English
新闻公告
More
化学进展 2007, Vol. 19 Issue (06): 932-958 前一篇   后一篇

• 综述与评论 •

高熔体强度聚丙烯的制备与表征*

王红英1;胡徐腾2;李振宇2;义建军2;董金勇1**   

  1. 1.中国科学院化学研究所 工程塑料重点实验室 北京 100080;
    2.中国石油天然气股份有限公司 炼油化工技术研究中心 北京 100083
  • 收稿日期:2005-09-05 修回日期:2006-10-31 出版日期:2007-06-24 发布日期:2007-06-24
  • 通讯作者: 董金勇

Preparation and Characterization of High Melt Strength Polypropylene

Wang Hongying1;Hu Xuteng2;Li Zhenyu2;Yi Jianjun2;Dong Jinyong1**   

  1. 1. CAS Key Laboratory of Engineering Plastics, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080,China;

    2. Center for Petroleum and Petrochemical Technology, PetroChina Company Limited, Beijing 100083,China

  • Received:2005-09-05 Revised:2006-10-31 Online:2007-06-24 Published:2007-06-24
高熔体强度聚丙烯(HMSPP)相比于普通聚丙烯具有优越的综合性能,其良好的加工性能使其具有广阔的应用前景,并成为许多国家近年来竞相开发的热点。本文从HMSPP的结构特点、制备方法、性能测试等方面总结了近年来的研究进展,着重介绍了反应器合成长链支化型高熔体强度聚丙烯(LCB-HMSPP)的方法以及其结构表征,并在总结国内外现状的基础上展望了高熔体强度聚丙烯的发展前景。
Compared with conventional polypropylene (PP), high melt strength polypropylene (HMSPP) has more prosperous applications due to its superior overall properties especially the excellent melt processibility. As such, HMSPP has recently become a hotspot of development in many countries. This review summarizes researches in the past few years on the development of HMSPP, from preparation to property characterizations, with special emphasis given to the in situ polymerization technique to access long chain branched HMSPP(LCB- HMSPP). The future prospect of HMSPP research is foreseen in the last.

中图分类号: 

()

