首页> 外文期刊>Composites Science and Technology >Luffa cylindrica fibres/vinylester matrix composites: Effects of 1,2,4,5-benzenetetracarboxylic dianhydride surface modification of the fibres and aluminum hydroxide addition on the properties of the composites
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Luffa cylindrica fibres/vinylester matrix composites: Effects of 1,2,4,5-benzenetetracarboxylic dianhydride surface modification of the fibres and aluminum hydroxide addition on the properties of the composites

机译:Luffa cylindrica纤维/乙烯基酯基复合材料:1,2,4,5-苯四甲酸二酐表面改性的纤维和氢氧化铝的添加对复合材料性能的影响

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In this work we used a sequence of organic extraction and chemical modification treatments in order to increase the compatibility between the mat fibrous of the Luffa cylindrica ripe fruit and the vinyl ester resin for composites preparation. As observed from SEM and suggested from XRD analyses, these sequential treatments did not degrade the L. cylindrica fibres preserving their potential use as a reinforcement. The FTIR analyses and the conductometric titrations showed evidences of interactions between the fibres and the dianhydride. A fibre mass ratio of 15% was used for composites preparation decreasing the density of the composites at ca. 45% when compared with the vinylester matrix. The TG analyses showed that the aluminum hydroxide addition in the matrix increases the thermal stability of the composites. The DMA showed that the fibres did not influence the matrix cure kinetics, and a biphasic system was formed during pre-curing under environmental conditions. The tensile and Charpy impact strength tests showed an increase of the strength of the composites when compared with the matrix. The best results were obtained for PMDA treated fibres/vinyl ester matrix composites, which showed an increase of ca. 30% for tensile strength and 250% for impact strength.
机译:在这项工作中,我们使用了一系列的有机萃取和化学改性处理,以提高丝瓜成熟果实的纤维毡与用于复合材料制备的乙烯基酯树脂之间的相容性。正如从SEM观察到的和XRD分析所暗示的那样,这些顺序处理不会降解圆柱状L. cylindrica纤维,保留了其潜在的增强作用。 FTIR分析和电导滴定显示了纤维与二酐之间相互作用的证据。 15%的纤维质量比用于复合材料的制备,降低了复合材料的密度,大约为。与乙烯基酯基体相比为45%。 TG分析表明,在基体中添加氢氧化铝可提高复合材料的热稳定性。 DMA显示纤维不影响基质固化动力学,并且在环境条件下的预固化过程中形成了双相体系。拉伸和夏比冲击强度测试表明,与基体相比,复合材料的强度有所提高。对于PMDA处理的纤维/乙烯基酯基复合材料,获得了最佳结果,显示ca的增加。拉伸强度为30%,冲击强度为250%。

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