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Vibration Control of Beams Using Constrained Layer Damping With Functionally Graded Viscoelastic Cores: Theory and Experiments

机译:功能梯度粘弹性芯的约束层阻尼控制梁的振动:理论与实验

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摘要

Conventionally, the viscoelastic cores of Constrained Layer Damping (CLD) treatments are made of materials that have uniform shear modulus. Under such conditions, it is well-recognized that these treatments are only effective near their edges where the shear strains attain their highest values. In order to enhance the damping characteristics of the CLD treatments, we propose to manufacture the cores from Functionally Graded ViscoElastic Materials (FGVEM) that have optimally selected gradient of the shear modulus over the length of the treatments. With such optimized distribution of the shear modulus, the shear strain can be enhanced, and the energy dissipation can be maximized. The theory governing the vibration of beams treated with CLD, that has functionally graded viscoelastic cores, is presented using the finite element method (FEM). The predictions of the FEM are validated experimentally for plain beams, beams treated conventional CLD, and beams with CLD/FGVEM of different configurations. The obtained results indicate a close agreement between theory and experiments. Furthermore, the obtained results demonstrate the effectiveness of the new class of CLD with functionally graded cores in enhancing the energy dissipation over the conventional CLD over a broad frequency band. Extension of the proposed one-dimensional beam/CLD/FGVEM system to more complex structures is a natural extension to the present study.
机译:按照惯例,约束层阻尼(CLD)处理的粘弹性芯是由具有均匀剪切模量的材料制成的。在这样的条件下,众所周知,这些处理仅在剪切应变达到其最高值的边缘附近有效。为了增强CLD处理的阻尼特性,我们建议使用功能梯度粘弹性材料(FGVEM)制造芯,这些芯在处理过程中具有最佳的剪切模量梯度。通过这样优化的剪切模量分布,可以增强剪切应变,并且可以使能量耗散最大化。使用有限元方法(FEM)提出了控制经CLD处理的梁振动的理论,该梁具有功能梯度的粘弹性纤芯。 FEM的预测已通过实验验证,适用于普通光束,经常规CLD处理的光束以及具有不同配置的CLD / FGVEM光束。获得的结果表明理论与实验之间有着紧密的一致性。此外,获得的结果证明了具有功能分级磁芯的新型CLD在增强传统CLD的宽频带能量消耗方面的有效性。将提议的一维梁/ CLD / FGVEM系统扩展到更复杂的结构是对本研究的自然扩展。

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