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Study on polyblending epoxy resin adhesive with lignin I-curing temperature

机译:木质素I固化温度的环氧树脂复合胶粘剂的研究。

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As a three-dimensional amorphous biopolymer composed of phenylpropanoid units linked together by ether and carbon-carbon bonds, lignin is considered to be one of the most promising future organic resources not only because it is renewable, but also because it is second only to cellulose in abundance among the naturally occurring polymers. Due to its phenolic ether structure, lignin can be used to blend with other polymers to improve the heat-resistance of the polymers. So, in this study, a type of epoxy resin adhesive polyblended with corn straw enzymatic hydrolyzed lignin was prepared, and the effect of curing temperature on the adhesive joint shear strength of the epoxy resin adhesives under room temperature and high temperature respectively was also studied. The curing degree for the curing reaction of the epoxy resin was examined by FTIR analysis. The apparent activation energy for modified epoxy resin was calculated by DSC analysis. The results showed that the epoxy resin adhesive blended with corn straw enzymatic hydrolyzed lignin exhibited excellent shear strength under room and high temperature. The curing temperature of epoxy resin showed a considerable influence on the performance for the epoxy resin adhesive. The mentioned epoxy resin adhesive can be used to adhere polymer composites in which high temperature shear strength was required.
机译:木质素作为由醚和碳-碳键连接在一起的苯丙氨酸单元组成的三维无定形生物聚合物,木质素被认为是未来最有希望的有机资源之一,不仅因为它是可再生的,而且因为它仅次于纤维素天然存在的聚合物中含量很高。由于其酚醚结构,木质素可用于与其他聚合物共混以提高聚合物的耐热性。因此,本研究制备了一种玉米秸秆酶解木质素共混的环氧树脂胶粘剂,并研究了固化温度对环氧树脂胶粘剂在室温和高温下的剪切强度的影响。通过FTIR分析检查环氧树脂的固化反应的固化度。通过DSC分析计算出改性环氧树脂的表观活化能。结果表明,掺有玉米秸秆酶解木质素的环氧树脂胶在室温和高温下均表现出优异的剪切强度。环氧树脂的固化温度对环氧树脂粘合剂的性能显示出相当大的影响。所提及的环氧树脂粘合剂可用于粘合需要高温剪切强度的聚合物复合材料。

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