Full elastic properties characterization of wood by ultrasound using a single sample

IF 3.1 2区 农林科学 Q1 FORESTRY Wood Science and Technology Pub Date : 2024-01-10 DOI:10.1007/s00226-023-01525-y
Jérôme S. Afoutou, Xi Zhang, Frédéric Dubois
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Abstract

This paper focuses on the characterization of the three-dimensional elastic properties of wood materials using the propagation velocity of ultrasonic waves in the context of the inspection and diagnosis of timber structures. The scientific innovation consists in exploiting only the velocities of the compression (P) waves and using a single sample. From a three-dimensional formulation of Hankinson and an analytical development which allows to define the relations between the properties of elasticity and the velocities of ultrasonic waves, the twelve elastic constants are determined by means of an optimization procedure. The experimental validation on a Douglas fir cube allows to have the three moduli of elasticity \(\left( {E_{\text{L}} ,E_{\text{R}} ,E_{\text{T}} } \right)\), the three shear moduli \(\left( {G_{\text{LR}} ,G_{\text{LT}} ,G_{\text{RT}} } \right)\) and the six Poisson’s ratios \(\left( {\nu_{\text{LR}} ,\nu_{\text{LT}} ,\nu_{\text{RT}} ,\nu_{\text{RL}} ,\nu_{\text{TL}} ,\nu_{\text{TR}} } \right)\). The longitudinal modulus \(\left( {E_{\text{L}} } \right)\) is more than eight times greater than the radial modulus \(\left( {E_{\text{R}} } \right)\), which is more than two and a half times greater than the tangential modulus \(\left( {E_{\text{T}} } \right)\). For the shear moduli, we obtain \(\left( {G_{\text{LR}} > G_{\text{LT}} > G_{\text{RT}} } \right)\). The Poisson's ratios meet the requirements of energy deformation positivity and stiffness matrix inversion. The values of the elastic constants obtained are in line with those from the literature.

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利用超声波对单个样品进行木材全弹性特性表征
本文的重点是在木材结构检测和诊断的背景下,利用超声波的传播速度表征木质材料的三维弹性特性。科学创新在于仅利用压缩波 (P) 的速度和使用单一样本。根据汉金森的三维表述和分析发展,可以确定弹性特性和超声波速度之间的关系,并通过优化程序确定 12 个弹性常数。通过对花旗松立方体的实验验证,可以得到三个弹性模量((\left( {E_{\text{L}} ,E_{\text{R}} ,E_{\text{T}} } \right)\)、三个剪切模量((\left( {G_{\text{LR}} ,G_{\text{LT}} ,G_{\text{RT}} } )和六个泊松比((\left( {\nu_{\text{LR}} ,G_{\text{LT}} ,G_{\text{RT}} } )。,\nu_{\{text{LT}},\nu_{text{RT}},\nu_{text{RL}},\nu_{text{TL}}, ( n u_ { \\{TR}}}\right)\)。纵向模量(left( {E_{\text{L}} } \right)\ )是径向模量(left( {E_{\text{R}} } \right)\ )的八倍多,是切向模量(left( {E_{\text{T}} \right)\ )的两倍半多。)对于剪切模量,我们得到了 \(\left( {G_{\text{LR}} > G_{\text{LT}} > G_{\text{RT}} } \right)\).泊松比符合能量变形正向性和刚度矩阵反演的要求。得到的弹性常数值与文献中的值一致。
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来源期刊
Wood Science and Technology
Wood Science and Technology 工程技术-材料科学:纸与木材
CiteScore
5.90
自引率
5.90%
发文量
75
审稿时长
3 months
期刊介绍: Wood Science and Technology publishes original scientific research results and review papers covering the entire field of wood material science, wood components and wood based products. Subjects are wood biology and wood quality, wood physics and physical technologies, wood chemistry and chemical technologies. Latest advances in areas such as cell wall and wood formation; structural and chemical composition of wood and wood composites and their property relations; physical, mechanical and chemical characterization and relevant methodological developments, and microbiological degradation of wood and wood based products are reported. Topics related to wood technology include machining, gluing, and finishing, composite technology, wood modification, wood mechanics, creep and rheology, and the conversion of wood into pulp and biorefinery products.
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