[ 1 ] 金阳(Jin Y) , 陈贤益(Chen X Y) , 张军(Zhang J) . 塑料加工(Plastics Process) , 2001 , 37(6) : 42 —46
[ 2 ] 黄成( Huang C) . 现代塑料加工应用(Modern Plastics Processing and Applications) , 2001 , 13(5) : 38 —41
[ 3 ] 李玉芳(Li Y F) , 晓明( Xiao M) . 塑料加工( Plastics Process) , 2004 , 39(5) : 20 —26
[ 4 ] 吕玉杰(Lü Y J) , 乔金梁(Qiao J L) , 吕立新(Lü L X) . 合成树脂及塑料(Synthetic Resin and Plastics) , 2000 , 17(4) : 30 —39
[ 5 ] Ghijsels A , Ente J J S M, Raadsen J . Int . Polym. Process ,1990 , 5 : 284 —286
[ 6 ] Gotsis A D , Zeevenhoven B L F. J . Rheol . , 2004 , 48 : 895 —914
[ 7 ] De Maio V V , Dong D. SPE ANTEC Proceedings , 1997 , 43 :1512 —1516
[ 8 ] Ghijsels A , de Clippeleir J . Int . Polym. Process , 1994 , 9 :252 —257
[ 9 ] Ghijsels A , Massardier C H C , Bradley R M. Int . Polym.Process , 1997 , 12 : 147 —154
[10] Mendelson R A , Bowles W A , Finger F L. J . Polym. Sci . Part A: Polym. Chem. , 1970 , 8(1) : 105 —126
[11] Gotsis A D , Ke S F. SPE ANTEC Proceedings , 1999 , 45 :1156 —1161
[12] Vega J , Aguilar M, Peon J , et al . E2Polymers , 2002 , no. 046 :1 —35
[13] Grinshpun V , Rudin A , Russell K E , et al . J . Polym. Sci . Part B : Polym. Phys. , 1986 , 24 (5) : 1171 —1176
[14] Rudin A , Grinshpun V , Driscoll K F. J . Liq. Chromatogr. ,1984 , 7 (9) : 1809 —1821
[15] Bovey F A , Schilling F C , Wagner HL. Macromolecules , 1976 ,9 (1) : 76 —80
[16] Randall J C. ACS Symposium Series , 1980 , 142 : 93 —118
[17] Shroff R N , Mavridis H. Macromolecules , 2001 , 34 ( 21 ) :7362 —7367
[18] Jordan E A , Donald A M, Fetters L J , et al . Polym. Prepr. ,1989 , 30 (1) : 63 —64
[19] Gell C B , Graessley W W, Efstratiadis V , et al . J . Polym. Sci .Part B : Polym. Phys. , 1997 , 35(12) : 1943 —1954
[20] Fetters L J , Lohse D J , Richter D , et al . Macromolecules , 1994 ,27(17) : 4639 —4647
[21] Larson R G, Sridhar T , Leal L G, et al . J . Rheol . , 2003 , 47 :809 —818
[22] Cogswell F N. Polymer Melt Rheology. Cambridge : Woodhead ,1981. 106 —118
[23] Mülhaupt H , Laun H. Rheol . Acta , 1981 , 20 : 211 —218
[24] Dealy J M, Wissbrun K F. Melt Rheology and Its Role in Plastic Processing. New York : Van Nostrand Reinhold , 19901 89 —112
[25] Hingmann R , Marczinke B L. J . Rheol . , 1994 , 38 (3) : 573 —587
[26] Kurzbeck S , Oster F , Mülhaupt H. J . Rheol . , 1999 , 43 (2) :359 —373
[27] Lagendijk R P , Hogt A H , Gotsis A D , et al . Polymer , 2001 ,42 : 10035 —10043
[28] Stange J , Uhl C , Münstedt H. J . Rheol . , 2005 , 49(5) : 1059 —1079
[29] Wagner M H , Bastian H , Hachmann P , et al . Rheol . Acta ,2000 , 39 : 97 —109
[30] Gabriel C , Mülhaupt H. J . Rheol . , 2003 , 47 : 619 —630
[31] Gahleitner M. Prog. Polym. Sci . , 2001 , 26(6) : 895 —944
[32] Chum P S , Kruper W J , Guest M J . Adv. Mater. , 2000 , 12 :1759 —1767
[33] Doerpinghaus P J , Baird D G. J . Rheol . , 2003 , 47(3) : 717 —736
[34] Auhl D , Stange J , Münstedt H. Macromolecules , 2004 , 37(25) :9465 —9472
[35] Becker J , Klason C , Kubat J , Saha P. Plast . Rubber Process Appl . , 1990 , 14 : 23 —28
[36] Ho K, Kale L , Montgomery S. J . Appl . Polym. Sci . , 2002 , 85(7) : 1408 —1418
[37] Doroudiani S , Park C B , Kortschot M. Polymer Engineering and Science , 1998 , 38(7) : 1205 —1215
[38] Liu C S , Newark D. US 4 365 044 , 1982
[39] William H H , Witiak D , Labar R A. US 4 094 927 , 1978
[40] Memon N A , Yardley P. US 5 506 307 , 1996
[41] Ilendra C S , Bortnick N , Graham R K, et al . US 5 218 410 ,1992
[42] Zhang G, Fu Q , She K Z , et al . J . Appl . Polym. Sci . , 2002 ,86 : 58 —63
[43] Sugimoto M, Masubuchi Y, Koyama K. J . Polym. Sci . Part B :Polym. Phys. , 2001 , 39 : 2692 —2704
[44] Naguib H E , Xu J X, Park CB , et al . SPE ANTEC Proceedings ,2001 , 47 : 1623 —1630
