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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Processing of the Uni-directional Powdered Phenolic Resin-Bamboo Fiber Composites and Resulting Dynamic Mechanical Properties
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Processing of the Uni-directional Powdered Phenolic Resin-Bamboo Fiber Composites and Resulting Dynamic Mechanical Properties

机译:单向粉状酚醛树脂-竹纤维复合材料的加工及其动态力学性能

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摘要

The present study aims at development of composites based on powdered phenolic matrices (novolac) and both untreated and alkali treated bamboo fibers by a compression molding technique. Bamboo strips were treated with varying concentration (10, 15, and 20%) of caustic soda solution. The concentration of alkali solution used for treatment is the main influencing factor on the dynamic mechanical and thermal properties. The composites were evaluated by means of dynamic mechanical and differential scanning calorimetry analysis. The results reveal that the elastic and thermal properties are also dependent on the concentration of alkali used for treatment. DSC study reveals that the thermal stability of the cured resin has been lowered by the incorporation of the resin, though the alkali treatment of the fiber imparts better thermal stability to the composites than the untreated one. DMT analysis reveals that the dynamic mechanical properties are best with 20% alkali-treated fiber composites. The success of composite formation of a powdered phenolic resin is evident by the IR study of the composite.
机译:本研究旨在通过压模技术开发基于粉状酚醛基质(novolac)以及未经处理和经碱处理的竹纤维的复合材料。用不同浓度(10%,15%和20%)的苛性钠溶液处理竹条。用于处理的碱溶液浓度是动态力学​​和热学性能的主要影响因素。通过动态机械和差示扫描量热分析评估复合材料。结果表明,弹性和热性能也取决于用于处理的碱的浓度。 DSC研究表明,尽管树脂的碱处理使复合材料比未处理的复合材料具有更好的热稳定性,但通过加入树脂降低了固化树脂的热稳定性。 DMT分析表明,动态机械性能最好是使用20%碱处理的纤维复合材料。粉末状酚醛树脂复合成型的成功通过复合材料的IR研究证明。

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