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Experimental and Numerical Investigation of Effects of Fiber Orientation of Wood Stiffness

机译:木质刚度纤维取向影响的实验与数值研究

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Wood is one of the most useful and important natural materials with diverse applications in civil, architectural and constructional engineering. The stiffness of the wood depends on the fiber orientation, distribution of knot and percentage of latewood, etc. Japanese cedar (Cryptomeria japonica) was used to prepare the tensile test specimen in this paper to investigate the effects of fiber orientation on wood stiffness. Before performing the tensile test, surface image of the test specimen was captured and the image was analyzed by least squares method and digital image processing software of MATLAB to obtain the fiber orientation. Based on the obtained fiber orientation, finite element method (FEM) software package ANSYS was employed to calculate the strain distribution of the test specimen. Three-dimensional digital image correlation (3D-DIC) method was also used to verify the FEM results. The DIC software, VIC-3D, was used to analyze the surface deformation of the test specimen under tension. Strain distribution differences between the earlywood and latewood were investigated. With the integration of the digital image analysis technique, FEM and 3D-DIC method, the effective stiffness of the wood can be predicted and the reliability and safety of wood construction can be ensured.
机译:木材是民用,建筑和建筑工程中具有多种应用的最有用和最重要的天然材料之一。木材的刚度取决于纤维取向,结胶水的分布和胶水百分比等。日本雪松(Cryptomeria japonica)用于制备抗拉试样中的纤维取向对木刚度的影响。在执行拉伸试验之前,捕获测试样品的表面图像,并通过MATLAB的最小二乘法和数字图像处理软件分析图像以获得纤维方向。基于所获得的纤维取向,采用有限元方法(FEM)软件包ANSYS来计算试样的应变分布。三维数字图像相关(3D-DIC)方法还用于验证有限元素结果。 DIC软件VIC-3D用于分析张力下试样的表面变形。调查了早期和乳胶之间的应变分布差异。随着数字图像分析技术的集成,有限元和3D-DIC方法,可以预测木材的有效刚度,并且可以确保木结构的可靠性和安全性。

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