[45] Naguib H E , Park CB , Wang J , et al . Cell . Polym. , 2003 , 22 :1 —22
[46] Reichelt N , Park C B , Wang J , et al . Cell . Polym. , 2003 , 22 :315 —328
[47] Spitael P , Macosko C W. Polym. Eng. Sci . , 2004 , 44 (11) :2090 —2100
[48] Stange J , Uhl C , Münstedt H. Proceedings of the 14th International Congress on Rheology. Seoul , 2004 , P. FE11
[49] DeMaio V V , Dong D , Gupta A. SPE ANTEC Proceedings , 2000
[50] Dharia A. SPE ANTEC Proceedings , 2005 , 51 : 2152 —2160
[51] Callum T M, Kontopoulou M, Park C B. SPE ANTEC Proceedings , 2001
[52] Lawrence J E , Walton K L , Laughner M K. SPE ANTEC Proceedings , 2005. 1209 —1213
[53] Spitael P , Macosko C W, Sahnoune A. SPE ANTEC Proceedings ,2002 , 48 : 1792 —1796
[54] R? tzsch M, Arnold M, Borsig E , et al . Prog. Polym. Sci . ,2002 , 27 : 1195 —1282
[55] R? tzsch M J M S. Pure Appl . Chem. , 1999 , 36 (11) : 1759 —1769
[56] R?tazsch M. Fourth International Symposium on Polymer for Technologies. Leipzig , Germany , 1997 , DE19693600
[57] Graebling D. Macromolecules , 2002 , 35(12) : 4602 —4610
[58] R?tazsch M, Fourth International Symposium on Polymer for Technologies. Leipzig , Germany , 1997 , DE 19693438
[59] Chodák I. “Crosslinking of Polypropylene”, Polypropylene : An A-Z Reference ( ed. Karger2Kocsis J ) . Dordrecht : Kluwer Publishers , 1999. 128 —135
[60] Yu D W, Dey S K, Pringgosusanto F. SPE ANTEC Proceedings ,2000
[61] Moad G. Prog. Polym. Sci . , 1999 , 24 : 81 —142
[62] Scheve B J , Mayfield J W, DeNicola A J . US 4 916 198 , 1990
[63] DeNicola A J Jr. EP 0 351 866 , 1989
[64] DeNicola A J Jr. US 5 047 446 , 1991
[65] DeNicola A J Jr , Smith J A , Felloni M. US 5 414 027 , 1995
[66] DeNicola A J Jr , Smith J A , Felloni M. US 5 541 236 , 1996
[67] Scheve B J , Mayfield J W, DeNicola AJ Jr. US 5 554 668 , 1996
[68] Scheve B J , Mayfield J W, DeNicola AJ Jr. US 5 591 785 , 1997
[69] DeNicola A J Jr , Smith J A , Felloni M. US 5 605 936 , 1997
[70] Scheve B J , Mayfield J W, DeNicola AJ Jr. US 5 731 362 , 1998
[71] Bakhtiar A S , Rosenthal J S. US 6 306 518 , 1998
[72] Dang V A , Dong D. US 6 225 411 , 2001
[73] Dang V A , Dong D. US 6 306 970 , 2001
[74] R?tazsch M. Fourth International Symposium on Polymer for Technologies. Leipzig , Germany , 1997 , DE 19693439
[75] R?tazsch M, Ulf P , Achim H , Bucka H. SPE ANTEC Proceedings , 1999
[76] Yoshii F , Makuuchi K, Kikukawa S , et al . J . Appl . Polym.Sci . , 1996 , 60(4) : 617 —623
[77] Schulze D , Trinkle S , Friedrich C , et al . Rheol . Acta , 2003 ,42 : 251 —258
[78] Chodák I , Zimányová E. Eur. Polym. J . , 1984 , 20 (1) : 81 —84
[79] Borsig E , CDapla M, Lazàr M, et al . Polym. Commun. , 1990 ,31 : 293 —298
[80] DeNicola A J Jr. US 5 047 485 , 1991
[81] DeNicola A J Jr. EP 0 384 431 , 1990
[82] Saito J , Kawazoe S , Kikukawa S. US 5 416 169 , 1995
[83] 安东尼·J·丹尼科拉杰尔. CN 1 045 107 , 1990
[84] 安东尼·J·德尼古拉·Jr , 保罗·D·塔塔卡. CN 1 055 372 ,1991
[85] Hogt A H , Fischer B , Spijkerman G K. WO 9 749 759 , 1997
[86] Hogt A H , Fischer B , Spijkerman G K. WO 9 927 007 , 1999
[87] Van de Bovenkamp-Bouwman A G, Meijer J , Hogt A H , et al .WO 0 009 478 , 2000
[88] Gotsis A D , Lagendijk R P , Hogt A H. 13th International Congress on Rheology. 2000. 1 —203
[89] Lagendijk R P , Hogt A H , Gotsis A D , et al . Polymer , 2001 , 42(25) : 10035 —10043
[90] Wang X C , Tzoganakis C , Rempel GL. J . Appli . Polym. Sci . ,1996 , 61(8) : 1395 —1404
[91] Brant P , Canich J A M, Dias A J , et al . WO 9 407 930 , 1994
[92] Sugawara M. Proceedings SPO’94. Houston TX: Schotland Business Research , 1994. 39 —50
[93] Hamielec A E , Soares J B P. Prog. Polym. Sci . , 1996 , 21(4) :651 —706
[94] Hamielec A E , Soares J B P. Proceedings SPO’96. Houston TX:Schotland Business Research , 1996. 95 —115
