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Mechanical properties of layered silicate/starch polycaprolactone blend nanocomposites

机译:层状硅酸盐/淀粉聚己内酯共混纳米复合材料的力学性能

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摘要

The mechanical behavior of layered silicate/starch polycaprolactone blend nanocomposites was evaluated.Three different clays (Cloisite Na+,Cloisite 30B and Cloisite 10A) were used as reinforcement.Nanocomposites were prepared by melt intercalation followed by compression molding.These nanocomposites were characterized using X-ray diffraction,scanning electron microscopy,dynamic mechanical analysis and tensile testing.X-ray diffraction results showed that most of the clays were intercalated within the polymeric chains.In all cases,mechanical properties were improved with clay incorporation and the improvement was better as the clay content was increased.The best properties were achieved with Cloisite 10A due to their greatest compatibility with the matrix.A mechanical model,which takes into account the effective parameters of the clay,was used in order to estimate the dispersion of clay within the polymer.The highest dispersion was obtained for Cloisite 10A,which is in accordance with the experimental mechanical properties.Although dynamical-mechanical properties improved with clay incorporation,the glass transition temperature was not affected.
机译:评价层状硅酸盐/淀粉聚己内酯共混纳米复合材料的力学行为,使用三种不同的粘土(Cloisite Na +,Cloisite 30B和Cloisite 10A)作增强材料,通过熔融插层然后压模制备纳米复合材料,并使用X-射线衍射,扫描电镜,动态力学分析和拉伸试验。X射线衍射结果表明,大多数粘土都插在聚合物链中。在所有情况下,掺入粘土后力学性能均得到改善,随着粘度的增加,其力学性能会更好。增加了粘土的含量。Cloisite10A由于与基质的最大相容性而获得了最佳性能。使用了考虑粘土有效参数的力学模型来估算粘土在聚合物中的分散性。Cloisite 10A的最高分散度与t一致实验力学性能。尽管动力学机械性能随掺入粘土而改善,但玻璃化转变温度不受影响。

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