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The effect of surface modification on the properties of sisal fiber and improvement of interfacial adhesion in sisal/starch composites induced by starch nanocrystals

机译:表面改性对淀粉纳米晶体诱导的Sisal /淀粉复合材料的Sisal纤维性能及改进的影响

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摘要

A facile approach was utilized to introduce starch nanocrystals (SNCs) onto sisal fiber (SF) to improve the interfacial adhesion between SF and starch. For this, fibers were treated with alkali and then subjected to cold plasma treatment to increase the accessibility with SNCs, which was confirmed through X-ray photoelectron spectroscopy (XPS). It was found that due to the influence of cold plasma treatment, new functional groups were introduced onto SF. The surface characteristics of SF were examined by Fourier transform infrared spectroscopy (FTIR) and Scanning electron microscopy (SEM). The observed results suggested that SNCs were successfully distributed onto SF. Tensile strength and interfacial shear strength of fibers treated under different conditions were calculated and compared through a two-parameter Weibull model. The highest interfacial shear strength of 3.05MPa was obtained by Alkali-300W-SNCs, which indicated an increase of 80.6% than untreated SF. It has also been proved that the starch nanocrystals produced hydrogen bonding and physical interlocking between sisal fiber and starch. Notably, the outcome of this investigation indicates that SNCs may be applied for the fabrication of high performance, environmentally friendly sisal/starch composites for a range of technological applications.
机译:用于将淀粉纳米晶体(SNC)引入Sisal纤维(SF)以改善SF和淀粉之间的界面粘附。为此,用碱处理纤维,然后进行冷等离子体处理,以通过X射线光电子能谱(XPS)来增加SNC的可接近性。发现由于冷等离子体处理的影响,将新的官能团引入SF上。通过傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)检查SF的表面特征。所观察结果表明,SNC已成功分布到SF上。计算在不同条件下处理的纤维的拉伸强度和界面剪切强度,并通过双参数Weibull模型进行比较。通过碱-300W-SNC获得3.05MPa的最高界面剪切强度,表明比未处理的SF增加了80.6%。还证实,淀粉纳米晶体在Sisal纤维和淀粉之间产生了氢键和物理互锁。值得注意的是,本研究的结果表明,SNC可以用于制造高性能,环境友好的Sisal /淀粉复合材料,用于一系列技术应用。

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