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Optimized Test Design for Identification of the Variation of Elastic Stiffness Properties of Loblolly Pine (Pinus taeda) Pith to Bark

机译:优化的测试设计,用于识别储质松树(柱Taeda)Pith的弹性刚度特性变异

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This article presents the design optimization of an un-notched Iosipescu test specimen whose goal is the characterization of the material elastic stiffnesses of a Loblolly (Pinus taeda) or Lodgepole pine (Pinus contorta) sample in one single test. A series of finite element (FE) and grid simulations were conducted to determine displacement and strain fields for various ring angles, ring spaces, and proportions of latewood per ring. These displacement and strain fields were utilized to determine the constitutive parameters for the woody material using VFM. Using an error function based on a comparison of the input stiffnesses and those identified by grid simulation information it was possible to narrow the optimum ring angle at which test specimens should be tested. The results of this work suggest that the starting angles for the unnotched Iosipescu test specimens should be approximately 45° to produce the smallest identification error.
机译:本文介绍了未缺乏缺口IOSIPESCU试样的设计优化,其目标是在一个单一测试中表征Loblolly(Pinus Taeda)或Lodgepole Pine(Pinus Contorta)样品的材料弹性刚度。进行了一系列有限元(FE)和电网模拟,以确定各种环形角度,环形空间和每个环的胶水比例的位移和应变场。这些位移和应变场用于使用VFM确定木质材料的组成型参数。使用基于输入刚度的比较使用误差功能和通过网格仿真信息识别的那些,可以缩小应对测试样品进行测试的最佳环角。本作作品的结果表明,不排出的IOSIPESCU试样的起始角度应约为45°,以产生最小的识别误差。

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