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Analytical solution of two-layer beam taking into account interlayer slip and shear deformation

机译:考虑层间滑移和剪切变形的两层梁的解析解

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摘要

A mathematical model is proposed and its analytical solution derived for the analysis of the geometrically and materially linear two-layer beams with different material and geometric characteristics of an individual layer. The model takes into account the effect of the transverse shear deformation on displacements in each layer. The analytical study is carried out to evaluate the influence of the transverse shear deformation on the static and kinematic quantities. We study a simply supported two-layer planar beam subjected to the uniformly distributed load. Parametric studies have been performed to investigate the influence of shear by varying material and geometric parameters, such as interlayer slip modulus (K), flexural-to-shear moduli ratios (E/G) and span-to-depth ratios (L/h). The comparison of the results for vertical deflections shows that shear deformations are more important for high slip modulus, for ``short\u27\u27 beams with small L/h ratios, and beams with high E/G ratios. In these cases, the effect of the shear deformations becomes significant and has to be addressed in design. It also becomes apparent that models, which consider the partial interaction between the layers, should be employed if beams have very flexible connections.
机译:提出了一个数学模型,并导出了其分析解决方案,用于分析具有不同材料和几何特性的单个层的几何和材料线性两层梁。该模型考虑了横向剪切变形对每一层位移的影响。进行了分析研究,以评估横向剪切变形对静态和运动量的影响。我们研究了承受均布载荷的简单支撑两层平面梁。已经进行了参数研究,以通过改变材料和几何参数来研究剪切的影响,例如层间滑移模量(K),挠曲-剪切模量比(E / G)和跨度-深度比(L / h) )。垂直挠度结果的比较表明,剪切变形对于高滑模量更重要,对于``L / h比率较小的短梁和E / G比率较高的梁而言''。在这些情况下,剪切变形的影响变得明显,必须在设计中解决。同样明显的是,如果梁具有非常灵活的连接,则应采用考虑层之间的部分相互作用的模型。

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