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Fracture analysis of a functionally graded piezoelectric coating with viscoelastic interfaces

机译:具有粘弹性界面的功能梯度压电涂层的断裂分析

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In this paper, the fracture problem for a functionally graded coating with a Kelvin-type viscoelastic interface is studied. The functionally graded piezoelectric layer contains an electrically permeable anti-plane crack that is parallel to the interface. By utilizing the integral transformation and singular integral equation techniques, the crack problem is solved numerically. The effects of the physical, graded parameter and geometrical parameters on the stress intensity factor (SIF) are investigated. With time elapsing, the effect of viscoelastic interface becomes weaker and weaker. The effect of the viscoelastic interface on the fracture behavior of the functionally graded piezoelectric coating also depends on the substrate thickness.
机译:在本文中,研究了具有开尔文型粘弹性界面的功能梯度涂层的断裂问题。功能梯度压电层包含平行于界面的电渗透性反平面裂纹。利用积分变换和奇异积分方程技术,数值求解了裂纹问题。研究了物理,渐变参数和几何参数对应力强度因子(SIF)的影响。随着时间的流逝,粘弹性界面的作用变得越来越弱。粘弹性界面对功能梯度压电涂层断裂行为的影响还取决于基底厚度。

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