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One-Sided Nondestructive Evaluation of CFRP Composites By Using Ultrasonic Sound
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  • One-Sided Nondestructive Evaluation of CFRP Composites By Using Ultrasonic Sound
  • One-Sided Nondestructive Evaluation of CFRP Composites By Using Ultrasonic Sound
저자명
임광희,장계림,최성록,예창희,류제성,임수환,한민규,Im. Kwang-Hee,Zhang. Gui-Lin,Choi. Sung-Rok,Ye. Chang-Hee,Ryu. Je-Sung,Lim. Soo-Hwan,Han. Min-Gui,Hs
간행물명
한국생산제조시스템학회지
권/호정보
2011년|20권 1호|pp.47-52 (6 pages)
발행정보
한국생산제조시스템학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

It is well known that stiffness of composites depends on layup sequence of CFRP(carbon fiber reinforced plastics) laminates because the layup of composite laminates influences their properties. Ultrasonic NDE of composite laminates is often based on the backwall echoes of the sample. A pair of such transducers was mounted in a holder in a nose-to-nose fashion to be used as a scanning probe on composites. Miniature potted angle beam transducers were used (Rayleigh waves in steel) on solid laminates of composites. Experiments were performed to understand the behavior of the transducers and the nature of the waves generated in the composite (mode, wave speed, angle of refraction). C-scan images of flaws and impact damage were then produced by combining the pitch-catch probe with a portable manual scanner known as the Generic Scanner ("GenScan"). The pitch-catch signal was found to be more sensitive than normal incidence backwall echo of longitudinal wave to fiber orientation of the CFRP composites, including low level porosity, ply waviness, and cracks. Therefore, it is found that the experimentally Rayleigh wave variation of pitch-catch ultrasonic signal was consistent with numerical results and one-side ultrasonic measurement might be very useful to detect the defects.