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FULLY COUPLED NUMERICAL SIMULATION FOR WAVE PROPAGATION IN COMPOSITE MATERIALS

机译:复合材料中波传播的全耦合数值模拟

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Composite materials are used in many advanced engineering applications because of their high specific strength and specific stiffness. However, the complex damage mechanisms and failure modes are still not well-understood and limit their wide-spread applications. It is critical to monitor the structural heath for improved understanding of damage evolution and accurate life estimation. Ultrasonic wave based structure health monitoring (SHM) technique is a promising approach and has been investigated by many researchers. However, for the techniques to be reliable, it is necessary to understand the wave propagation behavior in composites. A fully coupled numerical simulation model has been developed to understand wave propagation and dissipation in composites under different excitation frequencies. The model is based on the local interaction simulation approaches/sharp interface model (LISA/SIM), and is computationally efficient compared to traditional finite element methods. This model is used to emulate wave behavior in composites in the current work. The output sensor signals are processed using matching pursuit decomposition algorithm to study the zero-order anti-symmetric and symmetric Lamb wave modes, including attenuation effects and dispersion. The results show good agreement with published experiments. Sensitivity studies show that wave velocities and amplitudes vary significantly with changes in the material properties and stiffness.
机译:复合材料由于其高的比强度和比刚度而被用于许多高级工程应用中。但是,复杂的损坏机制和故障模式仍未得到很好的理解,并限制了它们的广泛应用。监视结构的健康状况对于提高对损伤演变的理解和准确的寿命估算至关重要。基于超声波的结构健康监测(SHM)技术是一种很有前途的方法,并且已经被许多研究人员进行了研究。但是,为了使技术可靠,有必要了解复合材料中的波传播行为。已开发出完全耦合的数值模拟模型,以了解复合材料在不同激发频率下的波传播和耗散。该模型基于本地交互模拟方法/锐化接口模型(LISA / SIM),与传统的有限元方法相比,计算效率高。该模型用于模拟当前工作中复合材料中的波动行为。使用匹配追踪分解算法对输出传感器信号进行处理,以研究零阶反对称和对称兰姆波模式,包括衰减效应和色散。结果表明与已发表的实验吻合良好。敏感性研究表明,波速和振幅会随着材料特性和刚度的变化而显着变化。

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