Resonance frequency analysis of 3D printed self-healing capsules for localization of self-healing capsules inside concrete using millimeter wave length electromagnetic waves

밀리미터 전자기파를 이용한 콘크리트 내부 자가치유 캡슐의 위치 측정을 위한 3D 프린팅 자가치유 캡슐의 공진 주파수 분석

  • 임태욱 (충남대학교, 기계공학과) ;
  • 성호 (충남대학교, 기계공학과) ;
  • 이영준 (충남대학교, 기계공학과) ;
  • 호걸 (충남대학교, 기계공학과) ;
  • 김상유 (충남대학교, 기계공학과) ;
  • 정원석 (충남대학교)
  • Published : 2022.11.10

Abstract

In this paper, experiments were conducted on signal amplification of polymer capsules for application to Ground Penetrating Radar so as to enable real-time monitoring of polymer capsules inside concrete using the Morphology Dependent Resonance phenomenon. A TEM CELL and a vector network analyzer were used to analyze the difference in resonance frequency depending on the material of the sphere and the presence or absence of fracture. In order to manufacture a capsule of a size that can be measured using millimeter waves used in GPR, we manufactured a capsule with a 3D printer and analyzed the effects of the presence or absence of coating and the size of the capsule on the resonance frequency. Resonant frequency or signal amplification is more affected by diameter than coating. The capsule showing the highest amplification is the resin-coated 50 mm diameter capsule with a 316-fold increase and the lowest capsule is the uncoated 10 mm diameter capsule with a signal amplification of 11.9 times. These results demonstrate the potential of GPR to measure the position and state of self-healing capsules, which are small-sized polymers, in real time using millimeter waves.

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Acknowledgement

본 논문은 2022년 한국 연구재단의 기초연구실사업(과제번호: 2020R1A4A3079595)의 일환으로 수행된 연구임을 밝히며 이에 감사를 드립니다.