Taquetti Vinícius Borges, Silva Vitor Viana, Chaves Izabella Luzia Silva, Oliveira Rafael Gonçalves Espósito, Maffioletti Fernanda Dalfiôr, Ferreira Glaucileide, Mendonça José Paulo Costa, Silva Emilly Soares Gomes, Gonçalves Fabricio Gomes
Postgraduate Program in Forest Sciences, Avenue Governador Lindemberg, 216, Center, 29550-000, Jerônimo Monteiro, ES, Brazil.
Engenheiro Industrial, High Jump Process Consulting Ltda., Avenue Presidente Castelo Branco, 2525, A.402, Parque Industrial Lagoinha, 14095-000, Ribeirão Preto, SP, Brazil.
Heliyon. 2023 Nov 23;9(12):e22760. doi: 10.1016/j.heliyon.2023.e22760. eCollection 2023 Dec.
Wood residues, as well as those from poultry farming, are generally disposed of irregularly, which causes damage to the environment, and thus poses a great challenge in terms of their use, a possible alternative is the manufacture of particleboards. For this, the following mechanical properties of the panels were evaluated: static bending (elasticity - MOE and rupture - MOR), internal bond strength (IB), Janka hardness (DJ), screw withdrawal resistance (SW), thickness swelling (TS), water absorption (WA), moisture, apparent density (DA) and density profile, in addition to morphological characterization by scanning electron microscope image. With the results obtained, it was possible to observe that the amount of residue influenced the density of the panel. The panel compaction ratio showed little variation (1.22-1.32), remaining close to the value considered ideal of 1.33. The percentage of waste added to the panels also influenced the increase in WA and TS, limiting the use of the panels to environments without humidity. The addition of the eggshell in the process negatively affected the mechanical characteristics of formulated particleboards, except for Janka hardness. The application of the resin together with the wood particles and eggshells can improve the mechanical properties. Based on the findings from this study, the medium-density particleboard produced can be used for making furniture and room partitioning without structural character.
木材残渣以及家禽养殖产生的残渣通常处理不当,这对环境造成破坏,因此在其利用方面构成巨大挑战,一种可能的替代方法是制造刨花板。为此,对板材的以下机械性能进行了评估:静态弯曲(弹性模量 - MOE和断裂模量 - MOR)、内结合强度(IB)、贾卡硬度(DJ)、抗螺钉拔出力(SW)、厚度膨胀率(TS)、吸水率(WA)、含水率、表观密度(DA)和密度分布,此外还通过扫描电子显微镜图像进行形态表征。根据获得的结果,可以观察到残渣量会影响板材的密度。板材压实率变化不大(1.22 - 1.32),接近被认为理想值的1.33。添加到板材中的废料百分比也会影响WA和TS的增加,限制了板材在无湿度环境中的使用。在该过程中添加蛋壳对制成的刨花板的机械特性有负面影响,但贾卡硬度除外。树脂与木材颗粒和蛋壳一起使用可以改善机械性能。基于本研究的结果,所生产的中密度刨花板可用于制造无结构特性的家具和房间隔断。