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Optimization of multi-tool machining processes with simultaneous action

机译:同时进行多刀加工工艺的优化

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摘要

The optimization of machining parameters for machine tools using the criterion of maximum productivity rate is complex and, in many cases, an unresolved issue. The intensification of machining processes leads to changes in the productivity rate. In the case of multi-tool machining processes, engaging cutters simultaneously to define optimal machining parameters for the maximum productivity rate is an important problem. Such multi-tool processes are conducted in multi-spindle and multi-station machine tools, turret-type lathes, automated lines, etc. This paper is intended to formulate a mathematical model for the optimization of multi-tool cutting processes on machine tools based on the criterion of maximum productivity rate. The mathematical model of the new productivity rate equation (for machine tools with changes in cutting for the optimal multi-tooling operation with simultaneous action) is confirmed by practical test.
机译:使用最大生产率标准对机床的加工参数进行优化是复杂的,而且在许多情况下还没有解决。加工过程的加强导致生产率的变化。在多刀具加工过程中,同时接合刀具以定义最佳加工参数以获得最大生产率是一个重要的问题。这种多工具工艺是在多主轴和多工位机床,转塔式车床,自动化生产线等中进行的。本文旨在为优化基于机床的多工具切削工艺建立数学模型。以最高生产率为标准。通过实际测试确定了新的生产率方程(对于具有切削变化的机床,以便同时进行最佳多刀操作)的数学模型。

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