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Vibration analysis of bolted joined cylindrical-cylindrical shell structure under general connection condition

机译:普通连接条件下螺栓连接圆柱壳结构的振动分析

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摘要

Modeling and free vibration analysis of bolted joined cylindrical-cylindrical shell were presented in this paper. First, a new analytical model was established for bolted joints. Second, based on Sanders' shell theory, the dynamic equation of substructure of the assembly structure was formed. Then, by using the connection condition, into which the coupling stiffness between the segments was considered, the vibration differential equation of the assembly structure was established. Finally, the vibration characteristics of bolted joined cylindrical cylindrical shell were obtained. To test the accuracy of the present method, the frequencies and mode shapes under some special connecting condition were examined with the results obtained by ANSYS and a good agreement was shown. Further, the number of bolts, connecting stiffness and length ratio of the two segments have a significant influence on natural frequency parameters and mode shapes of symmetrical and unsymmetrical structures. The results reveal the vibration characteristics of bolted joined cylindrical-cylindrical shell and are presented to provide useful information for future research. Moreover, some new results would be of signification for assembly structure design and vibration control.
机译:提出了螺栓连接圆柱-圆柱壳的建模和自由振动分析。首先,建立了螺栓连接的新分析模型。其次,基于桑德斯的壳理论,建立了装配结构子结构的动力学方程。然后,通过考虑各段之间的耦合刚度的连接条件,建立了装配结构的振动微分方程。最终,获得了螺栓连接的圆柱形圆柱壳的振动特性。为了验证本方法的准确性,通过ANSYS对某些特殊连接条件下的频率和模态进行了检验,结果表明了良好的一致性。此外,两个段的螺栓数量,连接刚度和长度比对对称和不对称结构的固有频率参数和振型有很大影响。结果揭示了螺栓连接的圆柱-圆柱壳的振动特性,并为将来的研究提供了有用的信息。而且,一些新的结果对于装配结构设计和振动控制具有重要意义。

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