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首页> 外文期刊>Journal of Applied Polymer Science >Hybrid polymer networks of unsaturated polyester-urethane as composite matrices for jute reinforcement
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Hybrid polymer networks of unsaturated polyester-urethane as composite matrices for jute reinforcement

机译:不饱和聚酯-聚氨酯杂化聚合物网络作为黄麻增强复合材料

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Reactions of unsaturated polyester resin and 4,4′ diphenyl methane diisocyanate were carried out at different NCO/OH ratios in presence of catalysts to form the hybrid polymer networks. Chain extender (1,4 butanediol) added in the hybrid network (NCO/OH ratio: 0.76) was optimized at a level of ~ 3 wt % only of the polyester resin. The curing of these networks was studied by a rigid body pendulum type (RPT) method in terms of reduced damping ratio and increased frequency. Lack of multiple glass transition temperatures, sharp Tan delta peak, and particulate composite type morphology clearly demonstrated the formation of phase mixed domains in the hybrid networks. The storage modulus and loss modulus master curves obtained by dynamic mechanical analysis indicate that hybrid polymer networks retained higher modulus at lower and intermediate frequencies over the polyester resin showing their superior time-dependent response. Efficacy of these hybrid network resins was examined as matrices in the jute composites and compared with those of polyester resin and unsaturated polyester-polyurethane interpenetrating network matrices. It is found that the hybrid polymer network matrix composites exhibited superior physicomechanical properties under both dry and boiling water age test. Fractographic evidences such as fiber-matrix adhesion, hackle markings, and fiber breakage also supported their superior behavior over other composite matrices.
机译:在催化剂存在下,以不同的NCO / OH比进行不饱和聚酯树脂与4,4'二苯基甲烷二异氰酸酯的反应,以形成杂化聚合物网络。在杂化网络中添加的扩链剂(1,4丁二醇)(NCO / OH比:0.76)被优化为仅聚酯树脂的〜3 wt%的水平。就降低阻尼比和增加频率而言,通过刚体摆式(RPT)方法研究了这些网络的固化。缺乏多个玻璃化转变温度,尖锐的Tanδ峰和颗粒复合类型的形态清楚地证明了杂化网络中相混合畴的形成。通过动态力学分析获得的储能模量和损耗模量主曲线表明,杂化聚合物网络在较低和中频处保持比聚酯树脂更高的模量,这表明它们具有出色的时间依赖性。这些杂化网络树脂的功效已作为黄麻复合材料中的基质进行了检查,并与聚酯树脂和不饱和聚酯-聚氨酯互穿网络基质进行了比较。发现杂化聚合物网络基质复合材料在干水和沸水老化试验中均表现出优异的物理机械性能。诸如纤维基质粘附,碎裂痕迹和纤维断裂等分形学证据也支持了它们优于其他复合基质的行为。

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