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A hybrid beam-column element for direct second-order nonlinear analysis of PFRP frame structures

机译:用于PFRP框架结构的直接二阶非线性分析的混合梁柱元件

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摘要

In order to achieve accurate structural calculation of pultruded fiber reinforced polymer (PFRP) space frame structures by "a single element per member", an imperfect nonlinear beam-column element considering the hybrid effects of component stiffness is proposed. Based on the unique characteristics of PFRP profiles, the equilibrium differential equations considering transverse shear effect and initial deflection were established. Afterwards, the stability functions, bending functions, force versus deformation equations and element tangent stiffness matrix were further derived. With the consideration of common connection system for PFRP profiles, the effect of joint stiffness, rigid arm and reinforcement segment were incorporated into the element formula without increasing the external degrees of freedom: The effect of joint stiffness is considered by the static condensation procedure; The rigid arm effect is considered based on the relationship between end points of the rigid vector; The effect of reinforcement segment is considered based on the idea of equivalence. Besides, a novel 3D co-rotational procedure allowing for large load step was proposed to update the local-global transformation matrix. The finally obtained hybrid beam-column element was used for calculation of several PFRP structure verification cases, which showed the advantages of easy structural modelling, good accuracy and high computational efficiency.
机译:为了通过“每个构件的单个元件”来实现针刺纤维增强聚合物(PFRP)空间框架结构的精确结构计算,提出了考虑组分刚度的混合效应的不完美非线性梁柱元素。基于PFRP型材的独特特性,建立了考虑横向剪切效果和初始偏转的平衡微分方程。然后,进一步推导出稳定性函数,弯曲功能,力与变形方程和元件切线刚度矩阵。考虑到PFRP型材的共同连接系统,将关节刚度,刚性臂和加强段的效果掺入元件公式中而不增加外部自由度:通过静电冷凝手术考虑关节刚度的效果;基于刚性载体的端点之间的关系,考虑刚性臂效果;基于等价的想法,考虑了钢筋段的效果。此外,提出了一种允许大负载步骤的新型3D共旋转过程来更新本地 - 全局转换矩阵。最终获得的混合梁柱元件用于计算几种PFRP结构验证情况,这表明了结构建模,精度良好和高计算效率的优点。

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