Research on Roll Variable Speed Grinding Based on Adaptive Fuzzy Control

B. Junxi, G. Qing, Wang Shuwei
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Abstract

The traditional method of improving the machining precision is mainly on account of changes in the workpiece and the grinding wheel in grinding process, including, considered the weakest of the workpiece from the axial stiffness, using center frame to increase the stiffness of the workpiece, take error compensation, and analyze the mechanism of gear grinding and the suppression measures of variable speed grinding and grinding chatter. Based on the analysis of the relationship among gear grinding mechanism, variable speed grinding and grinding chatter suppression and grinding precision, the variable speed micro-feed grinding process strategy based on adaptive fuzzy control is put up, that is according to the roller material and structure to reasonably determine the characteristics of grinding wheel and the parameters of grinding process. And with full consideration of roll grinders, changes of roller system along the axial stiffness and the deformation control in the roll grinding process, a new strategy of variable speed grinding micro-feed adaptive control optimization based on adaptive fuzzy control is proposed, which for improving the accuracy of the grinding roll presents a new and effective solution.
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基于自适应模糊控制的轧辊变速磨削研究
传统的提高加工精度的方法主要是针对磨削过程中工件和砂轮的变化,包括从工件最薄弱的轴向刚度出发,利用中心架增加工件刚度,采取误差补偿,分析齿轮磨削的机理以及变速磨削和磨削颤振的抑制措施。在分析齿轮磨削机理、变速磨削和磨削颤振抑制与磨削精度之间关系的基础上,提出了基于自适应模糊控制的变速微进给磨削工艺策略,即根据滚轮材料和结构合理确定砂轮特性和磨削工艺参数。在充分考虑轧辊磨床、轧辊系统沿轴向刚度变化及轧辊磨削过程中的变形控制的基础上,提出了一种基于自适应模糊控制的变速磨削微进给自适应控制优化策略,为提高磨削轧辊精度提供了一种新的有效解决方案。
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