Němec Miroslav, Hájková Kateřina, Hýsek Štěpán
Department of Wood Processing and Biomaterials, Faculty of Forestry and Wood Sciences, Czech University of Life Science Prague, Kamýcká 129, 165 21 Prague, Czech Republic.
Materials (Basel). 2023 Mar 27;16(7):2669. doi: 10.3390/ma16072669.
In this study, high-pressure laminates (HPL) impregnated with phenol-formaldehyde (PF) resins enriched with kraft lignin were developed. Pulverised kraft lignin was added to the commercial PF resin in the amounts of 1% and 5% (solid to solid). Laminates were manufactured using pressure impregnation of the resins into the papers and using hot pressing of HPL in a laboratory press. Laminates with a lignin content of 1% (L-LPF-1) showed the highest bending strength (72.42 MPa) and Brinell hardness (9.41); they also exhibited the best moisture uptake (9.61) and thickness swelling after immersion in water (3.32%). Except for impact bending, laminates with a lignin content of 5% (L-LPF-5) had worse properties. However, the differences between the variants are mostly not statistically significant and are comparable with the results of commercial PF resin. Scanning electron microscopy confirmed the homogenous structure of produced laminates and the occurrence of cohesive failures in ruptured L-LPF-1 laminates, whereas in ruptured L-LPF-5 laminates adhesive failures were also observed. Based on the conducted research it can be said that the utilisation of kraft lignin as an additive to PF resin (in the amount of 1%) has a positive effect on the produced HPL.
在本研究中,开发了浸渍有富含硫酸盐木质素的酚醛(PF)树脂的高压层压板(HPL)。将粉碎的硫酸盐木质素按1%和5%(固-固)的量添加到商用PF树脂中。层压板是通过将树脂压力浸渍到纸张中并在实验室压力机中对HPL进行热压来制造的。木质素含量为1%的层压板(L-LPF-1)表现出最高的弯曲强度(72.42MPa)和布氏硬度(9.41);它们还表现出最佳的吸湿率(9.61)和浸水后的厚度膨胀率(3.32%)。除冲击弯曲外,木质素含量为5%的层压板(L-LPF-5)性能较差。然而,各变体之间的差异大多无统计学意义,且与商用PF树脂的结果相当。扫描电子显微镜证实了所生产层压板的均匀结构,以及破裂的L-LPF-1层压板中出现的内聚破坏,而在破裂的L-LPF-5层压板中也观察到了粘结破坏。基于所进行的研究,可以说将硫酸盐木质素作为PF树脂的添加剂(用量为1%)对所生产的HPL有积极影响。