Crystallization kinetics of glass fiber reinforced PBT composites

被引:1
|
作者
Park, CS
Lee, KJ [1 ]
Nam, JD
Kim, SW
机构
[1] Seoul Natl Univ, Div Chem Engn, Seoul 151742, South Korea
[2] Sungkyunkwan Univ, Dept Polymer Sci & Engn, Suwon 440746, South Korea
[3] Kyonggi Univ, Dept Chem Engn, Suwon 442760, South Korea
关键词
crystallization kinetics; crystalline growth; regime transitions; glass fiber reinforced poly(butylene terephthalate);
D O I
10.1002/1097-4628(20001017)78:3<576::AID-APP120>3.0.CO;2-M
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The effect of glass fibers on the crystallization of poly(butylene terephthalate) (PBT) was investigated by crystallization kinetics analysis under isothermal and nonisothermal conditions. From the crosspolar optical micrographs of melt- and solvent-crystallized PBT composites, the glass fibers were found to increase the number density and decrease the size of crystallites. The glass fibers provided heterogeneous nucleation sites, and thus enhanced the overall rate of PBT crystallization in isothermal experiments. However, the Avrami exponent and the regime transitions were not significantly affected by the presence of glass fibers. For the nonisothermal kinetics of PBT composites, the model prediction was excellent in most ranges of crystallization, but it deviated above 70% of crystallization especially at fast cooling rates (>40 degrees C/min). This discrepancy of the model seemed to result from the growth. regime transitions, which were clearly observed especially at high undercoolings. (C) 2000 John Wiley & Sons, Inc.
引用
收藏
页码:576 / 585
页数:10
相关论文
共 50 条
  • [41] Glass fiber reinforced formable steel composites
    Charoenvilaisiri, S
    Mishra, B
    Moore, JJ
    Olson, DL
    PROCESSING AND FABRICATION OF ADVANCED MATERIALS IV, 1996, : 479 - 490
  • [42] Glass fiber-reinforced composites in dentistry
    Engie M. Safwat
    Ahmad G. A. Khater
    Ahmed G. Abd-Elsatar
    Gamal A. Khater
    Bulletin of the National Research Centre, 45 (1)
  • [43] PROPERTIES OF POLYESTER FIBER GLASS REINFORCED COMPOSITES
    CORDOVA, DS
    COFFIN, DR
    YOUNG, JA
    ROWAN, HH
    SAMPE QUARTERLY-SOCIETY FOR THE ADVANCEMENT OF MATERIAL AND PROCESS ENGINEERING, 1984, 15 (03): : 35 - 40
  • [44] GLASS FIBER-REINFORCED EPOXY COMPOSITES
    PATEL, SR
    PATEL, RG
    ANGEWANDTE MAKROMOLEKULARE CHEMIE, 1992, 197 : 141 - 147
  • [45] A study on the glass fiber reinforced polypropylene composites
    Yoon, BS
    Shin, DC
    Suh, MH
    Lee, SH
    POLYMER-KOREA, 1998, 22 (04) : 633 - 641
  • [46] Effects of thermal shock fatigue on short glass fiber-reinforced PBT composites embedded by thermally conductive particles
    Kim, Ki-Soo
    Choi, Nak-Sam
    JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2015, 29 (11) : 4665 - 4670
  • [47] NONISOTHERMAL CRYSTALLIZATION OF GLASS-FIBER REINFORCED POLYPROPYLENE
    DEVAUX, E
    CHABERT, B
    POLYMER COMMUNICATIONS, 1990, 31 (10): : 391 - 394
  • [48] Thermoforming of continuous glass fiber polypropylene composites; Non-isothermal crystallization kinetics.
    Denault, J
    Youssef, Y
    CONFERENCE PROCEEDINGS AT ANTEC '98: PLASTICS ON MY MIND, VOLS I-3: VOL I; PROCESSING, VOL II; SPECIAL AREAS, VOL III; MATERIALS, 1998, 44 : 2286 - 2290
  • [49] Nonisothermal Crystallization Kinetics of Poly(Butylene Terephthalate)/Poly(Ethylene Terephthalate)/Glass Fiber Composites
    Zhang, Zhonghou
    Feng, Li
    Li, Yadong
    Wang, Yintao
    Yan, Chunmian
    POLYMER COMPOSITES, 2015, 36 (03) : 510 - 516
  • [50] Nonisothermal crystallization kinetics of PBT nanocomposites
    Al-Mulla, Adam
    MatheW, Johnson
    Yeh, Shu-Kai
    Gupta, Rakesh
    COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2008, 39 (02) : 204 - 217