Multi-Objective Optimization of the Dressing Parameters in Fine Cylindrical Grinding

Irina Stefanova Aleksandrova
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引用次数: 3

Abstract

The optimum conditions for dressing grinding wheels determined and recommended in the literature are valid only for particular types and tools of dressing and grinding. In this paper, an attempt has been made to optimize the dressing process parameters in fine cylindrical grinding. To define the optimum values of the dressing process variables (radial feed rate of diamond roller dresser frd , dressing speed ratio qd , dress-out time td , diamond roller dresser grit size/grinding wheel grit size ratio qg , type of synthetic diamonds and direction of dressing), a multi-objective optimization has been performed based on a genetic algorithm. In the capacity of the optimization parameter, a generalized geometric-mean utility function has been chosen, which appears to be a complex indicator characterizing the roughness and accuracy of the ground surface, the grinding wheel lifetime and the manufacturing net costs of the grinding operation. The optimization problem has been solved in the following sequence: 1) a model of the generalized utility function has been created reflecting the complex effect of the dressing system parameters; 2) the optimum conditions of uni-directional and counter-directional dressing of aluminium oxide grinding wheels by experimental diamond roller dressers of synthetic diamonds of АС32 and АС80 types and different grit size at which the generalized utility function has a maximum have been determined; 3) a Pareto optimum solution has been found (frd = 0.2 mm/min; qd = 0.8; td = 4.65 s; qg = 2.56), which guarantees the best combination between the roughness and the deviation from cylindricity of the ground surface, the grinding wheel lifetime and the manufacturing net costs of the grinding operation.
细外圆磨削修整参数的多目标优化
在文献中确定和推荐的修整砂轮的最佳条件仅对特定类型和工具的修整和磨削有效。本文对细外圆磨削的修整工艺参数进行了优化。为确定修整工艺变量(金刚石辊修整器径向进给速度frd、修整速比qd、修整时间td、金刚石辊修整器粒度/砂轮粒度比qg、合成金刚石种类和修整方向)的最优值,采用遗传算法进行多目标优化。在优化参数的范围内,选择了广义几何平均效用函数,该函数是表征磨削表面粗糙度和精度、砂轮寿命和磨削加工制造净成本的复杂指标。优化问题的求解顺序如下:1)建立了反映选矿系统参数复杂效应的广义效用函数模型;2)确定了不同粒度合成金刚石АС32型和АС80型实验金刚石辊修整器对氧化铝砂轮进行单向和反向修整的最佳条件,在此条件下广义效用函数最大;3)找到了Pareto最优解(frd = 0.2 mm/min;Qd = 0.8;Td = 4.65 s;Qg = 2.56),保证了磨削表面粗糙度与圆柱度偏差、砂轮寿命和磨削作业制造净成本之间的最佳结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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