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Development of Orthotropic Beam Element Using a Consistent Higher Order Deformation Theory

机译:使用一致高阶变形理论的正交梁元件的研制

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摘要

In order to analyze beam structures more accurately and effectively, a two-node Orthotropic beam element is proposed. This beam element is formulated using a consistent higher order deformation theory of Orthotropic beams of which the transverse normal deformation can be effectively estimated. The stiffness matrix and the vector of equivalent nodal forces of the beam element are derived explicitly by the Galerkin method. In order to examine the reliability and the characteristics of the beam element, the analytical and the finite element solutions of a simple cantilevered beam are compared with each other. As a result, the following conclusions are obtained; (1) the accuracy of the suggested Orthotropic beam element is very excellent and so the transverse normal deformation and shear stress of an Orthotropic beam can be effectively estimated. (2) It can be used for accurately analyzing the general beam structures regardless of the Euler's or the Timoshenko's beam.
机译:为了更准确且有效地分析光束结构,提出了一种双节点正交光束元件。该光束元件使用横向正常变形的正正常变形的正正常变形的一致高阶梁配制。梁元件的刚度矩阵和梁元件的等效节点力的载体通过Galerkin方法明确地推导出来。为了检查光束元件的可靠性和特性,将简单的悬臂梁的分析和有限元溶液彼此进行比较。结果,获得了以下结论; (1)建议的正交梁元件的精度非常优异,因此可以有效地估计正常梁的横向正常变形和剪切应力。 (2)无论欧拉或Timoshenko的光束如何,它都可以用于准确分析一般梁结构。

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