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Damping Properties of Viscoelastic Laminated Plates with an Unconstrained Fiber-reinforced Layer

机译:无约束纤维增强层的粘弹性层压板的阻尼特性

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Applying the mixed layer wise theories and Ressiner's mixed variational theorem, the dynamics equations of viscoelastic laminated plates were deduced and the numerical solutions for simple-support laminated plates were derived through Navier solutions. Computing the natural frequency and the loss factor in the plates corresponding to the lower-rank models and analyzing the viscoelastic layer' influence on the damping properties, the results show that the non-dimensional frequency and the loss factor will increase with higher Young's modulus of a viscoelastic layer. Using a fiber-reinforced viscoelastic layer has little effect on the non-dimensional frequency, but can effectively improve the damping characteristic and reduce the resonance amplitude of transverse displacement.
机译:应用混合层智能理论和Ressiner混合变分定理,推导了粘弹性层合板的动力学方程,并通过Navier解推导了简单支撑层合板的数值解。计算低阶模型对应的板的固有频率和损耗因子,并分析粘弹性层对阻尼特性的影响,结果表明,较高的杨氏模量会使无量纲的频率和损耗因子增加。粘弹性层。使用纤维增强的粘弹性层对无量纲频率影响很小,但是可以有效地改善阻尼特性并减小横向位移的共振幅度。

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