[95] Beigzadeh D , Soares J B P , Hamielec A E. Polym. React .Eng. , 1997 , 5 : 141 —180
[96] Soares J B P. Macromol . Theory Simul . , 2002 , 11 (2) : 184 —198
[97] Nele M, Soares J B P. Macromol . Theory Simul . , 2002 , 11(9) :939 —943
[98] Woo T K, Margl P M, Bloechl P E. Organometallics , 1997 , 16(15) : 3454 —3468
[99] Lohse D J , Xenidou M, Schultz D N , et al . Polym. Mater. Sci .Eng. , 2000 , 82 : 123 —124
[100] Soares J B P , Hamielec A E. Theory Simul . , 1996 , 5 ( 3) :547 —572
[101] Soares J B P , Hamielec A E. Theory Simul . , 1997 , 6 ( 3) :591 —596
[102] Nele M, Soares J B P. Polym. Prepr. (Am. Chem. Soc. , Div.Polym. Chem. ) , 2002 , 43 : 252
[103] Costeux S , Wood-Adams P , Beigzadeh D. Macromolecules ,2002 , 35(7) : 2514 —2528
[104] Read D J , McLeish T C B. Macromolecules , 2001 , 34 ( 6) :1928 —1945
[105] McKnight A L , Waymouth R M. Chem. Rev. , 1998 , 98 (7) :2587 —2598
[106] Bubeck R A. Materials Science and Engineering , 2002 , 39 : 1 —28
[107] Kolodka E , Wang WJ , Zhu S. Polymer , 2000 , 41(11) : 3985 —3991
[108] Malmberg A , Kokko E , Sepp?l?J V. Macromolecules , 1998 , 31(24) : 8448 —8454
[109] Kokko E , Malmberg A , Sepp?l?J V. J . Polym. Sci . Part A:Polym. Chem. , 2000 , 38(2) : 376 —388
[110] Kokko E. Doctor Thesis , Department of Chemical Technology ,Helsinki University of Technology Espoo , Finland , 2002
[111] Shiono T , Moriki Y, Soga K. Macromol . Symp. , 1995 , 97(1) :161 —170
[112] Shiono T , Moriki Y, Ikeda T. Macromol . Chem. Phys. , 1997 ,198(10) : 3229 —3237
[113] Henschke O , Neubauer A , Arnold M. Macromolecules , 1997 , 30(26) : 8097 —8100
[114] Barnhart R W, Bazan G C , Mourey T. J . Am. Chem. Soc. ,1998 , 120 : 1082 —1083
[115] Markel E J . WO 9 834 965 , 1998
[116] Markel E J . WO 9 834 970 , 1998
[117] Shiono T , Azad S M, Ikeda T. Macromolecules , 1999 , 32 :5723 —5727
[118] De Souza R F , Casagrande O L Jr. Macromol . Rapid Commun. ,2001 , 22(16) : 1293 —1301
[119] Machida S , Sato K, Tatsumi T , et al . WO 0 107 493 , 2001
[120] Weng W, Markel E J , Dekmezian A H , et al . US 6 225 432 ,2001
[121] Weng W, Markel E J , Dekmezian A H. Macromol . Rapid Commun. , 2001 , 22(18) : 1488 —1492
[122] Fukui Y, Murata M, Soga K, et al . US 6 455 649 , 2002
[123] Lahitte J F , Frédéric P , Pierre J L , et al . Macromol . Chem.Phys. , 2002 , 203 (18) : 2583 —2589
[124] Kolodka E , Wang W J , Zhu S , et al . Macromolecules , 2002 , 35(27) : 10062 —10070
[125] Razavi A. EP 1 422 250 , 2002
[126] Weng W, Hu W, Dekmezian A H , et al . Macromolecules , 2002 ,35(10) : 3838 —3843
[127] Weng W, Dekmezian A , Markel E J , et al . US 6 342 574 , 2002
[128] Weng W, Dekmezian A , Markel E J , et al . US 6 423 793 , 2002
[129] Kolodka E , Wang W J , Zhu S , et al . Macromol . Rapid Commun. , 2003 , 24(4) : 311 —315
[130] Schulze U , Fónagy T , Iván B. Macromolecules , 2003 , 36 (13) :4719 —4726
[131] Ye Z , Zhu S. J . Polym. Sci . Part A: Polym. Chem. , 2003 , 41(8) : 1152 —1159
[132] Arjunan P , Matthew T A , Brant P , et al . US Patent Appl . 0 127 649 , 2004
[133] Soares J B P. Macromol . Mater. Eng. , 2004 , 289 (1) : 70 —87
[134] Weng W, Mehta A K, Agarwal P K, et al . US Patent Appl . 0054 098 , 2004
[135] Komon Z J A , Bazan G C. Macromol . Rapid Commun. , 2001 ,22 (7) : 467 —478
[136] Quijada R , Rojas R , Bazan G, et al . Macromolecules , 2001 , 34 (8) : 2411 —2417
[137] Komon Z J A , Diamond G M, Bazan GC. J . Am. Chem. Soc. ,2002 , 124 (52) : 15280 —15285
[138] Li H , Li L , Marks T. Angew. Chem. Int . Ed. , 2004 , 43(37) :4937 —4940
[139] Soga K, Uozumi T , Shiono T. Macromol . Chem. Phys. , 1996 ,197(12) : 4237 —4251
[140] Sperber O , Kaminsky W. Macromolecules , 2003 , 36 ( 24 ) :9014 —9019
