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The structure and mechanics of Moso bamboo material

机译:毛竹材料的结构与力学

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摘要

Although bamboo has been used structurally for millennia, there is currently increasing interest in the development of renewable and sustainable structural bamboo products (SBPs). These SBPs are analogous to wood products such as plywood, oriented strand board and glue-laminated wood. In this study, the properties of natural Moso bamboo (Phyllostachys pubescens) are investigated to further enable the processing and design of SBPs. The radial and longitudinal density gradients in bamboo give rise to variations in the mechanical properties. Here, we measure the flexural properties of Moso bamboo in the axial direction, along with the compressive strengths in the axial and transverse directions. Based on the microstructural variations (observed with scanning electron microscopy) and extrapolated solid cell wall properties of bamboo, we develop models, which describe the experimental results well. Compared to common North American construction woods loaded along the axial direction, Moso bamboo is approximately as stiff and substantially stronger, in both flexure and compression but denser. This work contributes to critical knowledge surrounding the microstructure and mechanical properties of bamboo, which are vital to the engineering and design of sustainable SBPs.
机译:尽管竹子已经在结构上使用了几千年,但目前人们对开发可再生和可持续的结构性竹制品(SBP)的兴趣日益增加。这些SBP类似于胶合板,定向刨花板和胶合层压木等木制品。在这项研究中,对天然毛竹(Phyllostachys pubescens)的特性进行了研究,以进一步实现SBP的加工和设计。竹子的径向和纵向密度梯度引起机械性能的变化。在这里,我们测量了毛竹在轴向上的抗弯性能,以及在轴向和横向上的抗压强度。根据竹的微观结构变化(用扫描电子显微镜观察)和外推的固体细胞壁特性,我们开发了模型,很好地描述了实验结果。与沿轴向加载的北美常见建筑木料相比,毛竹在弯曲和压缩方面都差不多一样坚硬,强度更高,但密度更高。这项工作有助于围绕竹子的微观结构和机械性能的关键知识,这对于可持续性SBP的工程和设计至关重要。

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