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首页> 外文期刊>he IES Journal Part A: Civil & Structural Engineering >A new buckling theory for curved beams of solid cross sections derived from rigid body and force equilibrium considerations
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A new buckling theory for curved beams of solid cross sections derived from rigid body and force equilibrium considerations

机译:从刚体和力平衡考虑出发的实心截面弯曲梁的新屈曲理论

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摘要

A new method is proposed for deriving the instability potential of initially stressed curved beams based on the rigid body and equilibrium considerations using the updated Lagrangian formulation. Starting from the rigid body rule, the virtual instability potential was derived for a spatially curved beam under real rigid displacements. Next, utilising the equilibrium equations for the boundary forces at the C_1 and C_2 states, another virtual instability potential was derived for the curved beam under virtual rigid displacements. Comparing the two potentials yields the one in total form for the curved beam. The present approach requires only simple integrations and analogical comparison of related virtual works, thereby avoiding the physically unclear, complicated derivations involved in previous procedures. Based on the first principles of rigid body rule and equilibrium, the derived potential energy is more concise than the conventional approach that requires the consideration of six stress components in the formulation. As an illustration, the present theory was successfully adopted in the buckling analysis of helical curved beams under radial loads.
机译:提出了一种新方法,该方法基于刚体和平衡考虑因素,使用更新的拉格朗日公式推导初始应力弯曲梁的不稳定性。从刚体规则开始,得出了在实际刚度位移下空间弯曲梁的虚拟不稳定性势。接下来,利用平衡方程在C_1和C_2状态下的边界力,导出了在虚拟刚度位移下弯曲梁的另一个虚拟不稳定性势。比较这两个电位可得出弯曲光束的总电位。本方法仅需要相关虚拟作品的简单集成和类比比较,从而避免了先前过程中涉及的物理上不清楚,复杂的派生。基于刚体规则和平衡的第一原理,所得出的势能比传统方法更为简洁,传统方法需要在配方中考虑六个应力分量。作为说明,本理论已成功地应用于径向载荷下螺旋弯曲梁的屈曲分析。

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