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Modeling Lamb wave propagation in damaged structures based upon spectral element method

机译:基于光谱元素法在损坏结构中建模兰姆波传播

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Structural health monitoring based on Lamb wave attracts great attention in large-span structures. Lamb wave propagation in complex structures is very complicated due to multiple reflection and mode conversion at geometrical and material features. For effectively inspecting structural integrity, numerical simulation is employed to for extract damage features. It is essential to develop fast and low-cost simulating methods to study Lamb wave propagation in damaged structures. Spectral element method (SEM) is one of the most attractive methods, which is employed to study wave propagation in damaged structures. A massless spring, coupling the longitudinal and rotational vibration, is proposed to model a transverse crack and analyze wave propagation in a composite cracked beam based on SEM. Cracked spectral element formulation is derived by modeling the crack as the spring, whose stiffness is obtained from laws of fracture mechanics. Due to asymmetry of the crack, extensional and flexural wave modes are reflected and transmitted from an incident flexural wave mode. The proposed model is verified by comparing with conventional finite element analysis. Power reflection and transmission varying with the crack depth is also calculated. The results indicate that power reflection/transmission ratio of a single mode is monotonic, which may provide some quantitative foundations for structural health monitoring.
机译:基于羊羔波的结构健康监测吸引了大跨度结构的极大关注。由于几何和材料特征的多重反射和模式转换,复杂结构中的兰姆波传播非常复杂。为了有效检查结构完整性,使用数值模拟来提取损伤特征。必须开发快速和低成本的模拟方法,以研究损坏的结构中的羊羔波传播。光谱元件方法(SEM)是最具吸引力的方法之一,它用于研究受损结构中的波传播。建议基于SEM的复合裂纹束中的横向裂纹和分析波传播来模拟基于SEM的复合裂纹束中的横向裂纹和分析波传播。通过将裂缝建模为弹簧来源的裂纹光谱元件配方,其刚度是从骨折力学规律获得的。由于裂缝的不对称,从入射弯曲波模式反射并传输延伸和弯曲波动模式。通过与传统的有限元分析进行比较来验证所提出的模型。还计算了随着裂缝深度而变化的功率反射和传输。结果表明单调的功率反射/传输比是单调的,其可以为结构健康监测提供一些定量基础。

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