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聚丙烯/无机纳米粒子复合材料的发泡行为 被引量:14

The Foaming Behavior of Polypropylene/Inorganic Nanoparticles Composites
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摘要 利用型腔体积可控注塑发泡装备制备聚丙烯/无机纳米粒子微发泡复合材料,通过复合材料的流变行为和结晶行为,分析了无机纳米粒子对聚丙烯发泡行为的影响。结果表明:无机纳米粒子有促进气泡异相成核作用,同时无机纳米粒子引入可以提高聚丙烯黏弹响应和降温结晶起始温度,起到了抑制泡孔结构恶化的作用,显著改善了聚丙烯的泡孔结构;在聚丙烯材料中添加纳米CaCO3、纳米OMMT、纳米SiO2进行发泡,以PP/OMMT发泡材料的发泡质量最理想,其泡孔密度和尺寸分别为2×106个/cm3和24.2μm。 The Foamed Polypropylene (PP) and polypropylene/inorganic nanoparticles composites samples were prepared with different kinds of inorganic nanoparticles in the same volume expansion ratio using a injection molding machine equipped with volume-adjustable cavity, and the foaming behavior was investigated. It was found that cell structure of pure Polypropylene was deteriorated, however the introduction of inorganic nanoparticles improved the rheological property and crystallization onset temperature of polymer melt, and the ceil structure deterioration was suppressed, and the foaming behavior of Poiypropylene composites was excellently improved. The results show that the PP/OMMT foamed composite had the best cell morphological structure. The cell diameter and density were 24.6urn and 2×106 cell/cm3 respectively.
出处 《高分子通报》 CSCD 北大核心 2016年第4期80-87,共8页 Polymer Bulletin
基金 国家自然科学基金项目(课题编号21264004) 贵州省科技厅重大专项(编号2012-6023) 贵州省科技创新人才团队建设(编号[2014]4006) 黔科合人字(2015)29号
关键词 聚丙烯 无机纳米粒子 流变行为 结晶行为 发泡行为 Polypropylene Inorganic nanoparticles Rheological behavior Crystallization behavior Foaming behavior
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  • 1陈国昌,刘保成,申欣,黄兆阁,李荣勋,刘光烨.纳米蒙脱土对PVC微发泡体系的影响[J].聚氯乙烯,2005,33(8):25-27. 被引量:5
  • 2郦华兴,刘伟,胡圣飞,叶晓丽.纳米硅酸盐改性PP发泡材料的研究[J].工程塑料应用,2005,33(9):9-12. 被引量:11
  • 3成国华 彭玉成.微孔塑料物理发泡新技术.高分子材料科学与工程,2006,16(1):169-182. 被引量:4
  • 4Rodriguez-Perez M A, Vel&sco J I, Arencon D, et al. Mechanical characterization of closed-cell polyolefin foams[J]. J. Aplal. Polym. Sci., 2007, 75(1): 156-166. 被引量:1
  • 5Dubios R, Karande S, David P. The use of ethylene/styrene interpolymers in crosslinked foams for the footwear industry [J]. Journal of Cellular Plastics, 2002, 38(3) : 119-161. 被引量:1
  • 6Chang Y W, Lee D S, Bae S Y. Preparation of polyethylene-cctene elastomer/clay nanocomposite and microcellular foam processed in supercritical carbon dioxide [J]. Polym. Int., 2006, 55(2): 184-189. 被引量:1
  • 7Taki K, Murakami T, Ohshima M. Experimental studies on the effects of pressure release rate on number density of bubbles and bubble growth in a polymeric foaming pmceKs [J]. Chem. Eng. Sci., 2008, 63(14): 3643-3653. 被引量:1
  • 8Rodriguez-Perez M A,Velasco J I,Arencon D,Manza A I,Desaja J A. J Appl Polym Sci,2007,75(3) ,156-166. 被引量:1
  • 9Dubios R,Seemk K,David P. J Cell Plast,2002,38(3),119-161. 被引量:1
  • 10Taki K,Murakami T,Ohshima M. Chem Eng Sci,2008,63(14),2643-2655. 被引量:1

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