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Elastic buckling analysis of 3-D trusses and frames with thin-walled members

机译:带有薄壁构件的3D桁架和框架的弹性屈曲分析

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A finite element method is presented for the determination of the elastic buckling load of three-dimensional trusses and frames with rigid joints. The beam element stiffness matrix is constructed on the basis of the exact solution of the governing equations describing the coupled flexural-torsional buckling behaviour of a three-dimensional beam with an open thin-walled section in the framework of a small deformation theory. Large deformation effects are taken into account approximately through consideration of P−Δ effects. The structural stiffness matrix is obtained by an appropriate superposition of the various element stiffness matrices. The axial force distribution in the members is obtained iteratively for every value of the externally applied loading and the vanishing of the determinant of the structural stiffness matrix is the criterion used to numerically determine the elastic buckling load of the structure. The effect of initial member imperfections is also included in the formulation. Comparisons of accuracy and efficiency of the present exact finite element method against the conventional approximate finite element method are made. Cases where the axial force distribution determination can be done without iterations are also identified. The effect of neglecting the warping stiffness of some mono-symmetric sections is also investigated. Numerical examples involving simple and complex three-dimensional trusses and frames are presented to illustrate the method and demonstrate its merits.
机译:提出了一种确定具有刚性节点的三维桁架和框架的弹性屈曲载荷的有限元方法。梁单元刚度矩阵是根据控制方程的精确解构造的,该方程描述了在小形变理论框架下具有开放式薄壁截面的三维梁的耦合挠曲-屈曲屈曲行为。大变形效应大约是通过考虑P-Δ效应来考虑的。结构刚度矩阵是通过适当叠加各种元素刚度矩阵获得的。对于外部施加的载荷的每个值,迭代地获得构件中的轴向力分布,并且结构刚度矩阵的行列式的消失是用于数字确定结构的弹性屈曲载荷的标准。初始成员不完美的影响也包括在配方中。比较了当前精确有限元方法与常规近似有限元方法的准确性和效率。还确定了无需重复即可完成轴向力分布确定的情况。还研究了忽略一些单对称截面的翘曲刚度的影响。给出了涉及简单和复杂的三维桁架和框架的数值示例,以说明该方法并证明其优点。

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