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首页> 外文期刊>Journal of intelligent material systems and structures >Axisymmetric partial slip contact of a functionally graded piezoelectric coating under a conducting punch
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Axisymmetric partial slip contact of a functionally graded piezoelectric coating under a conducting punch

机译:功能梯度压电涂层在导电冲头下的轴对称局部滑动接触

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This article considered the axisymmetric partial slip contact problem of a functionally graded piezoelectric coated half-space indented by a rigid spherical punch subjected to a normal load. It is assumed that the punch within the contact region is a perfect conductor with a constant electric potential. The electro-mechanical properties of the functionally graded piezoelectric materials vary exponentially along the thickness direction. The whole contact region consists of an inner circular stick region surrounded by an outer annular slip region obeying Coulomb's law of friction. The problem is reduced to a set of coupled Cauchy singular integral equations by employing the Hankel integral transform. An iterative method is used to determine the unknown stick/slip region, normal contact pressure, electric charge, and radial tangential traction. The effects of the resultant electric charge, friction coefficient, and gradient index on the surface electro-mechanical fields are presented in detail.
机译:这篇文章考虑了功能梯度的压电涂层半空间的轴对称部分滑动接触问题,该半空间被刚性球形冲头压入法向载荷。假定接触区域内的冲头是具有恒定电势的理想导体。功能梯度压电材料的机电性能沿厚度方向呈指数变化。整个接触区域由一个内部的圆形杆区域组成,该区域由一个遵从库仑摩擦定律的外部环形滑动区域包围。通过使用汉克尔积分变换,将问题简化为一组耦合的柯西奇异积分方程。迭代方法用于确定未知的粘滑区域,法向接触压力,电荷和径向切向牵引力。详细介绍了所得电荷,摩擦系数和梯度指数对表面电场的影响。

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