期刊文献+

聚丙烯结晶形态与力学性能及其疲劳稳定性 被引量:5

Crystalline Morphology,Mechanical Properties and Fatigue Stability of Isotactic Polypropylene in the Presence of Alpha-and Beta-nucleating Agents
下载PDF
导出
摘要 基于Haake转矩流变仪,分别将α和β成核剂熔混到等规聚丙烯中以改变其结晶形态。用偏光显微镜法、X射线衍射法和力学性能测试方法研究了疲劳作用前后α晶和β晶相互转变及其结构性能。实验结果表明:α成核剂在降低球晶尺寸和增加结晶度同时,在晶胞内产生了内应力,在疲劳初期,结晶应力消除、拉伸强度增加,继续疲劳时,结晶度和拉伸强度都下降,疲劳后,β含量相对增加。当β成核剂用量较少时,β晶含量增加,拉伸强度降低;在β晶结晶度适中时,疲劳并不改变晶胞结构与结晶度,表现较好的耐疲劳性;结晶度较高时,疲劳降低了结晶度,但拉伸强度有所增加。 The modification of crystallinity morphology of isotactic polypropylene(IPP) by using alpha-and beta-nucleating agents was conducted with Haake rheometer at high temperature.The crystalline morphology and mechanical properties of the modified IPP prior to and after dynamic fatigue experiment were investigated with polarized light microscopy,x-rays diffraction and tensile test.Crystalline stress was released and tensile strength was increased slightly during initial fatigue period for alpha-nulceated IPP while no crystalline stress was found,the degree of crystallization was decreased,and tensile strength was increased after short fatigue period for beta-nulceated IPP.The transition under dynamic load was still found for alpha-nulceated IPP but to much less extent for the case of beta-nulceated IPP.
出处 《实验室研究与探索》 CAS 北大核心 2011年第12期38-41,59,共5页 Research and Exploration In Laboratory
关键词 聚丙烯 结晶形态 力学性能 isotactic polypropylene(IPP) crystalline morphology mechanical properties
  • 相关文献

参考文献12

  • 1Sun X,Li H,Wang J,et al.Shear-induced interfacial structure of isotactic polypropylene(IPP)in iPP/fiber composites[J].Macromolecules,2006,39(25):8720-8726.
  • 2Varga J,Ehrenstein G W.Formation ofβ-modification of isotactic polypropylene in its late stage of crystallization[J].Polymer,1996,37(26):5959-5963.
  • 3Varga J.Supermolecular structure of isotactic polypropylene[J].J Mater Sci,1992,27(10):2557-2579.
  • 4黄少慧.聚丙烯β型球晶形态及成因的探讨[J].高分子学报,1991,1(2):134-142. 被引量:15
  • 5Chen J H,Tsai F C,Nien Y H,et al.Isothermal crystallization of isotactic polypropylene blended with low molecular weight atactic polypropylene.Part I.Thermal properties and morphology development[J].Polymer,2005,46(15):5680-5688.
  • 6Bruecker S,Meille S V,Petraccone V,et al.Polymorphism in isotactic polypropylene[J].Prog Polym Sci(Oxford),1991,16(2-3):361-404.
  • 7孙静,胡建设,钞春英,郭志兴,祁阳.硅氧烷液晶共聚物作为β晶成核剂对等规聚丙烯结晶结构与形态的影响[J].化学学报,2010,68(10):1003-1009. 被引量:4
  • 8胡建设,孔波,孙静,吕海龙,李浩.向列相液晶共聚物作为β晶成核剂对等规聚丙烯结晶结构与热性能的影响[J].高分子学报,2010,20(9):1100-1107. 被引量:7
  • 9Labour T,Ferry L,Gauthier C,et al.α-andβ-Crystalline forms of isotactic polypropylene investigated by nanoindentation[J].J Appl Polym Sci,1999,74:195-200.
  • 10Wang Y R,Ni Q L,Liu Z H,et al.Grafting modification and properties of polypropylene with pentaerythritol tetra-acrylate[J].JPolym Res,DOi10.1007/S10965-011-9629-Z.

二级参考文献45

  • 1Iroh J O, Berry J P. Eur Polym J, 1996,32 : 1425 - 1429.
  • 2Huo H, Jiang S C, An L J. Maeromolecules, 2004,37 : 2478 - 2483.
  • 3Zhang P Y, Liu X X, Li Y Q. Mater Sei Eng A-Struet,2006,434:310 -313.
  • 4Varga J, Ehrenstein G W. Polymer, 1996,37:5959 - 5963.
  • 5Sun X, Li H, Wang J. Macromolecules ,2006,39 : 8720 - 8726.
  • 6Varga J, Mudra I, Ehrenstein G. W. J Appl Polym Sci, 1999,74:2357 - 2368.
  • 7Chen H B, Karger K J, Wu J S, Varga J. Polymer,2002,43:6505 - 6514.
  • 8Torre F J, C ortazar M, Gomez M A, Ellis G. Polymer,2003,44:5209 - 5217.
  • 9Zhang Y F,Xin Z. J Polym Sci Part B :Polym Phys,2007 ,45 :590 - 596.
  • 10Su Z Q, Dong M, Guo Z X, Yu J. Macromolecules ,2007,40:4217 -4224.

共引文献33

同被引文献60

引证文献5

二级引证文献7

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