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Inverse method based on modal analysis for characterizing the constitutive properties of thick composite plates

机译:基于模态分析的逆方法表征厚复合板的本构特性

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This paper presents a powerful method for evaluating the constitutive properties of composite laminates through a mixed numerical-experimental identification procedure based on both the extracted mode shapes and the corresponding natural frequencies of the structure. The modal quantities are measured with a precise contact-free experimental technique and extracted numerically with an accurate shell element derived from the higher order shear deformation theory. The elastic properties are estimated with a nonlinear least squares algorithm applied to modal identification criteria. With this novel approach of combining frequency and mode based error norms, the proposed identification method allows an accurate identification of both in-plane and transverse elastic properties with a single nondestructive test. The effectiveness of the procedure is highlighted by test cases on moderately thick to thick plates.
机译:本文提出了一种强大的方法,通过基于提取的模态形状和结构的相应固有频率的混合数值实验识别程序,评估复合材料层合板的本构特性。使用精确的无接触实验技术测量模态量,并使用从高阶剪切变形理论推导的精确壳单元进行数值提取。弹性特性通过应用于模态识别标准的非线性最小二乘算法估计。利用这种结合基于频率和模式的误差准则的新颖方法,所提出的识别方法可以通过一次无损检测来精确识别平面内和横向弹性特性。在中等厚度至较厚的板上的测试用例突出了该过程的有效性。

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