首页> 外文学位 >Enhancement of the dynamic buckling load and analysis of active constrained layer damping with extension and shear mode piezoceramic actuators.
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Enhancement of the dynamic buckling load and analysis of active constrained layer damping with extension and shear mode piezoceramic actuators.

机译:利用扩展和剪切模式压电陶瓷执行器增强动态屈曲载荷并分析主动约束层阻尼。

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摘要

We consider geometric and material nonlinearities when studying numerically, by the finite element method, transient three-dimensional electroelastic deformations of a graphite-epoxy square plate sandwiched between two piezoceramic (PZT) layers. Points on the four edges of the bottom surface of the plate are restrained from moving vertically. The two opposite edges of the plate are loaded by equal in-plane compressive loads that increase linearly with time and the other two edges are kept traction free. The plate material is modeled as orthotropic and neoHookean. For the transversely isotropic PZT the second Piola-Kirchhoff stress tensor and the electric displacement are expressed as second degree polynomials in the Green-St. Venant strain tensor and the electric field. Both direct and converse piezoelectric effects are accounted for in the PZT. The plate is taken to have buckled when its centroidal deflection equals three times the plate thickness.; The dynamic buckling load for the plate is found to strongly depend upon the rate of rise of the applied tractions. An increase in the plate thickness relative to that of the PZT actuators decreases the effectiveness of the PZT in enhancing the buckling load for the plate.; The finite element code was modified to also analyze, in time domain, transient deformations of a viscoelastic material for which the second Piola-Kirchhoff stress tensor is expressed as a linear functional of the strain history of the Green-St. Venant strain tensor. It was used to analyze three-dimensional deformations of a thick laminated plate with layers made of aluminum, a viscoelastic material and a PZT. The following two arrangements of layers are considered. In one case a central PZT layer is surrounded on both sides by viscoelastic layers and aluminum layers are on the outside surfaces. The PZT is poled in the longitudinal direction and an electric field is applied in the thickness direction. Thus shearing deformations of the PZT layer are dominant. In the second arrangement, the aluminum layer is in the middle and the PZT layers are on the outside. The poling direction and the electric field are in the thickness direction; thus its extensional deformations are predominant.; Buckling behavior of a sandwich plate containing a soft core is also studied. The effects of the ratio of the elastic moduli of the outer layers to those of the core, and of the core thickness on the buckling load are analyzed. (Abstract shortened by UMI.)
机译:当通过有限元方法对夹在两个压电陶瓷(PZT)层之间的石墨-环氧方板的瞬态三维电弹性变形进行数值研究时,我们会考虑几何和材料非线性。限制了板底表面四个边缘上的点垂直移动。板的两个相对边缘受到相等的平面内压缩负载加载,该压缩负载随时间线性增加,而其他两个边缘则保持无牵引力。板材的材质为正交各向异性和新胡克式。对于横向各向同性的PZT,第二个Piola-Kirchhoff应力张量和电位移在Green-St中表示为二阶多项式。 Venant应变张量和电场。在PZT中考虑了直接和逆向压电效应。当板的质心挠度等于板厚度的三倍时,认为板已弯曲。发现板的动态屈曲载荷很大程度上取决于所施加牵引力的上升速率。相对于PZT致动器的板厚度的增加降低了PZT在增强板的屈曲载荷方面的有效性。修改了有限元代码,以在时域中分析粘弹性材料的瞬态变形,对于该变形,第二个Piola-Kirchhoff应力张量表示为Green-St应变历史的线性函数。 Venant应变张量。它用于分析具有铝,粘弹性材料和PZT制成的层的厚层压板的三维变形。考虑以下两个层的布置。在一种情况下,中央PZT层在两侧被粘弹性层包围,而铝层在外表面上。 PZT在纵向方向上极化,并且在厚度方向上施加电场。因此,PZT层的剪切变形占主导。在第二种配置中,铝层在中间,PZT层在外面。极化方向和电场在厚度方向上;因此,它的拉伸变形是主要的。还研究了包含软芯的夹心板的屈曲行为。分析了外层的弹性模量与芯的弹性模量之比以及芯的厚度对屈曲载荷的影响。 (摘要由UMI缩短。)

著录项

  • 作者

    Geng, Twzen-Shang.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 p.2025
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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