期刊文献+

注射成型过程中复合材料在型腔内流动行为的可视化实验 被引量:12

Visualization Experiment of the Filling Behavior of Composite Materials During Injection Molding Process
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摘要 利用可视化手段对不同纤维含量热塑性复合材料不同型腔厚度的充填过程进行了动态观察,实验结果表明,尺寸及材料特性对薄壁塑件的熔体流动行为有较大影响,随着壁厚的减薄,复合材料在低速注射条件下熔体充填型腔的速度在后期有突然增大的现象,在高速注射条件下,熔体充填速度会迅速下降,而纤维含量较高的复合材料由于剪切热的作用充填速度下降较小。该研究为薄壁热塑性复合材料注塑成形技术的深入研究提供了参考。 Visual technology was applied to observe the dynamic filling process of thern:oplastic composite materials with different contents of fiber in the different cavity thickness mold. It is indicated that the melt' s filling behavior of thin-wall plastics is greatly influenced by both scale and the material variety. As the reducing of cavity thickness, :he melt's filling speed of composite materials in the cavity increases suddenly at the end of filling process on the condition of the low injecting speed. Regarding the high injecting speed, the mel:'s filling speed falls down rapidly, but the rate of descend is lower due to the shear heat of composite materials with the higher content of fibers. The research can provide experiment evidence for the in-depth study on the injecting molding technology of thermoplastic composite materials.
出处 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2012年第11期129-132,共4页 Polymer Materials Science & Engineering
基金 中央高校基本科研业务费专项资金(DUT11ZD(G)05) 教育部留学回国人员科研启动基金资助(教外司留[2008]890)
关键词 注塑成形 复合材料 可视化 injecting molding composite materials visualization
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参考文献7

  • 1叶鼎铨.玻璃纤维增强热塑性塑料的发展概况[J].中国塑料,2005,19(2):8-11. 被引量:24
  • 2上官林建,申长雨,刘保臣,陈静波.短玻纤增强聚丙烯注射充模过程的数值模拟[J].材料导报,2008,22(7):88-90. 被引量:7
  • 3Regnier G, Dray D. A simplified method to detemaine orientation of an injection molded fiber-filled polynmr[J ]. J Engineering and Seienee, 2008, 48 ( 11 ) : 2159-2168.
  • 4Saito T, lde S-N, ho H, et al. Study on weld cl thin-wall injection molded polypropylene plates [J ]. 2009, 20(10): 776-780.
  • 5Su T L, Kung F C, Kuo Y L. Optimization of high I e engineering plastics in thin wall part injection molding[J ]. Materials Research, 2011, 213 : 58-62.
  • 6Hine P .I, Duckett R A. Fiber orientation structures and mechanicalproperties of injection molded short glass fiber reinforced ribbed plates [J]. Polymer Composites, 2004, 25(13): 237-254.
  • 7Nguyen B N, Bpanapalli S K. Fiber length and orientation in long-fiber rejection-molded thermoplastics microstructure and elastic properties[J ]. 42(10) : 1003-1031.

二级参考文献17

  • 1张小华,欧阳洁,孔倩.聚合物流动的多尺度模拟[J].化工学报,2007,58(8):1897-1904. 被引量:7
  • 2陈兴,李德群.注塑成型流动过程中的纤维定向分析[J].华中理工大学学报,1997,25(3):63-65. 被引量:7
  • 3张耀明.玻璃纤维与矿物棉全书[M].北京:化学工业出版社,2002.586--590.
  • 4Market Survey. Thermoplastics Products [ J ]. JEC Composites, 2004, (8) .36--37.
  • 5G. S. Boyce. Twintex Clean Moulding Technology[J ]. Composites, 1997,22: 35-- 39.
  • 6ACMA Launches Initiatives at Composites 2003 [ J ]. Rein-forced Plastics, 2003,47(10) : 21.
  • 7R. Stewart. New Developments Help Compoites Compete [ J ].Reinforced Plastics, 2003,47 (2) : 27-- 31.
  • 8G. March. Cpmposites on the Road to the Big Time? [J]. Reinforced Plastics, 2003,47(2) .33--47.
  • 9A. Jacob. Pultrusion Update [ J ]. Reinforced Plastics, 2004,48(6) :30--32.
  • 10Thermopastic pultrusion Process Unveiled [ J ]. Reinforced Plastics,2003,47(9) :18.

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