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Thermal and Mechanical Characterization of Jute-Biopol Nanophased Green Composites

机译:黄麻-Biopol纳米相绿色复合材料的热和力学表征

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Surface modification of jute fibers was accomplished by performing chemical treatments including detergent washing, dewaxing, alkali, and acetic acid treatment. Morphology of modified surfaces examined using scanning electron microscopy (SEM) revealed improved surfaces for better adhesion with matrix. Better thermal performance of treated fibers was found from thermogravimetric analysis (TGA). Enhanced tensile properties of treated fibers were obtained from tensile tests. Using solution intercalation technique and magnetic stirring, 2%, 3%, and 4% by weight Montmorillonite K10 nanoclay were dispersed into a biodegradable polymer, Biopol. Thermal performance of nanoclay infused Biopol characterized using dynamic scanning calorimetry (DSC) showed improved degree of crystallinity by 7%. Jute fiber reinforced Biopol biocomposites with and without nanoclay were manufactured using treated and untreated jute fibers by compression molding process. Thermal and mechanical responses of treated fiber reinforced Biopol composites (TJBC) without nanoclay evaluated using dynamic mechanical analysis (DMA) and flexure tests showed 9% and 12% increase in storage modulus and flexure strength, respectively, compared to untreated jute fiber reinforced composites (UTJBC). The respective values were 100% and 35% for 4% nanoclay infused TJBC compared to UTJBC without nanoclay.
机译:黄麻纤维的表面改性是通过进行化学处理(包括去污剂洗涤,脱蜡,碱和乙酸处理)完成的。使用扫描电子显微镜(SEM)检查的改性表面的形态显示出改进的表面,可以更好地与基质粘合。通过热重分析(TGA)发现处理过的纤维具有更好的热性能。通过拉伸试验获得了增强的经处理纤维的拉伸性能。使用溶液插层技术和磁力搅拌,将2重量%,3重量%和4重量%的蒙脱石K10纳米粘土分散到可生物降解的聚合物Biopol中。使用动态扫描量热法(DSC)表征的纳米粘土浸渍Biopol的热性能显示结晶度提高了7%。使用经处理和未经处理的黄麻纤维,通过压缩成型工艺来制造具有和不具有纳米粘土的黄麻纤维增强Biopol生物复合材料。经动态力学分析(DMA)和弯曲试验评估的未处理纳米纤维的Biopol复合材料(TJBC)的热力学响应和机械响应表明,与未经处理的黄麻纤维增强复合材料相比,储能模量和弯曲强度分别提高了9%和12%( UTJBC)。与没有纳米粘土的UTJBC相比,注入4%纳米粘土的TJBC的各自值为100%和35%。

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