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纤维素/灯心草微纤维复合膜的制备与性能。

Preparation and properties of cellulose/Thespesia lampas microfiber composite films.

机构信息

Department of Physics, Osmania University College of Engineering, Hyderabad, India.

Department of Physics, College of Science, Engineering, and Technology, University of South Africa, Johannesburg, South Africa.

出版信息

Int J Biol Macromol. 2019 Apr 15;127:153-158. doi: 10.1016/j.ijbiomac.2019.01.041. Epub 2019 Jan 10.

Abstract

The fibers from the newly identified plant Thespesia lampas (TL) were converted into microfibers in order to increase their aspect ratio. The TL microfibers (TLMFs) were used as reinforcement (1 wt. to 5 wt%) in cellulose matrix to prepare cellulose /TLMFs composite films. These composite films were characterized by polarized optical microscopy (POM), scanning electron microscopy (SEM), Fourier transform infrared (FTIR) spectroscopy, X-ray diffraction (XRD), thermogravimetric analysis (TGA) and tensile tests. The POM and SEM images indicated the uniform distribution of TLMFs but in random orientation in the composites. FTIR spectral analysis indicated the presence of minor quantity of lignin in the microfibers in spite of chemical treatment of fibers. The XRD analysis indicated higher crystallinity index for the composites than the matrix. Thermal stability of the composite films was slightly higher than the matrix. Tensile modulus and tensile strength were lower while the elongation at break of the composite films was higher than those of the cellulose matrix due to random orientation of the TLMFs in the composites. However the tensile properties and thermal stability of the cellulose/TLMFs composites were found to be higher than those of the cellulose/alkali treated TL fiber composites and hence can be considered for packaging applications.

摘要

为了增加其纵横比,新鉴定的植物 Thespesia lampas(TL)的纤维被转化为微纤维。TL 微纤维(TLMFs)被用作纤维素基体的增强剂(1wt. 到 5wt%),以制备纤维素/TLMFs 复合薄膜。这些复合薄膜通过偏光显微镜(POM)、扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)、X 射线衍射(XRD)、热重分析(TGA)和拉伸测试进行了表征。POM 和 SEM 图像表明 TLMFs 在复合材料中均匀分布,但呈随机取向。FTIR 光谱分析表明,尽管对纤维进行了化学处理,但微纤维中仍存在少量木质素。XRD 分析表明,复合材料的结晶度指数高于基体。复合薄膜的热稳定性略高于基体。由于 TLMFs 在复合材料中的随机取向,复合薄膜的拉伸模量和拉伸强度较低,而断裂伸长率较高。然而,由于 TLMFs 在复合材料中的随机取向,与纤维素基体相比,纤维素/TLMFs 复合材料的拉伸性能和热稳定性更高,因此可以考虑用于包装应用。

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