期刊文献+

辐射增敏交联聚丙烯片材的超临界二氧化碳发泡 被引量:14

Foamability of Sensitized Radiation Cross-Linked Polypropylene Sheets with Supercritical Carbon Dioxide as the Foaming Agent
下载PDF
导出
摘要 用三羟甲基丙烷三甲基丙烯酸酯(TMPTMA)作为辐射交联增敏剂与聚丙烯(PP)共混制得片材。采用γ-射线辐照PP片材,并利用超临界二氧化碳(scCO_2)发泡技术对PP进行了发泡研究。通过对PP样品的凝胶含量、热性能和黏度分析,研究了γ射线辐照对PP结构和性能的影响;通过扫描电子显微镜对PP泡孔形貌进行观测,分析了γ射线辐射改性对PP片材发泡行为的影响。结果表明:当以TMPTMA为辐射交联增敏剂时,γ射线辐照诱导PP发生交联从而产生凝胶,同时辐照会引起PP裂解导致黏度降低。经γ-射线辐射增敏交联改性后的PP可以获得理想的泡孔结构,对于本研究中PP片材而言,适宜的吸收剂量为10-20kGy,此时对应的凝胶质量分数为25%-35%。当吸收剂量为10kGy时,辐射改性PP的发泡温度范围可达12℃。 Polypropylene(PP)was mixed with crosslinking sensitizer trimethylolpropane trimethacrylate(TMPTMA)and then pressed into sheet.The PP sheet was irradiated byγ-rays,and then foamed with supercritical carbon dioxide(scCO_2).The effects ofγ-rays radiation on the PP structure and properties were investigated by means of gel fraction test,Differential Scanning Calorimeter(DSC),and Advanced Rheology Expand System(ARES).The morphology of PP foam was investigated by Scanning Eelectron Microscope(SEM).Results showed that PP was successfully cross-linked byγ-irradiation with TMPTMA as the crosslinking sensitizer.However,the viscosity of cross-linked PP decreased.The radiation crosslinked PP could be foamed with ideal cell structures.The suitable absorbed dose for crosslinking PP sample was in the range of 10~20kGy,and correspondingly,the gel mass fraction of PP was in the range of 25%~35%.The foaming temperature window of the radiation modified PP with an absorbed dose of 10 kGy was 12℃.
出处 《功能高分子学报》 CAS CSCD 北大核心 2015年第4期367-372,共6页 Journal of Functional Polymers
基金 国家自然科学基金(11079048)
关键词 辐射交联 聚丙烯 超临界二氧化碳 发泡 radiation crosslinking polypropylene supercritical carbon dioxide foam
  • 相关文献

参考文献20

  • 1Lee Shau-Tarng,Chul B Park,N S Ramesh. Polymeric Foams[M]. New York:Taylor & Francis,2007:126-128.
  • 2Andrew I Cooper. Porous materials and supercritical fluids[J]. Advanced Materials,2003,15(13):1049-1059.
  • 3Kyung W Suh,Chung P Park,Myron J Maurer,et al. Porous materials and supercritical fluids[J]. Advanced Materials,2000,12(23):1779-1789.
  • 4Saeed Doroudian,Chul B Park,Market T Kortschot. Effect of the crystallinity and morphology on the microcellular foam structure of semicrystalline polymers[J]. Polymer Engineering and Science,1996,36(21):2645-2662.
  • 5许志美,姜修磊,刘涛,赵玲,朱中南.应用超临界CO_2制备微孔聚丙烯的微孔形貌[J].功能高分子学报,2007,20(1):21-26. 被引量:6
  • 6Zhou Shuai,Zhao Shicheng, Xin Zhong,et al. A novel strategy for achieving high melt strength polypropylene and an investigation of its foamability[J]. Journal of Macromolecular Science: Part B. Physics,2014,53(10):1695-1714.
  • 7Prashanta Dahal,Youn Cheol Kim. Preparation and characterization of modified polypropylene by using electron beam irradiation[J]. Journal of Industrial and Engineering Chemistry,2013,19(6):1879-1883.
  • 8徐春,吴靖,周达飞.聚丙烯熔融法接枝HEMA的研究[J].功能高分子学报,1997,10(3):301-306. 被引量:6
  • 9Wang Chicheng,Karen Cox,Gregory A Campbell.Microcellular foaming of polypropylene containing glass transition rubber particles in an injection molding process[J]. Journal of Vinyl & Additve Technology,1996,2(2):167-169.
  • 10黄汉雄,王建康,孙晓辉.PP/HDPE共混物及其纳米复合材料超临界流体微孔发泡[J].功能高分子学报,2008,21(1):1-5. 被引量:18

二级参考文献38

  • 1汪永斌,杨锐,张丽叶.辐照改性聚丙烯抗熔垂能力的研究[J].中国塑料,2005,19(11):20-25. 被引量:7
  • 2刘太闯,郑云生,李令尧,张丽叶.电子束辐照交联制备聚丙烯发泡片材[J].中国塑料,2006,20(9):49-52. 被引量:12
  • 3王建康,黄汉雄,林登辉.聚丙烯/聚乙烯共混物超临界流体微孔发泡中黏弹性对泡孔结构的影响[J].塑料,2007,36(3):58-62. 被引量:7
  • 4Xue Guang,Rev Macro Chem Phys C,1994年,34卷,4期,555页
  • 5Fang Yuee,J Membr Sci,1989年,39卷,1页
  • 6Suh K W,Park C P,Maurer M J,et al.Light weight cellular plastics[J].Advanced Materials,2000,12(23):1779-1789.
  • 7Kumar V.Microcellular polymers:Novel materials for the 21st century[J].Cellular Polymers,1993,12(3):207-223.
  • 8Tomasko D L,Li H B,Liu D H,et al.A Review of CO2 applications in the processing of polymers[J].Industrial and Engineering Chemistry Research,2003,42(25):6431-6456.
  • 9Collias D I,Baird D G.Impact toughening of polycarbonate by microcellular foaming[J].Polymer,1994,35(18):3978-3983.
  • 10Krause B,Sijbesma H J P,Münüklü P,et al.Bicontinuous nanoporous polymers by carbon dioxide foaming[J].Macromolecules,2001,34(25):8792-8801.

共引文献36

同被引文献119

引证文献14

二级引证文献39

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部