[141] Furlan L G, Kunrath F A , Casagrande O L , et al . J . Mol . Catal .A: Chem. , 2004 , 214 (2) : 207 —211
[142] Junges F , de Souza R F , Casagrande O L , et al . Macromol .Mater. Eng. , 2005 , 290 (1) : 72 —77
[143] Zou H , Zhu FM, Wu Q , et al . J . Polym. Sci . Part A: Chem. ,2005 , 43(7) : 1325 —1330
[144] Cherian A E , Lobkovsky E B , Coates G W. Macromolecules ,2005 , 38(15) : 6259 —6268
[145] Weng W, Markel E J , Dekmezian A H. Macromol . Rapid Commun. , 2000 , 21 : 1103 —1107
[146] Carvill A , Zetta L , Zannoni G, et al . Macromolecules , 1998 , 31(12) : 3783 —3789
[147] Resconi L , Camurati I , Sudmeijer O. Topics in Catalysis , 1999 ,7 : 145 —163
[148] Resconi L. J . Molecular Catalysis A: Chemical , 1999 , 146 :167 —178
[149] Resconi L , Piemontesi F , Franciscono G, et al . J . Am. Chem.Soc. , 1992 , 114 (3) : 1025 —1032
[150] Kawaharaa N , Kojoh S , Matsuo S , et al . Polymer , 2004 , 45(9) :2883 —2888
[151] Lin M, Spivak G J , Baird M C. Organometallics , 2002 , 21(12) :2350 —2352
[152] Lahelin M, Kokko E , Lehmus P , et al . Macromol . Chem.Phys. , 2003 , 204 (10) : 1323 —1337
[153] Weng W, Dekmezian A , Markel E , et al . US 6 117 962 , 2000
[154] Repo T , Jany G, Hakala K, et al . J . Organomet . Chem. , 1997 ,549(1) : 177 —186
[155] Britovsek G J P , Gibson V C , Williams , D J , et al . Chem.Commun. , 1998 , 849 —850
[156] Pellecchia C , Azzeo M, Pappalardo D. Macromol . Rapid Commun. , 1998 , 19(12) : 651 —655
[157] Small B L , Brookhart M. Macromolecules , 1999 , 32(7) : 2120 —2130
[158] Hustad P D , Tian J , Coates G W. J . Am. Chem. Soc. , 2002 ,124(14) : 3614 —3621
[159] Talarico G, Busico V , Cavallo L. Organometallics , 2004 , 23 (25) : 5989 —5993
[160] Mitani M, Nakano T , Fujita T. Chem. Eur. J . , 2003 , 9 :2396 —2403
[161] Lai S Y, Wilson J R , Stevens J C , et al . US 5 272 236 , 1993
[162] Wang W, Yan D , Zhu S , et al . Macromol . Chem. Phys. , 1998 ,199(11) : 2409 —2416
[163] Harrison D , Coulter I M, Collins S , et al . J . Mol . Catal . A:Chem. , 1998 , 128 (1/3) : 65 —77
[164] Beigzadeh D , Soares J B P , Hamielec A E. J . Appl . Polym. Sci . , 1999 , 71(11) : 1753 —1770
[165] Beigzadeh D , Soares J B P , Duever T A. Macromol . Rapid Commun. , 1999 , 20(10) : 541 —545
[166] Bianchini C , Frediani M, Kaminsky W. Macromol . Rapid Commun. , 2005 , 26 : 1218 —1223
[167] Frediani M, Piel C , Kaminsky W, et al . Macromol . Symp. ,2006 , 236 : 124 —133
[168] Read D J , Soares J B P. Macromolecules , 2003 , 36 ( 26 ) :10037 —10051
[169] Hustad P D , Tian J , Coates G W. J . Am. Chem. Soc. , 2002 ,124 : 3614 —3621
[170] Kokko E , Pietik?inen P , Sepp?l?J V , et al . J . Polym. Sci . Part A: Polym. Chem. , 2001 , 39 : 3805 —3717
[171] Inoue N , Jinn2no M, Shiomura T. JP Appl . 25 357 , 1994
[172] Agarwal P K, Somani R H , Hsiao B S. Macromolecules , 2003 ,36(14) : 5226 —5235
[173] Hackmann M, Repo T , Rieger B , et al . Macromol . Chem.Phys. , 1998 , 199 (8) : 1511 —1517
[174] Kim I , Shin Y S , Lee J K. J . Polym. Sci . Part A: Polym.Chem. , 2000 , 38 : 1590 —1598
[175] Gresham. US 2 933 480 , 1960
[176] Chevron Res. Co. US 3 351 621 , 1968
[177] Goodrich Co. B F. US 3 480 599 , 1968
[178] Edis. US 3 658 770 , 1972
[179] Montecatini SPA. US 3 900 452 , 1975
[180] Lal J , Sandstrom P H. US 3 933 769 , 1974
[181] Kitagawa S , Okada I. US 4 366 296 , 1982
[182] Lal J , Senyek M L. US 4 340 705 , 1982
[183] Lal J , Senyek M L. US 4 551503 , 1985
[184] Marques M F V , Fink G. Polymer Bulletin , 1993 , 30 : 377 —383
[185] Lee D H. Eur. Polym. J . , 1997 , 33 : 447 —451
[186] Lal J , Sandstrom P H. US 3 917 062 , 1976
[187] Etherton B P , McAlpin J J , Huff T , et al . US 5 504 171 , 1996
