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首页> 外文期刊>Journal of intelligent material systems and structures >Isogeometric analysis of laminated smart shell structures covered with piezoelectric sensors and actuators using degenerated shell formulation
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Isogeometric analysis of laminated smart shell structures covered with piezoelectric sensors and actuators using degenerated shell formulation

机译:用退化壳配方用压电传感器和致动器覆盖层叠智能壳结构的ISogeometric分析

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摘要

An isogeometric approach to the analysis of laminated composite smart shell structures based on the degenerated formulation and Mindlin-Reissner assumptions using non-uniform rational B-spline basis functions is the subject of this article. To model the laminated orthotropic smart free-form shells, the equivalent single layer theory is adopted, and an accurate approach to construct the local basis systems is used. To consider the electric potential in the piezoelectric layers, a sub-layer approach is employed that assumes linear variation over the thickness of the sub-layer. To investigate the performance of the approach, static, free vibration, and static control analysis of laminated composite shells covered with piezoelectric sensor and actuator layers with different degrees of basis functions is performed. Also, the effect of mechanical loading, various input voltages, and different boundary conditions on the static response and natural frequencies have been investigated. Several numerical examples are presented to demonstrate the efficiency and accuracy of the approach and validated with the existing results from the literature.
机译:基于退化的配方和思维 - Reissner假设的层压复合智能壳结构的异步方法是使用非均匀RATIONAT B样条基函数的思维方式的基础是本文的主题。为了模拟层压的原位智能自由形状壳,采用了等效的单层理论,并使用了一种准确的构造方法。为了考虑压电层中的电势,采用子层方法,其假设在子层的厚度上线性变化。为了研究具有用压电传感器和具有不同基础函数的压电传感器和致动器层覆盖的层压复合壳的静态,自由振动和静态控制分析的性能。而且,已经研究了机械加载,各种输入电压和不同边界条件对静态响应和自然频率的影响。提出了几个数值示例以展示方法的效率和准确性并与文献的现有结果验证。

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