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Dynamic Analysis of Three-Dimensional Composite Beam Elements Including Warping and Shear Deformation Effects

机译:包括翘曲和剪切变形效应的三维复合梁元件动态分析

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In this paper the dynamic analysis of 3-D composite beam elements restrained at their edges by the most general linear torsional, transverse or longitudinal boundary conditions and subjected in arbitrarily distributed dynamic twisting, bending, transverse or longitudinal loading is presented. For the solution of the problem at hand, a boundary element method is developed for the construction of the 14×14 stiffness matrix and the nodal load vector, of a member of an arbitrarily composite cross section, taking into account both warping and shear deformation effects, which together with the corresponding mass and damping matrices lead to the formulation of the equation of motion. The composite member consists of materials in contact each of which can surround a finite number of inclusions. To account for shear deformations, the concept of shear deformation coefficients is used, defining these factors using a strain energy approach. Eight boundary value problems with respect to the variable along the bar angle of twist, to the primary warping function, to a fictitious function, to the beam transverse and longitudinal displacements and to two stress functions are formulated and solved employing a pure BEM approach that is only boundary discretization is used. Both free and forced transverse, longitudinal or torsional vibrations are considered, taking also into account effects of transverse, longitudinal, rotatory, torsional and warping inertia and damping resistance. Numerical examples are presented to illustrate the method and demonstrate its efficiency and accuracy. The influence of the warping effect especially in composite members of open form cross section is analyzed through examples demonstrating the importance of the inclusion of the warping degrees of freedom in the dynamic analysis of a space frame. Moreover, the discrepancy in the dynamic analysis of a member of a spatial structure arising from the ignorance of the shear deformation effect necessitates the inclusion of this additional effect, especially in thick walled cross section members.
机译:本文通过最通用的线性扭转,横向或纵向边界条件抑制其边缘的3-D复合梁元件的动态分析,并进行任意分布的动态扭曲,弯曲,横向或纵向负载。为了解决问题的解决方案,开发了一个边界元件,用于构建任意复合横截面成员的14×14刚度矩阵和节点载荷载体,考虑到翘曲和剪切变形效果与相应的质量和阻尼矩阵一起导致运动方程的配方。复合构件由接触的材料组成,每个材料可以围绕有限数量的夹杂物。为了考虑剪切变形,使用剪切变形系数的概念,使用应变能量方法定义这些因素。沿着沿扭曲的条形扭曲角度的八个边界值问题,以将初级翘曲功能,以虚拟功能和纵向函数和两个应力函数制定并解决采用纯BEM方法仅使用边界离散化。考虑自由和强制横向,纵向或扭转振动,也考虑横向,纵向,旋转,扭转和翘曲惯性和阻尼抗性的效果。提出了数值示例以说明该方法并展示其效率和准确性。通过示例分析了翘曲效果的影响,特别是在开放形式横截面的复合构件中,示出了在空间框架的动态分析中包含翘曲自由度的重要性。此外,由剪切变形效果的无知引起的空间结构成员动态分析中的差异需要包括这种额外的效果,特别是在厚壁横截面构件中。

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