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首页> 外文期刊>Smart Materials & Structures >Modeling of the attenuation of stress waves in concrete based on the Rayleigh damping model using time-reversal and PZT transducers
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Modeling of the attenuation of stress waves in concrete based on the Rayleigh damping model using time-reversal and PZT transducers

机译:基于瑞利阻尼模型使用时间逆转和PZT传感器建模混凝土应力波衰减

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Wave-based concrete structural health monitoring has attracted much attention. A stress wave experiences significant attenuation in concrete, however there is a lack of a unified method for predicting the attenuation coefficient of the stress wave. In this paper, a simple and effective absorption attenuation model of stress waves in concrete is developed based on the Rayleigh damping model, which indicates that the absorption attenuation coefficient of stress waves in concrete is directly proportional to the square of the stress wave frequency when the damping ratio is small. In order to verify the theoretical model, related experiments were carried out. During the experiments, a concrete beam was designed in which the d(33)-model piezoelectric smart aggregates were embedded to detect the propagation of stress waves. It is difficult to distinguish direct stress waves due to the complex propagation paths and the reflection and scattering of stress waves in concrete. Hence, as another innovation of this paper, a new method for computing the absorption attenuation coefficient based on the time-reversal method is developed. Due to the self-adaptive focusing properties of the time-reversal method, the time-reversed stress wave focuses and generates a peak value. The time-reversal method eliminates the adverse effects of multipaths, reflection, and scattering. The absorption attenuation coefficient is computed by analyzing the peak value changes of the time-reversal focused signal. Finally, the experimental results are found to be in good agreement with the theoretical model.
机译:基于浪潮的混凝土结构健康监测引起了很多关注。应力波在混凝土中经历显着的衰减,然而缺乏用于预测应力波的衰减系数的统一方法。在本文中,基于瑞利阻尼模型开发了混凝土中应力波的简单有效的吸收衰减模型,这表明混凝土中应力波的吸收衰减系数与应力波频率的平方成比例阻尼比例很小。为了验证理论模型,进行了相关的实验。在实验期间,设计了一种混凝土光束,其中嵌入其中D(33)-Model压电纤维纤维聚集体以检测应力波的传播。由于复杂的传播路径和混凝土中应力波的反射和散射,难以区分直接应力波。因此,作为本文的另一种创新,开发了一种基于时间反转方法计算吸收衰减系数的新方法。由于时间反转方法的自适应聚焦特性,时间反转应力波对焦并产生峰值。时间逆转方法消除了多路径,反射和散射的不利影响。通过分析时间反转聚焦信号的峰值变化来计算吸收衰减系数。最后,发现实验结果与理论模型吻合良好。

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