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Modifications to the Method of Modal Strain Energy for Improved Estimates of Loss Factors for Damped Structures

机译:改进模态应变能方法,以改善阻尼结构的损耗因子估计

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摘要

The method of Modal Strain Energy (MSE) enables predictions of modal loss factors for vibrating systems from finite element analyses without evaluation of a complex-valued frequency response or a complex-valued frequency. While the method is simple, some error results; especially if the dissipative material has the high loss factor characteristic of materials added to increase system damping. Several methods for reducing this error through modifications to MSE have been suggested. In this work, the exact loss factor for a simple mechanical system is found. The method of Modal Strain Energy (MSE) is then used to find the loss factor for that prototype system and errors are evaluated in terms of system parameters. Comparisons are also made to predictions with several modifications to MSE. A modification due to Rongong is found to provide significant improvement. The use of this modification together with MSE is shown to lead to lower and upper bounds for the system loss factor. As the prototype system is shown to be mechanically equivalent to constrained layer damping configurations, the findings are applicable to the analysis and design of optimized sandwich beams, plates, and damping tapes. Results are given for beams and plates with constrained layer treatments.
机译:模态应变能量(MSE)的方法使得能够预测来自有限元分析的振动系统的模态损耗因子,而不评估复值频率响应或复值频率。虽然该方法很简单,但一些错误结果;特别是如果耗散材料具有添加的材料的高损耗因子,以增加系统阻尼。已经提出了通过对MSE的修改来减少此误差的几种方法。在这项工作中,找到了简单机械系统的确切损耗因素。然后使用模态应变能量(MSE)的方法来找到该原型系统的损耗因子和在系统参数方面评估了错误。还对MSE的几种修改进行了预测,也对比较进行了比较。发现由于岭孔而导致的修改提供了显着的改善。将此修改与MSE一起显示在系统损耗因子上导致下限和上限。由于原型系统被示出为机械等同于受约束的层阻尼配置,因此该研究结果适用于优化的夹层梁,板和阻尼带的分析和设计。给出具有受约束层处理的梁和板的结果。

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