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聚丙烯-聚乙烯嵌段共聚物和相应共混物的热分析
引用本文:王立筱,綦玉臣,陈东霖,黄葆同. 聚丙烯-聚乙烯嵌段共聚物和相应共混物的热分析[J]. 高分子学报, 1987, 0(2): 81-87
作者姓名:王立筱  綦玉臣  陈东霖  黄葆同
作者单位:中国科学院长春应用化学研究所,中国科学院长春应用化学研究所,中国科学院长春应用化学研究所,中国科学院长春应用化学研究所 长春 南京大学化学系高分子教研室,长春,长春,长春
摘    要:用DSC研究了预期为聚丙烯-聚乙烯两嵌段共聚物(PP-PE)和相应共混物(PP+PE)在热学性能上的差异。经用不同分子量的PP和PE及其共混物进行试验后发现,由于PP和PE在结晶时出现过冷的难易不同。在共混物降温热分析曲线上,当降温速率较快时仅出现一个放热峰,而降温速率较慢时出现PP和PE各自的结晶放热峰,从而解释了文献中的不同结果。并发现共混物的PP和PE熔融、结晶温度均较组分相同的嵌段共聚物的相应温度为高;嵌段共聚物中PP和PE的△H_f值均低于均聚物的△H_f值,而PE的值降低尤甚。我们认为这与嵌段间的共价键限制嵌段活动和结晶过程有关,从而确认DSC热分析可以作为识别是否为嵌段共聚物的一种方法. 本工作的结果表明,所研究的PP-PE试样具有嵌段结构。

关 键 词:聚丙烯-聚乙烯嵌段共聚物  共混物  示差扫描量热计(DSC)热分析  结晶  熔融  结构
收稿时间:1983-06-11

THERMAL ANALYSIS OF POLYPROPYLENE-b-POLYETHYLENE DIBLOCK COPOLYMERS AND CORRESPONDING BLENDS
WANG Li-xiao,QI Yu-chen,CHEN Dong-lin,HUANG Bao-tong. THERMAL ANALYSIS OF POLYPROPYLENE-b-POLYETHYLENE DIBLOCK COPOLYMERS AND CORRESPONDING BLENDS[J]. Acta Polymerica Sinica, 1987, 0(2): 81-87
Authors:WANG Li-xiao  QI Yu-chen  CHEN Dong-lin  HUANG Bao-tong
Affiliation:Changchun Institute of Applied Chemistry; Academia Sinica; Changchun
Abstract:Difference in thermal behaviour of presumed polypropylene-b-polyethylene block copolymers (PP-PE) and corresponding PP + PE blends was studied. Different views in the literature were unified in our observation that faster cooling rate yielded only one exothermal peak for the blends, while slower cooling rates revealed both PP and PE exothermal peaks. Further details on when a single or double exothermal peaks would appear are discussed. Melting and crystallization temperatures for both PP and PE in blends were found to be a few degrees higher than for PP and PE in block copolymers. Thus, thermal analysis can be used to identify PP-PE block copolymers. These phenomenon and the lower △Hr-values of PP and PE in block copolymers than the △Hr-values of pure homo-PP and -PE (for PE even more so) are explained in terms of restricted block movement due to covalent bond between blocks and of crystallization processes in block copolymers. The presence of block structure in the PP-PE samples studied is inferred.
Keywords:Polypropylene-b-polyethylene block copolymers   Blends   DSC thermal analysis   Crystallization   melting   Structure.  
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