蜂窝夹层板的频散特性与高频导波传播规律分析
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沈阳建筑大学

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国家自然科学基金(51278313)


Frequency dispersion characteristics and high-frequency guided wave propagation analysis of honeycomb sandwich panels
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Shenyang Jianzhu University

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National Natural Science Foundation of China (No. 51278313)

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    摘要:

    为了解决蜂窝夹层板(HSP)的变形等效模型的波动性能适用性和脱粘分层识别时传感信号特征提取困难等问题,利用等效换算法将HSP换算为三层板状的周期性结构,利用Comsol Multiphysics计算并绘制频散曲线;通过比对HSP等效和实际两种有限元分析结果,阐明导波在两模型中波动性能的适用性;利用FE方法研究导波的“脱粘式分流”特征;采用模型试验验证HSP的频散特性和高频导波的“脱粘式分流”特征的正确性。结果表明,当导波波长不超过HSP蜂窝芯单胞边长时,等效换算法和实体建模法得到波动性能差异显著,脱粘分层是造成导波“脱粘式分流”的主因,建议采用高频导波激励的A0模态时域响应作为特征识别HSP的脱粘分层。

    Abstract:

    For solving issues of the wave performance applicability of the deformation-based equivalent model for Honeycomb Sandwich Panels (HSPs) and difficulty in sensing signal feature extraction for debonded delamination identification, an equivalent conversion method is used by changing an HSP structure into a three-layered periodic structure, and the Comsol Multiphysics software is applied to calculate and draw frequency dispersion curves. The guided wave performance applicability is investigated by comparing two kinds of finite element (FE) analysis results from the equivalent and actual two models of the HSP structure. The FE method is applied to explore the feature of guided wave deboned-induced-split-flow. The model tests are used to validate the correctness of the frequency dispersion performance and the deboned-induced-split-flow feature of high-frequency guided waves. The results show that the wave performance differences between the equivalent conversion and actual models are obvious as the wavelength of guided wave is not greater than a single cell height in the HSP, the debonded delamination is the main reason for deboned-induced-split-flowing, and it is recommended that the time-domain sensing signals of high-frequency activated A0 mode guided waves are used as extracted features for the debonded delamination identification of HSP structures.

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  • 收稿日期:2025-03-12
  • 最后修改日期:2025-07-15
  • 录用日期:2025-07-17
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