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Theoretical Study on the Effect of Form Error of Grinding Wheel Surfaces under Free Form Grinding

机译:自由形状磨削对砂轮表面形状误差影响的理论研究

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Free forms can be efficiently generated through the three-dimensional motion of a grinding wheel with round-off. In this method, however, form error of the grinding wheel directly affects machining accuracy. The effects of form deviation of the wheel surface on form error of the generated shape ER have been investigated through computer simulation. The wheel surface is assumed to have waviness with amplitude a and a wave length λ. It is found that the duplication ratio ER/2a is a function of λ~2/(a·Rg) and R_g/R_w, where R_g and R_w are the curvature radii of the grinding wheel and the workpiece surface, respectively. The longer λ is, or the smaller a is, the larger the duplication ratio becomes. When λ and a are constant, the grinding wheel with large curvature radius is suitable for precision machining of convex surfaces. Form deviation of the wheel surface must be smaller than the objective machining accuracy when it is within a sub-micrometer.
机译:通过带有倒角的砂轮的三维运动可以有效地生成自由形式。但是,在该方法中,砂轮的形状误差直接影响加工精度。通过计算机仿真研究了轮表面形状偏差对所产生形状ER的形状误差的影响。假定车轮表面具有振幅为a且波长为λ的波纹度。发现重复比ER / 2a是λ〜2 /(a·Rg)和R_g / R_w的函数,其中R_g和R_w分别是砂轮和工件表面的曲率半径。 λ越长或a越小,复制率就越大。当λ和a恒定时,曲率半径大的砂轮适合于凸面的精密加工。在亚微米范围内时,砂轮表面的形状偏差必须小于目标加工精度。

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