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通过利用生物质残渣构建交互网络增强豆粕基胶粘剂的粘结强度和耐水性

Reinforcement of Bonding Strength and Water Resistance of Soybean Meal-Based Adhesive via Construction of an Interactive Network from Biomass Residues.

作者信息

Chang Zhiwei, Pang Huiwen, Huang Anmin, Li Jianzhang, Zhang Shifeng

机构信息

MOE Key Laboratory of Wooden Material Science and Application, Beijing Forestry University, Beijing 100083, China.

Beijing Key Laboratory of Wood Science and Engineering, Beijing Forestry University, Beijing 100083, China.

出版信息

Polymers (Basel). 2019 Jun 3;11(6):967. doi: 10.3390/polym11060967.

Abstract

Soybean meal-based adhesives are attractive potential environmentally friendly replacements for formaldehyde-based adhesives. However, the low strength and poor water resistance of soybean meal-based adhesives limit their practical application. This study was conducted to develop a natural fiber-reinforced soybean meal-based adhesive with enhanced water resistance and bonding strength. Pulp fiber (PF), poplar wood fiber (WF), and bagasse fiber (BF) were added as fillers into the soybean meal-based adhesive to enhance its performance via hydrogen bonding between the PF and the soybean meal system. The enhanced adhesive exhibited a strong crosslinking structure characterized by multi-interfacial interactions wherein PF served as a bridging ligament and released residual stress into the crosslinking network. The crosslinked structure and improved interfacial interactions were confirmed by Fourier transform infrared (FTIR) spectrophotometry, thermogravimetric analysis (TGA), and scanning electron microscopy (SEM) measurements. Plywood bonded with 4 wt % PF-containing soybean meal-based adhesive exhibited a wet shear strength (1.14 MPa) exceeding that of plywood bonded with the control group by 75.4% due to the stable crosslinking network having efficiently transformed stress and prevented the permeation of water molecules.

摘要

以豆粕为基础的胶粘剂是甲醛基胶粘剂具有吸引力的潜在环保替代品。然而,以豆粕为基础的胶粘剂强度低、耐水性差,限制了它们的实际应用。本研究旨在开发一种具有增强耐水性和粘结强度的天然纤维增强豆粕基胶粘剂。将纸浆纤维(PF)、杨木纤维(WF)和甘蔗渣纤维(BF)作为填料添加到豆粕基胶粘剂中,通过PF与豆粕体系之间的氢键增强其性能。增强后的胶粘剂呈现出以多界面相互作用为特征的强交联结构,其中PF作为桥接韧带,将残余应力释放到交联网络中。通过傅里叶变换红外(FTIR)光谱法、热重分析(TGA)和扫描电子显微镜(SEM)测量证实了交联结构和改善的界面相互作用。由于稳定的交联网络有效地转化了应力并阻止了水分子的渗透,用含4 wt%PF的豆粕基胶粘剂粘结的胶合板的湿剪切强度(1.14 MPa)比对照组粘结的胶合板高出75.4%。

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