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Caracterisation mecanique dynamique de materiaux poro-visco-elastiques.

机译:多孔黏弹性材料的动态力学表征。

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摘要

Poro-viscoelastic materials are well modelled with Biot-Allard equations. This model needs a number of geometrical parameters in order to describe the macroscopic geometry of the material and elastic parameters in order to describe the elastic properties of the material skeleton. Several characterisation methods of viscoelastic parameters of porous materials are studied in this thesis. Firstly, quasistatic and resonant characterization methods are described and analyzed. Secondly, a new inverse dynamic characterization of the same modulus is developed. The latter involves a two layers metal-porous beam, which is excited at the center. The input mobility is measured. The set-up is simplified compared to previous methods. The parameters are obtained via an inversion procedure based on the minimisation of the cost function comparing the measured and calculated frequency response functions (FRF). The calculation is done with a general laminate model. A parametric study identifies the optimal beam dimensions for maximum sensitivity of the inversion model. The advantage of using a code which is not taking into account fluid-structure interactions is the low computation time. For most materials, the effect of this interaction on the elastic properties is negligible. Several materials are tested to demonstrate the performance of the method compared to the classical quasi-static approaches, and set its limitations and range of validity. Finally, conclusions about their utilisation are given.;Keywords. Elastic parameters, porous materials, anisotropy, vibration.
机译:用Biot-Allard方程很好地模拟了多孔粘弹性材料。该模型需要许多几何参数,以描述材料的宏观几何形状,并需要弹性参数,以描述材料骨架的弹性特性。本文研究了多孔材料粘弹性参数的几种表征方法。首先,描述并分析了准静态和共振表征方法。其次,开发了具有相同模量的新的逆动态表征。后者包括两层金属多孔束,在中心被激发。测量输入迁移率。与以前的方法相比,简化了设置。通过基于成本函数的最小化的反演程序来获得参数,该成本函数将测量和计算的频率响应函数(FRF)进行比较。该计算是通过常规层压板模型完成的。参数研究确定了反演模型最大灵敏度的最佳光束尺寸。使用不考虑流体-结构相互作用的代码的优点是计算时间短。对于大多数材料,这种相互作用对弹性的影响可以忽略不计。测试了几种材料,以证明与传统的准静态方法相比该方法的性能,并设定了其局限性和有效性范围。最后,给出了有关其利用的结论。弹性参数,多孔材料,各向异性,振动。

著录项

  • 作者

    Renault, Amelie.;

  • 作者单位

    Universite de Sherbrooke (Canada).;

  • 授予单位 Universite de Sherbrooke (Canada).;
  • 学科 Engineering Mechanical.;Physics Acoustics.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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