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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Synthesis and properties of epoxy resin modified with epoxy-terminated liquid polybutadiene
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Synthesis and properties of epoxy resin modified with epoxy-terminated liquid polybutadiene

机译:环氧封端液态聚丁二烯改性环氧树脂的合成与性能

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摘要

Epoxy resin networks have been modified with block copolymer of polybutadiene and bisphenol A diglycidyl ether (DGEBA)-based epoxy resin. Block copolymers prepared from isocyanate-terminated polybutadiene (NCOPBER) resulted in cured transparent epoxy networks with no discernible phase-separated morphology, as indicated by scanning electron microscopy. Epoxy resin modified with block copolymer derived from carboxyl-terminated olybutadiene (CPBER) presented an opaque aspect with dispersed rubber particle diameters in the range of 0.5-3 mum. This value is substantially smaller than that found in epoxy matrix modified with hydroxyl-terminated polybutadiene. The different morphological characteristics observed in these modified systems were attributed to the different times to achieve the gelation (gel time) and also to the different structures of the block copolymers.The visual homogeneity of the NCOPBER block copolymer-modified network cannot be attributed to the presence of dissolved rubber, since the glass transition temperature of the epoxy matrix (determined from dynamic mechanical analysis) has not been substantially influenced by the presence of this block copolymer. The epoxy resin modified with the different block copolymers presented an improved impact resistance. The best mechanical performance in terms of flexural and tensile properties was achieved with the block copolymer derived from carboxyl-terminated polybutadiene, whereas a more flexible materials has been obtained with NCOPBER block copolymer-modified network.
机译:环氧树脂网络已用聚丁二烯和双酚A二缩水甘油醚(DGEBA)基环氧树脂的嵌段共聚物进行了改性。由异氰酸酯封端的聚丁二烯(NCOPBER)制备的嵌段共聚物产生固化的透明环氧网络,没有可辨别的相分离形态,如扫描电子显微镜所示。用衍生自羧基末端的丁二烯(CPBER)的嵌段共聚物改性的环氧树脂呈现出不透明的外观,其分散的橡胶粒径在0.5-3微米的范围内。该值明显小于用羟基封端的聚丁二烯改性的环氧基质中的值。在这些改性体系中观察到的不同形态学特性归因于实现胶凝的时间不同(胶凝时间),也归因于嵌段共聚物的不同结构。NCOPBER嵌段共聚物改性网络的视觉均匀性不能归因于溶解的橡胶的存在,因为环氧基质的玻璃化转变温度(由动态力学分析确定)基本上不受该嵌段共聚物的存在的影响。用不同嵌段共聚物改性的环氧树脂表现出改进的抗冲击性。就衍生自羧基封端的聚丁二烯的嵌段共聚物而言,就弯曲和拉伸性能而言,其最佳的机械性能达到了最佳,而采用NCOPBER嵌段共聚物改性的网络获得了更具挠性的材料。

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