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Effect of ecological treatment on adhesion of woven flax fibers in epoxy matrix

机译:生态处理对亚麻纤维在环氧基质中黏附的影响

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Surface treatment of woven flax fibers was investigated as means of improving their adhesion in epoxy matrix. Flax fibers were treated in two ways : (i) with enzymatic treatments using pectinase enzymes and (ii) with pectinase enzymes/detergent, respectively. For this reason, dielectric measurements were performed in the frequency range from 10 Hz to 10 Hz and temperature interval from 40 °C to 200 °C. Studies of dielectric relaxations in these composites revealed the presence of three relaxation processes namely the orientation polarization imputed to the presence of polar water molecules in flax fibers, the relaxation process associated with conductivity occurring as a result of the carriers charges diffusion noted for high temperature above glass transition and low frequencies, and interfacial polarization effect or Maxwell-Wagner-Sillars (MWS) relaxation that is attributable to the accumulation of charges at the flax fibers/epoxy resin interfaces. Analysis of this latter using the Havriliak-Negami model revealed that the adhesion fibers/matrix was improved by the addition of the detergent treatment to the enzymatic one.
机译:研究了亚麻纤维表面的处理方法,以提高其在环氧基质中的附着力。亚麻纤维有两种处理方法:(i)用果胶酶进行酶处理和(ii)用果胶酶/洗涤剂进行酶处理。因此,在10 Hz至10 Hz的频率范围和40°C至200°C的温度范围内进行介电测量。这些复合材料中介电弛豫的研究表明,存在三种弛豫过程,即归因于亚麻纤维中极性水分子存在的取向极化,弛豫过程与电导率有关,这是载流子电荷扩散导致高温的结果。玻璃化转变和低频,以及界面极化效应或Maxwell-Wagner-Sillars(MWS)弛豫,这归因于亚麻纤维/环氧树脂界面处电荷的积累。使用Havriliak-Negami模型对后者的分析表明,通过在酶促剂中添加去污剂处理,可改善粘合纤维/基质。

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