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Loop entanglement of semicrystalline polyethylene in amorphous region: Diamond lattice approach

✍ Scribed by Duan, Zhong-Hui; Howard, Louis N.


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
181 KB
Volume
20
Category
Article
ISSN
0192-8651

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✦ Synopsis


Linear polyethylenes in the amorphous region have been simulated as restricted random walks on a diamond lattice between two absorbing planes. The links among loops were studied by treating loops as Ž oriented curves. The local conformations of polyethylene chains i.e., trans and . gauche energy differences were considered in the simulation, thereby determining the effect of crystallization temperature on the loop entanglement. It was found that the total Gauss winding and link density of linked loops increased with the thickness of the amorphous region. This result agrees with that of the cubic lattice model. The link probability decreases very slowly with the thickness of the amorphous region. On the other hand, the results presented clearly indicate that all statistical measures of linked loops decrease with temperature.