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Mixed numerical-experimental identification of elastic properties of orthotropic metal plates

机译:正交异性金属板弹性特性的混合数值实验识别

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This paper compares results of three different methods to determine the in-plane elastic properties of sheet materials. Results obtained with standard resonant beam and tensile tests are used to assess a mixed numerical-experimental technique developed to determine the in-plane elastic properties of orthotropic plates from the resonance frequencies of rectangular plate samples (the so-called 'Resonalyser' technique). Test materials were selected on the basis of an expected low degree of elastic anisotropy in order to put the accuracy and sensitivity of the different techniques to assess anisotropic materials to a test. Therefore, aluminium alloy and stainless steel samples were prepared from hot-rolled plates, deliberately avoiding pronounced cold-rolling textures. The differences between the results obtained with the three experimental approaches are critically evaluated. In the case of very thin plates, the existing mixed numerical-experimental Resonalyser procedure succeeded in accurately identifying the elastic material properties. A slightly adapted procedure is proposed to extend the applicability of the Resonalyser procedure to thicker plates.
机译:本文比较了三种确定板材的面内弹性特性的方法的结果。通过标准共振梁和拉伸试验获得的结果用于评估混合数值实验技术,该技术是根据矩形板样品的共振频率确定正交各向异性板的面内弹性特性的方法(所谓的“ Resonalyser”技术)。基于预期的低弹性各向异性程度来选择测试材料,以便将评估各向异性材料的不同技术的准确性和敏感性用于测试。因此,从热轧板制备铝合金和不锈钢样品,刻意避免明显的冷轧织构。严格评估了三种实验方法获得的结果之间的差异。在极薄板的情况下,现有的混合数值实验Resonalyser程序成功地准确识别了弹性材料的特性。提出了一种稍微适应的程序,以将Resonalyser程序的适用性扩展到较厚的板。

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