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Parametric Optimization for Improved Tool Life and Surface Finish in Micro Turning using Genetic Algorithm

机译:使用遗传算法进行微调改进刀具寿命和表面光洁度的参数优化

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Micro turning is a process by which micro components can be produced.This paper deals with CNC Micro turning of biconel 600 alloy with titanium carbide coated tool. Machining is done in DT-110 integrated multiprocessor micro machine tool.Micro turning is carried out with full factorial experiments with various combinations of cutting parameters such as speed (25,31, and 37 m/min), feed (5,10, and 15 urn/rev) and depth of cut (30,50 and 70 urn). For every set of experiments, the output parameters such as the tool wear and the surface roughness are measured. Non-linear regression model is used to represent relationship between input and output variables and a multi-objective optimization method based genetic algorithm is used to optimize the cutting parameters in turning process such as cutting speed, feed and depth of cut. Two conflicting objectives such as tool wear and surface roughness are simultaneously optimized.
机译:微型转弯是一种过程,可以生产微量部件。本文用碳化钛涂层工具的双核电600合金的CNC微型转动。 在DT-110集成的多处理器微机床中进行加工.Micro转动是用完整的因子实验进行,具有各种切割参数组合,如速度(25,31和37米/分钟),饲料(5,10,和 15 URN / REV)和切割深度(30,50和70个URN)。 对于每组实验,测量诸如工具磨损和表面粗糙度的输出参数。 非线性回归模型用于表示输入和输出变量之间的关系,并且使用基于多目标优化方法的遗传算法来优化转弯过程中的切削参数,例如切割速度,进料和切割深度。 同时优化了两种相互矛盾的目标,如工具磨损和表面粗糙度。

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