Lu Li, Wang Yan, Li Tianhua, Wang Supeng, Yang Shoulu, Qing Yan, Li Xingong, Wu Yiqiang, Liu Ming
College of Materials Science and Engineering, Central South University of Forestry and Technology Changsha 410000 China
College of Engineering and Design, Hunan Normal University Changsha 410000 China.
RSC Adv. 2021 Jul 19;11(40):25010-25017. doi: 10.1039/d1ra04316a. eCollection 2021 Jul 13.
This study investigated the improved properties of calcium carbonate (CaCO) modified urea-formaldehyde (UF) resin adhesive for medium density fiberboard (MDF) production. The CaCO modified UF resins were prepared by adding different proportions of CaCO to a low molar ratio UF resin at the initial stage of a typical synthetic process of the resin. The physicochemical properties of the resins were measured. The mechanical and environmental performances of the resin-bonded MDF panels were tested. The results show that the viscosity and free formaldehyde content of UF resins with or without CaCO modification were not significantly different. The solid content of the CaCO modified UF resin was significantly lower than that of the control group. In addition, the measured gel time of the CaCO modified UF resin was 111-149 s, which was longer than that of the control resin (82 s). The gel time was further extended with the increase of the CaCO content in the UF resin. The chemical group and crystal structure of UF resins with or without the modification of CaCO were not significantly different. The internal bonding (IB) strength of the MDF panels significantly increased from 0.75 MPa to 0.97 MPa when the UF resin was modified with 2% of CaCO. This study provides scientific support for the preparation of inorganic mineral modified UF resins for strength enhanced wood-based panel manufacturing.
本研究考察了用于中密度纤维板(MDF)生产的碳酸钙(CaCO)改性脲醛(UF)树脂胶粘剂的性能改进情况。在树脂典型合成过程的初始阶段,通过向低摩尔比UF树脂中添加不同比例的CaCO来制备CaCO改性UF树脂。测定了树脂的物理化学性能。测试了树脂粘结MDF板的力学性能和环境性能。结果表明,有无CaCO改性的UF树脂的粘度和游离甲醛含量无显著差异。CaCO改性UF树脂的固含量显著低于对照组。此外,测得的CaCO改性UF树脂的凝胶时间为111 - 149 s,比对照树脂(82 s)长。随着UF树脂中CaCO含量的增加,凝胶时间进一步延长。有无CaCO改性的UF树脂的化学基团和晶体结构无显著差异。当UF树脂用2%的CaCO改性时,MDF板的内结合(IB)强度从0.75 MPa显著提高到0.97 MPa。本研究为制备用于增强强度的木质板材制造的无机矿物改性UF树脂提供了科学依据。