Li Mingyue, Zhang Shuangbao, Gong Yingchun, Tian Zhaopeng, Ren Haiqing
Research Institute of Wood Industry, Chinese Academy of Forestry, Beijing 100091, China.
College of Materials Science and Technology, Beijing Forestry University, Beijing 100083, China.
Polymers (Basel). 2021 Feb 27;13(5):733. doi: 10.3390/polym13050733.
Previous studies have proved that is a good material for preparing cross-laminated timber (CLT), but under bending shear stress, CLT made by is prone to the phenomenon of bonding face cracking, which seriously affects the shear performance of CLT. To solve this problem, this paper took as raw material, conducted experiments on the surface sanding conditions, gluing pressure and adhesive types of sawing timber, and explored the influence of these three factors on the bonding quality of CLT. The microscopic characteristics of the bonding layer were further studied. The results showed that for with a density of 0.68 g/cm used in this experiment, a high bonding pressure is required. Among the three cold curing adhesives selected in the experiment, emulsion polymer isocyanate (EPI) adhesive needs 1.5 MPa bonding pressure to ensure the bonding quality, while for polyurethane (PUR) and phenol resorcinol formaldehyde (PRF), 1.2 MPa can meet the need of adhesive pressure. This is concerned with the permeability of different adhesives under different pressures. The microscopic results of the bonding layer show that EPI adhesives have poor permeability, so it requires high bonding pressure. The influence of sanding surface of different sand-belt on block shear strength (BSS) and wood failure percentage (WFP) is not obvious, while the durability of bonding layer is better when sanding mesh number is 100. Hence, a high pressure should be used for CLT industrial production when the laminate density is higher, especially when the adhesive has poor permeability. Reasonable sanding surface treatment can be used in laminate surface treatment to improve the durability of CLT.
以往研究证明,[具体材料名称未给出]是制备正交胶合木(CLT)的良好材料,但在弯曲剪应力作用下,由[具体材料名称未给出]制成的CLT易出现胶合面开裂现象,严重影响CLT的抗剪性能。为解决这一问题,本文以[具体材料名称未给出]为原料,对锯材的表面砂光条件、胶合压力和胶粘剂类型进行试验,探究这三个因素对CLT胶合质量的影响。进一步研究了胶合层的微观特征。结果表明,对于本试验中密度为0.68 g/cm³的[具体材料名称未给出],需要较高的胶合压力。试验选用的三种冷固化胶粘剂中,乳液聚合异氰酸酯(EPI)胶粘剂需要1.5 MPa的胶合压力才能保证胶合质量,而聚氨酯(PUR)和间苯二酚甲醛(PRF)胶粘剂,1.2 MPa即可满足胶合压力需求。这与不同胶粘剂在不同压力下的渗透性有关。胶合层的微观结果表明,EPI胶粘剂渗透性较差,因此需要较高的胶合压力。不同砂带砂光表面对块状抗剪强度(BSS)和木材破坏率(WFP)的影响不明显,而砂光目数为100时胶合层的耐久性较好。因此,当层板密度较高时,CLT工业化生产应采用较高压力,尤其是当胶粘剂渗透性较差时。层板表面处理可采用合理的砂光表面处理方法,以提高CLT的耐久性。