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3D Axisymmetric exact solutions of the piezo-coating sensors for coating/substrate system under charged conical contact

机译:压电涂层传感器的3D轴对称精确溶液,用于涂层/衬底系统下的带电锥形接触

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摘要

A complete set of frictionless conical contact (indentation) theory of the piezoelectric contact mechan-ics (PCM) for transversely isotropic piezoelectric elasticity coated system (TIPECS) under charged conical contact is established. 3D exact solutions for the stresses, displacements, electric displacements and elec-tric potential are derived. The contact radius VS the total load relation is obtained, which is valuable to develop the technology of indentation. The relations of coating thickness VS voltage and coating thick-ness VS voltage are studied. The optimal thickness can be determined with an optimization procedure. Interfacial delamination area of the TIPECS can be predicted with interfacial failure criterion. The theo-retical results are helpful for the prediction of some transient electrical effects, which can be combined with experiments to estimate some elastic constants, dielectric constants and piezoelectric constants in the indentation process.
机译:建立了一种完整的无摩擦锥形触点(压痕)理论,用于横向各向同性压电弹性涂层系统(TipeCs)的压电接触机械 - IC(PCM)的压电接触机械 - IC(PCM)是在带电锥形触点下的。 推导了3D用于应力,位移,电容器和电动势的精确解决方案。 获得接触半径VS总负载关系,这对于开发凹陷技术有价值。 研究了涂层厚度VS电压和涂层厚度VS电压的关系。 可以用优化过程确定最佳厚度。 可以用界面故障标准预测Tipecs的界面分层区域。 Theo-Reatible结果有助于预测一些瞬态电效应,这可以与实验结合,以估计压痕过程中的一些弹性常数,介电常数和压电常数。

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