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Two-noded zigzag beam element accounting for shear effects based on an extended Euler Bernoulli theory

机译:基于扩展欧拉·伯努利理论的考虑剪切效应的两节点之字形梁单元

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We present a new 2-noded beam element based on the refined zigzag theory and the classical Euler-Bernoulli beam theory for the static analysis of composite laminate and sandwich beams. The proposed element is able to take into account distortion effects clue to shear elastic strains and can predict delamination. The element has four degrees of freedom per node. A C-1 cubic Hermite interpolation is used for the vertical deflection while a C-0 linear interpolation is employed for the other kinematics variables. The stiffness matrix and the load vector are calculated in explicit form using exact integration. The element is free from shear locking as confirmed with numerical tests on a wide range of the slenderness ratios. Numerical results show the ability of the EEBZ2 element to reproduce accurately the vertical deflection along the beam length and complex zigzag distributions of the axial-displacement and-the stresses-across the thickness. Delamination effects are modeled by incorporating of an additional zigzag function corresponding to the kinematics of a zero thickness layer where delamination occurs. An example showing the capability of the new EEBZ2 element for accurately reproducing delamination effects is presented. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们提出了一种基于精巧之字形理论和经典Euler-Bernoulli梁理论的新型2节点梁单元,用于复合材料层合板和夹层梁的静力分析。所提出的元件能够考虑到剪切弹性应变的畸变影响,并且可以预测分层。该元素每个节点有四个自由度。 C-1三次Hermite插值用于垂直偏转,而C-0线性插值用于其他运动学变量。刚度矩阵和载荷向量使用精确积分以显式形式计算。该元件不受剪切锁定的影响,这一点已通过在各种细长比范围内进行的数值测试得到证实。数值结果表明,EEBZ2元件能够准确地再现沿梁长度的垂直挠度以及轴向位移和应力沿厚度方向的复杂之字形分布。通过合并与发生分层的零厚度层的运动学相对应的附加之字形函数,可以对分层效果进行建模。给出了一个示例,展示了新型EEBZ2元件精确再现分层效果的功能。 (C)2015 Elsevier Ltd.保留所有权利。

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