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Research on the Surface Quality in Two-Dimensional Ultrasonic Vibration Grinding Based on Fractal Theory

机译:基于分形理论的二维超声振动磨削表面质量研究

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摘要

The service performance of precision parts has close relationship with the surface micro-topography. Aiming at the statistical self-similarity property of parts' surface profile, in the present paper, the fractal theory is applied to describing the ground surface quality in ultrasonic vibration grinding, and the influence of different grinding parameters on the fractal dimension is discussed, at the same time, the relationship between the fractal dimension and the surface roughness is analyzed. The experimental results show that the relationship between the fractal dimension and surface roughness is closely, there is a proportional growth trend between them. And under the same experimental conditions, the fractal dimension of ground surface in ultrasonic vibration grinding is less than that in common grinding. In the last part of the paper, the reliability of surface quality described by the fractal dimension is verified through measurement of the bearing ratio of surface profile.
机译:精密零件的服务性能与表面微观形貌密切相关。针对零件表面轮廓的统计自相似性,本文采用分形理论描述超声振动磨削中的地表质量,探讨了不同磨削参数对分形维数的影响。同时,分析了分形维数与表面粗糙度之间的关系。实验结果表明,分形维数与表面粗糙度之间关系密切,二者之间存在成比例的增长趋势。在相同的实验条件下,超声振动磨削的分形维数小于普通磨削的分形维数。在本文的最后一部分中,通过测量表面轮廓的承载比来验证由分形维数描述的表面质量的可靠性。

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