SIMULATION OF FRACTURE OF FLEXIBLE POLYMER-CHAINS IN TRANSIENT ELONGATIONAL FLOW

被引:10
作者
KNUDSEN, KD [1 ]
CIFRE, JGH [1 ]
CASCALES, JJL [1 ]
DELATORRE, JG [1 ]
机构
[1] UNIV MURCIA,FAC QUIM,DEPT QUIM FIS,E-30071 MURCIA,SPAIN
关键词
D O I
10.1021/ma00117a042
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Using the Brownian dynamics technique, we have simulated the fracture process of flexible polymer chains subjected to convergent (sink) flow, where the elongational rate is strongly position dependent. The system studied has been a very dilute solution of polystyrene with molecular weight 2 x 10(6) in cyclohexane at a temperature of 35 degrees C. The polymer was modeled as a bead-spring chain, adequately parametrized as to reproduce real polymer/solvent conditions. The fracture yield varies with the flow rate and is seen to depend to a high degree on the instrumental setup. The distribution of fragments at the end of the convergent flow region is found to be centered around half the initial molecular weight, and we find that there is no fracture below a certain critical flow rate. These results are in qualitative agreement with the experimental results of Reese and Zimm(1) on DNA and Nguyen and Kausch(2) on polystyrene, a finding that confirms the applicability of the Brownian dynamics simulation technique for studying polymer chain fracture.
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页码:4660 / 4664
页数:5
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