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Three-dimensional velocity measurement of a periodically ribbed aircraft panel surface by optical vibrometry

机译:用光学振动法测量周期性肋肋飞机面板表面的三维速度

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Abstract: Experimental data were collected in this study and used to identify structural characteristics and features that ultimately effect sound radiation on an aircraft fuselage panel.A periodically reinforced flat plate was excited by an electromagnetic shaker and the 3D velocity vector response was measured at an array of points on the surface using a 3D laser vibrometer mounted on a scanning robot. These velocity measurements, along with force cell data, were used to produce force normalized modal mosaics and dispersion curves of both the out-of-plane and in-plane data. Results show low frequency global deformation of the structure occurs when the structural wavelengths are longer than the spacing between the reinforcing members. Local modes become evident when wavelengths are comparable to the spacing of the reinforces. We also observe evidence of in-plane resonances and Bloch wave effects. !11
机译:摘要:本研究收集了实验数据,用于识别最终影响飞机机身板上声音辐射的结构特征和特征。电磁振动器激发周期性增强的平板,并在阵列上测量3D速度矢量响应使用安装在扫描机器人上的3D激光振动计测量表面上的点。这些速度测量值与力单元数据一起用于生成力归一化模态镶嵌和面外和面内数据的色散曲线。结果表明,当结构波长长于增强构件之间的间距时,会发生结构的低频整体变形。当波长与增强物的间隔相当时,局部模式变得明显。我们还观察到了平面内共振和布洛赫波效应的证据。 !11

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