首页> 外文会议>Conference on engineering systems design and analysis;Biennial conference on engineering systems design and analysis;ESDA 2008 >DETERMINATION OF FULL SET ELASTIC CONSTANTS FOR COMPOSITE MATERIALS ON BASIS OF FREQUENCY RESPONSE ANALYSIS, FEA, AND GA
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DETERMINATION OF FULL SET ELASTIC CONSTANTS FOR COMPOSITE MATERIALS ON BASIS OF FREQUENCY RESPONSE ANALYSIS, FEA, AND GA

机译:基于频率响应分析,FEA和GA的复合材料全弹性常数的确定

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The number of engineering problems includes the identification of anisotropic composite elastic constants determination. We developed an experimentally - analytical technique for identification of all elastic constants of orthotropic materials. The offered technique is substantially based on measurement of eigenfrequencies and semi quantitative analysis of natural vibration modes, instead of wave propagation speed and fields of vibrational displacement used by other acoustic methods. The developed method of the elastic composite and piezoelectric materials properties identification is implemented in linked MATLAB - Comsol Multiphysics combining the finite element analysis (FEA) of oscillations dynamics and minimization of some functional, which type is determined by particularity of a solved problem. These techniques complement the early designed by authors' FEM-based methods for orthotropic composite static tests. The offered dynamic tests include an evaluation of specimen's frequency response, determination of natural frequencies and vibration modes of specimens both in natural experiments and numerical finite element simulations.The identification process consists of several stages. In series of static tests are determined all allowable modules. Further a complete matrix of elastic constant is constructed, but some modules specified by approximated values (in particular, interlaminar shear modules). A series of dynamic tests executed in which the periodical excitation of samples and the frequency response is recorded by means of piezoelectric actuators and sensors. Then on basis of early defined (in static tests and withuse of mix rule) modules of composite and experimentally founded eigenfrequencies by means of FEM the vibration natural modes are identified. By combination of FEM, genetic algorithm (GA) and Levenberg-Marquardt minimization method the specification of composite mechanical properties is evaluated. Application of developed technique to orthotropic composite used in aviation structures (polymeric composite spar of the helicopter main rotor blade) is explicitly illustrated. The obtained results have shown a good efficiency of proposed identification methods. We demonstrate that proposed approach provides best reliability and shows small dependence on metering equipment precision.
机译:工程方面的问题包括确定各向异性复合材料弹性常数的确定方法。我们开发了一种实验分析技术来识别正交异性材料的所有弹性常数。所提供的技术基本上基于本征频率的测量和自然振动模式的半定量分析,而不是其他声学方法所使用的波传播速度和振动位移场。在链接的MATLAB-Comsol Multiphysics中,结合振动动力学的有限元分析(FEA)和某些功能的最小化,实现了弹性复合材料和压电材料特性识别的开发方法,该类型由所解决问题的特殊性决定。这些技术补充了作者基于FEM的正交异性复合材料静态测试的早期设计。提供的动态测试包括评估样本的频率响应,确定自然频率和样本在自然实验和数值有限元模拟中的振动模式。 识别过程包括几个阶段。在一系列的静态测试中,确定了所有允许的模块。进一步构造了完整的弹性常数矩阵,但是某些模块由近似值指定(特别是层间剪切模块)。执行一系列动态测试,其中通过压电致动器和传感器记录样品的周期性激励和频率响应。然后根据早期定义(在静态测试中以及 通过有限元法确定复合材料和通过实验确定的本征频率的模块,确定振动固有模态。通过有限元,遗传算法(GA)和Levenberg-Marquardt最小化方法的组合,对复合材料力学性能的规格进行了评估。明确说明了开发的技术在航空结构中使用的正交各向异性复合材料(直升机主旋翼叶片的聚合物复合材料翼梁)中的应用。获得的结果表明了所提出的识别方法的良好效率。我们证明了所提出的方法可提供最佳的可靠性,并显示出对计量设备精度的小依赖性。

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