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Use of the cantilever beam vibration method for determining the elastic properties of maritime pine cross-laminated panels

机译:悬臂梁振动法在确定海洋松交叉层压板弹性特性中的应用

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This paper presents a study aimed to assess the modulus of elasticity E-0 and the rolling shear modulus G(90) of three-layer Maritime Pine Cross Laminated Timber (CLT) panels. The proposed methodology is based on a vibration test carried out on panels in cantilever configuration and on the results of a sensitivity study conducted via Finite Element model analyses, which highlights a straightforward relationship between the first two vertical natural frequencies and the aforementioned elastic properties of the panels. The procedure has been developed and applied to a specific configuration of CLT panels made of sardinian maritime pine (Pinus Pinaster). Nevertheless, the same approach could be easily extended to any cantilever three-layers CLT panel with different dimensions, providing that a new sensitivity study is carried out. The results suggest that the proposed methodology can be effectively used as a dynamic identification process for quality control in industrial production chains, where the role of non-destructive controls is becoming increasingly important.
机译:本文提出了一项旨在评估三层海事松交叉层压木材(CLT)面板的弹性模量E-0和滚动剪切模量G(90)的研究。所提出的方法是基于在悬臂结构的面板上进行的振动测试以及通过有限元模型分析进行的敏感性研究的结果,该结果强调了前两个垂直固有频率与上述弹性固有频率之间的直接关系。面板。已经开发了该程序,并将其应用于由撒丁岛海洋松树(Pinus Pinaster)制成的CLT面板的特定配置。但是,只要进行新的敏感性研究,就可以轻松地将同一方法扩展到任何具有不同尺寸的悬臂三层CLT面板。结果表明,所提出的方法可以有效地用作工业生产链中质量控制的动态识别过程,其中无损控制的作用变得越来越重要。

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