首页> 外文期刊>Journal of teoretical and applied mechanics >DETERMINATION OF RHEOLOGICAL MODEL COEFFICIENTS OF PIPELINE COMPOSITE MATERIAL LAYERS BASED ON SPECTRUM ANALYSIS AND OPTIMIZATION
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DETERMINATION OF RHEOLOGICAL MODEL COEFFICIENTS OF PIPELINE COMPOSITE MATERIAL LAYERS BASED ON SPECTRUM ANALYSIS AND OPTIMIZATION

机译:基于频谱分析和优化的管道复合材料层流变模型系数的测定

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摘要

The article presents theoretical and experimental investigation on properties of a composite material based on rubber. The approach presented in this research is an experimental measurement based on spectrum analysis combined with theoretical investigation held to describe a viscous-elastic behaviour of the material. The proposed mathematical model is represented by five theological parameters of hybrid Maxwell and Kelvin-Voigt elements and includes an optimization task for determination of the stiffness and damping coefficients. In the proposed rheological model, not only the displacements are unknown but also forces described by second-order differential equations. Validation between the experimental measurement and theoretical investigation is made based on spectrum analysis.
机译:本文介绍了基于橡胶的复合材料性能的理论和实验研究。 本研究中介绍的方法是基于频谱分析的实验测量,与理论上持有,以描述材料的粘性弹性行为。 所提出的数学模型由Hybrid Maxwell和Kelvin-Voigt元件的五个神学参数表示,并且包括用于确定刚度和阻尼系数的优化任务。 在所提出的流变模型中,不仅使得位移未知而且由二阶微分方程描述的力。 基于频谱分析,对实验测量和理论研究之间的验证进行了验证。

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