首页> 外文期刊>Journal of Polymers and the Environment >Impact of Hot Water Treated Lotus Leaves on Interfacial and Physico-Mechanical of Gelatin/Lotus Leaf Composites
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Impact of Hot Water Treated Lotus Leaves on Interfacial and Physico-Mechanical of Gelatin/Lotus Leaf Composites

机译:热水处理莲花叶对明胶/莲花叶复合材料界面和物理机械的影响

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The focus of this work was to analyze the influence of leaf treatments on mechanical, physical and chemical properties and thermal stability of the gelatin/lotus leaf composites. Lotus leaves were treated with drinking water at 95 degrees C for 5 min. The gelatin/untreated lotus leaf (referred to as GUL) and the gelatin/hot water treated lotus leaf (referred to as GHL) composites have been prepared by the compression molding technique. The composites have been investigated by Fourier transform infrared spectroscopy (FTIR), thermogravimetric analysis (TAG), Scanning electron microscopy (SEM). Effect of the lotus leaf hand lay-up fiber orientation was studied for longitudinal, transverse and random orientation of the fibers. The tensile strength of gelatin/lotus leaf composites were influenced by the orientation of the fibers. It was found that longitudinal orientation delivered higher mechanical properties than that of the transverse and random orientation whether untreated or treated. The hot water modification of the lotus leaf was employed to improve the interfacial adhesion of the composites in order to improve the tensile properties. By using TGA analysis data and Ozawa-Flynn-Wall (OFW) method, the thermal stability and degradation temperature of the lotus leaves treated with hot water were higher than those of untreated leaves. In addition, the properties of the novel bio-composites were potential in further development of biodegradable packaging materials.
机译:这项工作的重点是分析叶处理对明胶/莲花复合材料的机械,物理和化学性质和热稳定性的影响。莲花叶在95℃下用饮用水处理5分钟。通过压缩模塑技术制备了明胶/未处理的莲花(称为GUL)和明胶/热水处理的莲花(称为GH1)复合材料。已经通过傅里叶变换红外光谱(FTIR),热重分析(标签),扫描电子显微镜(SEM)研究了复合材料。研究了莲花叶手叠层纤维取向的效果,用于纤维的纵向,横向和随机取向。明胶/莲花复合材料的拉伸强度受到纤维取向的影响。发现纵向取向比横向和随机取向的机械性能更高,无论是未经处理的还是处理。采用莲花叶的热水改性来改善复合材料的界面粘附,以改善拉伸性能。通过使用TGA分析数据和ozawa-Flynn-Wall(OFW)方法,用热水处理的莲花叶的热稳定性和降解温度高于未处理的叶子。此外,新型生物复合材料的性质在可生物降解包装材料的进一步发展中是潜力的潜力。

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