[188] Etherton B P , McAlpin J , Huff T , et al . US 5 514 761 , 1996
[189] Meka P , Imanishi K, Licciardi G F , et al . US 5 670 595 , 1997
[190] Rêsch J , Mach H , Gruber F. US 5 929 185 , 1999
[191] V·A·丹格, 董定雄(Dong D X) . CN 1 313 879 , 2001
[192] Agarwal P K, Weng W, Mehta A K, et al . US Patent Application 0 013 440 , 2002
[193] Naga N , Shiono T , Ikeda T. Macromolecules , 1999 , 32 : 1348 —1355
[194] Arnold M, Bornemann S , Schimmel T , et al . Macromol . Symp. ,2002 , 181 : 5 —16
[195] Walter P , Trinkle S , Mülhaupt R , et al . Macromol . Mater.Eng. , 2001 , 286 (5) : 309 —315
[196] Paavola S , Saarinen T , Lêfgren B , et al . Polymer , 2004 , 45(7) :2099 —2110
[197] Ye Z B , AlObaidi F , Zhu S P. Ind. Eng. Chem. Res. , 2004 ,43(11) : 2860 —2870
[198] Langston J , Dong J Y, Chung T C. Macromolecules , 2005 , 38(14) : 5849 —5853
[199] Gaynor S G. Macromolecules , 2003 , 36(13) : 4692 —4698
[200] Lau H C , Bhattacharya S N , Field GJ . Polymer Engineering and Science , 1998 , 38(11) : 1915 —1923
[201] Wollf R. Polymer Process Engineering , 1986 , 4(1) : 97 —102
[202] Gotsis A D , Zeevenhoven B L F , Hogt A H. Polymer Engineering and Science , 2004 , 44(5) : 973 —978
[203] Guillet J E , Combs R L , Slonaker D F , et al . J . Appl . Polym.Sci . , 1965 , 9(2) : 757 —762
[204] 朱绍男(Zhu S N) . 聚丙烯塑料的应用与改性. 北京: 中国轻工业出版杜(Beijing : China Light Industry Press) , 1982.19 —27
[205] 吴长伟(Wu C W) , 王益龙(Wang Y L) , 王宁(Wang N) 等.现代塑料加工应用( Modern Plastics Processing and Applications) , 2006 , 18(2) : 1 —4
[206] 王峰(Wang F) , 张丽叶( Zhang L Y) . 塑料工业( China Plastics Industry) , 2003 , 31(7) : 21 —23
[207] 高建明(Gao J M) , 张晓红(Zang X H) , 乔金梁(Qiao J L) .合成树脂及塑料(Synthetic Resin and Plastics) , 2002 , 19 (5) :27 —31
[208] Meissner J , Hostettler J . Rheol . Acta , 1994 , 33(1) : 1 —21
[209] Sugimoto M, Masubuchi Y, Koyama K. Macromolecules , 2001 ,34(17) : 6056 —6063
[210] Leonardi E , Derail C , Marin G. J . Non2Newtonian Fluid Mech. ,2005 , 128 (1) : 50 —61
[211] Münstedt H. J . Rheol . , 1979 , 23 : 421 —436
[212] Münstedt H , Kurzbeck S , Egersdêrfer L. Rheol . Acta , 1998 , 37(1) : 21 —29
[213] Wagner M H , Yamaguchi M, Takahashi M. J . Rheol . , 2003 , 47 (3) : 779 —793
[214] Münstedt H , Auhl D. J . Non-Newtonian Fluid Mech. , 2005 ,128 : 62 —69
[215] Scorah M J . Doctor Thesis , Chemical Engineering , University of Waterloo. Canada , 2005
[216] Wood-Adams P M, Dealy J M, deGroot A W, et al .Macromolecules , 2000 , 33(20) : 7489 —7499
[217] Hadjichristidis N , Xenidou M, Lohse D J . Macromolecules ,2000 , 33(7) : 2424 —2436
[218] Kokko E , Wang W J , Sepp?l? J V , et al . J . Polym. Sci . Part A: Polym. Chem. , 2002 , 40 : 3292 —3301
[219] Wang W J , Yan D , Zhu S , et al . Macromolecules , 1998 , 31(25) : 8677 —8683
[220] Gabriel C , Kokkob E , Münstedt H. Polymer , 2002 , 43 : 6383 —6390
[221] Striegel A M, Krejsa M R. J . Polym. Sci . Part B : Polym.Phys. , 2000 , 38 : 3120 —3135
[222] Stadler F J , Piel C , Münstedt H , et al . Macromolecules , 2006 ,39(4) : 1474 —1482
[223] Klimke K, Parkinson M, Wilhelm M, et al . Macromol . Chem.Phys. , 2006 , 207 : 382 —395
[224] De Pooter M, Smith P B , Geerards R A. J . Appl . Polym. Sci . ,1991 , 42 (2) : 399 —408
[225] Hansen E W, Blom R , Bade O M. Polymer , 1997 , 38 (17) :4295 —4304
[226] Van Boxtel M H C M, Busch M, Lehmann S. Macromol . Chem.Phys. , 2000 , 201 (3) : 313 —319
[227] He C X, Costeuxa S , Dealyc J M. Polymer , 2003 , 44 : 7181 —7188
[228] Zimm B H , Stockmayer W H. J . Chem. Phys. , 1949 , 17(12) :1301 —1314
[229] Scorah M J , Dhib R , Penlidis A. Journal of Macromolecular Science Part A: Pure and Applied Chemistry , 2005 , 42 ( 4) :403 —426
