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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Microstructure features and the prediction of longitudinal elastic modulus of small-diameter-original Bamboo (Phyllostachys glauca McClure)
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Microstructure features and the prediction of longitudinal elastic modulus of small-diameter-original Bamboo (Phyllostachys glauca McClure)

机译:小直径原竹(Phyllostachys glauca McClure)的微观结构特征和纵向弹性模量的预测

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摘要

Based on the anatomical and chemical properties, a representative volume unit was studied to predict the longitudinal elastic modulus of bamboo (Phyllostachys glauca McClure). Microstructure features and chemical characterization of bamboo were obtained. Elastic constant of cell wall in length was derived by the application of rule of mixture. Taking advantage of the representative volume unit model, the longitudinal elastic modulus prediction formula of bamboo was established, and the theoretical and experimental value were calculated. The results showed that modified formula was acceptable to predict the longitudinal elastic modulus value with the error rate between predicted and experimental values below 25%. It is feasible to simplify the microstructure to calculate the longitudinal elastic modulus by model.
机译:基于解剖和化学特性,研究了代表性的体积单位,以预测竹子(Phyllostachys glauca McClure)的纵向弹性模量。获得了竹的微观结构特征和化学特征。应用混合法则推导了细胞壁长度的弹性常数。利用代表性的体积单位模型,建立了竹子的纵向弹性模量预测公式,并计算了理论值和实验值。结果表明,改进的公式可以预测纵向弹性模量值,且预测值与实验值之间的误差率低于25%。通过模型简化组织来计算纵向弹性模量是可行的。

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