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Mechanical Properties and Morphology of Hyperbranched Polyether/HTPB-PU IPN

机译:超支化聚醚/ HTPB-PU IPN的力学性能和形貌

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摘要

In the hope of improving mechanical properties of hydroxyl-terminated polybutadiene-based polyurethane (HTPB-PU), hyperbranched polyether is introduced into HTPB-PU system and form hyperbranched interpenetrating polymer network (H-IPN) through IPN technology. Test of mechanical properties shows that the maximum tensile strength and elongation of hyperbranched polyether/HTPB-PU IPN has been improved more than threefold than those of HTPB-PU. Hydrogen bond and microphase separation between H-IPN are reasons why mechanical properties of H-IPN have been enhanced. As hyperbranched polyether/HTPB-PU IPN has microphase separation, when hyperbranched polyether shows dispersed phase with the grain diameter 0.8 μm around, it has optimal mechanical properties, on opposite when hyperbranched polyether shows continuous phase, mechanical properties of H-IPN is reduced.
机译:为了改善羟基封端的聚丁二烯基聚氨酯(HTPB-PU)的机械性能,将超支化聚醚引入HTPB-PU体系,并通过IPN技术形成超支化互穿聚合物网络(H-IPN)。力学性能测试表明,超支化聚醚/ HTPB-PU IPN的最大拉伸强度和伸长率比H​​TPB-PU提高了三倍以上。 H-IPN之间的氢键和微相分离是提高H-IPN力学性能的原因。由于超支化聚醚/ HTPB-PU IPN具有微相分离作用,当超支化聚醚呈分散相且粒径为0.8μm左右时,具有最佳的机械性能;反之,当超支化聚醚呈连续相时,H-IPN的机械性能降低。

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