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Time-domain analysis for dynamic responses of non-classically damped composite structures

机译:非经典阻尼复合结构动态响应的时域分析

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摘要

A complex mode superposition method based on equivalent viscous damping model (CEV) is proposed for time-domain dynamic responses of non-classically damped composite structures. The damping matrix of hysteretic non-classically damped composite structures can be easily obtained and complex mode superposition method based on hysteretic damping model is directly realized in the physical space. However, hysteretic damping model is not causal, and is only applied in frequency-domain analysis. By the aid of constitutive model of Kelvin-Voigt model, viscous damping model which is equivalent to the hysteretic damping model is obtained based on single degree of freedom system. Combined with complex mode superposition method of hysteretic damping model and mathematical simplicity of equivalent viscous damping model, CEV can be realized. Structural vibration responses of shaking table test under random excitations are measured, which are compared with the corresponding calculation results using CEV and traditional complex mode superposition method based on viscous damping model (CR), respectively. The calculation results obtained by the two complex mode superposition methods are consistent with the test results. Compared with CR, the calculation results of CEV are unique, computational efficiency of CEV is higher and the problem of choosing reasonable modes has been avoided.
机译:提出了一种基于等效粘性阻尼模型(CEV)的复杂模式叠加方法,用于非经典阻尼复合结构的时域动态响应。可以容易地获得滞后非经典阻尼复合结构的阻尼矩阵,并且基于滞后模型的复杂模式叠加法直接在物理空间中实现。然而,滞后阻尼模型不是因果的,并且仅应用于频域分析。借助于Kelvin-Voigt模型的本构模型,基于单一自由度系统获得相当于滞回阻尼模型的粘性阻尼模型。结合复杂的滞后模型的复合模式叠加方法和等效粘性阻尼模型的数学简洁,CEV可以实现。测量随机激发下振动台测试的结构振动响应,与使用基于粘性阻尼模型(CR)的CEV和传统复杂模式叠加法的相应计算结果进行比较。通过两个复杂模式叠加方法获得的计算结果与测试结果一致。与CR相比,CEV的计算结果是独特的,CEV的计算效率较高,并避免了选择合理模式的问题。

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