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Multiscale Modelling of Moso Bamboo Oriented Strand Board

机译:毛竹竹定向刨花板的多尺度建模

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摘要

The modulus of elasticity (MOE) of three-layer moso bamboo (Phyllostachys pubescens Mazel) Oriented Strand Board (OSB) was modelled using a multiscale approach proposed for wood OSB. The modelling approach for wood OSB was adapted to bamboo OSB by accounting for the different structures of wood and bamboo tissue. The MOE of moso bamboo OSB was measured previously in bending; the strands in the surface layer had a preferred orientation and were either from the internode region of the culm or contained node tissue. The model for loading parallel to the preferred orientation of the surface strands gives a good description of the measured values of MOE for boards with internode surface strands (8.6 GPa modelled compared to 8.1 GPa previously measured), but overpredicts that for boards with surface strands containing nodes (8.8 GPa modelled compared to 6.7 previously measured). The model for loading perpendicular to the preferred orientation of the surface strands gives a good description of the MOE data if the core layer moduli are estimated using compliance averaging, for specimens with and without nodes (1.5 GPa modelled compared to 1.5 GPa previously measured).
机译:使用针对木材OSB提出的多尺度方法对三层毛竹(Phyllostachys pubescens Mazel)定向的刨花板(OSB)的弹性模量(MOE)进行建模。通过考虑木材和竹组织的不同结构,将木材OSB的建模方法改编为竹OSB。预先测量过毛竹OSB的MOE。表层中的股具有优选的取向,并且来自茎的节间区域或包含的节组织。平行于表面线的首选方向加载的模型很好地描述了带有节点间表面线的板的MOE的测量值(建模时为8.6 GPa,而先前测得的8.1 ​​GPa),但是高估了具有表面线的板的MOE值。节点(建模的8.8 GPa与之前测得的6.7)。如果使用顺应性平均值估算核心层的模量,则对于有节点和无节点的样品,垂直于表面线的首选方向的垂直加载模型可以很好地描述MOE数据(模拟的1.5 GPa与之前测量的1.5 GPa)。

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