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首页> 外文期刊>Journal of Applied Polymer Science >Optimal storage moduli for the thermal healing of polystyrene ionomers
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Optimal storage moduli for the thermal healing of polystyrene ionomers

机译:聚苯乙烯离聚物热愈合的最佳储存模

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In this work, we studied the effects of storage moduli on thermal healing of poly(styrene-co-methacrylate) and poly(styrene-co-itaconate) ionomers. It was found that as the ion content and neutralization degree of the ionomers increased, the healing efficiencies decreased. This was due to the fact that the ionic aggregates, acting as physical cross-links, and the clustered regions of the ionomers, reducing polymer chain mobility, interrupted the relaxation of the polymer chains near the damaged site, slowing the recovery. The most important finding in this work was that, to heal the ionomer without severe sample deformation, the optimal healing temperature should be the temperature where the storage modulus of the ionomer was similar to 10(6.6) Pa. Obviously, the healing rate and healing efficiency were mainly influenced by the healing temperature, related directly to the storage modulus of the polymer, and the maximum healing efficiency was strongly affected by healing time.
机译:在这项工作中,我们研究了储存模量对聚(苯乙烯 - 共甲基丙烯酸酯)和聚(苯乙烯 - 共碘酸酯)离聚物的热愈合的影响。 发现,随着离子含量和离聚物的中和程度增加,愈合效率降低。 这是由于离子聚集体,作用为物理交联剂和离聚物的聚类区域,降低聚合物链迁移率,中断了损坏部位附近的聚合物链的松弛,减慢了回收率。 在这项工作中最重要的发现是,为了在没有严重的样品变形的情况下愈合离聚物,最佳愈合温度应该是离聚物的储存模量类似于10(6.6)PA的温度。显然,愈合率和愈合 效率主要受愈合温度的影响,直接与聚合物储存模量相关,最大愈合效率受愈合时间受到强烈影响。

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