砂纸
材料科学
复合材料
制作
接触角
超疏水涂料
多孔性
涂层
薄雾
基质(水族馆)
固化(化学)
粘附
热的
磨损(机械)
粘结强度
联锁
莲花效应
复合数
润湿
多孔介质
表面光洁度
作者
Xingbei Zhou,Nian Zhang,Shiyan Yin,Xince Wang,Hang Su,YaoLi Zhang,Liping Cai,Jianxiong Lv
摘要
ABSTRACT Recent research on transparent wood has shifted from fundamental fabrication toward functional diversification, with superhydrophobic transparent wood demonstrating considerable promise. However, a critical challenge remains the insufficient interfacial bonding strength between the superhydrophobic coating and the transparent wood substrate. In this study, this limitation was addressed by constructing a porous surface structure on transparent wood via a facile processing route. Through the synergistic use of ultrasonic assistance and a mechanical anchoring effect, uniform and robust adhesion of hydrophobic materials to the substrate was achieved, enabling the fabrication of high‐performance superhydrophobic transparent wood. The resulting material, fabricated using 500‐grit sandpaper as a curing template, exhibits excellent optical properties (transmittance of 80.3% and haze of 89.7%), and pronounced superhydrophobicity, with a water contact angle of 153° and a sliding angle of 5.7°. In addition, it demonstrates outstanding wear resistance, self‐cleaning capability, dimensional stability, and low thermal conductivity. Moreover, the eco‐friendly preparation process combined with its comprehensive performance profile suggests strong potential for applications in architectural veneers and energy‐efficient furniture.
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