首页> 外文期刊>Journal of Engineering Mechanics >Optimum Design of Intermediate Support for Raising Fundamental Frequency of a Beam or Column under Compressive Axial Load
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Optimum Design of Intermediate Support for Raising Fundamental Frequency of a Beam or Column under Compressive Axial Load

机译:轴心受压时梁或柱基本频率中间支撑的优化设计。

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摘要

The optimum design of an additional intermediate support is investigated for raising the fundamental natural frequency of a beam or column subjected to compressive axial loadings. First, the criterion that constitutes the general characteristic equation of the optimal attachment position is explicitly provided so that an objective value of the fundamental frequency can be achieved with the minimum restraint stiffness of the intermediate support. Then, the optimum design of an intermediate support is performed for three illustrative beams of different classical boundary conditions to demonstrate the effects of the compressive axial loads. Numerical results show that the axial load can remarkably influence the support design of its optimum position and minimum stiffness when using it to increase the beam fundamental frequency.
机译:为了提高承受压缩轴向载荷的梁或柱的基本固有频率,研究了附加中间支撑的最佳设计。首先,明确规定了构成最佳安装位置的一般特性方程式的准则,以便可以在中间支撑的最小约束刚度下实现基频的目标值。然后,对具有不同经典边界条件的三个示例性梁进行了中间支撑的优化设计,以证明轴向压缩载荷的影响。数值结果表明,轴向载荷在提高梁的基频时会显着影响其最佳位置和最小刚度的支撑设计。

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