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The influence of fines content and panel density on properties of mixed hardwood oriented strandboard.

机译:细料含量和面板密度对混合硬木定向刨花板性能的影响。

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Single- and three-layer mixed hardwood oriented strandboard (OSB) from small-diameter mixed hardwood trees (e.g., oak [Quercus], cottonwood [Populus], hackberry [Celtis], etc.) with various wood fines contents and panel densities were manufactured using phenol-formaldehyde (PF) resin as binder. The effects of fines level and density on the panel properties were determined. Mathematical models based on lamination theories were used to predict properties of three-layer panels, including effective modulus (EM), linear expansion (LE), and swelling stresses using single-layer data as model input. The model's prediction was compared with actual experimental data. For single-layer panels, parallel bending modulus and strength decreased, while the perpendicular values increased as fines increased in the panels. LE and thickness swelling increased with the increase of fines contents. Regression analysis indicated that bending properties and LE were highly correlated with fines content and panel density. The results of three-layer boards with a small fixed amount of fines in the face layers showed that the bending properties varied little in the parallel direction and decreased in the perpendicular direction as fines in the core layer increased. Parallel LE decreased and the perpendicular value increased with the increase of fines in the core layer. Predicted EM and LE agreed well with the experimental data. Shifting a certain amount of fines from core to face layers led to more balanced panel properties along the two principal directions. Predicted swelling stresses decreased with the increase of fines levels in the boards..
机译:来自小直径混合硬木树(例如,橡木[Quercus],杨木[Populus],朴树[Celtis]等)的具有不同木屑含量和面板密度的单层和三层混合硬木定向刨花板(OSB)为使用酚醛(PF)树脂作为粘合剂制造。确定了粉料水平和密度对板性能的影响。使用基于层压理论的数学模型来预测三层面板的特性,包括使用单层数据作为模型输入的有效模量(EM),线性膨胀(LE)和溶胀应力。该模型的预测与实际实验数据进行了比较。对于单层面板,平行弯曲模量和强度降低,而垂直值随着面板中细度的增加而增加。 LE和厚度溶胀随细粉含量的增加而增加。回归分析表明,弯曲性能和LE与细粉含量和面板密度高度相关。在表层中具有少量固定的细粉的三层板的结果表明,随着芯层中细粉的增加,弯曲性能在平行方向上几乎没有变化,而在垂直方向上减小。随着芯层中细料的增加,平行LE减小,垂直值增加。预测的EM和LE与实验数据非常吻合。将一定量的细粉从核心层转移到表面层,可导致沿两个主要方向的面板特性更加平衡。预计的膨胀应力随着木板中细粉含量的增加而降低。

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