댓글 0조회 수 222499추천 수 0
?

단축키

이전 문서

다음 문서

+ - Up Down Comment Print
?

단축키

이전 문서

다음 문서

+ - Up Down Comment Print

http://www.dbpia.co.kr/Journal/ArticleDetail/3206729


한국비파괴검사학회 > 비파괴검사학회지 > 비파괴검사학회지 제33권 제3호


비파괴검사학회지 제33권 제3호, 2013.6, 264-269 (6 pages)

Feasibility of MFC (Macro-Fiber Composite) Transducers for Guided Wave Technique

Gang Ren, Dongseok Yun, Hogeon Seo, Minkyoo Song, Kyung-Young Jhang식별저자
영어 초록
  Since MFC(macro-fiber composite) transducer has been developed, many researchers have tried to apply this transducer on SHM(structural health monitoring), because it is so flexible and durable that it can be easily embedded to various kinds of structures. The objective of this paper is to figure out the benefits and feasibility of applying MFC transducers to guided wave technique. For this, we have experimentally tested the performance of MFC patches as transmitter and sensors for excitation and reception of guided waves on the thin aluminum alloy plate. In order to enhance the signal accuracy, we applied the FIR filter for noise reduction as well as used STFT(short-time Fourier transform) algorithm to image the guided wave characteristics clearly. From the results, the guided wave generated based on MFC showed good agreement with its theoretical dispersion curves. Moreover, the ultrasonic Lamb wave techniques based on MFC patches in pitch-catch manner was tested for detection of surface notch defects of which depths are 10%, 20%, 30% and 40% of the aluminum plate thickness. Results showed that the notch was detectable well when the notch depth was 10% of the thickness or greater.
목차
Abstract
1. Introduction
2. Micro-Fiber Composite (MFC) Transducer
3. Experiments
4. Results and Analysis
5. Conclusions
References
키워드
상세서지
  • 발행기관 : 한국비파괴검사학회
  • 자료유형 : 전자저널 논문
  • 등재정보 : KCI 등재
  • 작성언어 : 영어
  • 파일형식 : Text PDF
  • KORMARC 보기
  • URL : http://www.dbpia.co.kr/Article/3206729 복사 즐겨찾기로 추가

분류 제목 조회 수
Domestic Feasibility of MFC (Macro-Fiber Composite) Transducers for Guided Wave Technique   222499
Domestic Imaging of Harmonic Wave Generated by Contact Acoustic Nonlinearity in Obliquely Incident Ultrasonic Wave   191444
Domestic 모드선택성을 강화한 비접촉식 유도초음파 기술   143278
Domestic 인듐안티모나이드(InSb) 소자를 이용한 적외선 방사온도 계측시스템의 개발 연구   139699
Domestic Fully Non-Contact Assessment of Acoustic Nonlinearity According to Plastic Deformation in Al6061 Alloy   135336
Domestic "수박에서의 초음파 전파 특성에 관한 실험적 연구"   135037
Domestic 펄스형 초음파 신호에서 비선형 파라미터의 정밀추정   133933
Domestic Initial Second Harmonic Generation in Narrowband Surface Waves by Multi-Line Laser Beams for Two Kinds of Spatial Energy Profile   132106
Domestic Reflection and Transmission of Acoustic Waves Across Contact Interfaces   129824
Domestic "Development of Pressure Control System of Contact Transducer for Measurement of Ultrasonic Nonlinear Parameter "   129154
Domestic Simulations for Internal Defect Inspection using Laser Generated Ultrasonic Wave in Ablation Regime   128130
Domestic Initial Second Harmonic Generation in Narrowband Surface Waves by Multi-Line Laser Beams for Two Kinds of Spatial Energy Profile Models   125704
Domestic Experimental Characterization of Cyclic Deformation in Copper Using Ultrasonic Nonlinearity   125537
Domestic 전파속도를 알 수 없는 재료에서의 AE 발생위치 온라인 측정   125375
Domestic A6061 합금의 석출경화 열처리에 따른 탄성파의 음향 특성 연구   124329
Domestic Porosity evaluation of additive manufactured parts: ultrasonic testing and eddy current testing   124156
Domestic 회절초음파를 이용한 노치 피로균열의 균열깊이 평가   123866
Domestic Evaluation of Ultrasonic Nonlinear Characteristics in Artificially Aged Al6061-T6   121842
Domestic "웨이브렛 변환을 이용한 초음파 펄스 에코신호의 디컨볼루션"   120861
Domestic 초음파주사현미경의 분해능 향상을 위한 중첩된 펄스에코 신호의 분리기법(디컨볼루션과 웨이브렛 변환의 혼합기법)   119549
Board Pagination ‹ Prev 1 2 3 4 5 Next ›
/ 5
Designed by hikaru100

나눔글꼴 설치 안내


이 PC에는 나눔글꼴이 설치되어 있지 않습니다.

이 사이트를 나눔글꼴로 보기 위해서는
나눔글꼴을 설치해야 합니다.

설치 취소

SketchBook5,스케치북5

SketchBook5,스케치북5

SketchBook5,스케치북5

SketchBook5,스케치북5

ISNDE Laboratory
203-2,Engineering Center Annex
Hanyang University,
222 Wangsimni-ro, Seongdong-gu
Seoul 04763, Korea
04763 서울특별시 성동구 왕십리로 222
한양대학교 공업센터 별관 203-2호
지능계측 및 비파괴평가 연구실
Tel: 02 - 2220 - 4220
Fax: 02 - 2299 - 7207