PSI - Issue 42
Andreas J. Brunner et al. / Procedia Structural Integrity 42 (2022) 1660–1667 Andreas J. Brunner / Structural Integrity Procedia 00 (2019) 000 – 000
1667
8
Hertzberg, R.W., Nordberg, H., Manson, J.A. 1970. Fatigue Crack Propagation in Polymeric Materials. Journal of Materials Science 5, 521-526. Hertzberg, R.W. 1996. Fatigue crack propagation in Engineering Plastics, in "Deformation and Fracture Mechanics of Engineering Materials" . In Herzberg, R.W. (Ed.) John Wiley & Sons, New York, 4 th Ed., pp. 664. ISO 13856 2018. Plastics — Determination of fracture toughness (GIC and KIC) — Linear elastic fracture mechanics (LEFM) approach International Organization for Standardization, Geneva, Switzerland, pp. 1-22. ISO 17281 2018. Plastics — Determination of fracture toughness (GIC and KIC) at moderately high loading rates (1 m/s). International Organization for Standardization, Geneva, Switzerland, pp. 1-29. Jones, R., Kinloch, A.J., Michopoulos, J.G., Brunner, A.J., Phan, N. 2017. Delamination growth in polymer-matrix fibre composites and the use of fracture mechanics data for material characterization and life prediction. Composite Structures 180, 316-333. Joshi, S.C., Dikshit, V. 2012. Enhancing interlaminar fracture characteristics of woven CFRP prepreg composites through CNT dispersion. Journal of Composite Materials 46 No. 6, 665–675. Kim, S.L. Skibo, M., Manson, J.A., Hertzberg, R.W. 1977. Fatigue Crack Propagation in Poly(Methyl Methactylate): Effect of Molecular Weight and Internal Plasticization. Polymer Engineering and Science 17 No. 3, 194-203. Klingler, A., Wetzel, B. 2017. Fatigue crack propagation in triblock copolymer toughened epoxy nanocomposites. Polymer engineering and science 57 No. 6, 579-587. Khudiakova, A., Brunner, A.J., Wolfahrt, M., Pinter, G. 2021a. Quantification approaches for fatigue crack resistance of thermoplastic tape layered composites with multiple delaminations, Materials (MDPI), 2021, 14 No. 6, 1476, 1-24. Khudiakova, A., Brunner, A.J., Wolfahrt, M., Wettemann, Th., Godec, D., Pinter, G. 2021b. On the investigation of quasi-static crack resistance of thermoplastic tape layered composites with multiple delaminations: Approaches for quantification", Composites Part A: Applied Science and Manufacturing, 149, 106484, 1-10. Manson, J.A., Hertzberg, R.W. 1973 Fracture of high-impact polystyrene under fatigue loading. Journal of Polymer Science, Part B-Polymer Physics 11 No. 12, 2483-2488. Martin, R.H. 2000. Incorporating interlaminar fracture mechanics into design. Proceedings of the Institution of Mechanical Engineers, Part L: Materials Design and Applications, 214, 91-97. Morelle, X.P., Lani, F., Melchior, M.A., André, S., Bailly, C., Pardoen, T. 2012. The Elasto-Viscoplasticity and Fracture Behaviour of the RTM6 Structural Epoxy and Impact on the Response of Woven Composites. Proceedings ECCM15, Venice Italy, June 24-28, 2012, 1-6. Murri, G.B. 2006. Testing and life prediction for composite rotor hub flexbeams. International Journal of Fatigue 28, 1124–1135. Murri, G.B., Schaff, J.R. 2006. Fatigue life methodology for tapered hybrid composite flexbeams. Composites Science and Technology 66, 499– 508. O'Brien, T.K., 1998. Composite Interlaminar Shear Fracture Toughness, G IIc : Shear Measurement or Sheer Myth? Composite Materials: Fatigue and Fracture, Seventh Volume, ASTM STP 1330, R. B. Bucinell, Ed., American Society for Testing and Materials, 3-18. Pascoe, J.-A., Rans, C.D., Benedictus, R. 2013a. Characterizing fatigue delamination growth behaviour using specimens with multiple delaminations: The effect of unequal delamination lengths. Engineering Fracture Mechanics 109, 150–160. Pascoe, J.-A., Alderliesten, R.C., Benedictus, R. 2013b. Methods for the prediction of fatigue delamination growth in composites and adhesive bonds – A critical review. Engineering Fracture Mechanics 112-113, 72–96. Pascoe, J.-A., 2021. Slow-growth damage tolerance for fatigue after impact in FRP composites: Why current research won’t get us there. Theoretical and Applied Fracture Mechanics 116, 103127, 1-10. Pegoretti, A., Ricco, T. 2000. Fatigue Fracture of Neat and Short Glass Fiber Reinforced Polypropylene: Effect of Frequency and Material Orientation. Journal of Composite Materials 34 No. 12, 1009-1027. Sales, R., Gusmão, S.R., Gouvêa, R.F., Chu, Th., Marlet, J.M, Cândido, G.M., Donadon, M.V. 2017. The temperature effects on the fracture toughness of carbon fiber/RTM-6 laminates processed by VARTM. Journal of Composite Materials 51 No. 12, 1729–1741. Shokrieh, M.M., Salamat-talab, M. Heidari-Rahani, M. 2016. Effect of interface fiber angle on the R-curve behavior of E-glass/epoxy DCB specimens. Theoretical and Applied Fracture Mechanics 86, 153–160. Srivastava, I., Koratkar, N. 2010. Fatigue and Fracture Toughness of Epoxy Nanocomposites. JOM 62 No. 2, 50-57. Stelzer S., Brunner A.J., Argüelles A., Murphy N., Pinter G. Mode I delamination fatigue crack growth in unidirectional fiber reinforced composites: Development of a standardized test procedure. Composites Science and Technology 72 No. 10, 1102–1107. Stelzer S., Brunner A.J., Argüelles A., Murphy N., Cano G., Pinter G. 2014. Mode I delamination fatigue crack growth in unidirectional fiber reinforced composites: Results from ESIS TC4 round-robins. Engineering Fracture Mechanics 116, 92–107. Van Velthem, P., Ballout, W., Daoust, D., Sclavons, M., Cordenier, F., Henry, E., Dumont, D., Destoop, V-, Pardoen. T., Bailly, C. 2015. Influence of thermoplastic diffusion on morphology gradient and on delamination toughness of RTM-manufactured composites. Composites: Part A 72, 175–183. Wicks, S.S., Wardle, B.L. 2013. Interlaminar Fracture Toughness of Laminated Woven Composites Reinforced with Aligned Nanoscale Fibers: Mechanisms at the Macro, Micro, and Nano Scales. Proceedings 54 th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference, Boston, USA, April 8-11, 2013, 1-9. Wu, Z.J., Yi, X.-S., Wilkinson, A. 2017. Interlaminar fracture toughness of carbon fibre/RTM6-2 composites toughened with thermoplastic-coated fabric reinforcement. Composites Part B 130, 192-199. Yutaka Shiino, M., Alderliesten, R.C., Yoshikawa Pitanga, M., Hilário Cioffi, M. 2014. Fatigue crack growth rate in mode I of a carbon fiber 5HS weave composite laminate processed via RTM. Advanced Materials Research 891-892, 172-177. Zabala, H., Aretxabaleta L., Castillo, G., Aurrekoetxea, J. 2015. Loading rate dependency on mode I interlaminar fracture toughness of unidirectional and woven carbon fibre epoxy composites. Composite Structures 121, 75–82.
Made with FlippingBook - Online catalogs