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Three-dimensional nonlinear mixed 6-DOF beam element for thin-walled members

机译:用于薄壁构件的三维非线性混合6-DOF梁元件

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This paper presents a three-dimensional mixed beam element formulation for fully nonlinear distributed plasticity analysis of members composed of sections with no significant torsional warping such as steel angles and tees. This formulation is presented using a corotational total Lagrangian approach and implemented in the OpenSees corotational framework. In this context, a basic coordinate system is lined up with the element chord and translates and rotates as the element deforms. The element tangent stiffness matrix and resisting forces in the basic system are derived through linearization of the two-field Hellinger-Reissner variational principle. The displacement shape functions are cubic Hermitian functions for the transverse displacements and a linear shape function for the axial and torsional deformation. The generalized stress resultant shape functions are linear for moments and constant for axial force and torque with the P - delta. effect considered, which are developed from equilibrium equations. The fiber section method with uniaxial constitutive laws is adopted to account for material nonlinearity. Since the degrees-of-freedom in the basic system are defined with respect to different reference points, all element responses are transformed to acting about the shear center before conducting the corotational transformation. The mixed element is validated through a number of experimental and numerical examples.
机译:本文介绍了一种三维混合梁元件配方,用于完全非线性分布塑性分析的构件,该部件与钢角和发球尺寸没有显着扭转翘曲的部分。这种配方使用Corotational Total Lagrangian方法提出并在Opensees Corotational框架中实施。在此上下文中,基本坐标系与元件和弦和旋转并随着元件变形转换并旋转。基本系统中的元件切线刚度矩阵和抵抗力通过双场Hellinger-Reissner变分原理的线性化来源。位移形状功能是用于横向位移的立方体函数,以及用于轴向和扭转变形的线性形状函数。透过的应力产生形状功能是线性的,用于轴向力和扭矩与p - delta的轴向力和扭矩。考虑的效果是从平衡方程式开发的。采用单轴构成法的纤维部分方法来解释材料非线性。由于基本系统中的自由度被相对于不同的参考点定义,因此在进行蚀刻变换之前,将所有元件响应转换为作用于剪切中心。通过许多实验和数值例子验证混合元件。

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