首页> 外文期刊>Finite Elements in Analysis and Design >Exact finite element model for shear-deformable two-layer beams with discrete shear connection
【24h】

Exact finite element model for shear-deformable two-layer beams with discrete shear connection

机译:具有离散剪切连接的可剪切变形两层梁的精确有限元模型

获取原文
获取原文并翻译 | 示例
       

摘要

This paper presents an exact finite element model for the linear static analysis of shear-deformable two-layer beams with interlayer slip. The layers are connected in a discontinuous way and therefore the shear connection is modeled using concentrated spring elements at each connector location. The Timoshenko beam theory is adopted for each layer in order to take into account the transverse shear deformations. It is assumed that no uplift can occur. Both layers have, thus, the same transversal deflection but different rotations and curvatures. The effect of friction at the interface has been accounted for by assuming that the friction force is proportional to the normal force at the interface. Based on the above key assumptions, the governing equations of the problem are established and an original closed-form solution is derived. From the analytical expressions for the displacement and force fields, the exact stiffness matrix for a generic two-layer beam element is deduced, which can be incorporated in any displacement-based F.E. code for the linear static analysis of two-layer beams with interlayer slip and arbitrary loading and support conditions. Finally, a parametric study, dealing with a two-span layered composite beam subjected to the uniformly distributed load, is carried out to study the effects of varying material and geometric parameters, such as connector spacing, interlayer friction coefficient, the connector stiffness, flexural-to-shear moduli ratios and span-to-depth ratios. The results indicated that the deflection is a quasi-linear function of the flexural-to-shear ratio (E/G) and the shear deformation begins to affect significantly the deflection when the length-to-depth ratio (L/H) is below 8. Further, the effect of the interlayer friction on the deflection becomes significant if the connector is rigid. Furthermore, the shear deformation effect on the cross-section rotation is more pronounced in the layer with low flexural stiffness.
机译:本文提出了一个精确的有限元模型,用于可剪切变形的具有层间滑移的两层梁的线性静力分析。这些层以不连续的方式连接,因此,在每个连接器位置使用集中弹簧元件对剪切连接进行建模。为了考虑横向剪切变形,每一层都采用了季莫申科梁理论。假定不会发生隆起。因此,两层都具有相同的横向偏斜,但具有不同的旋转和曲率。通过假定摩擦力与界面处的法向力成正比,可以解决界面处的摩擦效果。基于以上关键假设,建立了问题的控制方程,并得出了原始的封闭形式解。从位移和力场的解析表达式中,得出了通用的两层梁单元的精确刚度矩阵,可以将其结合到任何基于位移的有限元代码中,以对具有层间滑移的两层梁进行线性静态分析以及任意的装载和支撑条件。最后,进行了参数研究,研究了承受均布载荷的两跨层状复合梁,以研究各种材料和几何参数的影响,例如连接器间距,层间摩擦系数,连接器刚度,挠曲性剪切模量比和跨度深度比。结果表明,挠度是弯剪比(E / G)的拟线性函数,当长深比(L / H)低于此值时,剪切变形开始显着影响挠度。 8.此外,如果连接器是刚性的,则层间摩擦对挠曲的影响变得显着。此外,在具有低抗弯刚度的层中,剪切变形对横截面旋转的影响更加明显。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号