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A Deterministic Method to Predict Geometrical Interference between Grinding Wheel and Workpiece for Ultra-precision Aspherical Grinding

机译:一种确定性的预测超精密非球面磨削砂轮和工件之间几何干涉的方法

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This paper reported a deterministic method to predict geometrical interferences between grinding wheel and workpiece on ultra-precision grinding for micro aspherical lens mould. An inclined axis grinding mode controlled by B axis is considered and investigated. For avoiding the interference between the grinding wheel and the workpiece, the relationship of the radius of the grinding wheel should be analyzed in the grinding process. In this paper, a geometrical mathematical model for avoiding interferences between grinding wheel and workpiece is built up, and three interference conditions are analyzed. The maximum diameter of the cylindrical grinding wheel is computed and obtained for grinding axisymmetric aspheric surface.
机译:本文报道了一种确定性方法,用于预测微型非球面镜片模具超精密磨削中砂轮和工件之间的几何干涉。考虑并研究了由B轴控制的倾斜轴磨削方式。为了避免砂轮与工件之间的干扰,在磨削过程中应分析砂轮半径的关系。建立了避免砂轮与工件干涉的几何数学模型,并分析了三种干涉条件。计算并获得用于研磨轴对称非球面的圆柱磨轮的最大直径。

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