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Transverse shear stress relaxed zigzag theory for cylindrical bending of laminated composite and piezoelectric panels

机译:用于层压复合材料和压电板圆柱形弯曲的横向剪切应力松弛理论

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Cylindrical bending is studied by developing a new zigzag theory which relaxes the zero transverse shear stress condition on the outer surfaces of the panels subjected to transversely applied electromechanical load. The mechanical portion of the transverse displacement approximation in this new shear deformation theory is considered constant as well as non-constant through the development of three models. Unlike the existing zigzag theories which enforce the condition of vanishing transverse shear stresses on outer surfaces of laminates, these new theories relax it. Though the number of primary mechanical variables get increased by four or five or six, the computational cost does not increase appreciably. Approximating the electric potential in each piezoelectric layer as sublayerswise linear, variational principle is applied in deriving equilibrium equations and boundary conditions. Accuracy of the new base model as well as two augmented models is assessed by comparing with elasticity and piezoelasticity solutions. While it is observed that the new base model is highly accurate than the existing zigzag model, the two augmented models do not aid in its further improvement. This is attributed to the fact that layerwise consideration of the transverse displacement, not global consideration, is needed to correctly establish the effect of transverse normal deformation in the laminated composite and smart panel. (C) 2019 Elsevier Inc. All rights reserved.
机译:通过开发新的Z字形理论研究了圆柱形弯曲,该Z字形理论在经历横向施加的机电负荷的面板的外表面上松弛零横向剪切应力条件。在这种新的剪切变形理论中横向位移近似的机械部分被三种模型的开发被认为是恒定的以及不恒定。与现有的锯齿形理论不同,该Z字形理论是强制层压板外表面上消失横向剪切应力的条件,这些新的理论放松了。虽然主要机械变量的数量增加了四五或六个,但计算成本不会显着增加。将每个压电层中的电位近似为子层线性,在导出平衡方程和边界条件下应用变分原理。通过与弹性和压力弹性解决方案进行比较,评估新基础模型以及两个增强模型的准确性。虽然观察到新的基础模型高于现有的Z字形模型,但两个增强模型不帮助进一步改进。这归因于认为横向位移的分层考虑,不需要全局考虑,以正确地建立层压复合材料和智能面板中的横向正常变形的影响。 (c)2019 Elsevier Inc.保留所有权利。

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