[1] 余剑英, 周祖福. 连续纤维增强热塑性复合材料的制备成型技术及其应用前景[J]. 武汉工业大学学报, 1998, 20(4): 22-24. [2] Mallick P K, Newman S. Composite materials technology-Processes and properties[J]. New York/Munich, Oxford University Press/Hanser Publishers, 1990, 400, 1990. [3] Starr T. Pultrusion for Engineers[M]. London: Woodhead Publishing, 2000. [4] 阎龙, 史耀耀, 段继豪. 先进树脂基复合材料制造技术综述[J]. 航空制造技术, 2011, 375(3): 55-58. [5] Suratno B R, Ye L, Mai Y W. Simulation of temperature and curing profiles in pultruded composite rods[J]. Composites Science & Technology, 1998, 58(2):191-197. [6] Zhou F, Kuentzer N, Simacek P, et al. Analytic characterization of the permeability of dual-scale fibrous porous media[J]. Composites Science & Technology, 2006, 66(15): 2795-2803. [7] Michaud V, Månson J A E. Impregnation of compressible fiber mats with a thermoplastic resin. Part Ⅰ: theory[J]. Journal of Composite Materials, 2001, 35(13): 1150-1173. [8] Sorbie K S. Depleted layer effects in polymer flow through porous media:Ⅰ. Single capillary calculations[J]. Journal of colloid and interface science, 1990, 139(2): 299-314. [9] Cai Z, Gutowski T. The 3-D deformation behavior of a lubricated fiber bundle[J]. Journal of composite materials, 1992, 26(8): 1207-1237. [10] Kerbiriou V, Friedrich K. Pultrusion of thermoplastic composites-Process optimization and mathematical modeling[J]. Journal of Thermoplastic Composite Materials, 1999, 12(2): 96-120. [11] Gutowski T G, Cai Z, Bauer S, et al. Consolidation experiments for laminate composites[J]. Journal of Composite Materials, 1987, 21(7): 650-669. [12] Klinkmüller V, Um M K, Steffens M, et al. A new model for impregnation mechanisms in different GF/PP commingled yarns[J]. Applied Composite Materials, 1994, 1(5): 351-371. [13] Kim D H, Lee W I, Friedrich K. A model for a thermoplastic pultrusion process using commingled yarns[J]. Composites science and technology, 2001, 61(8): 1065-1077. [14] Bird R B, Armstrong R C, Hassager O. Dynamics of polymeric liquids[J]. Fluid mechanics, 1987. [15] Friedrich K. Commingled yarns and their use for composites[M]. Polypropylene. Springer, Dordrecht, 1999: 81-89. [16] Kerbiriou V, Friedrich K. Pultrusion of thermoplastic composites-Process optimization and mathematical modeling[J]. Journal of Thermoplastic Composite Materials, 1999, 12(2): 96-120. [17] 张志成. 玻璃纤维织物增强聚丙烯复合材料浸渍机理及界面结合性能研究[D]. 北京: 北京化工大学, 2016. [18] Gebart B R. Permeability of unidirectional reinforcements for RTM[J]. Journal of composite materials, 1992, 26(8): 1100-1133. [19] Klinkmüller V, Um M K, Steffens M, et al. A new model for impregnation mechanisms in different GF/PP commingled yarns[J]. Applied Composite Materials, 1994, 1(5): 351-371. [20] 张志成, 金泽宇, 杨建军, 等. 玻纤布增强聚丙烯复合材料浸渍理论及实验研究[J]. 北京化工大学学报(自然科学版), 2016, 43(2): 27-34. [21] Miller A H, Dodds N, Hale J M, et al. High speed pultrusion of thermoplastic matrix composites[J]. Composites Part A: Applied Science and Manufacturing, 1998, 29(7): 773-782. [22] Liu L, Zhang B M, Wang D F, et al. Effects of cure cycles on void content and mechanical properties of composite laminates[J]. Composite structures, 2006, 73(3): 303-309. [23] McCabe J F, Ogden A R. The relationship between porosity, compressive fatigue limit and wear in composite resin restorative materials[J]. Dental Materials, 1987, 3(1): 9-12. [24] 马雯, 刘福顺. 玻璃纤维复合材料孔隙率对超声衰减系数及力学性能的影响[J]. 复合材料学报, 2012, 29(5): 69-75. |