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New bio-composites based on short fibre reinforced hydroxypropylcellulose films

机译:基于短纤维增强羟丙基纤维素薄膜的新型生物复合材料

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摘要

The present work deals with the preparation and the characterisation of solid films, having thickness between 15 and 40 μm, prepared with hydroxypropyl cellulose (HPC) and different amounts of commercial cellulose fibres (0; 0.5; 10 and 15% w/w) (system A) and with 1,4-butyl diisocyanate (BDI), as a cross-linking agent (system B). Before the preparation of these films, the surface energy of cellulose fibres, as such and after purification with different solvents, was determined by Inverse Gas Chromatography (IGC), which gave the values of dispersive energy and acid-base properties of their surfaces. The tensile and photo-elastic properties of the solid films obtained were studied. There were no significant changes in Young's modulus between the two systems. However, as expected, the values of the elongation and those of the fracture stress were systematically higher for system B in comparison with system A. The same trend was found for the birefringence, measured at the same elongation values for the films obtained from both systems.
机译:本工作涉及使用羟丙基纤维素(HPC)和不同量的商业纤维素纤维(0; 0.5; 10和15%w / w)制备的厚度为15至40μm的固体膜的制备和表征(系统A)和1,4-丁二异氰酸酯(BDI)作为交联剂(系统B)。在制备这些薄膜之前,通过反向气相色谱法(IGC)测定纤维素纤维本身的表面能,以及用不同的溶剂纯化后的表面能,该数值给出了其表面的分散能和酸碱性质。研究了所得固体膜的拉伸和光弹性性质。两个系统之间的杨氏模量没有显着变化。但是,正如预期的那样,系统B的伸长率和断裂应力的值都比系统A更高。双折射的趋势相同,从两个系统获得的薄膜在相同的伸长率下测得。

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