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On the equivalent flexural rigidity of sandwich composite panels

机译:夹层复合板的等效弯曲刚度

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The very graphic name of 'sandwich composites' adequately describes them as structures with a relatively thick core made of lightweight or low density material separating two thin stiff and strong skins. Such choice of geometry and combination of materials yields a product with reasonable strength and bending stiffness in combination with lightness. This paper presents work in predicting the bending stiffness of a sandwich composite through its equivalent flexural rigidity by modelling the material in the geometry of a cantilever beam. The results are verified experimentally by obtaining, through the laser based optical NDE technique known as Electronic Speckle Pattern Interferometry (ESPI), the displacement curve of the cantilever beam subjected to a point load at its free end. A second experimental technique carried out involved monitoring the dynamic response of a cantilever beam in its first mode of natural vibration. The beam equipped with polyvinyldiene fluoride (PVDF) sensors yielded results which are compared to the values for the flexural stiffness obtained by the prediction and the experimental setup using ESPI.
机译:的“夹层复合材料”的非常图形名称充分描述它们作为结构与由分离的两个薄僵硬和强皮轻质或低密度材料的相对厚的核心。的几何形状和材料的组合的这样的选择产生具有合理强度和与亮度组合抗弯刚度的产物。本文呈现在由悬臂梁的几何形状的材料建模预测通过其等效抗弯刚度的夹层复合材料的弯曲刚度工作。结果通过获得实验验证,通过基于激光的光学NDE技术称为电子散斑干涉(ESPI),在其自由端进行的点负荷的悬臂梁的位移曲线。第二实验技术进行监控涉及悬臂梁的固有振动的其第一模式的动态响应。配备有氟化物polyvinyldiene光束(PVDF)传感器产生,其进行比较,以用于由所述预测和使用ESPI实验装置得到的弯曲刚度值的结果。

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