欢迎登录材料期刊网

材料期刊网

高级检索

针对纤维增强聚合物基复合材料的成型流动过程,基于宏观流场、介观纤维取向和微观聚合物大分子链三尺度信息耦合的多尺度模型,使用有限体积法和有限差分法相结合的数值算法,分析了纤维增强聚合物熔体在收缩流腔中的流动行为,得到了其纤维取向和应力分布,并讨论了纤维存在对聚合物熔体流场应力的影响.结果表明:当剪切运动占优时,纤维呈现周期旋转取向;而拉伸运动占优时,纤维沿单轴拉伸取向.同时,由于纤维的周期旋转,纤维增强聚合物熔体法向应力差的空间分布呈现出随时间逐步发展的拟序涡结构.

参考文献

[1] Kim S K,Lee S W,Youn J R.Measurement of residual stressed in injection molded short fiber composites considering anisotropy and modulus variation[J].Korea-Australia Rheology Journal,2002,14(3):107-114.
[2] 吴海宏,陈政,赵振峰,等.纤维增强聚合物注塑残余应力的分析计算[J].郑州轻工业学院学报:自然科学版,2005,20(4):9-11.Wu Haihong,Chen Zheng,Zhao Zhenfeng,et al.Calculation of residual stress in injection molding for fiber-reinforced polymers[J].Journal of Zhengzhou University of Light Industry:Natural Science,2005,20(4):9-11.
[3] 高庆,康国政,杨川,等.高温下短纤维增强金属基复合材料界面的微观结构和热残余应力状态研究[J].复合材料学报,2002,19(4):46-50.Gao Qing,Kang Guozheng,Yang Chuan,et al.Study on the microstructure characteristics and thermal residual stress states of interface in short fiber reinforced composite at elevated temperature[J].Acta Materiae Compositae Sinica,2002,19(4):46-50.
[4] 刘春太,申长雨.利用TAGUCHI方法优化纤维增强PA66注塑熔接线拉伸性能[J].复合材料学报,2004,21(5):68-73.Liu Chuntai,Shen Changyu.Using TAGUCHI methods to optimize the weld line strength in injection molded short-fiberreinforced PA66[J].Acta Materiae Compositae Sinica,2004,21(5):68-73.
[5] Dinh S M,Armstrong R C.A rheological equation of state for semiconcentrated fiber suspensions[J].Journal of Rheology,1984,28(3):207-227.
[6] Advani S G,Tucker C L Ⅲ.The use of tensors to describe and predict fiber orientation in short fiber composites[J].Journal of Rheology,1987,31(8):751-784.
[7] Chung D H,Kwon T H.Invariant-based optimal fitting closure approximation for the numerical prediction of flowinduced fiber orientation[J].Journal of Rheology,2002,46(1):169-194.
[8] 林兰芬,董金祥.纤维增强塑料注塑成型集成仿真建模[J].复合材料学报,1999,16(3):103-109.Lin Lanfen,Dong Jinxiang.Integrated simulation of melt flow,fiber fracture and fiber orientation for fiber reinforced plastics in injection molding[J].Acta Materiae Compositae Sinica,1999,16(3):103-109.
[9] Zhang H P,Ouyang J.A multi-scale numerical simulation for non-isothermal planar contraction flow of polymeric fluids with fibers suspension[C]//NERC for APPT Zhengzhou University.The first International Conference on Modeling and Simulation in Polymer Engineering and Science.Beijing:Chemical Industry Press,2006:90-100.
[10] Azaiez J.Constitutive equations for fiber suspensions in viscoelastic media[J].Journal of Non-Newtonian Fluid Mechanics,1996,66(1):35-54.
[11] Chung D H,Kwon T H.Fiber orientation in the processing of polymer composites[J].Korea-Australia Rheology Journal,2002,14(4):175-188.
[12] Bird R B,Hassager O,Armstrong R C,Curtiss C F.Dynamics of polymeric liquids,2:Kinetic theory[M].New York:John Wiley & Sons,1977:480-496.
[13] Yu P,Du Q,Liu C.From micro to macro dynamics via a new closure approximation to the FENE model of polymeric fluids[J].SIAM Journal of Multiscale Modeling and Simulation,2005,3(4):895-917.
[14] Tsai T P,Malkus D S.Numerical breakdown at high Weissenberg number in non-Newtonian contraction flows[J].Rheologica Acta,2000,39(1):62-70.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%