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Effect of organically modified layered silicate nanoclay on the dynamic viscoelastic properties of thermoplastic polyurethane nanocomposites

机译:有机改性层状硅酸盐纳米粘土对热塑性聚氨酯纳米复合材料动态粘弹性的影响

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摘要

Different formulations of organically modified layered silicate (OMLS) clay based medical grade thermoplastic polyurethane (TPU) nanocomposites were successfully prepared via melt blending followed by compression molding. The effect of incorporation of nanoclay on the spherulitic morphology of the TPU matrix was studied with a polarizing optical microscope (POM). The exfoliation/intercalation of organoclay was attributed to the TPU-organoclay interaction and shear stress during melt mixing. The effects of clay content and degree of clay dispersion on the Theological properties of nanocomposites were studied using a rubber process analyzer (RPA) with the help of dynamic strain, frequency, and temperature sweeps. The dynamic Theological studies show that the complex viscosity (η*) and dynamic storage modulus (G') of pristine TPU increased significantly with the incorporation of organoclay loading, which is attributed to the formation of an interphase between soft and hard segments of the TPU matrix and effective dispersion of the organoclay.
机译:通过熔融共混然后压缩模塑成功地制备了不同配方的有机改性层状硅酸盐(OMLS)粘土基医用级热塑性聚氨酯(TPU)纳米复合材料。用偏光光学显微镜(POM)研究了纳米粘土的掺入对TPU基体球状形态的影响。有机粘土的剥落/嵌入归因于熔融混合过程中的TPU-有机粘土相互作用和剪切应力。在动态应变,频率和温度扫描的帮助下,使用橡胶过程分析仪(RPA)研究了粘土含量和粘土分散度对纳米复合材料的流变性能的影响。动态神学研究表明,原始TPU的复数粘度(η*)和动态储能模量(G')随着有机粘土负载量的增加而显着增加,这归因于TPU软硬段之间的界面形成基质和有机粘土的有效分散。

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