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增强聚醚醚酮中冷却压缩空气钻孔工艺的研究

Study of Drilling Process by Cooling Compressed Air in Reinforced Polyether-Ether-Ketone.

作者信息

Domingo Rosario, de Agustina Beatriz, Marín Marta María

机构信息

Department of Construction and Manufacturing Engineering, Universidad Nacional de Educación a Distancia (UNED), C/Juan del Rosal 12, E-28040 Madrid, Spain.

出版信息

Materials (Basel). 2020 Apr 22;13(8):1965. doi: 10.3390/ma13081965.

Abstract

This study is focused on the application of a cooling compressed air system in drilling processes; this environmentally friendly technique allows removing material at very low temperatures, approximately up to -22 °C in the cutting area. The main goals are to find the most improve cutting conditions with less energy consumption, for the drilling of reinforced polyether-ether-ketone with glass fiber at 30% (PEEK-GF30) with cooling compressed air by a Ranque-Hilsch vortex tube, and to find a balance between environmental conditions and adequate process performance. Drilling tests were carried out on plates of PEEK-GF30 to analyze the influence of cutting parameters and environmental temperature (-22, 0 and 22 °C) on variables such as thrust forces, energy and material removed rate by the use of statistical methods; analysis of variance, analysis of means, response surface, and desirability function were employed to identify the optimum region that provides the most improved values of the aforementioned variables. Drill bit diameter was also analyzed to determine the quality of drilled holes. During the drilling processes, force signals were detected by a piezoelectric dynamometer connected to multichannel amplifier and a pyrometer was used to control the temperature. The diameters of the drilled holes were measured by a coordinate measuring machine. Cooling compressed air can be considered an adequate technique to improve the results from an environmental and efficient perspective; in particular, the maximum desirability function was found at a spindle speed of 7000 rpm, a feedrate of 1 mm/rev and a temperature close to -22 °C.

摘要

本研究聚焦于冷却压缩空气系统在钻孔加工中的应用;这种环保技术能够在极低温度下(切削区域约达-22°C)去除材料。主要目标是通过Ranque-Hilsch涡流管利用冷却压缩空气,在能耗较低的情况下找到最优化的切削条件,用于钻削含30%玻璃纤维的增强聚醚醚酮(PEEK-GF30),并在环境条件与适当的加工性能之间找到平衡。对PEEK-GF30板材进行钻孔试验,运用统计方法分析切削参数和环境温度(-22、0和22°C)对诸如推力、能量和材料去除率等变量的影响;采用方差分析、均值分析、响应面分析和合意度函数来确定能使上述变量达到最优值的最佳区域。还对钻头直径进行了分析以确定钻孔质量。在钻孔过程中,通过连接到多通道放大器的压电测力计检测力信号,并使用高温计控制温度。钻孔直径由坐标测量机测量。从环境和效率的角度来看,冷却压缩空气可被视为一种能改善结果得适当技术;特别是,在主轴转速为7000转/分钟、进给速度为1毫米/转且温度接近-22°C时,发现了最大合意度函数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2783/7215968/00964f779a09/materials-13-01965-g001.jpg

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