Fodor Fanni, Bak Miklós
Institute of Wood Technology and Technical Sciences, Faculty of Wood Engineering and Creative Industries, University of Sopron, Bajcsy-Zsilinszky Str. 4, 9400 Sopron, Hungary.
Materials (Basel). 2023 Mar 1;16(5):2046. doi: 10.3390/ma16052046.
The present study aimed to determine how acetylation affected the bonding properties of European hornbeam wood. The research was supplemented with the investigation of wetting properties, wood shear strength, and microscopical studies of bonded wood, as these all have strong relationships with wood bonding. Acetylation was carried out on an industrial scale. Acetylated hornbeam showed a higher contact angle and lower surface energy than untreated hornbeam. Although the adhesion of the acetylated wood surface is lower due to its lower polarity and porosity, the bonding strength of acetylated hornbeam was similar to that of untreated hornbeam when bonded with PVAc D3 adhesive, and it was higher in the case of PVAc D4 and PUR adhesives. Microscopical studies proved these findings. After acetylation, hornbeam could be used in applications where it is exposed to moisture, as its bonding strength after soaking or boiling in water was significantly higher than that of untreated hornbeam.
本研究旨在确定乙酰化如何影响欧洲鹅耳枥木材的胶合性能。通过对润湿性、木材剪切强度以及胶合木材的微观研究对该研究进行补充,因为这些都与木材胶合有密切关系。乙酰化在工业规模上进行。与未处理的鹅耳枥相比,乙酰化鹅耳枥表现出更高的接触角和更低的表面能。尽管由于乙酰化木材表面极性和孔隙率较低,其粘附性较低,但当与聚醋酸乙烯酯D3胶粘剂胶合时,乙酰化鹅耳枥的胶合强度与未处理的鹅耳枥相似,而在聚醋酸乙烯酯D4和聚氨酯胶粘剂的情况下,其胶合强度更高。微观研究证实了这些发现。乙酰化后,鹅耳枥可用于暴露于湿气的应用中,因为其在水中浸泡或煮沸后的胶合强度明显高于未处理的鹅耳枥。