Fig. 1. Type of GF fabric pattern: (a) plain fabric (PF); (b) twill (T);and (C)warp satin (WS)
Fig. 2. Continuous compression molding (CCM) machine by Large
Fig. 3. Test piece of CFT plate by fabric pattern : (a) Tensile strength; (b) Flexural strength; (C) Impact strength (from the Plain, Twill, Sarin)
Fig. 4. Tensile strength of CFT with different reinforcement pattern
Fig. 5. Flexural strength of CFT with different reinforcement pattern
Fig. 6. Izod strength of CFT with different reinforcement pattern
Fig. 7. Vv of CFT with different reinforcement pattern
Fig. 8. Results of side slice image of CFT with different reinforcement pattern using CT: (a) WS; (b) T; and (c) PF
참고문헌
- (International Journal) Vaidya, U.K., and Chawla, K.K., "Processing of Fibre Reinforced Thermoplastic Composites", International Materials Reviews, Vol. 53, No. 4, 2008, pp. 185-218. https://doi.org/10.1179/174328008X325223
- (Korean Journal) Park, D.-C., Park, C.-W., Shin, D.-H., and Kim, Y.-H., "A Study on Crystallization of Thermoplastic Aromatic Polymer," The Journal of the Korean Society for Composite Materials, Vol. 31, No. 4, 2018, pp. 122-127.
- (Korean Journal) Ryoo, H.W., Lee, D.G., and Kim, E.G., "An Effect of Fiber Length on the Correlation between Separation and Orientation of Flow Molded Fiber-Reinforced Polymeric Composites", The Journal of the Korean Society for Composite Materials, Vol. 6, No. 1, 1993, pp. 19-28.
- (International Journal) Naik, R.A., "Failure Analysis of Woven and Braided Fabric Reinforced Composites", Journal of Composite Materials, Vol. 29, No. 17, 1995, pp. 2334-2363. https://doi.org/10.1177/002199839502901706
- (Korean Journal) Kim, J.-W., and Lee, D.-G., "Effect of Fiber Orientation and Fiber Contents on the Tensile Strength in Fiber-reinforced Thermoplastic Composites", The Journal of the Korean Society for Composite Materials, Vol. 20, No. 5, 2007, pp. 13-19.
- (International Journal) Jarukumjorn, K., and Suppakarn, N., "Effect of Glass Fiber Hybridization on Properties of Sisal Fiber-polypropylene Composites", Composites Engineering, Vol. 40, No. 7, 2009, pp. 623-627. https://doi.org/10.1016/j.compositesb.2009.04.007
- (Korean Journal) Hwang, Y.-T., Lim, J.-Y., Nam, B.-G., and Kim, H.-S., "Analytical Prediction and Validation of Elastic Behavior of Carbon-Fiber-Reinforced Woven Composites", The Journal of the Korean Society for Composite Materials, Vol. 31, 5, 2018, pp. 276-281.
- (Proceeding) Kilic, M.H., "Three-dimensional Micromechanical Models for the Nonlinear Analysis of Pultruded Composite Structures", Georgia Institute of Technology, 2001.
- (International Journal) Gardiner, G., "Aerospace-grade Compression Molding: Continuous Compression Molding Process Produces Structures 30 Percent Lighter than Aluminum at Costs that have Both Airbus and Boeing Sold", High Performance Composites, Vol. 18, No. 4, 2010, pp. 34-40.
- (Korean Journal) Song, S.A., On, S.Y., Park, G.E., and Kim, S.S., "Improvement of Physical Properties for Carbon Fiber/PA 6,6 Composites", The Journal of the Korean Society for Composite Materials, Vol. 30, No. 6, 2017, pp. 365-370.
- (Korean Journal) Lee, W., Um, M.-K., Byun, J.-H., and Cao, J., "Characterization of In-plane Shear Behaviors of Woven Fabrics by Bias-extension and Trellis-frame Tests", The Journal of the Korean Society for Composite, Vol. 22, No. 1, 2009, pp. 15-21.
- (Korean Journal) Jeon, K.-W., Shin, K.-B., and Kim, J.-S., "A Study on the Evaluation of Tension-Compression Fatigue Characteristics of Glass Fiber/Epoxy 4-Harness Satin Woven Laminate Composite for the Railway Bogie Application", The Journal of the Korean Society for Composite, Vol. 23, No. 5, 2010, pp. 22-29.