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Synthesis of polymeric composites reinforced with short bamboo fibers supported by experiment design

机译:试验设计支持的短竹纤维增强聚合物复合材料的合成

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In this study, short bamboo fibers were obtained using diverse extraction methods. Results obtained by the preliminary fiber traction tests reveal that the fibers obtained using steam explosion equipment possess better mechanical properties than those obtained using other methods. These fibers were used to reinforce a polymeric composite material manufactured using hot compression technique. For this purpose, a 3(k)factorial experiment design was applied using fiber and coupling agent concentrations as controllable factor and elasticity modulus as response variable to determine their most appropriate level for developing the best natural composite. From this viewpoint, it was found that the best composite material was obtained by combining 50% w/w fiber and 4% w/w coupling agent, as per the corresponding statistical analysis of variance (ANOVA). For the response variable, the elasticity modulus of the compound increased by 322% (2.91 GPa) in comparison with that of the polymer matrix (0.69 GPa).
机译:在本研究中,使用不同的提取方法获得短竹纤维。初步的纤维拉伸试验结果表明,使用蒸汽爆破设备获得的纤维比使用其他方法获得的纤维具有更好的机械性能。这些纤维被用于增强使用热压缩技术制造的聚合物复合材料。为此,采用3(k)析因实验设计,将纤维和偶联剂浓度作为可控因子,弹性模量作为响应变量,以确定其最合适的水平,从而开发出最佳天然复合材料。从这一观点出发,根据相应的方差分析(ANOVA),发现50%w/w纤维和4%w/w偶联剂组合可获得最佳复合材料。对于响应变量,与聚合物基质(0.69 GPa)相比,化合物的弹性模量增加了322%(2.91 GPa)。

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