OALib Journal期刊
ISSN: 2333-9721
费用:99美元
|
|
|
聚合物熔体界面扩散理论与研究方法
DOI: 10.3724/SP.J.1105.2013.13032, PP. 817-826
Keywords: 聚合物,界面,扩散,流变学
Abstract:
本文结合与聚合物加工过程密切相关的界面扩散问题,从动力学和热力学两方面综述了与聚合物界面互扩散相关的基础理论.结合在聚合物界面扩散方面的研究进展,系统介绍了聚合物熔体界面扩散的常用研究方法.对其中的流变学方法的原理及进展作了重点论述,该方法不仅可以有效表征聚合物熔体界面扩散的动力学过程,进一步从分子动力学角度发展并完善聚合物扩散理论,而且对于聚合物加工成型过程的界面结构设计和性能优化起到关键的指导作用.本文最后提出了聚合物熔体界面扩散研究中存在的问题并对其前景进行了展望.
References
[1] | 2 de Gennes P G.J Chem Phys,1971,55(2):572~579
|
[2] | 3 de Gennes P G.Scaling Concepts in Polymer Physics.New York:Cornell University Press,1979
|
[3] | 4 Doi M,Edwards S F.The Theory of Polymer Dynamics.Oxford:Clarendon Press,1986
|
[4] | 5 Lodge T P,Rotstein N A,Prager S.Adv Chem Phys,1990,79:128~132
|
[5] | 12 Wang S F,von Meerwall E D,Wang S Q,Halasa A,Hsu W L,Zhou J P,Quirk R P.Macromolecules,2004,37(37):1641~1651
|
[6] | 13 Abrams C F,Lee N K,Johner A.Macromolecules,2006,39(10):3655~3663
|
[7] | 14 Bella R,Cassagnau P,Fenouillot F,Falk L,Lacoste C.Polymer,2006,47(14):5080~5089
|
[8] | 15 Soleimani M,Haley J C,Lau W,Winnik M A.Macromolecules,2010,43(2):975~985
|
[9] | 16 Schach R,Creton C.J Rheol,2008,52(3):749~767
|
[10] | 17 Flory P J.J Am Chem Soc,1965,87(9):1833~1836
|
[11] | 18 Kramer E J,Green P,Palmstrom C J.Polymer,1984,25(4):473~480
|
[12] | 28 Geoghegan M,Jones R A L,van der Grinten M G D,Clough A S.Polymer,1999,40(9):2323~2329
|
[13] | 35 Welp K A,Wool R P,Satija S K,Pispas S,Mays J.Macromolecules,1998,31(15):4915~4925
|
[14] | 36 Lin H C,Tsai I F,Yang A C M,Hsu M S,Ling Y C.Macromolecules,2003,36(7):2464~2474
|
[15] | 37 Jones R A L,Klein J,Donald A M.Nature,1986,321(8):161~162
|
[16] | 38 Summerfield G C,Anderson J E,Jou J W,Ullman R.Polymer Preprints,1987,28:329~331
|
[17] | 39 Chaturvedi U K,Steiner U,Zak O,Krausch G,Schatz G,Klein J.Appl Phys Lett,1990,56(13):1228~1230
|
[18] | 40 Klein J.Science,1990,250(4981):640~646
|
[19] | 41 Liao Y,Nakagawa A,Horiuchi S,Ougizawa T.Macromolecules,2007,40(22):7966~7972
|
[20] | 42 High M S,Painter P C,Coleman M M.Macromolecules,1992,25(2):797~801
|
[21] | 45 Song M,Pollock H M,Hammiche A,Hourston D J,Reading M.Polymer,1997,38(3):503~507
|
[22] | 48 Qiu H,Bousmina M.J Rheol,1999,43(3):551~568
|
[23] | 51 Wang S F,von Meerwall E D,Wang S Q,Halasa A,Hsu W L,Zhou J P,Quirk R P.Macromolecules,2004,37(4):1641~1651
|
[24] | 52 Jonas A,De Luca A C,Pesce G,Rusciano G,Sasso A,Caserta S,Guido S,Marrucci G.Langmuir,2010,26(17):14223~14230
|
[25] | 53 Duckworth P,Richardson H,Carelli C,Keddie J L.Surf Interface Anal,2005,37(1):33~41
|
[26] | 54 Zhang H,Lamnawar K,Maazouz A.Macromolecules,2013,46(1):276~299
|
[27] | 55 Qiu H,Bousmina M,Dealy J M.Rheol Acta,2002,41(1-2):87~92
|
[28] | 56 Vaudreuil S,Qiu H,KaJiaguine S,Grmela M,Bousminal M.Macromol Symp,2000,158:155~168
|
[29] | 57 Zhao R,Macosko C W.AIChE J,2007,53(4):978~985
|
