首页> 外文期刊>Cellulose Chemistry and Technology: International Journal for Physics, Chemistry and Technology of Cellulose and Lignin >INVESTIGATION ON TENSILE STRENGTH OF CELLULOSE MICROFIBRIL REINFORCED POLYMER COMPOSITES
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INVESTIGATION ON TENSILE STRENGTH OF CELLULOSE MICROFIBRIL REINFORCED POLYMER COMPOSITES

机译:纤维素微纤维增强聚合物复合材料抗拉强度的研究

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摘要

This research work aims to find the tensile stress and the tensile modulus of cellulose microfibril (CMF) reinforced epoxy polymer composites. CMFs were extracted from banana fibers using the acid-alkali treatment. Scanning electron microscopy (SEM) images revealed the isolation of alpha-cellulose of 1-2 mu m after the acid-alkali treatment. Thermogravimetric analysis showed an increase in the thermal resistance of CMFs up to 380 degrees C, compared to 260 degrees C for untreated natural fiber. The influence of three parameters, namely NaOH% (w/w), fiber diameter (mu m) and fiber volume% (w/w), on the tensile behavior of composites was investigated. Response surface methodology (RSM), a DOE tool, was used for determining the composition of different specimens. A three-factor, three-level Box-Behnken Design (BBD) model of RSM was selected for investigating the effect of input variables on the tensile behaviors and to obtain the optimization conditions. By solving the regression equations and analyzing the 3D response surface plots obtained from BBD, the optimized desirability ramp values were obtained. The optimized tensile stress and tensile modulus values were 41.78 MPa and 10380 MPa, respectively, using optimized values of NaOH% (w/w), fiber diameter (mu m) and fiber volume% (w/w) of 18.32, 250 and 4.05 respectively.
机译:本研究旨在确定纤维素微纤维(CMF)增强环氧聚合物复合材料的拉伸应力和拉伸模量。通过酸碱处理从香蕉纤维中提取CMF。扫描电子显微镜(SEM)图像显示在酸碱处理后分离出1-2μm的α纤维素。热重分析表明,CMF的热阻增加到380摄氏度,而未经处理的天然纤维的热阻增加到260摄氏度。研究了NaOH%(w/w)、纤维直径(mum)和纤维体积(w/w)三个参数对复合材料拉伸性能的影响。响应面法(RSM)是一种DOE工具,用于确定不同样本的成分。为了研究输入变量对RSM拉伸行为的影响,并获得优化条件,选择了RSM的三因素三水平Box-Behnken设计(BBD)模型。通过求解回归方程并分析从BBD获得的3D响应面图,获得了优化的期望斜率值。优化的NaOH%(w/w)、纤维直径(μm)和纤维体积(w/w)分别为18.32、250和4.05,优化的拉伸应力和拉伸模量值分别为41.78mpa和10380mpa。

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