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Effect of delamination on transient history of smart composite plates

机译:分层对智能复合板瞬态历史的影响

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摘要

The transient analysis of delaminated composite and smart composite plates is studied using a newly developed improved layerwise laminate theory, extended to include large deformation and the interlaminar contact during 'breathing' phenomena in the delaminated zone. The theory is capable of capturing interlaminar shear stresses that are critical to delamination. The presence of multiple, discrete delaminations is modeled through the use of Heaviside step functions. Stress free boundary conditions are enforced at all free surfaces and continuity in displacement field and transverse shear stresses are enforced at each ply level. In modeling piezoelectric composite plates, a coupled piezoelectric-mechanical formulation is used in the development of the constitutive equations. Numerical analysis is conducted to investigate the effect of nonlinearity in the transient vibration, attributable to large displacements and rotations and to the coupled effect of the large deformation and bimodular behavior caused by the contact impact of delaminated interfaces. Composite plates with delaminations, subject to external loads and voltage history from surface bonded sensors, are investigated and the results are compared with corresponding linear transient history, experimental results and plates without delamination.
机译:使用新开发的改进的分层层压理论研究了分层复合材料板和智能复合材料板的瞬态分析,该理论扩展到包括大变形和分层区域“呼吸”现象期间的层间接触。该理论能够捕获对于分层至关重要的层间剪切应力。通过使用Heaviside阶跃函数来模拟多个离散分层的存在。在所有自由表面上都施加了无应力边界条件,并且在每个层层上都施加了位移场和横向剪应力的连续性。在对压电复合材料板进行建模时,本构方程的开发使用了耦合的压电机械公式。进行了数值分析,以研究非线性振动对瞬态振动的影响,这归因于大的位移和旋转以及分层界面的接触冲击引起的大变形和双模态行为的耦合效应。研究了具有分层的复合板,该复合板受到外部载荷和来自表面粘合传感器的电压历史的影响,并将结果与​​相应的线性瞬态历史,实验结果和无分层的板进行比较。

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