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Effect of Alternative Wood Species and First Thinning Wood on Oriented Strand Board Performance

机译:替代木材和初伐木材对定向刨花板性能的影响

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摘要

This study aimed to evaluate the feasibility of using and influence of alternative wood species such as Cambará, Paricá, Pinus, and wood from first thinning operations on oriented strand board (OSB) physical and mechanical properties. Besides that, an alternative resin, castor oil-based polyurethane, was used to bond the particles, due to the better environmental performance when compared to other resins commonly used worldwide in OSB production. Physical properties such as the moisture content, thickness swelling, and water absorption, both after 2 and 24 hours of water immersion, and mechanical properties such as the modulus of elasticity and resistance in static bending, in major and minor axes, and internal bonding were investigated. All tests were performed according to European code EN 3002006. Results showed the influence of wood species on physical and mechanical properties. Panels made with higher density woods such as Cambará presented better physical performance, while those made with lower density woods such as Pinus presented better mechanical properties. Besides that, strand particle geometry was also influenced on all physical and mechanical properties investigated. Therefore, the feasibility of using alternative species and wood from first thinning and with castor oil-based polyurethane resin in OSB production was verified.
机译:这项研究的目的是评估使用和替代替代木材种类(如Cambará,Paricá,Pinus和木材)的可行性,以及首次定向稀释板(OSB)物理和机械性能产生的木材。除此之外,与世界范围内在OSB生产中通常使用的其他树脂相比,由于具有更好的环保性能,因此使用了一种替代树脂,基于蓖麻油的聚氨酯来粘合颗粒。浸水2和24小时后的物理特性(如水分含量,厚度膨胀和吸水率)以及机械特性(如静态弯曲,长轴和短轴以及内部粘结的弹性模量和抗力)均为调查。所有测试均根据欧洲法规EN 3002006进行。结果表明木材种类对物理和机械性能的影响。用高密度木材(例如Cambará)制成的面板具有更好的物理性能,而用低密度木材(例如Pinus)制成的面板则具有更好的机械性能。除此之外,线粒的几何形状还影响了所研究的所有物理和机械性能。因此,验证了在OSB生产中从最初的稀疏和蓖麻油基聚氨酯树脂开始使用替代物种和木材的可行性。

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