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Dynamic Behaviour of the Laminated Sandwich Plate with a Stepwise Graded Viscoelastic Core

机译:逐步渐变粘弹性芯的层压夹层板的动态行为

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In this paper, the blast induced vibrations of sandwich plates with stepwise graded core are studied experimentally and numerically. The main objective is to enhance the damping characteristics of sandwich structures. For this purpose, a laminated sandwich plate is manufactured with the wet hand layup technique. The plate has four layers of bidirectional glass epoxy face sheets and a viscoelastic core from three different material layers. Air blast is obtained by compressing the air in a tube and then suddenly expanding the compressed air by rupturing of a membrane in front of the tube. The pressure pulse is impinged on the sandwich panel. Miniature pressure transducers and strain gauges are used to measure blast load and strain, respectively. In the numerical side of the study, an ANSYS finite element model is generated using the laminated shell element with sandwich option. A pressure function is approximated analyzing the experimental pressure data in the time domain and space domain. The strain-time history results obtained from the experimental study and numerical analysis are compared and a good agreement between the results is found.
机译:在本文中,通过实验和数值进行逐步分级芯的夹层板的喷砂诱导振动。主要目的是提高夹层结构的阻尼特性。为此目的,用湿式手持式技术制造层压夹层板。该板具有四层双向玻璃环氧树脂面板和来自三个不同材料层的粘弹性芯。通过压缩管中的空气来获得空气爆炸,然后通过破裂管前面的膜突然膨胀压缩空气。压力脉冲在夹层面板上撞击。微型压力传感器和应变仪分别用于测量爆炸载荷和菌株。在该研究的数值方面,使用带有夹层选项的层叠壳元件产生ANSYS有限元模型。近似压力函数分析时域和空间域中的实验压力数据。比较了从实验研究和数值分析中获得的应变时间历史结果,并发现结果之间的良好一致性。

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