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Synthesis and Thermo-Mechanical Study of Epoxy Resin-Based Composites with Waste Fibers of Hemp as an Eco-Friendly Filler

机译:环氧树脂基复合材料的合成与热机械研究随着环保填料的废纤维

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摘要

The synthesis, thermal, and mechanical properties of epoxy resin composites incorporating waste fibers of hemp were studied. Five different systems with increasing quantity of the eco-filler were obtained. For the synthesis of polymeric materials, the commercial epoxy resins Epidian® 5 and triethylenetetramine (TETA) were applied as crosslinking agents. The composites were obtained based on the polyaddition reaction of an amine group with an epoxide ring. ATR/FT-IR (Attenuated Total Reflection-Fourier Transform Infrared) analysis was used to confirm the chemical structure of the composites and the course of curing processes. Moreover, the influence of the eco-friendly components on the mechanical properties was determined, while thermal properties of the materials were investigated by thermogravimetry analysis (TGA) and differential scanning calorimetry (DSC). Dynamic mechanical studies (DMA) and Shore hardness tests of the obtained polymers were also carried out. The DSC curves and DMA analysis revealed that all materials were characterized by a similar glass transition range. Furthermore, the DMA and hardness measurements of the composites demonstrated an increasing elasticity with the increase in the amount of eco-filler present in the compositions.
机译:研究了包含大麻废纤维的环氧树脂复合材料的合成,热和力学性能。获得五种不同的生态填料量增加的系统。对于聚合物材料的合成,将商业环氧树脂ePIDIAN5和三乙烯丁二胺(TETA)作为交联剂施用。基于胺基与环氧化物环的聚酰胺反应获得复合材料。 ATR / FT-IR(衰减全反射 - 傅立叶变换红外线)分析用于确认复合材料的化学结构和固化过程的过程。此外,测定了环保组分对机械性能的影响,同时通过热重试探(TGA)和差示扫描量热法(DSC)研究了材料的热性质。还进行了所得聚合物的动态机械研究(DMA)和肖氏硬度试验。 DSC曲线和DMA分析显示,所有材料的特征在于相似的玻璃化转变范围。此外,复合材料的DMA和硬度测量结果表明,随着组合物中存在的生态填充物量的增加,增加了弹性。

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