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首页> 外文期刊>Journal of Sound and Vibration >Stability and natural frequencies of a weakened Timoshenko beam-column with generalized end conditions under constant axial load
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Stability and natural frequencies of a weakened Timoshenko beam-column with generalized end conditions under constant axial load

机译:在恒定轴向载荷下具有广义端部条件的削弱的季莫申科梁柱的稳定性和固有频率

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摘要

The stability and free vibration analyses of a Timoshenko beam-column with generalized end conditions (i.e., with semirigid flexural connections and lateral bracings at both ends) subjected to constant axial load (tension or compression), and weakened by a cracked section along its span are presented. The magnitude and location of the weakened section are both arbitrary and independent of each other. The magnitude of the crack is modeled as an intermediate flexural connection of zero length producing a member with two-segments with rotational discontinuity at the weakened section but of identical lateral deflection. The proposed model offers the option of considering the beneficial effects of an additional lateral bracing located at the weakened section to alleviate the detrimental effects of the rotational discontinuity on the stability and natural frequencies of the whole beam-column. The proposed model includes the following coupling effects: (1) shear and bending deformations along the member's span; (2) the translational and rotational masses of the member uniformly distributed along its span; (3) constant axial load (tension or compression) applied at both ends; and (4) the shear forces along the member induced by the applied axial load as the beam-column deforms according to two different approaches: proportional to the bending rotation or to the total slope of the member axis. A flowchart is included that shows the steps necessary to carry out the stability and free vibration analyses. Finally, to show the validity and simplicity of the proposed method and equations five comprehensive examples are presented using the two approaches of the induced shear force and the obtained results are compared to those calculated by other analytical methods including the finite element method. (C) 2007 Elsevier Ltd. All rights reserved.
机译:带有广义端部条件(即两端均具有半刚性挠性连接和侧向支撑)的Timoshenko梁柱的稳定性和自由振动分析受到恒定的轴向载荷(拉力或压缩力),并因其跨度上的裂缝部分而减弱被提出。弱化部分的大小和位置都是任意的,并且彼此独立。裂纹的大小被建模为零长度的中间挠曲连接,从而产生了一个两段构件,该两段构件在弱化部分具有旋转不连续性,但具有相同的横向挠度。提出的模型提供了考虑位于弱化部分的附加横向支撑的有益效果的选择,以减轻旋转不连续性对整个梁柱的稳定性和固有频率的不利影响。所提出的模型包括以下耦合效应:(1)沿构件跨度的剪切和弯曲变形; (2)构件的平移质量和旋转质量沿其跨度均匀分布; (3)在两端施加恒定的轴向载荷(拉力或压力); (4)当梁柱变形时,由施加的轴向载荷引起的沿构件的剪切力根据两种不同的方法:与弯曲旋转成比例或与构件轴线的总斜率成比例。其中包括一个流程图,该流程图显示了执行稳定性和自由振动分析所需的步骤。最后,为证明所提方法和方程的有效性和简便性,使用两种方法分别给出了五个感应剪力实例,并将所得结果与其他分析方法(包括有限元法)所得到的结果进行了比较。 (C)2007 Elsevier Ltd.保留所有权利。

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