于层的厚度离散化来捕获截面的逐渐塑化。厚度积分与长度方向的这种分离使得可以在保持一维数据结构的同时捕获完整的二维屈服展开图。成员级的几何非线性效应也包括在内。通过在两个补丁之间引入连续性约束,可以在多补丁分析设置中实现两个成员之间的刚性连接。该公式包括自适应分析,其中根据屈服位置插入节点。与常规的基于图层的有限元相比,由于B样条曲线的高阶平滑度,需要更少的自由度才能达到相同的精度水平。与现有的等几何梁单元相比,吸引人的特征是它能够在保持一维数据结构的同时,自适应地捕获2D塑性分布。通过几个数值示例评估了所提出模型的性能,这些示例涉及在小变形和大变形下梁和框架的逐渐屈服。 (C)2017 Elsevier Ltd.保留所有权利。

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