基本引导超声波模式的模式转换在部分厚度裂纹状缺陷时
1Department of Mechanical Engineering, University College London (UCL), London, UK.
Ultrasonics
|July 10, 2024
概括
引导式超声波有效监控结构. 从缺陷中分析散射和模式转换波可以提高结构健康监测 (SHM) 和非破坏性评估 (NDE) 的灵敏度和准确性.
科学领域:
- 材料科学 材料科学 材料科学
- 机械工程 机械工程
- 非破坏性的评价
背景情况:
- 导向超声波对于结构健康监测 (SHM) 和非破坏性评估 (NDE) 是至关重要的,因为它们在薄结构中的传播距离很长.
- 了解波散射和缺陷时的模式转换对于量化检测灵敏度至关重要.
研究的目的:
- 为了研究在零件厚度缺陷下引导超声波 (S0模式) 的散射和模式转换.
- 通过分析模式转换 (A0和SH0) 和分散波来量化缺陷检测灵敏度.
主要方法:
- 利用三维有限元 (FE) 建模来预测波浪行为.
- 通过在板中使用压电转换器 (PZT) 实验激发S0模式.
- 采用激光振动计和基线减法来测量和隔离模式转换的A0模式.
主要成果:
- 在FE模型预测和实验结果之间实现了对垂直S0模式发生率的良好一致.
- 量化了缺陷深度和长度对散射和模式转换的影响.
- 在3⁄4缺陷深度观察到最大的S0-A0模式转换,A0和分散的S0振幅与缺陷长度线性增加.
结论:
- 模式转换 (S0到SH0) 显示对短缺陷的高灵敏度.
- 分散和模式转换的引导超声波为增强SHM算法提供了宝贵的信息.
- 通过分析这些波现象,可以在SHM中提高检测灵敏度和定位精度.
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