International Journal of Smart and Nano Materials (Apr 2023)

Impact localization of composite laminates based on weight function compensation localization algorithm of thin film sensors

  • Ying Wang,
  • Hongmei Li,
  • Shaowei Lu,
  • Xingmin Liu,
  • Wei Li,
  • Xiaoqiang Wang,
  • Lu Zhang,
  • Qingxuan Wang

DOI
https://doi.org/10.1080/19475411.2023.2184880
Journal volume & issue
Vol. 14, no. 2
pp. 139 – 154

Abstract

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ABSTRACTComposite structures are sensitive to impact damage in practical engineering. Electric resistance change method (ERCM) is an ideal technique for damage monitoring of composite structures. Due to the anisotropy of fiber-resin matrix composites, impact location monitoring is difficult, and research on impact location of fiber composite laminates (FRPs) is limited. A preparation method of MXene/CNT/CuNps thin film sensor is proposed. According to the modeling simulation and theoretical calculation, the resistance change characteristics of the thin film sensor are obtained, the relationship between the impact distance and the resistance change is established, and the sensor array is designed. A three-point localization algorithm and a weight function compensation localization algorithm are proposed, which can improve the imaging accuracy of the impact position. The impact point location was observed and analyzed using ultrasonic C-scan technology. The results show that the weight function compensation positioning algorithm can accurately locate the impact of the composite structure, and the error in the X direction is 7.1%, the error in the Y direction is 0.03%, which verifies the effectiveness of the method.

Keywords