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Coupled efficient layerwise and smeared third order theories for vibration of smart piezolaminated cylindrical shells

机译:耦合的高效分层和模糊三阶理论,用于智能压电化圆柱壳的振动

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The improved third order zigzag theory and its smeared counterpart (without the zigzag effect), recently developed by the authors for static analysis of piezoelectric laminated cylindrical shells, are extended to dynamics. The piezoelectric layers are considered as radially polarized to make use of the extension actuation mechanism that is best suited for effective actuation and sensing. The zigzag theory accounts for the layerwise variation of inplane displacements and includes the transverse normal extensibility under electric field, and also satisfies the conditions on transverse shear stresses at the layer interfaces and at the inner and outer surfaces of the shell. Yet, the number of primary displacement variables is only five, same as its smeared counterpart. The two theories are critically assessed for their accuracy by direct comparison with the three dimensional piezoelasticity solutions for free and forced vibration response of simply supported smart angle-ply infinite-length and cross-ply finite-length shells, with a variety of heterogeneous composite and sandwich laminates. It is shown that the zigzag theory, in spite of being computationally efficient, is very accurate even for shells with highly inhomogeneous laminates. In contrast, the smeared third order theory is grossly inadequate for smart shells made of inhomogeneous composite and sandwich substrates.
机译:作者最近为压电叠层圆柱壳的静力分析而开发的改进的三阶曲折理论及其涂抹的对应形式(无曲折效应)已扩展到动力学领域。压电层被认为是径向极化的,以利用最适合有效驱动和感应的延伸驱动机构。之字形理论解释了平面内位移的分层变化,并且包括电场下的横向法向可扩展性,并且还满足了层界面以及壳的内外表面处的横向剪应力的条件。然而,主要位移变量的数量只有五个,与被涂污的变量相同。通过直接与三维压电弹性解决方案进行直接比较,对两种理论的准确性进行了严格的评估,这些解决方案用于简单支撑的智能角层无限长和交叉层有限长壳的自由和强迫振动响应,以及各种异质复合材料和三明治层压板。结果表明,之字形理论尽管计算效率高,但即使对于具有高度不均匀层压板的壳体也非常准确。相比之下,拖尾三阶理论对于由不均匀的复合材料和夹心基材制成的智能外壳来说是远远不够的。

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