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Three-dimensional formulation of a mixed corotational thin-walled beam element incorporating shear and warping deformation

机译:考虑剪切变形和翘曲变形的混合配比薄壁梁单元的三维表达

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This paper presents a corotational formulation of a three-dimensional elasto-plastic mixed beam element that can undergo large displacements and rotations. The corotational approach applies to a two-noded element a coordinate system which continuously translates and rotates with the element. In this way, the rigid body motion is separated out from the deformational motion. In this paper, a mixed formulation is adopted for tire derivation of the local element tangent stiffness matrix and nodal forces based on a two-field Hellinger-Reissner variational principle. The local beam kinematics is based on a low-order nonlinear strain expression using Timoshenko assumption. The warping effects are characterized by adopting Bemscoter theory that describes the warping degree of freedom by an independent function. Shape functions that satisfy the nonlinear local equilibrium equations are selected for the interpolation of the stress resultants. This local element, together with the corotational framework, can be used to analyze the nonlinear buckling and postbuckling of thin-walled beams with generic cross-section. The mixed formulatiom solution is compared against the results obtained from a corotational displacement-based formulation having the same beam kinematics. The superiority of the mixed formulation is clearly demonstrated.
机译:本文提出了三维弹塑性混合梁单元的变形公式,该单元可以承受较大的位移和旋转。坐标方法将坐标系统应用于两节点元素,该坐标系统与该元素连续平移和旋转。以这种方式,刚体运动与变形运动分离。在本文中,基于两场Hellinger-Reissner变分原理,采用混合公式对轮胎的局部单元切线刚度矩阵和节点力进行推导。局部梁运动学基于使用Timoshenko假设的低阶非线性应变表达式。翘曲效应的特征在于采用Bemscoter理论,该理论通过独立函数描述了翘曲自由度。选择满足非线性局部平衡方程的形状函数进行应力合算的内插。该局部元素与坐标框架一起,可用于分析具有通用横截面的薄壁梁的非线性屈曲和后屈曲。将混合配方溶液与从具有相同光束运动学的基于位移的配制剂获得的结果进行比较。混合制剂的优越性得到了明确证明。

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