碱处理和微晶纤维素(MCC)的添加对苎麻/聚酯复合材料物理性能和拉伸性能的影响

Jamasri., F. Yudhanto
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引用次数: 2

摘要

研究了碱处理和添加MCC对苎麻/聚酯复合材料性能的影响。用NaOH溶液在室温下进行碱处理。采用真空灌注法在聚酯基体中制备了三层经处理的编织苎麻纤维层合复合材料。将0.5 wt.%的MCC(微晶纤维素)粉末加入到聚酯树脂中,然后用机械搅拌器以350转/分的转速搅拌5分钟。采用FTIR、XRD和SEM等方法对其进行了表征。单纤维和层合复合材料的拉伸试验分别按照ASTM D3379和ASTM D3039进行。实验结果表明,添加5 wt.% NaOH溶液处理后的纤维的XRD结晶度指数最高,为66.3%。对苎麻单根纤维的拉伸强度和弹性模量分别提高18%和55%。在层合复合材料的聚酯基体中添加MCC,其抗拉强度和弹性模量分别比未添加MCC的层合复合材料提高18%和21%。此外,处理后的纤维层状复合材料可以改善纤维与作为基体的聚酯之间的附着力和化学键合。添加MCC填料可以阻止层合复合材料层间表面裂纹的初始扩展。
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The Effect of Alkali Treatment and Addition of Microcrystalline Cellulose (MCC) on Physical and Tensile Properties of Ramie/Polyester Laminated Composites
The aim of this research is to investigate the effect of alkali treatment of ramie fibers and addition of MCC on the properties of ramie/polyester laminated composites. The alkali treatment was performed using NaOH solution at a room temperature. The laminated composites was manufactured using a vacuum infusion method for three layers of treated woven ramie fibers in the polyester matrix. The MCC (microcrystalline cellulose) powder 0.5 wt.% was added into the polyester resin and then mixed by a mechanical stirrer at a rotation speed of 350 rpm for 5 minutes. The physical characterization was evaluated using FTIR, XRD, and SEM methods. The tensile test of a single fiber and laminated composites was carried out according to the ASTM D3379 and ASTM D3039, respectively. The experimental results show that the XRD of treated fiber with 5 wt.% NaOH solution has the highest crystallinity index of 66.3%. It impacts the increase of tensile strength and elastic modulus of single ramie fiber by 18% and 55%, respectively. The addition of MCC into the polyester matrix of laminated composite can increase the tensile strength and elastic modulus by 18% and 21%, respectively, compared to the untreated laminated composite. In addition, the treated fibers laminated composite can improve the adhesion and chemical bonding between fibers and polyester as a matrix. The addition of MCC filler may prevent the initial propagation of cracks on interlaminar surfaces of laminated composite.
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来源期刊
CiteScore
1.90
自引率
25.00%
发文量
32
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