449
Views
4
CrossRef citations to date
0
Altmetric
Papers

A review on the mechanical performance and fatigue behavior of 3-D angle-interlock woven composites

, &
Pages 1306-1314 | Received 18 Sep 2014, Accepted 13 Nov 2014, Published online: 06 Jan 2015

References

  • Carvelli, V., Gramellini, G., Lomov, S. V., Bogdanovich, A. E., Mungalov, D. D., & Verpoest, I. (2010). Fatigue behavior of non-crimp 3D orthogonal weave and multi-layer plain weave E-glass reinforced composites. Composites Science and Technology, 70, 2068–2076.10.1016/j.compscitech.2010.08.002
  • Chen, X., Spola, M., Paya, J. G., & Sellabona, P. M. (1999). Experimental studies on the structure and mechanical properties of multi-layer and angle-interlock woven structures. The Journal of The Textile Institute, 90, 91–99.
  • Cui, F., Sun, B. Z., & Gu, B. H. (2010). Fiber inclination model for finite element analysis of three-dimensional angle interlock woven composite under ballistic penetration. Journal of Composite Materials, 45, 1499–1509.
  • Dadkhah, M. S., Cox, B. N., & Morris, W. L. (1995). Compression–compression fatigue of 3D woven composites. Acta Metallurgica et Materialia, 43, 4235–4245.10.1016/0956-7151(95)00137-K
  • Ding, Y. Q., Yan, Y., McIlhagger, R., & Brown, D. (1995). Comparison of the fatigue behaviour of 2-D and 3-D woven fabric reinforced composites. Journal of Materials Processing Technology, 55, 171–177.10.1016/0924-0136(95)01950-2
  • Dong, W. F., Xiao, J., & Li, Y. (2011). Finite element analysis of the tensile properties of 2.5D braided composites. Materials Science and Engineering A, 457, 199–204.
  • Gilchrist, M. D., Svensson, S., & Shishoo, R. (1998). Fracture and fatigue performance of textile commingled yarn composites. Journal of Materials Science, 33, 4049–4058.10.1023/A:1004431104540
  • Gowayed, Y., & Fan, H. (2001). Fatigue behavior of textile composite materials subjected to tension–tension loads. Polymer Composites, 22, 762–769.10.1002/(ISSN)1548-0569
  • Gu, B. H. (2007). A microstructure model for finite-element simulation of 3D rectangular braided composite under ballistic penetration. Philosophical Magazine, 87, 4643–4669.10.1080/14786430701573362
  • Gude, M., Hufenbach, W., & Koch, I. (2010). Damage evolution of novel 3D textile-reinforced composites under fatigue loading conditions. Composites Science and Technology, 70, 186–192.10.1016/j.compscitech.2009.10.010
  • Hallal, A., Younes, R., Nehme, S., & Fardoun, F. (2011). A corrective function for the estimation of the longitudinal Young’s modulus in a developed analytical model for 2.5D woven composites. Journal of Composite Materials, 45, 1793–1804.10.1177/0021998310387671
  • Hochard, C., Payan, J., & Bordreuil, C. (2006). A progressive first ply failure model for woven ply CFRP laminates under static and fatigue loads. International Journal of Fatigue, 28, 1270–1276.10.1016/j.ijfatigue.2006.02.024
  • Hochard, C., & Thollon, Y. (2010). A generalized damage model for woven ply laminates under static and fatigue loading conditions. International Journal of Fatigue, 32, 158–165.10.1016/j.ijfatigue.2009.02.016
  • Hu, H., Zhang, M. X., Fangueiro, R., & Araujo, M. D. (2010). Mechanical properties of composite materials made of 3D stitched woven-knitted preforms. Journal of Composite Materials, 44, 1753–1767.
  • Hu, J. (2008). 3-D fibrous assemblies: Properties, applications and modelling of three-dimensional textile structures (pp. 1–32). Cambridge: Woodhead Publishing.
  • Huang, Z. M., & Ramakrishna, S. (2003). Modeling inelastic and strength properties of textile laminates: A unified approach. Composites Science and Technology, 63, 445–466.10.1016/S0266-3538(02)00220-8
  • Jin, L. M., Hu, H., Sun, B. Z., & Gu, B. H. (2010). A simplified microstructure model of bi-axial warp-knitted composite for ballistic impact simulation. Composites Part B: Engineering, 41, 337–353.10.1016/j.compositesb.2010.03.006
  • Jin, L. M., Hu, H., Sun, B. Z., & Gu, B. H. (2012). Three-point bending fatigue behavior of 3D angle-interlock woven composite. Journal of Composite Materials, 46, 883–894.10.1177/0021998311412218
