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首页> 外文期刊>Journal of Wood Science >Effect of board density and layer structure on the mechanical properties of bamboo oriented strandboard
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Effect of board density and layer structure on the mechanical properties of bamboo oriented strandboard

机译:板密度和层结构对竹取向刨花板力学性能的影响

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This study examined the effects of density and layer structure on the mechanical properties and dimensional stability of strandboard manufactured from moso bamboo (Phyllostachys pubescens). The strandboard was fabricated in a laboratory at five densities and three different structures including a randomly oriented homogenous board, a unidirectionally oriented homogenous board, and a three-layered board with a cross-oriented core layer (BOSB). Bamboo strand alignment distribution could be predicted using the von Mises distribution function. Bending properties increased with increasing density and were affected by layer structure. The modulus of rupture (MOR) of the threelayered board in the parallel direction increased remarkably compared with the random board MOR; in the perpendicular direction, it exhibited less strength reduction. Elastic properties of the three-layered board could be predicted using elastic constants of the unidirectional board. Internal bond strength (IB) was greatly affected by density, but the layer structure effect did not appear in IB. Linear expansion per unit moisture change ranged from 0.017 to 0.022 for random and three-layered boards; these values are comparable with or lower than values for commercial board.
机译:这项研究检查了密度和层结构对毛竹(Phyllostachys pubescens)制成的刨花板的机械性能和尺寸稳定性的影响。刨花板是在实验室中以五种密度和三种不同的结构制造的,包括随机取向的均质板,单向取向的均质板和带有横向取向芯层(BOSB)的三层板。可以使用von Mises分布函数来预测竹链对齐分布。弯曲性能随密度的增加而增加,并受层结构的影响。与随机板MOR相比,三层板在平行方向上的断裂模量(MOR)显着增加;在垂直方向上,它表现出较小的强度降低。可以使用单向板的弹性常数来预测三层板的弹性特性。内部粘合强度(IB)受密度的影响很大,但是层结构效应在IB中没有出现。随机和三层板的单位湿度变化的线性膨胀范围为0.017至0.022;这些值可与商业用板相当或低于商业用板。

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