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Optimization of Passive Constrained Layer Damping Treatments for Vibration Control of Cylindrical Shells

机译:圆柱壳振动控制的被动约束层阻尼处理优化

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摘要

This paper presents the layout optimization of passive constrained layer damping (PCLD) treatment for vibration control of cylindrical shells under a broadband force excitation. The equations governing the vibration responses are derived using the energy approach and assumed-mode method. These equations provided relationship between the integrated displacement response over the whole structural volume, i.e. the structural volume displacement (SVD), of a cylindrical shell to structural parameters of base structure and multiple PCLD patches, Genetic algorithms (GAs) based penalty function method is employed to find the optimal layout of rectangular PCLD patches with minimize the maximum displacement response of PCLD-treated cylindrical shells. Optimization solutions of PCLD patches’ locations and shape are obtained under the constraint of total amount of PCLD in terms of percentage added weight to the base structure. Examination of the optimal layouts reveals that the patches tend to increase their coverage in the axial direction and distribute over the whole surface of the cylindrical shell for optimal control of the structural volume displacement.
机译:本文介绍了宽带约束激励下圆柱壳振动控制的被动约束层阻尼(PCLD)处理的布局优化。使用能量方法和假定模式方法可以得出控制振动响应的方程。这些方程提供了圆柱壳的整个结构体积上的整体位移响应(即结构体积位移(SVD))与基础结构和多个PCLD斑块的结构参数之间的关系,采用了基于遗传算法(GA)的罚函数法以最小化PCLD处理的圆柱壳的最大位移响应来找到矩形PCLD贴片的最佳布局。 PCLD贴片的位置和形状的优化解决方案是在PCLD总量(按基础结构增加的重量百分比)的约束下获得的。最佳布局的检查表明,贴片往往会增加其在轴向上的覆盖率,并分布在圆柱壳的整个表面上,以实现对结构体积位移的最佳控制。

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