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High-Strength and Low-Stiffness Composites of Nanoclay-Filled Thermoplastic Polyurethanes

机译:纳米粘土填充热塑性聚氨酯的高强度和低硬度复合材料

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摘要

In this study,bulk polymerized clay-tethered thermoplastic polyurethane(TPU)composites were synthesized that offered much improved tensile strength with negligible changes in tensile modulus.These composites contained intercalated,tethered layered silicate particles and were synthesized by mixing low molecular weight prepolymer chains containing unreacted-NCO groups with reactive layered silicate clay followed by catalyzed chain extension reaction with butanediol.The molar ratio of-NCO and-OH functional groups in the composite was varied between 1.0 and 1.2.It was found that an appreciable amount of-NCO groups was consumed in reaction with moisture present in the clay and some in quaternary ammonium ion-catalyzed dimeriza-tion and trimerization.Composites with-NCO to-OH molar ratio 1.1 provided the best improvement in mechanical properties-the composite with 5 wt% clay provided a 60% increase in tensile strength and 50% increase in strain at break,while the tensile modulus increased only by 15% over TPU.
机译:在这项研究中,合成了本体聚合的粘土束缚热塑性聚氨酯(TPU)复合材料,该复合材料提供了大大提高的拉伸强度,拉伸模量的变化可以忽略不计。这些复合材料包含插层的,束缚的层状硅酸盐颗粒,并通过混合含有未反应的NCO基团与反应性层状硅酸盐粘土反应,然后与丁二醇催化扩链反应。复合物中-NCO和-OH官能团的摩尔比在1.0至1.2之间变化,发现相当数量的-NCO基团与粘土中的水分反应以及季铵离子催化的二聚和三聚反应中的一部分被消耗掉了。-NCO / OH摩尔比为1.1的复合材料在机械性能方面提供了最佳的改进-提供了5 wt%粘土的复合材料拉伸强度增加60%,断裂应变增加50%,而拉伸模量在比TPU高出15%

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