[30] | 58 Kim H Y,Jeong U,Kim J K.Macromolecules,2003,36(5):1594~1602
|
[31] | 1 Rouse P E.J Chem Phys,1953,21:1272~1280
|
[32] | 6 Tirrell M.Rubber Chem Technol,1984,57(3):523~556
|
[33] | 7 Lodge T P.Phys Rev Lett,1999,83(16):3218~3221
|
[34] | 8 Deutsch J M,Madden T L.J Chem Phys,1989,91(5):3252~3257
|
[35] | 9 Reiter J.J Chem Phys,1991,94(4):3222~3228
|
[36] | 10 Hagita K,Takano H.J Phys Soc Jpn,2003,72(8):1824~1827
|
[37] | 11 Wang S Q.J Polym Sci Pol Phys,2003,41(14):1589~1604
|
[38] | 19 Bates F S,Wignall G D,Koehler W C.Phys Rev Lett,1985,55(22):2425~2428
|
[39] | 20 Kim E,Kramer E J,Osby J O,Walsh D J.J Polym Sci Polym Phys,1995,33(3):467~478
|
[40] | 21 Tambasco M,Lipson J E G,Higgins J S.Macromolecules,2006,39(14):4860~4868
|
[41] | 22 Jones T D,Schulze J S,Macosko C W,Lodge T P.Macromolecules,2003,36(19):7212~7219
|
[42] | 23 Riedl B and Prudhomme R E.Polym Eng Sci,1984,24(17):1291~1299
|
[43] | 24 Sasaki H,Bala P K,Yoshida H,Ito E.Polymer,1995,36(25):4805~4810
|
[44] | 25 Lorec G,Baley C,Sire O,Grohens Y.Macromol Symp,2005,222(1):265~272
|
[45] | 26 Brochard F,Jouffroy J,Levinson P.Macromolecules,1983,16(10):1638~1641
|
[46] | 27 Composto R J,Kramer E J,White D M.Nature,1987,328(6127):234~236
|
[47] | 29 Jabbari E,Peppas N A.Polymer,1995,36(3):575~586
|
[48] | 30 Shearmur T E,Clough A S,Drew D W,van der Grinten M G D,Jones R A L.Phys Rev E,1997,55(4):R3840~R3843
|
[49] | 31 Composto R J,Kramer E J,White D M.Macromolecules,1988,21(8):2580~2588
|
[50] | 32 Pellegrini N N,Composto R J,Winey K I.J Polym Sci Polym Phys,2000,38(11):1547~1552
|
[51] | 33 Harton S E,Stevie F A,Ade H.Macromolecules,2005,38(9):3543~3546
|
[52] | 34 Segalman R A,Jacobson A,Kramer E J,Lustig S R.Macromolecules,2004,37(7):2613~2617
|
[53] | 43 Neuber R,Schneider H A.Polymer,2001,42(19):8085~8091
|
[54] | 44 de Luca A C,Rusciano G,Pesce G,Caserta S,Guido S,Sasso A.Macromolecules,2008,41(15):5512~5514
|
[55] | 46 Dlubek G,Pompe G,Pionteck J,Janke A,Kilburn D.Macromol Chem Phys,2003,204(9):1234~1244
|
[56] | 47 Dlubek G,Taesler C,Pompe G,Pionteck J,Petters K,Redmann F,Krause-Rehberg R.J Appl Polym Sci,2002,84(3):654~664
|
[57] | 49 Bousmina M,Qiu H,Grmela M,Klemberg-Sapieha J E.Macromolecules,1998,31(23):8273~8280
|
[58] | 50 Qiu H,Bousmina M.Macromolecules,2000,33(17):6588~6594
|
[59] | 59 Yang L,Suo T,Niu Y,Wang Z,Yan D,Wang H.Polymer,2010,51(22):5276~5281
|
[60] | 60 Li Wenlin(李文林),Niu Yanhua(牛艳华),Wang Zhigang(王志刚),Zhang Jun(张军).Acta Polymerica Sinica(高分子学报),2012,(9):1007~1014
|
[61] | 61 Zhang H,Lamnawar K,Maazouz A.Rheol Acta,2012,51(8):691~711
|
[62] | 62 Shen Lie(沈烈),Meng Qingrong(孟庆荣),Peng Mao(彭懋),Fang Zhengping(方征平).Acta Polymerica Sinica(高分子学报),2012,(8):794~800
|
[63] | 63 Wang Shiqing(王十庆).Science China(Chemistry)(中国科学——化学),2010,40(1):16~21
|
Full-Text
|
|
Contact Us
service@oalib.com QQ:3279437679 
WhatsApp +8615387084133
|
|