OALib Journal期刊
ISSN: 2333-9721
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氨酯化合物对聚碳酸1,2-丙二酯的同时增韧和增强研究
DOI: 10.3724/SP.J.1105.2011.11110, PP. 1349-1354
Keywords: 聚丙撑碳酸酯,增韧,增强,氨酯化合物
Abstract:
采用非异氰酸酯路线合成了1,6-六亚甲基二氨基甲酸羟异丙酯(BPU),分子量为320.利用熔融共混方法制备了聚碳酸1,2-丙二酯(PPC)/BPU共混物.研究发现BPU与PPC间有较好的相容性,随着BPU含量的增加,共混体系的起始热分解温度(Td,5%)可分别增加24~33℃,共混物韧性也显著提高,断裂伸长率最大可增至53.4%,为纯PPC的4倍,且共混物的强度和模量仍维持在较高的数值;BPU含量不超过10wt%时,可以同时实现共混体系的增韧和增强.剪切屈服和银纹化是PPC/BPU体系得以增韧的最主要机理,而空洞化现象起辅助作用.
References
[1] | 2 Luinstra G A.Polym Rev 2008,48(1):192~219
|
[2] | 4 Ma X F,Chang P R,Yu J G,Wang N.Carbohydr Polym,2008,71(2):229~234
|
[3] | 6 Peng S W,An Y X,Chen C,Fei B,Zhuang Y G,Dong L S.J Appl Polym Sci,2003,90(14):4054~4060
|
[4] | 9 Zhou Qinghai(周庆海),Gao Fengxiang(高凤翔),Wang Xianhong(王献红),Zhao Xiaojiang(赵晓江),Wang fosong(王佛松).Acta Polymerica Sinica(高分子学报),2009(3):227~232
|
[5] | 14 Tomita H,Sanda F,Endo T.J Polym Sci Part A: Polym Chem,2001,39(21):3678~3685
|
[6] | 1 Inoue S,Konuma H, T suruta T.J Polym Sci Part B,Polym Lett,1969,7(4):287~292
|
[7] | 3 Chen Liban(陈立班).Polymeric Materials Science and Engineering(高分子材料科学与工程),1991,1:7~13
|
[8] | 5 Ma X F,Yu H G,Zhao A.Compos Sci Technol,2006,66(13):2360~2366
|
[9] | 7 Wang X Y,Peng S W,Dong L S.Colloid Polym Sci,2005,284(2):167~174
|
[10] | 8 Ma X F,Yu J G,Wang N.J Polym Sci Part B: Polym Phys,2006,44(1):94~101
|
[11] | 10 Zhou Qinghai(周庆海),Gao Fengxiang(高凤翔),Lu Huimin(卢会敏),Wang Xianhong(王献红),Zhao Xiaojiang(赵晓江),Wang fosong(王佛松).Acta Polymerica Sinica(高分子学报),2008(12):1123~1128
|
[12] | 11 Zhang Z H,Zhang H L,Zhang Q X,Zhou Q H,Zhang H F,Mo Z S.J Appl Polym Sci,2006,100(1):584~592
|
[13] | 12 Yu T,Zhou Y,Zhao Y,Liu K P,Chen E Q,Wang D J,Macromolecules,2008,41(9):3175~3180
|
[14] | 13 Fei B,Chen C,Peng S W,Zhao X J,Wang X H,Dong L S.Polym Int,2004,53(12): 2092~2098
|
[15] | 15 Pearson R A,Yee A F.J Mater Sci,1986,21:2475~2488
|
[16] | 16 Bucknacl C B,Smith R R.Polymer,1965,6:437~446
|
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