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A Method to Predict and Visualize the Wheel and Work Surface Topography in Surface Grinding

机译:一种方法来预测和可视化轮子表面研磨中的工作表面形貌

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Visualization of work surface topography through simulations is very challenging task in grinding process due to the complexity of wheel-work interactions with a very high number of cutting points (grits). Kinematic mapping of abrasive grits on a three-dimensional wheel topography enables the evaluation of ground surface topography through simulations. In this paper, a method for generating the ground surface topography based on wheel specifications is presented. Abrasive grits size, abrasives volume percentage and their nature of distribution on the wheel surface are considered in the modeling and visualization of wheel topography. The simulation results of ground surface topographies prove the feasibility of the developed method.
机译:通过模拟可视化工作表面形貌在磨削过程中的任务是非常具有挑战性的,因为轮式工作相互作用与非常大的切割点(砂砾)的复杂性。三维轮廓上的磨粒的运动映射能够通过模拟评估地面地形。本文介绍了一种基于轮规格产生地面地形的方法。在轮廓的建模和可视化中,考虑了磨料粗糙,磨料体积百分比及其分布的分布性质。地面拓扑结构的仿真结果证明了开发方法的可行性。

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