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Simulation of transverse wood compression using a large-deformation, hyperelastic-plastic material model

机译:使用大变形超弹塑性材料模型模拟木材横向压​​缩

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摘要

Transverse compression of wood is a process that induces large deformations. The process is dominated by elastic and plastic cell wall buckling. This work reports a numerical study of the transverse compression and densification of wood using a large-deformation, elastic-plastic constitutive law. The model is isotropic, formulated within the framework of hyperelasticity, and implemented in explicit material point method (MPM) software. The model was first validated for modeling of cellular materials by compression of an isotropic cellular model specimen. Next, it was used to model compression of wood by first validating use of isotropic, transverse plane properties for tangential compression of hardwood, and then by investigating both tangential and radial compression of softwood. Importantly, the discretization of wood specimens used MPM methods to reproduce accurately the complex morphology of wood anatomy for different species. The simulations have reproduced observations of stress-strain response during wood compression including details of inhomogeneous deformation caused by variations in wood anatomy.
机译:木材的横向压缩是引起大变形的过程。该过程主要由弹性和塑性孔壁屈曲控制。这项工作报告了使用大变形,弹塑性本构关系对木材进行横向压缩和致密化的数值研究。该模型是各向同性的,在超弹性框架内制定,并在显式材料点方法(MPM)软件中实现。该模型首先通过压缩各向同性细胞模型标本进行了细胞材料建模的验证。接下来,通过首先验证各向同性,横向平面特性对硬木的切向压缩的使用,然后对软木的切向和径向压缩进行研究,将其用于模拟木材的压缩。重要的是,木材标本的离散化使用MPM方法来准确地再现不同物种的木材解剖结构的复杂形态。该模拟再现了木材压缩过程中应力-应变响应的观察结果,包括由木材解剖结构变化引起的不均匀变形的细节。

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  • 来源
    《Wood Science and Technology》 |2015年第1期|21-39|共19页
  • 作者单位

    University of French West Indies and Guiana - Ecofog, 97306 Cayenne, France;

    Wood Science and Engineering Department, Oregon State University, Corvallis, OR 97330, USA;

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  • 正文语种 eng
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