[230] Mourey T H , Vu KA , Balke S T. ACS Symposium Series , 1999 ,731 : 20 —34
[231] Mourey T H , Balke S T. J . Appl . Polym. Sci . , 1998 , 70 (4) :831 —835
[232] Balke S T , Mourey T H , Karami A. Int . J . Polym. Anal .Charact . , 2000 , 6(1) : 13 —33
[233] Wang W J , Miglerb K, Zhu S. Polymer , 2004 , 45(19) : 6495 —6509
[234] Lu J , Hammons K, Sue H J . SPE ANTEC Proceedings , 2002 , 60(2) : 2051 —2055
[235] Krausea B , Voigt D , Lederer A , et al . Journal of Chromatography A , 2004 , 1056 : 217 —222
[236] Sugimoto M, Tanaka T , Koyama K, et al . J . Appl . Polym.Sci . , 1999 , 73(8) : 1493 —1500
[237] Yu Y, DesLauriers P J , Rohlfing D C. Polymer , 2005 , 46 :5165 —5182
[238] Piel C , Stadler F J , Kaminsky W, et al . Macromol . Chem.Phys. , 2006 , 207 : 26 —38
[239] Wood2Adams P M. J . Rheol . , 2001 , 45 : 203 —210
[240] Karjala T P , Huang W, Johnson M S , et al . SPE ANTEC Proceedings , 2004 , 62 (1) : 1018 —1022
[241] Robertson C G, García-Franco C A , Srinivas S. J . Polym. Sci .Part B : Polym. Phys. , 2004 , 42 : 1671 —1684
[242] Mavridis H , Shroff R N. Polym. Eng. Sci . , 1992 , 32 (23) :1778 —1791
[243] Vega J F , SantamarláA. Macromolecules , 1998 , 31 ( 11 ) :3639 —3647
[244] Wood-Adams P , Costeux S. Macromolecules , 2001 , 34 ( 18) :6281 —6290
[245] Shroff R N , Mavridis H. Macromolecules , 1999 , 32 ( 25 ) :8454 —8464
[246] Ye Z , AlObaidi F , Zhu S , et al . Macromol . Chem. Phys. ,2005 , 206 : 2096 —2105
[247] Vega J F , Fernández M, Santamaria A , et al . Macromol . Chem.Phys. , 1999 , 200 (10) : 2257 —2268
[248] Malmberg A , Gabriel C , Lêfgren B. Macromolecules , 2002 , 35(3) : 1038 —1048
[249] Walter P , Trinkle S , Mülhaupt R , et al . Macromol . Chem.Phys. , 2000 , 201 (5) : 604 —612
[250] Gabriel C , Münstedt H. Rheol . Acta , 2002 , 41(3) : 232 —244
[251] Lusignan C P , Mourey T H , Colby R H , et al . Phys. Rev. E ,1995 , 52(6) : 6271 —6280
[252] Lusignan C P , Mourey T H , Colby R H , et al . Phys. Rev. E ,1999 , 60(5) : 5657 —5669
[253] Janzen J , Colby R H. J . Molecul . Struct . , 1999 : 485/486 :569 —584
[254] Shroff R , Mavridis H. J . Appl . Polym. Sci . , 1995 , 57 (13) :1605 —1626
[255] Wood-Adams P , Dealy J M. Macromolecules , 2000 , 33 ( 20) :7481 —7488
[256] Wasserman S H. SPE ANTEC Proceedings. 1997. 1129
[257] Gabriel C , Kaschta J . Rheol . Acta , 1998 , 37(4) : 358 —364
[258] Lu H L , Chung T C. J . Polym. Sci . Part A: Polym. Chem. ,1999 , 37 : 4176 —4183
[259] Miwa Y, Yamamoto K, Shimada S , et al . Macromolecules , 1999 ,32(24) : 8234 —8236
[260] Miwa Y, Yamamoto K, Shimada S , et al . Macromolecules , 2001 ,34(7) : 2089 —2094
[261] Bing L , Chung T C. J . Polym. Sci . Part A: Polym. Chem. ,2000 , 38 : 1337 —1343
[262] Chung T C. Prog. Polym. Sci . , 2002 , 27 : 39 —85
[263] Schulz U , Fonagy T , Iván B. Macromolecules , 2003 , 36 (13) :4719 —4726
[264] Caporaso L , Iudici N , Oliva L. Macromolecules , 2005 , 38(11) :4894 —4900
[265] Zou J F , Cao C G, Dong J Y, et al . Macromol . Rapid Commun. , 2004 , 25 : 1797 —1804
[266] Cao C G, Zou J F , Dong J Y, et al . J . Polym. Sci . Part A:Polym. Chem. , 2005 , 43 : 429 —437
[267] 黄成(Huang C) , 王兴仁(Wang X R) , 柏基业(Bo J Y) . CN1 432 584 , 2003
[268] 黄成(Huang C) , 王兴仁(Wang X R) , 柏基业(Bo J Y) . CN1 432 592 , 2003
[269] 高建明(Gao J M) , 张晓红(Zhang X H) , 乔金梁(Qiao J L) .合成树脂与塑料(Synthetic Resin and Plastics) , 2002 , 19 (5) :27 —31
[270] 王兴仁(Wang X R) , 吴新源(Wu X Y) , 杨爱武(Yang A W) .CN 1 256 352 , 2006
[271] 孙康(Sun K) , 乔秀颖(Qiao X Y) , 仲伟霞(Zhong W X) . CN1 594 412 , 2005
[272] 汪加胜(Wang J S) , 章明秋(Zhang M Q) , 容敏智(RongM Z)等. CN 1 775 851 , 2006
[273] 刘振龙(Liu Z L) , 孟斌(Meng B) , 田卫东(Tian W D) . 现代塑料加工应用(Modern Plastics Processing and Applications) ,2002 , 14(1) : 17 —20

