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C Dong I Davies/ Materials and Design 54(2014) 893-899 899 moduli of the carbon/epoxy and glass/epoxy laminas and the hy [9] Marom G, Fischer S, Tuler FR, Wagner HD. Hybrid effects brid ratio conditions for positive or negative effects versus rule-of-mixti [10 Fu SY, Lauke B, Mader E, Yue CY, Hu X Tensile properties of short-glass-fiber- References and short-carbon-fiber-reinforced polypropylene composites Compos Part A: 11 Sudarisman, Davies I Flexural failure of unidirectional hybrid fibre-reinforced [11 Sudarisman, Davies I The effects of processing parameters on the flexural olymer(FRP) composites containing different grades of glass fibre. Adv Mater es2008:41-42:357-6 Mater Sci Eng A 2008: 498: 498 65-0 [2] Sudarisman, Davies I]. Influence of co ressure, vacuum pressure. 12] Dong C. Davies I]. Optimal design for the flexural behaviour of glass and carbon and holding temperature applied toclave curing on Mater Des2012:37:450- tructure of unidirectional cfrp Adv Mater Res 2008 [13] Dong C, Ranaweera-Jayawardena HA. Davies IJ Flexural properties of hybrid 42:323-8 ater Sci1981:16:2233-45 Hybrid composites made of carbon and glass [4] Zweben C. Tensile strength of hybrid composites.J Mater Sci ding. Mater Des 2011: 32: 4094-9. [15] Fu S-Y. Xu G, Mai Y-W. On the elastic modulus of hybrid particle/short-fiber aterials.composSciTechnol1987:28:291aramidfibrehybridcomposite [6] Fischer S, Marom G. The flexural [17] Mallick PK. Fiber-re mposites: materials, manufacturing. and [7 Kalnin IL Evaluation of unidirection fibre/epoxy resin design. 2nd ed. New York: Marcel Dekker: 1993 American Society for Testing and Materials; 1972. p. 551-63(MD USA): 118] Montgomery DC. Design and analysis of experiments. 5th ed. New York: John sites. Composite materials: testing and design. Baltimor Wiley Sons, Inc: 2000. [8 Bunsell AR Harris B. Hybrid carbon and glass fibre composites Composites 74:5:157-64.moduli of the carbon/epoxy and glass/epoxy laminas and the hy￾brid ratio. References [1] Sudarisman, Davies IJ. Flexural failure of unidirectional hybrid fibre-reinforced polymer (FRP) composites containing different grades of glass fibre. Adv Mater Res 2008;41-42:357–62. [2] Sudarisman, Davies IJ. Influence of compressive pressure, vacuum pressure, and holding temperature applied during autoclave curing on the microstructure of unidirectional CFRP composites. Adv Mater Res 2008;41- 42:323–8. [3] Manders PW, Bader MG. The strength of hybrid glass/carbon fibre composites. J Mater Sci 1981;16:2233–45. [4] Zweben C. Tensile strength of hybrid composites. J Mater Sci 1977;12:1325–37. [5] Kretsis G. A review on the tensile, compressive, flexural and shear properties of hybrid fibre-reinforced plastics. Composites 1987;18:13–23. [6] Fischer S, Marom G. The flexural behaviour of aramid fibre hybrid composite materials. Compos Sci Technol 1987;28:291–314. [7] Kalnin IL. Evaluation of unidirectional glass-graphite fibre/epoxy resin composites. Composite materials: testing and design. Baltimore (MD USA): American Society for Testing and Materials; 1972. p. 551-63. [8] Bunsell AR, Harris B. Hybrid carbon and glass fibre composites. Composites 1974;5:157–64. [9] Marom G, Fischer S, Tuler FR, Wagner HD. Hybrid effects in composites: conditions for positive or negative effects versus rule-of-mixtures behaviour. J Mater Sci 1978;13:1419–26. [10] Fu SY, Lauke B, Mäder E, Yue CY, Hu X. Tensile properties of short-glass-fiber￾and short-carbon-fiber-reinforced polypropylene composites. Compos Part A: Appl Sci Manuf 2000;31:1117–25. [11] Sudarisman, Davies IJ. The effects of processing parameters on the flexural properties of unidirectional carbon fibre-reinforced polymer (CFRP) composites. Mater Sci Eng A 2008;498:498 65–8. [12] Dong C, Davies IJ. Optimal design for the flexural behaviour of glass and carbon fibre reinforced polymer hybrid composites. Mater Des 2012;37:450–7. [13] Dong C, Ranaweera-Jayawardena HA, Davies IJ. Flexural properties of hybrid composites reinforced by S-2 glass and T700S carbon fibres. Compos Part B: Eng 2012;43:573–81. [14] Pandya KS, Veerraju C, Naik NK. Hybrid composites made of carbon and glass woven fabrics under quasi-static loading. Mater Des 2011;32:4094–9. [15] Fu S-Y, Xu G, Mai Y-W. On the elastic modulus of hybrid particle/short-fiber/ polymer composites. Compos Part B Eng 2002;33:291–9. [16] Chou T-W. Microstructure Design Fiber Composites. Cambridge (UK): Cambridge University Press; 1992. [17] Mallick PK. Fiber-reinforced composites: materials, manufacturing, and design. 2nd ed. New York: Marcel Dekker; 1993. [18] Montgomery DC. Design and analysis of experiments. 5th ed. New York: John Wiley & Sons, Inc.; 2000. C. Dong, I.J. Davies / Materials and Design 54 (2014) 893–899 899
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