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Use of thickness-shear mode in constructing adaptive sandwich structures

机译:在构建自适应夹层结构时使用厚度剪切模式

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A new adaptive sandwich structure is constructed using the shear mode of piezoelectric materials. A comparative study of the sandwich structure and the corresponding surface- mounted actuation structure is performed using finite element analysis. The effects of actuator length and location on actuation performance of the structures are studied. The stress distributions under mechanical and electrical loads are investigated for both the sandwich beam and the surface-mounted activation beam. It is shown that the stress level within the actuators is more severe for the surface-mounted actuation beam than for the sandwich. Also, the interface-stress distribution between actuator and host structure is analyzed. It is shown that sandwich construction offers many advantages over conventional surface-mounted actuation constructions.
机译:使用压电材料的剪切方式构造新的自适应夹层结构。使用有限元分析进行夹层结构和相应的表面上安装致动结构的比较研究。研究了致动器长度和位置对结构的致动性能的影响。针对夹层光束和表面安装的激活光束研究了机械和电负载下的应力分布。结果表明,致动器内的应力水平对于表面安装的致动梁比夹层更严重。而且,分析了致动器和宿主结构之间的界面应力分布。结果表明,夹心结构提供了传统的表面安装致动结构的许多优点。

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