[1] 王丹丹, 蔺兆鑫, 谷慧杰, 李云辉, 李洪吉, 邵晶. 钼酸铋在光催化技术中的改性与应用[J]. 化学进展, 2023, 35(4): 606-619.
[2] 廖子萱, 王宇辉, 郑建萍. 碳点基水相室温磷光复合材料研究进展[J]. 化学进展, 2023, 35(2): 263-373.
[3] 李璇, 黄炯鹏, 张一帆, 石磊. 二维材料的一维纳米带[J]. 化学进展, 2023, 35(1): 88-104.
[4] 朱月香, 赵伟悦, 李朝忠, 廖世军. Pt基金属间化合物及其在质子交换膜燃料电池阴极氧还原反应中的应用[J]. 化学进展, 2022, 34(6): 1337-1347.
[5] 李芳远, 李俊豪, 吴钰洁, 石凯祥, 刘全兵, 彭翃杰. “蛋黄蛋壳”结构纳米电极材料设计及在锂/钠离子/锂硫电池中的应用[J]. 化学进展, 2022, 34(6): 1369-1383.
[6] 孙浩, 王超鹏, 尹君, 朱剑. 用于电催化析氧反应电极的制备策略[J]. 化学进展, 2022, 34(3): 519-532.
[7] 王才威, 杨东杰, 邱学青, 张文礼. 木质素多孔碳材料在电化学储能中的应用[J]. 化学进展, 2022, 34(2): 285-300.
[8] 曹祥康, 孙晓光, 蔡光义, 董泽华. 耐久型超疏水表面:理论模型、制备策略和评价方法[J]. 化学进展, 2021, 33(9): 1525-1537.
[9] 张震, 赵爽, 陈国兵, 李昆锋, 费志方, 杨自春. 碳化硅块状气凝胶的制备及应用[J]. 化学进展, 2021, 33(9): 1511-1524.
[10] 李金召, 李政, 庄旭品, 巩继贤, 李秋瑾, 张健飞. 纤维素纳米晶体的制备及其在复合材料中的应用[J]. 化学进展, 2021, 33(8): 1293-1310.
[11] 陈立忠, 龚巧彬, 陈哲. 超薄二维MOF纳米材料的制备和应用[J]. 化学进展, 2021, 33(8): 1280-1292.
[12] 向笑笑, 田晓雯, 刘会娥, 陈爽, 朱亚男, 薄玉琴. 石墨烯基气凝胶小球的可控制备[J]. 化学进展, 2021, 33(7): 1092-1099.
[13] 杨英, 马书鹏, 罗媛, 林飞宇, 朱刘, 郭学益. 多维CsPbX3无机钙钛矿材料的制备及其在太阳能电池中的应用[J]. 化学进展, 2021, 33(5): 779-801.
[14] 江松, 王家佩, 朱辉, 张琴, 丛野, 李轩科. 二维材料V2C MXene的制备与应用[J]. 化学进展, 2021, 33(5): 740-751.
[15] 陈怡峰, 王聪, 任科峰, 计剑. 生物医用高通量研究中的微液滴阵列[J]. 化学进展, 2021, 33(4): 543-554.
阅读次数
全文


摘要

高熔体强度聚丙烯的制备与表征*