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Enhanced bonding strength of heat-treated wood using a cold atmospheric-pressure nitrogen plasma jet

机译:使用大气压冷氮等离子流增强热处理木材的结合强度

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摘要

In this work, the bonding strength enhancement of heat-treated wood using a cold atmospheric-pressure nitrogen plasma jet for several lengths of treatment time was investigated. The enhancement of bonding strength was assessed by measurement of the contact angle of aqueous adhesive and water borne finish along with determination of compressive shear strength of wood samples bonded with an aqueous adhesive and pull-off strength of a water borne finish coating on wood samples. Additionally, the elemental composition and crystallinity index of the heat-treated wood surface were characterized using X-ray photoelectron spectroscopy and X-ray diffraction. As expected, the measurements demonstrated that contact angle decreased after atmospheric-pressure nitrogen plasma jet treatment, and the optimal treatment time was 100 s. X-ray photoelectron spectroscopy shows that hydrophilic groups such as C=O, OH, and COOH appeared on the surface of the HW. The atmospheric-pressure nitrogen plasma jet treatment had a positive effect on the crystallinity of heat-treated wood because of a slight degradation of hemicelluloses. Increasing the bonding strength of heat-treated wood is beneficial for broadening the fields of its applications.
机译:在这项工作中,研究了使用冷大气压氮等离子体射流在几段处理时间内提高热处理后木材的结合强度。通过测量水性粘合剂与水性整理剂的接触角,并测定与水性粘合剂粘合的木材样品的压缩剪切强度和水性整理剂在木材样品上的剥离强度,来评估粘合强度的提高。另外,使用X射线光电子能谱和X射线衍射来表征热处理过的木材表面的元素组成和结晶度指数。如预期的那样,测量结果表明,在大气压氮气等离子体喷射处理之后,接触角减小,最佳处理时间为100 s。 X射线光电子能谱显示,亲水性基团如C = O,OH和COOH出现在HW的表面上。由于半纤维素的轻微降解,大气压氮等离子体射流处理对热处理木材的结晶度具有积极影响。增加热处理木材的粘结强度有利于拓宽其应用领域。

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