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Analytic solution of Timoshenko beam excited by real seismic support motions

机译:真实地震支撑运动激发的季莫申科梁的解析解

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Beam-like structures such as bridge, high building and tower, pipes, flexible connecting rods and some robotic manipulators are often excited by support motions. These structures are important in machines and structures. So, this study proposes an analytic method to accurately predict the dynamic behaviors of the structures during support motions or an earthquake. Using Timoshenko beam theory which is valid even for non-slender beams and for high-frequency responses, the analytic responses of fixed-fixed beams subjected to a real seismic motions at supports are illustrated to show the principled approach to the proposed method. The responses of a slender beam obtained by using Timoshenko beam theory are compared with the solutions based on Euler-Bernoulli beam theory to validate the correctness of the proposed method. The dynamic analysis for the fixed-fixed beam subjected to support motions gives useful information to develop an understanding of the structural behavior of the beam. The bending moment and the shear force of a slender beam are governed by dynamic components while those of a stocky beam are governed by static components. Especially, the maximal magnitudes of the bending moment and the shear force of the thick beam are proportional to the difference of support displacements and they are influenced by the seismic wave velocity.
机译:梁形结构,例如桥梁,高层建筑和塔楼,管道,柔性连杆和一些机器人操纵器,通常会因支撑运动而受到激励。这些结构在机器和结构中很重要。因此,本研究提出了一种分析方法来准确预测支撑运动或地震期间结构的动态行为。利用甚至对非细长梁和高频响应都有效的蒂莫申科梁理论,说明了在支座上经受真实地震运动的固定梁的解析响应,以说明该方法的原理方法。将通过Timoshenko束理论获得的细长梁的响应与基于Euler-Bernoulli束理论的解决方案进行比较,以验证所提出方法的正确性。对承受支撑运动的固定梁的动力学分析提供了有用的信息,有助于深入了解梁的结构特性。细长梁的弯矩和剪切力由动态分量控制,而粗梁的弯矩和剪切力由静态分量控制。特别是,弯矩的最大幅度和厚梁的剪力与支撑位移的差异成正比,并且受地震波速度的影响。

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