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Research on Uniform Surface Roughness in Grinding of Revolving Curved Surface

机译:旋转曲面磨削中均匀表面粗糙度的研究

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When grinding the revolving curved surface with Arc Envelope Grinding Method, the different curvatures in the convex and concave surfaces make a great difference in the surface roughness. In order to solve this problem, the relationship among envelope height, feeding rate, rotational speed and curvature of workpiece was analyzed based on equal-envelope-height grinding method. The results presented that, low feeding rate of grinding wheel and high rotational speed of workpiece were helpful to obtain smaller envelope height. And the smaller the radius of workpiece curvature, the more different the surface roughness. Besides, it was an effective method to solve this problem by changing feeding rate. The feeding rate should be changed directly proportionally to radius of workpiece curvature. Then, the experimental results indicate that, the fluctuation ratio of surface roughness with variable feeding rate is reduced to 4.896% from 26.17% with constant feeding rate. It proves the validity of hypothesis.
机译:当使用弧面包络磨削方法磨削旋转曲面时,凸面和凹面中不同的曲率会在表面粗糙度上产生很大差异。为了解决这个问题,采用等高高磨削法分析了信封高度,进给速度,转速和工件曲率之间的关系。结果表明,砂轮的低进给速度和较高的工件转速有助于减小外壳高度。工件曲率半径越小,表面粗糙度越大。此外,这是通过改变喂料速度来解决该问题的有效方法。进给速度应与工件曲率半径成正比直接变化。然后,实验结果表明,可变进给速度下的表面粗糙度波动率从恒定进给速度下的26.17%降低到4.896%。证明了该假设的有效性。

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