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首页> 外文期刊>Journal of intelligent material systems and structures >Evaluating actuator distributions in simply supported truncated thin conical shell with embedded piezoelectric layers
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Evaluating actuator distributions in simply supported truncated thin conical shell with embedded piezoelectric layers

机译:评估带有嵌入式压电层的简单支撑的截顶圆锥形薄壳中的执行器分布

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摘要

In this investigation, distributed modal actuator forces of simply supported truncated conical shell embedded by a piezoelectric layer are studied. Piezoelectric layer is distributed on the conical shell surface as actuators. Three types of distributions are considered: longitudinal, circumferential, and diagonal distributions. First, electromechanical equations of the conical shell with embedded piezoelectric actuator layer are extracted. Then modal expansion method is used to define independent modal characteristics of the conical shell. For each kind of distribution, three case studies are considered and evaluated. Results showed that in the longitudinal and diagonal distributed actuator, membrane force in the longitudinal direction is the dominant force and in the circumferential distributed actuator, the membrane force in the circumferential direction is the dominant force. The effects of cone angle, piezoelectric thickness, and piezoelectric layer segmentation on modal forces of each distributed actuator are also studied. In circumferential distributed actuator, modal forces increase as the cone angle increases. This phenomenon in the longitudinal and diagonal distributed actuator is almost reversed. The piezoelectric layer segmentation effect on the modal forces distribution is also evaluated, and it showed that this phenomenon has a critical effect on the modal forces distribution.
机译:在这项研究中,研究了由压电层嵌入的简支圆锥台壳的分布模态致动器力。压电层作为致动器分布在圆锥形外壳表面上。考虑了三种类型的分布:纵向,周向和对角线分布。首先,提取具有嵌入式压电致动器层的圆锥壳的机电方程。然后使用模态展开法定义圆锥壳的独立模态特征。对于每种分布,都要考虑和评估三个案例研究。结果表明,在纵向和对角线分布的致动器中,纵向的膜片力是主导力,而在周向分布的致动器中,在圆周方向的膜片力是主导力。还研究了锥角,压电厚度和压电层分段对每个分布式致动器的模态力的影响。在圆周分布的致动器中,模态力随着锥角的增加而增加。纵向和对角分布执行器中的这种现象几乎可以逆转。还评估了压电层分段对模态力分布的影响,表明该现象对模态力分布具有关键影响。

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