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Modelling the effects of wood cambial age on the effective modulus of elasticity of poplar laminated veneer lumber

机译:模拟木材的冈比亚年龄对杨木层压单板木材的有效弹性模量的影响

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摘要

Key messageA modelling method is proposed to highlight the effect of cambial age on the effective modulus of elasticity of laminated veneer lumber (LVL) according to bending direction and veneer thickness. This approach is relevant for industrial purposes in order to optimize the performance of LVL products.ContextLVL is used increasingly in structural applications. It is obtained from a peeling process, where product’s properties depend on cambial age, hence depend on radial position in the log.AimsThis study aims to highlight how radial variations of properties and cambial age impact the mechanical behaviour of LVL panels.MethodsAn analytical mechanical model has been designed to predict the modulus of elasticity of samples made from poplar LVL panels. The originality of the model resides in the integration of different data from the literature dealing with the variation in wood properties along the radius of the log. The simulation of the peeling process leads to veneers with different mechanical properties, which are randomly assembled in LVL panels.ResultsThe model shows a correct mechanical behaviour prediction in comparison with experimental results of the literature, in particular with the decrease in MOE in LVL made of juvenile wood. It highlights that the bending direction and veneer thickness have no influence on the average MOE, but affect MOE dispersion.ConclusionThis paper proposed an adequate model to predict mechanical behaviour in the elastic domain of LVL panels based on the properties of raw wood material.
机译:关键信息提出了一种建模方法,以根据弯曲方向和饰面板厚度,突出显示冈比亚年龄对层压饰板木材(LVL)的有效弹性模量的影响。此方法与工业目的相关,以优化LVL产品的性能。ContextLVL越来越多地用于结构应用中。它是通过剥皮工艺获得的,产品的特性取决于角质层的年龄,因此取决于原木中的径向位置。目的本研究旨在强调特性的径向变化和角质层的年龄如何影响LVL面板的机械性能。设计用于预测由杨木LVL面板制成的样品的弹性模量。该模型的独创性在于整合了来自不同文献的数据,这些数据涉及木材特性沿原木半径的变化。模拟剥皮过程会产生具有不同机械性能的饰面,这些饰面会随机组装在LVL面板中。结果与文献的实验结果相比,该模型显示出正确的力学行为预测,尤其是由幼木。得出结论,弯曲方向和单板厚度对平均MOE值没有影响,但会影响MOE色散。结论本文基于原木的特性,提出了一个合适的模型来预测LVL板在弹性区域的力学行为。

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