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Multiple-point constraint applications for the finite element analysis of shear deformable composite beams - Variational multiscale approach to enforce full composite action

机译:多点约束在可变形组合梁有限元分析中的应用-强制采用完全复合作用的变分多尺度方法

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摘要

Composite beams that consist of two or more shear deformable layers find widespread applications in a variety of engineering structures. In the computational modelling of composite beams, the layers can be stacked together and connected conveniently at the nodes by using multiple-point constraints. However, this type of modelling does not inherit the kinematic behaviour of the continuous case and thus full-interaction between the layers cannot be always imposed by applying multiple-point constraints at the nodes. The work herein shows that in multiple-point constraint applications full composite action between the shear deformable layers can be recovered by using the variational multiscale approach. The originality of this study is in the interpretation of the multiple-point constraint application as the solution in a superfluously extended space because of the weakening in the kinematic constraints. It is shown that full composite action between the beam layers can be recovered by excluding the identified fine-scale effect from the solution of the multiple point constraint application. Selected examples illustrate the effects of loading and relative layer stiffness on the numerical error as well as modelling options for fully composite and delaminated beams.
机译:由两个或多个剪切可变形层组成的复合梁在各种工程结构中得到了广泛的应用。在复合梁的计算建模中,可以使用多点约束将各层堆叠在一起并在节点处方便地连接。但是,这种类型的建模不会继承连续情况的运动学行为,因此,不能始终通过在节点上应用多点约束来强加图层之间的完全交互作用。本文的工作表明,在多点约束应用中,可剪切变形层之间的完全复合作用可以通过使用变分多尺度方法来恢复。这项研究的独创性在于将多点约束应用解释为多余的扩展空间中的解,因为运动约束受到了削弱。结果表明,通过从多点约束应用的解决方案中排除已识别的精细尺度效应,可以恢复梁层之间的完全复合作用。所选示例说明了载荷和相对层刚度对数值误差的影响,以及完全组合和分层梁的建模选项。

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