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Dynamic and static modelling of piezoelectric composite structures using a thermal analogy with MSC/NASTRAN

机译:使用MSC / NASTRAN的热模拟对压电复合结构进行动态和静态建模

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摘要

As a first step towards the development of simplified integrated computational tools for the dynamic and static modelling of smart structures, this work validates both theoretically and experimentally the implementation of a multilayered three-dimensional model based on the analogy between thermal strains and piezoelectric strains under MSC/NASTRAN. To assess the piezoelectric-thermal analogy for different loading conditions, the numerical results obtained from this model are first compared to the results obtained from a finite element reference model based on a three-dimensional piezoelectric formulation. An experimental assessment is also conducted on a clamped AS4/3501-6 carbon/epoxy composite beam structure excited in the vicinity of the clamped end using an embedded piezoelectric actuator. Results obtained from the dynamic response of the structure show that the properties of the insulating layer appear to have an important effect and thus demonstrate the need for their modelling. In the last part of the paper, as a tool for further development of the computational tools for smart structures, the piezoelectric-thermal analogy model is used with a large number of three-dimensional elements to describe the complexity of the strain and stress fields in the vicinity of the active region.
机译:作为开发用于智能结构的动态和静态建模的简化集成计算工具的第一步,这项工作基于MSC下热应变和压电应变之间的类比,从理论上和实验上验证了多层三维模型的实现/ NASTRAN。为了评估不同负载条件下的压电热模拟,首先将从该模型获得的数值结果与从基于三维压电公式的有限元参考模型获得的结果进行比较。还使用嵌入式压电致动器对在夹紧端附近激发的夹紧式AS4 / 3501-6碳/环氧复合梁结构进行了实验评估。从结构的动态响应获得的结果表明,绝缘层的性能似乎具有重要的作用,因此表明需要对其建模。在本文的最后部分,作为进一步开发智能结构计算工具的工具,压电热模拟模型与大量的三维元素一起用于描述应力场的复杂性。活动区域附近。

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