Visualization of resin impregnation through opaque reinforcement textiles during the vacuum-assisted resin transfer molding process using ultrasound
- Authors
- Liu, Hai Long; Tu, Xin-Cheng; Lee, Joon Oh; Kim, Hyoung-Bum; Hwang, Wook Ryol
- Issue Date
- Apr-2014
- Publisher
- SAGE PUBLICATIONS LTD
- Keywords
- Ultrasound visualization; vacuum-assisted resin transfer molding; process monitoring; carbon fibers
- Citation
- JOURNAL OF COMPOSITE MATERIALS, v.48, no.9, pp 1113 - 1120
- Pages
- 8
- Indexed
- SCI
SCIE
SCOPUS
- Journal Title
- JOURNAL OF COMPOSITE MATERIALS
- Volume
- 48
- Number
- 9
- Start Page
- 1113
- End Page
- 1120
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/19085
- DOI
- 10.1177/0021998313482157
- ISSN
- 0021-9983
1530-793X
- Abstract
- In this study, an ultrasound visualization system has been set up for in-situ monitoring of the resin flow impregnating through opaque carbon fiber reinforcements during the vacuum-assisted resin transfer molding. The flow front advancement through the carbon fabrics covered by a bagging film can be identified and visualized by the high frequency B (brightness) mode ultrasound imaging technique. The resin advancement in the opaque carbon fabrics has turned out to form a non-uniform plug flow along the pressure gradient direction and the potential void formation can be observed from the mesoscopic resin flow behavior: the inter-tow regions have been preferentially filled by the resin fluid and the fiber tow region behaves as a sink that probably remain as a void defect. The local unsaturated transient velocity of the resin flow has been also evaluated, which is particularly important in understanding saturation behaviors in dual-scale fabrics and is hardly measurable by other means. In spite of the hardware limitations on the resolution, the proposed ultrasound visualization system can provide a less expensive and portable visualization tool to understand the microstructure of opaque reinforcements and monitor the resin flow behavior during the vacuum-assisted resin transfer molding process in the industrial composite manufacturing environment.
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