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Stress field in the thermoelastic rolling contact of graded coatings

机译:梯度涂层热弹性滚动接触中的应力场

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The thermoelastic rolling contact problem for an FGM-coated half plane under the plane strain deformation is studied in this paper. A rigid roller rolls over the surface of coating with constant translational velocity generating frictional heating in the slip zones of the contact patch. The material properties of the FGM vary exponentially along the thickness direction. It is assumed that the contact area consists of a central stick zone and two slip zones of the same sign. The transfer matrix method and Fourier integral transform technique are used to achieve a system of two Cauchy singular integral equations. The coupling effect of tangential traction is eliminated by adapting the conventional Goodman approximation. The associated governing equations are discretized by applying the Gauss-Chebyshev integration method gaining a system of linear algebraic equations. The effects of moving velocity, thermal conductivity and expansion coefficients' ratios on through the thickness stress distribution are studied.
机译:研究了平面应变变形下FGM涂层半平面的热弹性滚动接触问题。刚性辊以恒定的平移速度在涂层表面滚动,从而在接触贴片的滑移区中产生摩擦加热。 FGM的材料特性沿厚度方向呈指数变化。假设接触区域由一个中心杆区和两个相同符号的滑移区组成。使用传递矩阵法和傅立叶积分变换技术来实现一个由两个柯西奇异积分方程组成的系统。切向牵引力的耦合效应通过采用传统的Goodman近似消除。通过应用获得线性代数方程组的Gauss-Chebyshev积分方法,离散化了相关的控制方程。研究了移动速度,导热系数和膨胀系数比对厚度应力分布的影响。

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