  • Jin, L. M., Jin, B. C., Kar, N., Nutt, S., Sun, B. Z., & Gu, B. H. (2013). Tension–tension fatigue behavior of layer-to- layer 3-D angle-interlock woven composites. Materials Chemistry and Physics, 140, 183–190.10.1016/j.matchemphys.2013.03.020
  • Jin, L. M., Niu, Z. L., Jin, B. C., Sun, B. Z., & Gu, B. H. (2012). Comparisons of static bending and fatigue damage between 3D angle-interlock and 3D orthogonal woven composites. Journal of Reinforced Plastics and Composites, 31, 935–945.10.1177/0731684412450626
  • Lapeyronnie, P., Le Grognec, P., Binétruy, C., & Boussu, F. (2011). Homogenization of the elastic behavior of a layer-to-layer angle-interlock composite. Composite Structures, 93, 2795–2807.10.1016/j.compstruct.2011.05.025
  • Li, Z. J., Sun, B. Z., & Gu, B. H. (2010). FEM simulation of 3D angle-interlock woven composite under ballistic impact from unit cell approach. Computational Materials Science, 49, 171–183.10.1016/j.commatsci.2010.04.043
  • Mouritz, A. P. (2008). Tensile fatigue properties of 3D composites with through-thickness reinforcement. Composites Science and Technology, 68, 2503–2510.10.1016/j.compscitech.2008.05.003
  • Mouritz, A. P., Bannister, M. K., Falzon, P. J., & Leong, K. H. (1999). Review of applications for advanced three-dimensional fibre textile composites. Composites Part A: Applied Science and Manufacturing, 30, 1445–1461.10.1016/S1359-835X(99)00034-2
  • Nehme, S., Hallal, A., & Fardoun, F. (2011). Numerical/analytical methods to evaluate the mechanical behavior of interlock composites. Journal of Composite Materials, 45, 1699–1716.10.1177/0021998310385592
  • Rudov-Clark, S., & Mouritz, A. P. (2008). Tensile fatigue properties of a 3D orthogonal woven composite. Composites Part A: Applied Science and Manufacturing, 39, 1018–1024.10.1016/j.compositesa.2008.03.001
  • Sheng, S. Z., & van Hoa, S. (2003). Modeling of 3D angle interlock woven fabric composites. Journal of Thermoplastic Composite Materials, 16, 45–58.10.1177/0892705703016001206
  • Sun, B. Z., & Gu, B. H. (2007). Frequency analysis of stress waves in testing 3-D angle-interlock woven composite at high strain rates. Journal of Composite Materials, 41, 2915–2938.10.1177/0021998307082181
  • Sun, B. Z., Gu, B. H., & Ding, X. (2005). Compressive behavior of 3-D angle-interlock woven fabric composites at various strain rates. Polymer Testing, 24, 447–454.10.1016/j.polymertesting.2005.01.005
  • Sun, B. Z., Liu, Y. K., & Gu, B. H. (2009). A unit cell approach of finite element calculation of ballistic impact damage of 3-D orthogonal woven composite. Composites Part B: Engineering, 40, 552–560.10.1016/j.compositesb.2009.01.012
  • Sun, B. Z., Yao, Y., Jin, L. M., & Gu, B. H. (2013). Finite element analyses of stress distributions of three-dimensional angle-interlock woven composite subjected to three-point bending cyclic loading. The Journal of The Textile Institute, 104, 1186–1194.10.1080/00405000.2013.785080
  • Tamuzs, V., Dzelzitis, K., & Reifsnider, K. (2008). Prediction of the cyclic durability of woven composite laminates. Composites Science and Technology, 68, 2717–2721.10.1016/j.compscitech.2008.04.033
  • Tan, P., Tong, L. Y., & Steven, G. P. (1990). Micromechanics models for mechanical and thermomechanical properties of 3D through-the-thickness angle interlock woven composites. Composites: Part A, 30, 637–648.
  • Tang, Y. Y., Sun, B. Z., & Gu, B. H. (2010). Impact damage of 3D cellular woven composite from unit-cell level analysis. International Journal of Damage Mechanics, 20, 323–346.
  • Tong, L., Mouritz, A. P., & Bannister, M. K. (2002). 3D fibre reinforced polymer composites (pp. 1–12). Oxford: Elsevier Science.
  • Tsai, K. H., Chiu, C. H., & Wu, T. H. (2000). Fatigue behavior of 3D multi-layer angle interlock woven composite plates. Composites Science and Technology, 60, 241–248.10.1016/S0266-3538(99)00120-7
  • Van Paepegem, W., & Degrieck, J. (2002). Coupled residual stiffness and strength model for fatigue of fibre-reinforced composite materials. Composites Science and Technology, 62, 687–696.10.1016/S0266-3538(01)00226-3
  • Xu, Y. H., Hu, H., & Yuan, X. L. (2011). Geometrical analysis of co-woven-knitted preform for composite reinforcement. The Journal of The Textile Institute, 102, 405–418.10.1080/00405000.2010.482346

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.