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Fast modification on wheat straw outer surface by water vapor plasma and its application on composite material

机译:水蒸气等离子体对小麦秸秆外表面的快速改性及其在复合材料中的应用

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The presence of non-poplar extracts, cutin, and wax layer in the wheat straw outer surface (WOS) greatly limit its application in bio-composite preparation. In this study, a dielectric-barrier-discharge plasma using water vapor as feeding gas was used to fast modify the WOS. The morphology, free radical concentrations, surface chemical components, and contact angles of WOS before and after plasma modification were investigated. Wheat straw was further prepared into wheat straw-based composites (WSC) and its bonding strength was evaluated by a paper tension meter. The results showed that water vapor plasma leads to the appearance of surface roughness, the generation of massive free radicals, and the introduction of oxygen-containing groups. In addition, both initial and equilibrium contact angle and the surface total free energy were significantly increased after plasma modification. These results synergistically facilitate the spread and permeation of adhesive onto the WOS and thus improve the bonding strength of all prepared WSCs. A good linear relationship between bonding strength and surface roughness parameters, contact angles, and total free energy were observed. In general, this study provided a time-saving and cost-effective modification method to realize WSC manufacture.
机译:麦草外表面(WOS)中非杨树提取物,角质和蜡层的存在极大地限制了其在生物复合材料制备中的应用。在这项研究中,使用水蒸气作为进料气的电介质阻挡放电等离子体可快速修饰WOS。研究了等离子体改性前后WOS的形貌,自由基浓度,表面化学成分和接触角。将麦草进一步制备成麦草基复合材料(WSC),并通过纸张力计评估其结合强度。结果表明,水蒸气等离子体导致表面粗糙度的出现,大量自由基的产生以及含氧基团的引入。另外,等离子体改性后,初始和平衡接触角以及表面总自由能均显着增加。这些结果协同促进了粘合剂在WOS上的扩散和渗透,从而提高了所有制备的WSC的粘结强度。观察到粘结强度和表面粗糙度参数,接触角和总自由能之间良好的线性关系。总的来说,这项研究提供了一种节省时间和成本效益的修改方法来实现WSC的制造。

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