Jorda Johannes, Cesprini Emanuele, Barbu Marius-Cătălin, Tondi Gianluca, Zanetti Michela, Král Pavel
Forest Products Technology and Timber Construction Department, Salzburg University of Applied Sciences, Markt 136a, 5431 Kuchl, Austria.
Department of Wood Science and Technology, Mendel University, Zemědělská 3, 61300 Brno, Czech Republic.
Polymers (Basel). 2022 May 31;14(11):2257. doi: 10.3390/polym14112257.
Wood-based products are traditionally bonded with synthetic adhesives. Resources availability and ecological concerns have drawn attention to bio-based sources. The use of tannin-based adhesives for engineered wood products has been known for decades, however, these formulations were hardly used for the gluing of solid wood because their rigidity involved low performance. In this work, a completely bio-based formulation consisting of Quebracho () extract and furfural is characterized in terms of viscosity, gel time, and FT-IR spectroscopy. Further, the usability as an adhesive for beech () plywood with regard to press parameters (time and temperature) and its influence on physical (density and thickness) and mechanical properties (modulus of elasticity, modulus of rupture and tensile shear strength) were determined. These polyphenolic adhesives presented non-Newtonian behavior but still good spreading at room temperature as well as evident signs of crosslinking when exposed to 100 °C. Within the press temperature, a range of 125 °C to 140 °C gained suitable results with regard to mechanical properties. The modulus of elasticity of five layered 10 mm beech plywood ranged between 9600 N/mm and 11,600 N/mm, respectively, with 66 N/mm to 100 N/mm for the modulus of rupture. The dry state tensile shear strength of ~2.2 N/mm matched with other tannin-based formulations, but showed delamination after 24 h of water storage. The proposed quebracho tannin-furfural formulation can be a bio-based alternative adhesive for industrial applicability for special plywood products in a dry environment, and it offers new possibilities in terms of recyclability.
传统上,木质产品是用合成胶粘剂粘结的。资源可用性和生态问题已引起人们对生物基来源的关注。几十年来,人们一直知道将单宁基胶粘剂用于人造木制品,然而,这些配方几乎没有用于实木胶合,因为其刚性导致性能不佳。在这项工作中,一种由白坚木提取物和糠醛组成的完全生物基配方在粘度、凝胶时间和傅里叶变换红外光谱方面进行了表征。此外,还确定了其作为山毛榉胶合板胶粘剂在压制参数(时间和温度)方面的可用性及其对物理性能(密度和厚度)和机械性能(弹性模量、断裂模量和拉伸剪切强度)的影响。这些多酚类胶粘剂呈现出非牛顿行为,但在室温下仍具有良好的涂抹性,并且在暴露于100℃时会出现明显的交联迹象。在压制温度范围内,125℃至140℃对于机械性能获得了合适的结果。五层10毫米山毛榉胶合板的弹性模量分别在9600N/mm至11600N/mm之间,断裂模量为66N/mm至100N/mm。干燥状态下的拉伸剪切强度约为2.2N/mm,与其他单宁基配方相当,但在储存24小时后出现分层。所提出的白坚木单宁-糠醛配方可以作为一种生物基替代胶粘剂,用于干燥环境中的特殊胶合板产品的工业应用,并且在可回收性方面提供了新的可能性。