Published January 2007 | Version v1
Journal article

A study on non-contact ultrasonic technique for on-line inspection of CFRP

  • 1. Pusan National University, Busan, Korea (Korea, Democratic People's Republic of). School of Mechanical Engineering
  • 2. Korea Institute of Machinery and Materials, Kyungnam, Korea (Korea, Democratic People's Republic of). Composites Materials Group

Description

The advantages of carbon fiber reinforced plastic materials (CFRP) are: they are light structure materials, they have corrosion resistance, and higher specific strength and elasticity. The recently developed 3-dimentional fiber placement system is able to produce a more complex and various shaped structures due to less limitations of a product shape according to the problem in conventional fabrication process. This fiber placement system stacks the narrow prepreg tape on the mold according to the designed sequence and thickness. Non-destructive evaluation was rquired for these composites to evaluate changes in strength caused by defects such as delamination and porosity. Additionally, the expectent quality should be satisfied for the high cost fabrication process using the fiber placement system. Therefore, an on line non-destructive evaluation system is required and real-time complement is needed when the defects are detected [1]. Defect imaging by the ultrasonic C-scan method is a useful technique for defect detection in CFRP. However, the conventional ultrasonic C-scan technique cannot be applied during the fabrication process because the test piece should be immersed into the water. Therefore, non-contact ultrasonic techniques should be applied during the fabricating process. For the development of non-contact ultrasonic techniques available in non-destructive evaluation of CFRP, a recent laser-generated ultrasonic technique and an air-coupled transducer that transmit and receive ultrasounds in the air are studied [2-3]. In this study, generating and receiving techniques of laser-generated ultrasound and the characteristics of received signals upon the internal defects of CFRO were studied for non-contact inspection

Additional details

Publishing Information

Journal Title
Non-Destructive Testing - Australia
Journal Volume
44
Journal Issue
1
Journal Page Range
p. 30-32
ISSN
0157-6461
CODEN
NTAUDZ

Optional Information

Notes
5 refs., 6 figs.