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Numerical modelling of anisotropic non homogeneous beams with embedded piezoelectric sensors and actuators

机译:具有嵌入式压电传感器和致动器的各向异性非均匀梁的数值模拟

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The paper presents a formulation for modelling the linear behaviour of anisotropic and non-homogeneous beams embedding piezoelectric sensors and actuators. The generalised compliance/stiffness matrix of a beam section, i.e. the one linking section deformations and electric voltages to the corresponding conjugated forces and free electric charges applied to the piezoelectric components, is evaluated by extending an existing semi analytical formulation based on a finite elements discretisaton of the beam section. The sectional compliance/stiffness thus obtained is then used for a finite volumes discretisation of the beam along its length so that the analysis of anisotropic and non homogeneous beams embedding piezoelectric devices can be carried out without any undue approximation. Such a modelling of three dimensional piezo beams is very effective and can be used also in presence of geometric structural non linearities. Some applications demonstrate the flexibility and the effectiveness of the method in the analysis of piezo beams and actively controlled beam structures. Some of the results obtained with the present approack are compared with three dimensional finite element solutions to verify the soundness of the method and to give full evidence of its feasibility, effectiveness and convenience.
机译:本文介绍了用于建模嵌入压电传感器和致动器的各向异性和非均匀光束的线性行为的制剂。通过基于有限元分离延伸梁部分。然后将由此获得的截面符合性/刚度用于沿其长度的限定梁的分离子,使得可以在没有任何过度近似的情况下进行嵌入压电装置的各向异性和非均匀梁的分析。这种三维压电梁的建模非常有效,也可以在几何结构非线性存在下使用。一些应用证明了该方法在压电梁和主动控制的光束结构分析中的灵活性和有效性。用本批量获得的一些结果与三维有限元解决方案进行比较,以验证该方法的声音,并提供其可行性,有效性和便利性的全部证据。

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