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混合溶剂中聚丙烯腈纺丝原液的可纺性 被引量:3

Spinnability of Polyacrylonitrile Spinning Solution in Composite Solvent
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摘要 以二甲基亚砜/二甲基乙酰胺(DMSO/DMAc)为混合溶剂,选择高黏均分子量(Mη)聚丙烯腈(PAN)为研究对象,系统研究了温度、溶剂比例、分子量、固含量对混合溶剂纺丝原液流变性的影响。结果表明,纺丝原液的表观黏度随分子量、固含量的增大而增加,随温度升高而降低,随溶剂比例先增加后减小,在V(DMSO)∶V(DMAc)=1.25∶1处出现最小值,随后逐渐增加。PAN的结晶度随溶剂体积比增大而升高,在1.25∶1时结晶性能最优。最终实验确定PAN纺丝原液可纺性最佳条件为:纺丝温度60℃~70℃,溶剂体积比1.25:1,固含量14%~16%。 The spinnability of high molecular weight polyacrylonitrile (PAN) was investigated in the composite solvent of dimethylsulfoxide/dimethylacetamide (DMSO/DMAc). The effect of temperature, solvent ratio, molecular weight and solid content on the rheological properties of PAN spinning solution was studied systematically. It is shown that the viscosity of the spinning solution increases with the increase of molecular weight and solid content. The viscosity drops with the increase of temperature and the DMSO ratio. There is a minimum point of viscosity then the solvent volume ratio (DMSO and DMAc) is 1.25:1. The crystallinity of PAN increases with the inerese of DMSO ratio and the best crystalline property is obtained when V(DMSO) : V (DMAc) is 1.25 : 1. The optimum of spinnability of PAN spinning solution was determined as follows: spinning temperature between 60 ℃ -70 ℃, V(DMSO) : V(DMAc) of 1.25:1 and solid content of 14%--16% .
出处 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2013年第2期38-41,共4页 Polymer Materials Science & Engineering
基金 国家重点基础研究发展计划(973计划 2011CB605601 2010CB631102) 山东省自然科学基金资助项目(ZR2011EMM002)
关键词 聚丙烯腈 混合溶剂 表观黏度 可纺性 polyacrylonitrile composite solvent apparent viscosity spinnability
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  • 1吴雪平,凌立成,吕春祥,吴刚平,李永红,李开喜,宋燕,张睿,贺福.不同分子量丙烯腈-丙烯酰胺共聚物溶液的流变性研究[J].新型炭材料,2004,19(2):103-108. 被引量:5
  • 2Hu W B,J Chem Phys,1998年,109期,3686页
  • 3马德柱,高聚物的结构与性能,1995年,507页
  • 4何曼君,高分子物理,1990年,114页
  • 5JEAN-BAPTISTE D, TONG K W, JIMMY C. Carbon fiber[M]. New York:Marcel dekke, 1998.
  • 6ISMAIL A F, RAHMAN M A, MUSTAFA A, et al. The effect of processing conditions on a polyacrylonitrile fiber produced using a solvent-free free coagulation process [J]. Materials science and engineering A, 2007.
  • 7PAUL D R. A study of spinnability in the wet-spinning of acrylic fiber[J]. J.Appl.Polym.Sci., !968, 12(10): 2 273-2 298.
  • 8HANG C, MARILYN L M, SATISH K. Oriented and exfoliated single wall carbon nanotubes in polyacrylonitrile [J]. Polymer, 2006, 47:3 494 - 3 504.
  • 9ANDRZEJ Z. Fundamentals of fibre formation[M].北京:中国防织出版社,1976.
  • 10BARNES H A, HUTTON J F, WALTERS K. An introduction to rheology[M]. New York:Elsevier, 1989.

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  • 1唐乃杰,陈惠芳,潘鼎.H_2O对PAN/DMSO纺丝溶液流变学性质的影响[J].宇航材料工艺,2006,36(z1):84-87. 被引量:1
  • 2王华,王翔,韩笑,王增加,李崇俊.氨化对三元共聚聚丙烯腈原丝的影响[J].合成纤维,2012,41(10):1-4. 被引量:3
  • 3肖建文,方静,孙立.聚丙烯腈原丝碳化反应机理综述[J].高科技纤维与应用,2005,30(1):24-27. 被引量:8
  • 4张家杰.国内外碳纤维生产现状及发展趋势[J].化工技术经济,2005,23(4):12-15. 被引量:40
  • 5Cheng L,Zhang YM,Zhao TT. Free radical polymerization of acrylonitrile in greenionicliquids[J].{H}Macromolecular Symposia,2004.9-16.
  • 6Zhang YM,Tu XP,Liu WW. Diffusion dynamics of ionic liquids during the coagulation of solution spinning for acrylic fibers[J].{H}Polymer Engineering & Science,2008,(01):184-190.
  • 7Wan SX,Zhang YM,Wang HP. Acrylic fibers processing with ionic liquid as solvent[J].{H}Polymers for Advanced Technologies,2009,(11):857-862.doi:10.1002/pat.1327.
  • 8Zhu XJ,Chen X,Saba H. Linear viscoelasticity of poly (acrylonitrile-co-itaconic acid)/1-butyl-3-methylimidazolium chloride extended from dilute to concentrated solutions[J].{H}European Polymer Journal,2012,(03):597-603.
  • 9Csihony S,Fischmeister C,Bruneau C. First ring-opening metathesis polymerization in an ionic liquid.Efficient recycling of a catalyst generated from a cationic ruthenium allenylidene complex[J].{H}New Journal of Chemistry,2002,(11):1667-1670.
  • 10莫志深;张宏放;张吉东.晶态聚合物结构和X射线衍射[M]北京:科学出版社,2010234-244.

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