Bekhta Pavlo, Chernetskyi Orest, Kusniak Iryna, Bekhta Nataliya, Bryn Olesya
Department of Wood-Based Composites, Cellulose, and Paper, Ukrainian National Forestry University, 79057 Lviv, Ukraine.
Shpon Shepetivka LLC, 30400 Shepetivka, Ukraine.
Polymers (Basel). 2021 Dec 23;14(1):51. doi: 10.3390/polym14010051.
In this work, the effects of wood species and thickness of low-density polyethylene (LDPE) film on the properties of environmentally-friendly plywood were studied. Rotary-cut veneers from four wood species (beech, birch, hornbeam and poplar) and LDPE film of four thicknesses (50, 80, 100 and 150 µm) as an adhesive were used for making plywood samples. The findings of this study demonstrated that plywood samples using all the investigated wood species bonded with LDPE film showed satisfactory physical-mechanical properties. Poplar veneer provided the lowest values for bending strength, modulus of elasticity and thickness swelling of all the plywood samples, but the bonding strength was at the same level as birch and hornbeam veneer. Beech plywood samples had the best mechanical properties. An increase in LDPE film thickness improved the physical-mechanical properties of plastic-bonded plywood.
在这项工作中,研究了木材种类和低密度聚乙烯(LDPE)薄膜厚度对环保胶合板性能的影响。使用来自四种木材(山毛榉、桦木、鹅耳枥和杨树)的旋切单板以及四种厚度(50、80、100和150微米)的LDPE薄膜作为粘合剂来制作胶合板样品。本研究结果表明,使用所有被研究木材种类并与LDPE薄膜粘结的胶合板样品均表现出令人满意的物理力学性能。在所有胶合板样品中,杨木单板的抗弯强度、弹性模量和厚度膨胀率最低,但其粘结强度与桦木和鹅耳枥单板处于同一水平。山毛榉胶合板样品具有最佳的力学性能。LDPE薄膜厚度的增加改善了塑料粘结胶合板的物理力学性能。