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首页> 外文期刊>Journal of Applied Polymer Science >Study on influence of terminal structure on mechanical properties of GAP elastomers
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Study on influence of terminal structure on mechanical properties of GAP elastomers

机译:末端结构对GAP弹性体力学性能的影响研究

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摘要

To improve mechanical properties of glycidyl azide polymer (GAP) elastomer, primary hydroxyl terminated GAP prepolymer (PH-GAP) has been synthesized by end-capping modification of GAP using carbamate reaction. FTIR, 13C-NMR, GPC results indicate that the functionality, molecular weight, and molecular weight distribution of PH-GAP are consistent with those of the original GAP. Mechanical tests indicate that mechanical properties of PH-GAP elastomer are much better than those of GAP elastomer. Swelling tests discover that the apparent molecular weight of the network chain in PH-GAP elastomer is much less than that of the original GAP elastomer, and PH-GAP elastomer has much perfect network structure. Network structure defect is the main factor causing inferior mechanical properties, and the GAP prepolymer terminal structure plays an outstanding role in the mechanical properties of its cross-linked elastomers.
机译:为了改善缩水甘油基叠氮化物聚合物(GAP)的机械性能,已通过氨基甲酸酯反应对GAP进行封端修饰,合成了伯羟基封端的GAP预聚物(PH-GAP)。 FTIR,13C-NMR,GPC结果表明,PH-GAP的功能,分子量和分子量分布与原始GAP一致。力学测试表明,PH-GAP弹性体的机械性能远远优于GAP弹性体。溶胀测试发现,PH-GAP弹性体中网络链的表观分子量远小于原始GAP弹性体,并且PH-GAP弹性体具有非常完善的网络结构。网络结构缺陷是导致机械性能差的主要因素,GAP预聚物末端结构在其交联弹性体的机械性能中起着重要作用。

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