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THERMAL ANALYSIS OF POLYPROPYLENE-b-POLYETHYLENE DIBLOCK COPOLYMERS AND CORRESPONDING BLENDS
作者姓名:綦玉臣  王立筱  陈东霖  黄葆同
作者单位:Changchun Institute of Applied Chemistry,Academia Sinica,Changchun,Changchun Institute of Applied Chemistry,Academia Sinica,Changchun,Changchun Institute of Applied Chemistry,Academia Sinica,Changchun,Changchun Institute of Applied Chemistry,Academia Sinica,Changchun
摘    要:Difference in thermal behavior 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 phenomena and the lower △H_f-values of PP and PE in block copolymers than the △H_f-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.

收稿时间:1983-06-11

THERMAL ANALYSIS OF POLYPROPYLENE-b-POLYETHYLENE DIBLOCK COPOLYMERS AND CORRESPONDING BLENDS*
QI Yuchen,WANG Lixiao,CHEN Donglin,HUANG Baotong.THERMAL ANALYSIS OF POLYPROPYLENE-b-POLYETHYLENE DIBLOCK COPOLYMERS AND CORRESPONDING BLENDS[J].Chinese Journal of Polymer Science,1984,0(2):109-116.
Authors:QI Yuchen  WANG Lixiao  CHEN Donglin  HUANG Baotong
Institution:Changchun Institute of Applied Chemistry; Academia Sinica; Changchun
Abstract: Difference in thermal behavior 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 phenomena and the lower △Hf-values of PP and PE in block copolymers than the △Hf-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.
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