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Experimental Investigation and Optimization of Minimum Quantity Lubrication for Machining of AA6061-T6

机译:AA6061-T6机加工最小润滑量的实验研究与优化

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摘要

This study presents flank wear optimization with minimum quantity lubricant (MQL) for the end milling for the machining of aluminum alloy 6061-T6. Process parametersudincluding the cutting speed, depth of cut, feed rate and MQL flow rate are selected for study to develop an optimization model for flank wear based on the genetic algorithm. The experiments are conducted based on the central composite design method. Three types of tools are used in this experiment, namely, uncoated carbide tools and two coated carbide tools. The study is conducted to perform the experimental investigation of the effects of minimum quantity lubricant (MQL) for the end milling of aluminumudalloy 6061-T6, to investigate the relationships of feed rate, axial depth of cut, cutting speed and minimum quantity lubricant flow rate with respect to tool wear for MQL and to perform the optimization of the machining parameters for flank wear. The results of the study show that inserts coated with TiAlN and TiAlN+TiN show higher flank wear on account of the brittleness of the coatings. Uncoated carbide insert shows lower flank wear but the edge integrity is not maintained, so the resultant surface roughness is the worst among the three tools. In order to perform multi-objective optimization, the surface roughness and material removal rate are also measured along with flank wear. Optimization is performed using a genetic algorithm and the optimized designs are obtained in the form of Pareto optimal designs. The best compromised Pareto designs are selected using multi-criteria decision-making.ud
机译:这项研究提出了用最小量的润滑剂(MQL)优化侧面铣削以加工铝合金6061-T6的立铣刀。选择包括切削速度,切削深度,进给速率和MQL流量在内的工艺参数进行研究,以基于遗传算法开发侧面磨损的优化模型。实验是基于中央复合设计方法进行的。此实验中使用了三种类型的工具,即非涂层硬质合金工具和两个涂层硬质合金工具。该研究旨在进行最小量润滑剂(MQL)对铝 udalloy 6061-T6立铣的影响的实验研究,以研究进给速率,切削轴向深度,切削速度和最小量润滑剂的关系。 MQL相对于刀具磨损的最大流量,并针对侧面磨损执行加工参数的优化。研究结果表明,由于涂层的脆性,用TiAlN和TiAlN + TiN涂层的刀片显示出更高的侧面磨损。未涂层的硬质合金刀片显示出较低的后刀面磨损,但无法保持刃口完整性,因此所产生的表面粗糙度在三种刀具中最差。为了执行多目标优化,还测量了表面粗糙度和材料去除率以及侧面磨损。使用遗传算法进行优化,以帕累托最优设计的形式获得优化设计。最佳折衷的Pareto设计是使用多标准决策制定的。

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