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首页> 外文期刊>Journal of Harbin Institute of Technology >Preparation, morphology and mechanical properties of acrylate-modified polyurethane/unsaturated polyester resin graft-IPNs
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Preparation, morphology and mechanical properties of acrylate-modified polyurethane/unsaturated polyester resin graft-IPNs

机译:丙烯酸酯改性聚氨酯/不饱和聚酯树脂接枝-IPN的制备,形貌和力学性能

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摘要

Acrylate-modified polyurethane resin was first synthesized, and interpenetrated with unsaturated polyester resin to form IPNs and gradient IPNs which cured at room temperature. The polymerization process was traced by an IR spectroscopy technique and the simultaneous interpenetrating techniques were determined. The morphology of these IPNs were estimated by TMA and TEM methods. The results indicated that large amount of interpenetrating and entanglement make T_g linked up effectively, and domains between two phases can be in nanometre ranges, which changed with composition ratios. The mechanical properties results showed that IPNs varied from elastomeric to plastic materials. It was noteworthy that, with the introduction of modified groups and the formation of graft construction in IPNs, the miscibility in the systems was improved a lot. These further led to the improved mechanical properties of IPNs with elastomer reinforced and plasticizer toughened as well. The reinforced miscibility between the networks can apparently change mechanical property especially for the gradient ones when the materials are elongated.
机译:首先合成丙烯酸酯改性的聚氨酯树脂,并与不饱和聚酯树脂互穿以形成IPN和梯度IPN,并在室温下固化。通过IR光谱技术追踪聚合过程,并确定同时的互穿技术。通过TMA和TEM方法估计了这些IPN的形态。结果表明,大量的互穿和纠缠使T_g有效连接,两相之间的畴可以在纳米范围内,随组成比的变化而变化。力学性能结果表明,IPN从弹性材料到塑料材料都不同。值得注意的是,随着IPNs中修饰基团的引入和接枝结构的形成,系统中的可混溶性得到了很大的改善。这些进一步提高了IPN的机械性能,同时增强了弹性体并增塑了增塑剂。当材料被拉长时,网络之间增强的可混溶性显然可以改变机械性能,尤其是对于梯度的机械性能。

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