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Structural health monitoring technology for a full-scale aircraft structure under changing temperature

机译:温度变化下的大型飞机结构的结构健康监测技术

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摘要

This paper presents optimal operating modes for the factors to maximise the detection capability of a given SHM technology in service environment. Firstly, an orthogonal experiment was performed to determine the importance ranking of the influence factors. Through the test, it is found that operating temperatures for SHM hardware and excitation frequencies for PZT actuator were the most critical factors. Then, numerical model of Lamb waves generated and received by PZT sensors were presented to predict the distribution of response signal amplitudes under changing temperature. Verification tests were carried out on a glass fibre reinforced composite plate at different temperatures. The comparison between the analytical prediction and test results was presented and temperature-dependent optimal frequencies for PZT actuators were obtained. Finally, SHM experiments of full-scale horizontal composite structures are presented. The detection capability of the SHM technology applications of aircrafts in real world is verified by the experimental results.
机译:本文针对这些因素提出了最佳操作模式,以在服务环境中最大化给定SHM技术的检测能力。首先,进行正交试验以确定影响因素的重要性等级。通过测试,发现SHM硬件的工作温度和PZT执行器的激励频率是最关键的因素。然后,建立了由PZT传感器产生和接收的兰姆波的数值模型,以预测温度变化时响应信号幅度的分布。验证测试是在不同温度下在玻璃纤维增​​强复合板上进行的。给出了分析预测和测试结果之间的比较,并获得了温度相关的PZT执行器的最佳频率。最后,提出了全尺寸水平复合结构的SHM试验。实验结果验证了飞机SHM技术在现实世界中的探测能力。

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  • 来源
    《The Aeronautical Journal》 |2014年第1210期|1519-1537|共19页
  • 作者

    D. Gao; Y. Wang; Z. Wu; G. Rahim;

  • 作者单位

    State Key Laboratory of Structural Analysis for Industrial Equipment Dalian University of Technology China;

    State Key Laboratory of Structural Analysis for Industrial Equipment Dalian University of Technology China;

    State Key Laboratory of Structural Analysis for Industrial Equipment Dalian University of Technology China;

    State Key Laboratory of Structural Analysis for Industrial Equipment Dalian University of Technology China;

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  • 正文语种 eng
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