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Synthesis of Interpenetrating Polymer Networks Based on Triisocyanate-Terminated and Modified Poly(urethane-imide) with Superior Mechanical Properties

机译:基于三异氰酸酯端接和改性聚(氨基甲酸酯 - 酰亚胺)的互穿聚合物网络的合成具有优异的机械性能

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Interpenetrating polymer networks (IPNs) based on triisocyanate-terminated poly(urethane-imide)s (PUIs) were prepared by in situ interpenetrating reactions between modified polyurethane (PU) with different ratios of polyimide (PI). The effects of PU, which was made from hydroxyl-terminated polybutadiene modified with triisocyanate, and the amounts of PI on the mechanical properties, thermal properties, and crystalline character of the IPNs were discussed. Triisocyanate-terminated PUI showed that the highest tensile strength was 38 times that of the diisocyanate-terminated materials. Supramolecular cross-linking from an additional hydrogen-bonding network of modified PU and the degree of interpenetration with a regular imide structure of PI were introduced, which accounted for the remarkable improvement in mechanical properties of IPNs. Preferable thermal stability and glass transition temperature for the hard segment of IPNs were rewarded with increasing PI content. X-ray diffraction revealed vigorous segmental mixing between the soft and hard segments of modified PUI. Scanning electron micrographs showed the “fibrous assembly” morphology and short-range-ordered structure of modified PUI.
机译:通过在具有不同比例的聚酰亚胺(PI)的不同比例的改性聚氨酯(PU)之间的原位互通反应,制备基于三异氰酸酯端接聚(氨基甲酸酯-IMIDE)S(PUIS)的互穿的聚合物网络(PUIS)。讨论了PU的效果,其由三异氰酸酯改性的羟基封端的聚丁二烯,以及对IPN的机械性能,热性能和晶体特性的PI的量。三异氰酸酯端终止的脓性表明,最高拉伸强度为二异氰酸酯封端的材料的38倍。引入了改性PU的附加氢键网络的超分子交联和用PI的常规酰亚胺结构的互相程度的交联,这占IPN的机械性能显着提高。随着Pi含量的增加,IPN硬链段的优选热稳定性和玻璃化转变温度得到奖励。 X射线衍射揭示了改性脓肿的软和硬链段之间的剧烈节段性混合。扫描电子显微照片显示“纤维组件”形态和改性PUI的短距离结构。

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