Wang Wen, Zammarano Mauro, Shields John R, Knowlton Elizabeth D, Kim Ickchan, Gales John A, Hoehler Matthew S, Li Jianzhang
Ministry of Education Key Laboratory of Wood Material Science and Utilization (Beijing Forestry University), Beijing Key Laboratory of Wood Science and Engineering (Beijing Forestry University), 35 Qinghua East Road, Haidian District, Beijing 100083, China.
Planning and Design Institute of Forest Products Industry, State Forestry Administration of China. 130 Inner Chaoyangmen Main Street, Dongcheng District, Beijing 10083, China.
Mater Des. 2018;189. doi: 10.1016/j.conbuildmat.2018.08.214.
A silicone-based elastomer filled with vinyl-silane treated aluminum hydroxide was used to replace conventional polyurethane-based adhesive to provide a flame-retardant adhesive for plywood. The shear strength and fire performance of such a silicone-based (SI) adhesive glued plywood (SI/plywood) were investigated and compared to those of the polyurethane-based (PU) adhesive glued plywood (PU/plywood). The shear strength of the SI/plywood [(0.92 ± 0.09) MPa] was about 63% lower than that of the PU/plywood at room temperature, but it was less sensitive to water (62% reduction for the PU/plywood and 30% reduction for the SI/plywood after hot-water immersion at 63 °C for 3 h). The fire performance of plywood was assessed by a simulated match-flame ignition test (Mydrin test), lateral ignition and flame spread test, cone calorimetry, and thermocouple measurements. With a higher burn-though resistance and thermal barrier efficiency, and lower flame spread and heat release rate, the SI/plywood exhibited a superior fire-resistance and reaction-to-fire performance and improved fire-resistance as compared to the PU/plywood. The SI adhesive generated an inorganic protective layer on the sample surface that visibly suppressed glowing and smoldering of the plywood during combustion. The SI adhesive was also combined and reinforced with cellulosic fabric (CF) or glass fabric (GF) to prepare composite plywood (SI/CF/plywood and SI/GF/plywood) with improved fire performance. The cone calorimetry and thermocouple measurements indicated that the use of CF or GF in SI/CF/plywood and SI/GF/plywood, respectively, suppressed the delamination and cracking of the composite plywood and promoted the formation of an effective thermal barrier during smoldering and flaming combustion. Particularly, the SI/GF/plywood exhibited the most effective fire barrier with no crack formation, and the lowest heat release rate among the plywood types investigated in this study.
一种填充有乙烯基硅烷处理过的氢氧化铝的硅基弹性体被用于替代传统的聚氨酯基胶粘剂,以提供一种用于胶合板的阻燃胶粘剂。研究了这种硅基(SI)胶粘剂胶合胶合板(SI/胶合板)的剪切强度和防火性能,并与聚氨酯基(PU)胶粘剂胶合胶合板(PU/胶合板)进行了比较。SI/胶合板在室温下的剪切强度[(0.92±0.09)MPa]比PU/胶合板低约63%,但它对水不太敏感(在63℃热水中浸泡3小时后,PU/胶合板的剪切强度降低62%,SI/胶合板降低30%)。通过模拟火柴火焰点火试验(米德林试验)、侧向点火和火焰蔓延试验、锥形量热法和热电偶测量来评估胶合板的防火性能。与PU/胶合板相比,SI/胶合板具有更高的耐烧穿性和热障效率,更低的火焰蔓延和热释放速率,表现出优异的耐火性和对火反应性能以及改进的防火性能。SI胶粘剂在样品表面生成了一层无机保护层,在燃烧过程中明显抑制了胶合板的发光和阴燃。SI胶粘剂还与纤维素织物(CF)或玻璃织物(GF)复合并增强,以制备具有改进防火性能的复合胶合板(SI/CF/胶合板和SI/GF/胶合板)。锥形量热法和热电偶测量表明,在SI/CF/胶合板和SI/GF/胶合板中分别使用CF或GF,抑制了复合胶合板的分层和开裂,并在阴燃和明火燃烧过程中促进了有效热障的形成。特别是,SI/GF/胶合板表现出最有效的防火屏障,没有裂纹形成,并且在所研究的胶合板类型中热释放速率最低。