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Stitching Effect on Flexural and Interlaminar Properties of MWK Textile Composites

  • Byun, Joon-Hyung (Composites Research Division, Korea Institute of Materials Science) ;
  • Wang, Yi-Qi (Composites Research Division, Korea Institute of Materials Science) ;
  • Um, Moon-Kwang (Composites Research Division, Korea Institute of Materials Science) ;
  • Lee, Sang-Kwan (Composites Research Division, Korea Institute of Materials Science) ;
  • Song, Jung-Il (Department of Mechanical Engineering, Changwon National University) ;
  • Kim, Byung-Sun (Composites Research Division, Korea Institute of Materials Science)
  • 투고 : 2015.06.18
  • 심사 : 2015.06.29
  • 발행 : 2015.06.30

초록

The stitching process has been widely utilized for the improvement of through-thickness property of the conventional laminated composites. This paper reports the effects of stitching on the flexural and interlaminar shear properties of multi-axial warp knitted (MWK) composites in order to identify the mechanical property improvements. In order to minimize the geometric uncertainties associated with the stacking pattern of fabrics, the regular lay-up was considered in the examination of the stitching effect. The key parameters are as follows: the stitch spacings, the stitching types, the stitching location, and the location of compression fixture nose. These parameters have little effect on the flexural and interlaminar shear properties, except for the case of stitching location. However, the geometry variations caused by the stitching resulted in minor changes to the mechanical properties consistently. Stitching on the $0^{\circ}$ fibers showed the lowest flexural strength and modulus (12% reduction for both properties). The stitch spacing of 5 mm resulted in 8% reduction for the case of interlaminar strength compared with that of 10 mm spacing.

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참고문헌

  1. Ga, B.B., Hogg, P.J., and Kemp, M., "Mechanical Characterization of Glass- and Carbon-Fibre-Reinforced Composites made with Non-Crimp Fabrics," Composites Science and Technology, Vol. 57, No. 9-10, 1997, pp. 1221-1241. https://doi.org/10.1016/S0266-3538(97)00053-5
  2. Kamiya, R., Cheeseman, B.A., Popper, P., and Chou, T.W., "Some Recent Advances in the Fabrication and Design of Three-dimensional Textile Preforms: A Review," Composites Science and Technology, Vol. 60, No. 1, 2000, pp. 33-47. https://doi.org/10.1016/S0266-3538(99)00093-7
  3. Leong, K.H., Ramakrishna, S., Huang, Z.M., and Ga, B.B., "The Potential of Knitting for Engineering Composites-a Review," Composites: Part A, Vol. 31, No. 3, 2000, pp. 197-220. https://doi.org/10.1016/S1359-835X(99)00067-6
  4. Hufenbach, W., Bohm, R., Thieme, M., Winkler, A., Mader, E., and Rausch, J., "Polypropylene/glass Fibre 3D-textile Reinforced Composites for Automotive Applications," Materials and Design, Vol. 32, No. 3, 2011, pp. 1468-1476. https://doi.org/10.1016/j.matdes.2010.08.049
  5. Byun, J.H. and Chou, T.W., Comprehensive Composite Material, Elsevier Science Publishers, Netherlands, 2000.
  6. Beier, U., Fischer, F., Sandler, J.K.W., Altstadt, V., Weimer, C., Spanner, H., and Buchs, W., "Evaluation of Preforms Stitched with a Low Melting-temperature Thermoplastic Yarn in Carbon Fibre-reinforced Composites," Composites Part A, Vol. 39, Issue 5, 2008, pp. 705-711. https://doi.org/10.1016/j.compositesa.2008.02.011
  7. Beier, U., Wolff-Fabris, F., Fischer, F., Sandler, J.K.W., Altstadt, V., Hulder, G., Schmachtenberg, E., Spanner, H., Weimer, C., Roser, T., and Buchs, W., "Mechanical Performance of Carbon Fibre-reinforced Composites Based on Preforms Stitched with Innovative Low-melting Temperature and Matrix Soluble Thermoplastic Yarns," Composites Part A, Vol. 39, No. 9, 2008, pp. 1572-1581. https://doi.org/10.1016/j.compositesa.2008.06.003
  8. Tan, K.T., Watanabe, N., and Iwahori, Y., "Effect of Stitch Density and Stitch Thread Thickness on Low-velocity Impact Damage of Stitched Composites," Composites Part A, Vol. 41, No. 12, 2010, pp. 1857-1868. https://doi.org/10.1016/j.compositesa.2010.09.007
  9. Tan, K.T., Watanabe, N., Iwahori, Y., and Ishikawa, T., "Effect of Stitch Density and Stitch Thread Thickness on Compression after Impact Strength and Response of Stitched Composites," Composites Science and Technology, Vol. 72, No. 5, 2012, pp. 587-598. https://doi.org/10.1016/j.compscitech.2012.01.003
  10. Tan, K.T., Watanabe, N., Iwahori, Y., and Ishikawa, T., "Effect of Stitch Density and Stitch Thread Thickness on Damage Progression and Failure Characteristics of Stitched Composites under Out-of-plane Loading," Composites Science and Technology, Vol. 74, 2013, pp. 194-204. https://doi.org/10.1016/j.compscitech.2012.11.001
  11. Margossian, A., Bel, S., Balvers, J.M., Leutz, D., Freitas, R., and Hinterhoelzl, R., "Finite Element Forming Simulation of Locally Stitched Non-crimp Fabrics," Composites: Part A, Vol. 61, 2014, pp. 152-162. https://doi.org/10.1016/j.compositesa.2014.02.020
  12. Li, L., Zhao, Y., Vuong, H., Chen, Y., Yang, J., and Duan, Y.X., "In-plane Shear Investigation of Biaxial Carbon Non-crimp Fabrics with Experimental Tests and Finite Element Modeling," Materials and Design, Vol. 63, 2014, pp. 757-765. https://doi.org/10.1016/j.matdes.2014.07.007
  13. Zhao, N.P., Rodel, H., Herzberg, C., Gao, S.L., and Krzywinski, S., "Stitched Glass/PP Composite Part I: Tensile and Impact Properties," Composites: Part A, Vol. 40, 2009, pp. 635-643. https://doi.org/10.1016/j.compositesa.2009.02.019
  14. Asp, L.E., Edgren, F., and Sjogren, A., "Effects of Stitch Pattern on the Mechanical Properties of Non-crimp Fabric Composites," Proceeding of the 11th ECCM, Rhodes, Greece, May 2004, pp. 31-05.
  15. Woo, K. and Whitcomb, J.D., "Effects of Fiber Tow Misalignment on the Engineering Properties of Plain Weave Textile Composite," Composite Structures, 37, 1997, pp. 343-355. https://doi.org/10.1016/S0263-8223(97)00025-1
  16. Ito, M., and Chou, T.W., "An Analytical and Experimental study of Strength and Failure Behavior of Plain Woven Composites," Journal of Composite Materials, 32, 1998, pp. 2-30. https://doi.org/10.1177/002199839803200101

피인용 문헌

  1. Short-term creep behavior of multi-axial warp knitted fabric-reinforced polyethylene matrix composites pp.1746-7748, 2019, https://doi.org/10.1177/0040517518775910