Modelling and simulation of a dynamic contact problem in thermo-piezoelectricity

Y. Ouafik
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引用次数: 1

Abstract

In this work, we numerically study a dynamic frictional contact problem between a thermo-piezoelectric body and a conductive foundation. The linear thermo-electro-elastic constitutive law is employed to model the thermo-piezoelectric material. The contact is modelled by the Signorini condition and the friction by the Coulomb law. A frictional heat generation and heat transfer across the contact surface are assumed. The heat exchange coefficient is assumed to depend on contact pressure. Hybrid formulation is introduced, it is a coupled system for the displacement field, the electric potential, the temperature and two Lagrange multipliers. The discrete scheme of the coupled system is introduced based on a finite element method to approximate the spatial variable and an Euler scheme to discretize the time derivate. The thermo-mechanical contact is treated by using an augmented Lagrangian approach. A solution algorithm is discussed and implemented. Numerical simulation results are reported, illustrating the mechanical behavior related to the contact condition.
热压电中动态接触问题的建模与仿真
在这项工作中,我们数值研究了热压电体与导电基础之间的动态摩擦接触问题。采用线性热电弹性本构律对热压电材料进行建模。接触用西格里尼条件来模拟,摩擦用库仑定律来模拟。假设在接触面上产生摩擦热和传热。假定热交换系数取决于接触压力。引入了混合公式,它是位移场、电势、温度和两个拉格朗日乘法器的耦合系统。采用有限元法逼近空间变量,用欧拉格式离散时间导数,给出了耦合系统的离散格式。热-机械接触用增广拉格朗日方法处理。讨论并实现了一种求解算法。数值模拟结果说明了与接触条件有关的力学行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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