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Higher-order 2-D/3-D layerwise mechanics and finite elements for composite and sandwich composite plates with piezoelectric layers

机译:具有压电层的复合板和夹心复合板的高阶2-D / 3-D分层力学和有限元

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摘要

Coupled higher-order layerwise piezoelectric laminate mechanics are presented, applicable to composite and sandwich composite plates subjected to static mechanical loads and/or electric voltages. In the development of these formulations through-thickness compressibility is either considered (3-D) or neglected (2-D). Their advantage compared to linear layerwise theories lies in the efficient prediction of the local through-thickness response by using a gross through-thickness discretization, while retaining simplicity in through-thickness kinematic assumptions. Moreover, they enable prediction of interlaminar shear and transverse normal stress at the interface between discrete layers, which is crucial information for prediction of delamination initiation. Using the developed mechanics, the effects of transverse compressibility and ply angle on the local through-thickness response of composite and sandwich plates are studied. (C) 2014 Elsevier Masson SAS. All rights reserved.
机译:提出了耦合的高阶分层压电叠层力学,适用于经受静态机械载荷和/或电压的复合板和夹心复合板。在这些配方的开发中,全厚度可压缩性被视为(3-D)或被忽略(2-D)。与线性分层理论相比,它们的优势在于可通过使用总厚度厚度离散化来有效预测局部厚度厚度响应,同时在厚度厚度运动学假设中保持简单性。此外,它们还可以预测离散层之间界面处的层间剪切和横向法向应力,这对于预测分层起始至关重要。利用已开发的力学方法,研究了横向可压缩性和铺层角度对复合材料和夹心板局部通过厚度响应的影响。 (C)2014 Elsevier Masson SAS。版权所有。

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