首页> 外文期刊>Journal of Applied Polymer Science >STRUCTURE AND MECHANICAL PROPERTIES OF THE COMPOSITIONS OF POLYISOCYANURATE POLYMERS WITH LOW MOLECULAR WEIGHT RUBBERS
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STRUCTURE AND MECHANICAL PROPERTIES OF THE COMPOSITIONS OF POLYISOCYANURATE POLYMERS WITH LOW MOLECULAR WEIGHT RUBBERS

机译:低分子量橡胶多异氰酸酯聚合物的结构和力学性能

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摘要

The structure and properties of the compositions of polyisocyanurates modified with low molecular weight rubber networks have been investigated by means of dynamical mechanical analysis (DMA), electron microscopy, and stress-relaxation experiments. The network compositions consist of two different polymeric networks. The first component (macrodiisocyanate based on low molecular weight polybutadiene or copolymers of tetrahydrofuran and propylene oxide) has bulky cross-linked points connected by short flexible chains. The second component (diphenylmethanediisocyanate) also has bulky cross-linked points of the same structure, but the linear fragments between them in this case are very small and rigid. These compositions result in the formation of the heterophase system. As a result, transparent samples were prepared, which differ from the mechanical properties of both the glassy and rubbery polymers. These materials have a modulus of elasticity (from 10(3) to 10 MPa) that is usual for the transition zone between the glassy and rubbery states; nevertheless, these materials show elastic (and not viscoelastic) properties. For the materials investigated, the modulus is decreased not more than 10 times in the wide temperature interval from 200 to 500 K. A new state of the polymer, which differs from both the glassy and rubbery states, has been identified in the present case. (C) 1995 John Wiley and Sons, Inc. [References: 16]
机译:通过动态力学分析(DMA),电子显微镜和应力松弛实验研究了用低分子量橡胶网络改性的聚异氰脲酸酯组合物的结构和性能。网络组成由两个不同的聚合物网络组成。第一组分(基于低分子量聚丁二烯的大分子二异氰酸酯或四氢呋喃和环氧丙烷的共聚物)具有通过短的柔性链连接的庞大的交联点。第二组分(二苯基甲烷二异氰酸酯)也具有相同结构的庞大交联点,但在这种情况下,它们之间的线性片段非常小且刚性。这些成分导致形成异相系统。结果,制备了透明样品,其不同于玻璃状和橡胶状聚合物的机械性能。这些材料的弹性模量(从10(3)到10 MPa)在玻璃态和橡胶态之间的过渡区域很常见。尽管如此,这些材料仍具有弹性(而不是粘弹性)。对于所研究的材料,在200至500 K的宽温度区间内,模量降低不超过10倍。在这种情况下,已经发现了不同于玻璃态和橡胶态的聚合物新态。 (C)1995 John Wiley and Sons,Inc. [参考:16]

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