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Discrete convolution and FFT method with summation of influence coefficients (DCS-FFT) for three-dimensional contact of inhomogeneous materials

机译:具有影响系数(DCS-FFT)总结的离散卷积和FFT方法,用于非均匀材料的三维接触

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Certain contact problems must be treated as three-dimensional (3D) axial periodic problems, such as the contact of cylinders with rough surfaces and/or inhomogeneities in the materials, whose structural features in contact are confined in a finite domain in one direction but extended infinitely in the other direction. A novel numerical model for simulating the contact of machined cylindrical components containing inhomogeneities is developed via extending the concept of the 3D line-contact fast Fourier transform (FFT) algorithms. Due to the stochastic similarity of asperity and inhomogeneity distributions in the length direction, the cylinder is divided into N segments in the length direction while taking the roughness and inhomogeneities in one of these segments as representatives. The periodic convolution and FFT is used in the length direction, together with superposing the influence coefficients (ICs) of the N segments, while the discrete (circular) convolution and fast Fourier transformation (DC-FFT) is used in the non-periodic direction; this is named the DCS-FFT algorithm. The accuracy of the DCS-FFT algorithm is examined by the comparison of the numerical results for a degenerated cylindrical contact with the corresponding analytical solution, and its efficiency is evaluated through the comparison of its execution speed with that of two other FFT-based algorithms. The developed method is implemented to study the influence of inhomogeneities on subsurface stress distributions with/without the periodic length direction extension and superposition of inhomogeneity ICs. A criterion is provided to decide whether the DCS procedure is needed for the contact analysis of inhomogeneity-containing cylinders.
机译:某些接触问题必须被视为三维(3D)轴向周期性问题,例如气缸具有粗糙表面的触点和/或材料中的粗糙度,其结构特征在一个方向上仅限于有限域,但延伸无限地沿另一个方向。通过延长3D线接触快速傅里叶变换(FFT)算法的概念,开发了一种用于模拟含有不均匀性的加工圆柱形部件的触点的新型数值模型。由于长度方向上的粗糙和不均匀性分布的随机相似性,气缸在长度方向上被分成n个区段,同时将这些区段之一的粗糙度和不均匀性划分为表示作为代表的粗糙度和不均匀性。周期性的卷积和FFT在长度方向上使用,以及叠加N段的影响系数(IC),而离散(圆形)卷积和快速傅里叶变换(DC-FFT)用于非周期性方向;这名称为DCS-FFT算法。通过比较DCS-FFT算法的准确性通过比较与相应的分析解决方案的退化圆柱接触的数值结果进行检查,并且通过将其执行速度与基于另外的基于FFT的算法的执行速度进行评估来评估其效率。实施方法以研究与/没有周期性IC的周期度长度伸展和叠加的情况下对地下应力分布对地下应力分布的影响。提供了一种标准以确定是否需要含不均匀性汽缸的接触分析所需的DCS程序。

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