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Homogeneous shear stress field of wood in an Arcan shear test configuration measured by means of electronic speckle pattern interferometry: description of the test setup

机译:通过电子散斑图干涉法在Arcan剪切测试配置下木材的均相剪切应力场:测试设置的描述

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摘要

Several studies have dealt with the problem of how to measure the shear modulus of small clear wood specimens, avoiding bias from normal compression, bending, tension or torsional stresses. Unbiased results can be used to estimate realistic shear modulus values relevant for timber construction. However, a stress field that contains only uniformly distributed shear stress cannot be achieved. The Arcan shear test is one of the test setups that allows the measurement of more or less homogeneous shear stress and, therefore, shear deformation in a small volume of the specimen at macroscopic material level. The shear deformation of Arcan shear test samples was measured between the two notches by means of electronic speckle pattern interferometry (ESPI). Shear tests were performed in a tension mode, which provided a homogeneous strain field in the reduced midsection. Twisting forces and inhomogeneous shear deformation of the sample volume were assumed, which resulted in different shear deformation on the front and back sides of the sample. In this way, both surfaces of the samples were measured in parallel. Using the mean value of both deformation fields allowed a significant reduction in the coefficient of variation of shear modulus measurements to be achieved in comparison with values gained from a single ESPI measurement.
机译:一些研究已经解决了如何测量小的透明木试样的剪切模量的问题,避免了正常压缩,弯曲,拉力或扭转应力产生的偏差。无偏结果可用于估计与木材建筑相关的实际剪切模量值。但是,不能获得仅包含均匀分布的切应力的应力场。 Arcan剪切测试是一种测试设置,可以测量或多或少的均匀剪切应力,因此可以在宏观材料水平上测量少量试样的剪切变形。通过电子散斑图干涉法(ESPI)测量两个缺口之间的Arcan剪切测试样品的剪切变形。在拉伸模式下进行剪切测试,这在减小的中间部分提供了均匀的应变场。假定了样品体积的扭力和不均匀的剪切变形,这导致了样品的正面和背面的剪切变形不同。以此方式,平行测量样品的两个表面。与从单个ESPI测量获得的值相比,使用两个变形场的平均值可以显着降低剪切模量测量的变化系数。

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  • 来源
    《Wood Science and Technology》 |2015年第6期|1123-1136|共14页
  • 作者单位

    BOKU Univ Nat Resources & Appl Life Sci, Inst Wood Sci & Technol, A-3430 Vienna, Austria;

    Graz Univ Technol, Inst Timber Engn & Wood Technol, A-8010 Graz, Austria;

    Graz Univ Technol, Inst Timber Engn & Wood Technol, A-8010 Graz, Austria;

    Graz Univ Technol, Inst Timber Engn & Wood Technol, A-8010 Graz, Austria;

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