【24h】

Active Sensor Wave Propagation Health Monitoring of Beam and Plate Structures

机译:梁板结构的主动传感器波传播健康监测

获取原文
获取原文并翻译 | 示例

摘要

Active sensor wave propagation technique is a relatively new method for in-situ nondestructive evaluation (NDE). Elastic waves propagating in material carry the information of defects. These information can be extracted by analyzing the signals picked up by active sensors. Due to the physical property of wave propagation, large area can be interrogated by a few transducers. This simplifies the process of detecting and characterizing defects. To apply this method, efficient numerical modeling is required to predict signal amplitude and time history of elastic wave scattering and diffraction. In order to construct the model, good understanding of these physical phenomena must be achieved. This paper presents results of an investigation of the applicability of active sensors for in-situ health monitoring of aging aircraft structures. The project set forth to develop non-intrusive active sensors that can be applied on existing aging aerospace structures for monitoring the onset and progress of structural damage such as fatigue cracks and corrosion. Wave propagation approach was used for large area detection. In order to get the theoretical solution of elastic wave propagating in the material, wave functions of axial wave, share wave, flexure wave, Raleigh wave, and Lamb waves were thoroughly investigated. The wave velocities and the motion of these different types of waves were calculated and simulated using mathematical analysis programs. Finite Element Method was used to simulate and predict the wave propagating through the structure for different excitation and boundary conditions. Aluminum beams and plates were used to get experiment results. Structures both pristine and with known defects are used in our investigation. The experimental results were then compared with the theoretical results.
机译:有源传感器波传播技术是用于原位无损评估(NDE)的一种相对较新的方法。在材料中传播的弹性波会携带缺陷信息。这些信息可以通过分析有源传感器采集的信号来提取。由于波传播的物理特性,大面积可以被几个换能器询问。这简化了检测和表征缺陷的过程。为了应用该方法,需要有效的数值建模来预测弹性波散射和衍射的信号幅度和时间历程。为了构建模型,必须对这些物理现象有很好的理解。本文介绍了有源传感器在老化飞机结构的现场健康监测中的适用性调查结果。该项目着眼于开发非侵入式有源传感器,该传感器可应用于现有的老化航空航天结构,以监测诸如疲劳裂纹和腐蚀之类的结构损伤的发生和进展。波传播方法用于大面积检测。为了获得弹性波在材料中传播的理论解,对轴向波,共享波,挠曲波,罗利波和兰姆波的波函数进行了深入研究。使用数学分析程序来计算和模拟这些不同类型的波的波速和运动。在有限的激励和边界条件下,使用有限元方法来模拟和预测在结构中传播的波。铝梁和铝板用于获得实验结果。我们的研究使用的是原始结构和已知缺陷的结构。然后将实验结果与理论结果进行比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号