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Investigation of vibrational characteristics of composite beams with fluid-structure interaction

机译:流固耦合的复合梁振动特性研究

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摘要

The study examined the effect of fluid-structure interaction on global dynamic properties such as vibrational frequency, mode shape, modal curvature, as well as free vibrational responses along E-glass composite, carbon composite, and aluminum beams, respectively. The digital image correlation technique was used to measure the free vibrational responses along the beams in air and water, respectively. The vibration submerged in water exhibited higher frequency modes than the dry vibration under the same excitation. Experimental modal analysis showed that the mode shapes were very close for an aluminum beam with and without the FSI effect while there was a modest difference for a carbon composite beam because the FSI effect is greater for the composite beam. Modal curvatures for the both beams are more influenced by FSI, especially for the composite beam. The curvature is directly related to the bending strain of the beam. This explains why the difference in strains measured for composite structures in air and water, respectively, varies significantly from location to location of the structures under impact loading. One location has much greater difference in strains than another location. The FSI can change potential failure locations of the composite structures because of the change in modal curvatures.
机译:这项研究考察了流体-结构相互作用对整体动态特性的影响,这些特性包括振动频率,振型,模态曲率以及分别沿E-玻璃复合材料,碳复合材料和铝梁的自由振动响应。数字图像相关技术用于分别测量空气和水中沿光束的自由振动响应。在相同的激励下,浸入水中的振动显示出比干振动更高的频率模式。实验模态分析表明,有和没有FSI效应的铝梁的模态形状非常接近,而碳复合材料梁的FSI效应更大,因此碳复合材料梁的模态差异很小。 FSI对两个梁的模态曲率都有较大的影响,特别是对于复合梁。曲率与梁的弯曲应变直接相关。这就解释了为什么在空气和水中分别为复合结构而测得的应变差异在冲击载荷下会因结构的不同位置而显着变化。一个位置比另一个位置具有更大的应变差异。由于模态曲率的变化,FSI可以改变复合结构的潜在失效位置。

著录项

  • 来源
    《Composite Structures》 |2013年第11期|269-278|共10页
  • 作者单位

    Dept. of Mechanical and Aerospace Engineering, Naval Postgraduate School, Monterey, CA 93943, United States;

    Dept. of Mechanical and Aerospace Engineering, Naval Postgraduate School, Monterey, CA 93943, United States;

    Dept. of Mechanical and Aerospace Engineering, Naval Postgraduate School, Monterey, CA 93943, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fluid-structure interaction; Modal analysis; Vibration; Modal curvature;

    机译:流固耦合模态分析振动;模态曲率;

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