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玻璃纤维表面纳米SiO_2改性对GF/PCBT复合材料力学性能的影响 被引量:14

Effects of glass fiber surface modified by nano-SiO_2 on mechanical properties of GF/PCBT composites
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摘要 为研究玻璃纤维(GF)表面纳米SiO2改性对GF增强树脂基复合材料力学性能的影响,利用真空辅助模压(VAMP)工艺制备了不同含量的纳米SiO2表面改性GF增强聚环状对苯二甲酸丁二醇酯(PCBT)复合材料。分析了GF表面改性对GF/PCBT复合材料力学性能的影响,研究了纤维表面改性对GF/PCBT复合材料抗湿热老化性能的影响规律。纤维拔出试验结果表明:经表面处理的GF/PCBT复合材料的界面剪切强度提高了1.16倍;采用含量为0.5wt%和2wt%(与树脂质量比)的纳米SiO2处理GF表面后,复合材料的三点弯曲强度分别提高1.5倍和1.67倍,弯曲模量分别提高1.03倍和1.17倍。SEM结果显示:当纳米SiO2用量为2wt%时,破坏后的纤维表面被树脂完全覆盖,树脂与纤维粘结良好。在湿热条件下,由于纳米SiO2颗粒的存在,水分子很难通过界面相扩散到改性后的材料内部,其抗湿热性能提高。 To study the effect of glass fiber(GF)surface modified by nano-SiO2 on mechanical properties of GF reinforced matrix composites,vacuum-assisted mold pressing(VAMP)technology was adopted to prepare polymerized poly(cyclic butylene terephthalate)(PCBT)-based composites reinforced by GF modified by various nano-SiO2 on the surface.The effect of GF surface modification on mechanical properties of the obtained GF/PCBT composites was investigated and the hygrothermal aging resistance of GF/PCBT composites with modified GF was further studied.The fiber pull-out test results show that the interface shear strength of GF/PCBT composites enhances by 1.16 times after nano modification on fiber surface.With nano-SiO2 content of 0.5wt%,2wt%(mass ratio of nano-SiO2 to PCBT),the three-point flexural strength of GF/PCBT composites increases by 1.5times and 1.67 times,flexural modulus increases by 1.03 times and 1.17 times,respectively.Observations by SEM show that the damaged fibers are covered tightly by PCBT resin when nano-SiO2 content is 2wt%,which is an indication of good bonding properties between the matrix and fibers.Under hygrothermal conditions,hydrone diffusion along the interphase region is hindered and results in the enhancement of the anti-aging performance of the modified GF/PCBT composites,due to the existence of nano-SiO2 particles.
出处 《复合材料学报》 EI CAS CSCD 北大核心 2015年第3期691-698,共8页 Acta Materiae Compositae Sinica
基金 港澳台科技合作专项(2014DFH50060)
关键词 聚环状对苯二甲酸丁二醇酯 玻璃纤维 表面改性 真空辅助模压工艺 三点弯曲测试 纤维拔出实验 湿热老化 polymerized poly(cyclic butylene terephthalate) glass fiber surface modification vacuum-assisted mold pressing technology three-point bending test fiber pull-out test hygrothermal aging
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参考文献13

  • 1张翼鹏,颜春,阮春寅,丁江平,刘俊龙,范欣愉.原位聚合法制备连续玻璃纤维增强PCBT复合材料及其性能[J].复合材料学报,2012,29(4):29-35. 被引量:15
  • 2GB/T 3354-1999.定向纤维增强塑料拉伸性能试验方法[S],1999.
  • 3GB/T 1449-2005.纤维增强塑料弯曲性能试验方法[S],2005.
  • 4Hongshuai Lei,Zhenqing Wang,Bo Zhou,Liyong Tong,Xiaoqiang Wang.Simulation and analysis of shape memory alloy fiber reinforced composite based on cohesive zone model[J]. Materials and Design . 2012
  • 5Paola Fabbri,Elena Bassoli,Silvia Bittolo Bon,Luca Valentini.Preparation and characterization of poly (butylene terephthalate)/graphene composites by in-situ polymerization of cyclic butylene terephthalate[J]. Polymer . 2012 (4)
  • 6P.A. Sreekumar,Selvin P. Thomas,Jean marc Saiter,Kuruvilla Joseph,G. Unnikrishnan,Sabu Thomas.Effect of fiber surface modification on the mechanical and water absorption characteristics of sisal/polyester composites fabricated by resin transfer molding[J]. Composites Part A . 2009 (11)
  • 7Y.I. Tsai,E.J. Bosze,E. Barjasteh,S.R. Nutt.Influence of hygrothermal environment on thermal and mechanical properties of carbon fiber/fiberglass hybrid composites[J]. Composites Science and Technology . 2008 (3)
  • 8Zhenyu Jiang,Suchart Siengchin,Li-Min Zhou,Markus Steeg,József Karger-Kocsis,Hau Chung Man.Poly (butylene terephthalate)/silica nanocomposites prepared from cyclic butylene terephthalate[J]. Composites Part A . 2008 (3)
  • 9J. Baets,A. Godara,J. Devaux,I. Verpoest.Toughening of polymerized cyclic butylene terephthalate with carbon nanotubes for use in composites[J]. Composites Part A . 2008 (11)
  • 10Z.A. Mohd Ishak,Y.W. Leong,M. Steeg,J. Karger-Kocsis.Mechanical properties of woven glass fabric reinforced in situ polymerized poly(butylene terephthalate) composites[J]. Composites Science and Technology . 2006 (3)

二级参考文献15

  • 1樊在霞,张瑜,陈彦模,龙海如,吴文华.冷却方式对GF/PP复合纱针织物复合材料拉伸性能的影响[J].玻璃钢/复合材料,2007(1):13-15. 被引量:7
  • 2张翔,李玉宝,左奕,吕国玉.加工工艺对n-HA/PA66复合材料结晶行为和力学性能的影响[J].复合材料学报,2007,24(3):72-77. 被引量:8
  • 3Wakeman M D, Rudd C D. Compression molding of thermoplastic composites [ M]//Kelly Anthony. Comprehensive Composite Materials. Oxford: Elsevier Science Ltd, 2000: 915-963.
  • 4Gibson A G. Continuous molding of thermoplastic composites [M]//Kelly Anthony. Comprehensive Composite Materials. Oxford: Elsevier Science Ltd, 2000: 979-998.
  • 5Manson J A E, Wakeman M D, Bernet N. Composite processing and manufacturing: An overview [M] // Kelly Anthony. Comprehensive Composite Materials. Oxford Elsevier Science Ltd, 2000: 577-607.
  • 6Pang K, Kotek R, Tonelli A. Review of conventional and novel polymerization processes for polyesters [J]. Progress in Polymer Science, 2006, 31(11) : 1009-1037.
  • 7Wunderlich B. Crystallization during polymerization [J]. Advanced Polymer Science, 1968, 5(1): 568-619.
  • 8Parton H. Characterisation of the in situ polymerisalion process for continuous fibre reinforced thermoplastics [ D ]. Belgium: Katholieke Universiteit Leuven, 2006.
  • 9Ishak Z A M, Shang P P, Karger Kocsis J. A modulated DSC study on the in situ polymerization of cyclic butylene terephthalate oligomers [J]. Journal of Thermal Analysis and Calorimetry, 2006, 84(3): 637-641.
  • 10Ishak Z A M, Leong Y W, Steeg M, Karger Kocsis J. Mechanical properties of oven glass fabric reinforced in situ polymerized poly (butylene terephthalate) omposites [J]. Composites Science and Technology, 2007, 67(3/4): 390-398.

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