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Broadband Identification of Material Properties of an Orthotropic Composite Plate Using the Force Analysis Technique

机译:使用力分析技术宽带识别正交复合板材料的材料特性

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摘要

This work presents an original broadband method able to determine the homogenized mechanical properties of orthotropic composite plates in their main directions. This method is based on a vibratory inverse method and do not need using Eigen mode. This technique is derived from the Force Analysis Technique (FAT), originally designed to identify vibration sources on bars and plates. The main advantage of this method is that it does not require any specific preparation and can be carried out on a real and complex structure. Moreover it is non-destructive and non-invasive method and only requires the excitation by a classical electromagnetic shaker. The main characteristic mechanical parameters (Young's moduli and damping loss factors) are identified at all measured frequencies and not only at the Eigen frequencies as compared to others measurement techniques. An experimental validation shows a good correlation with the expected values for the Young's moduli of the test plate. Working on a complex structure shows that the method is applicable for various configurations of operating conditions and leads to a good determination of the mechanical properties of a planar component.
机译:该工作提出了一种能够在其主要方向上确定正交复合板的均质机械性能的原始宽带方法。该方法基于振动逆方法,不需要使用EIGEN模式。该技术源自旨在识别在条形和板上的振动源的力分析技术(脂肪)。该方法的主要优点是它不需要任何特定的准备并且可以在真实和复杂的结构上进行。此外,它是非破坏性和非侵入性的方法,只需要经典电磁振动器的激发。在所有测量的频率下鉴定主要特征机械参数(杨氏模数和阻尼损耗因子),而不仅与其他测量技术相比的频率。实验验证表现出与测试板的杨氏模态的预期值良好的相关性。在复杂的结构上工作表明,该方法适用于各种操作条件的配置,并导致平面分量的机械性能的良好确定。

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