首页> 外文会议>2013 IEEE Business Engineering and Industrial Applications Colloquium >Mechanical properties of treated Kenaf (Hibiscus cannabinus) polyester composite at different alkaline concentration
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Mechanical properties of treated Kenaf (Hibiscus cannabinus) polyester composite at different alkaline concentration

机译:不同碱浓度下处理过的红麻(Hibiscus cannabinus)聚酯复合材料的力学性能

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Increase of awareness among people has increased the demand for green products. Other synthetic materials such as plastic and fibreglass has been reduced because of the environmental concern. Reinforcement with other green materials such as lignocellulosic materials has been done to reduce the dependency on synthetic material. Kenaf (Hibiscus cannabinus L.) fibres have the biggest potential to be used as a composite product and also as reinforcement in the composite products. Lignocellulosic materials including kenaf face some of problems when used as a reinforcement material with synthetic materials especially plastic based materials such as polypropylene and polyester. This problem is related to the properties of the fibres and the synthetic materials thus would reduce the mechanical properties of the product manufactured. Modification of the surface by solution treatment has been the popular method for improving the mechanical properties. In this study modification using Sodium Hydroxide or NaOH at three different concentration has been conducted to investigate the influence on the mechanical properties in terms of elasticity and strength properties of the composite material manufactured. The polyester composites were manufactured and tests according to ASTM D790-02 for bending test. Six replications of each type were tested and the values were evaluated using statistical analysis software. All the samples for both MOR and MOE showed significant differences for each type. Based on the result the highest value of the polyester composite was the kenaf that treated with 3% of NaOH solution for both MOR and MOE value.
机译:人们之间意识的增强也增加了对绿色产品的需求。由于对环境的关注,减少了其他合成材料,例如塑料和玻璃纤维。已经进行了其他木质材料(如木质纤维素材料)的增强,以减少对合成材料的依赖。红麻(Hibiscus cannabinus L.)纤维具有最大的潜力,可以用作复合产品,也可以用作复合产品的增强材料。包括洋麻的木质纤维素材料在用作合成材料尤其是塑料基材料(例如聚丙烯和聚酯)的增强材料时会遇到一些问题。这个问题与纤维的特性有关,因此合成材料会降低所制造产品的机械性能。通过固溶处理对表面进行改性已成为改善机械性能的常用方法。在这项研究中,已使用三种不同浓度的氢氧化钠或NaOH进行了改性,以研究对机械性能的影响,包括所制造的复合材料的弹性和强度性能。聚酯复合材料被制造并根据ASTM D790-02进行弯曲测试。测试每种类型的六次重复,并使用统计分析软件评估其值。 MOR和MOE的所有样本均显示出每种类型的显着差异。根据结果​​,聚酯复合材料的最高价值是用3%NaOH溶液处理的洋麻,其MOR和MOE值均最高。

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