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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Modeling and analyzing the effects of air-cooled turning on the machinability of Ti-6Al-4V titanium alloy using the cold air gun coolant system
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Modeling and analyzing the effects of air-cooled turning on the machinability of Ti-6Al-4V titanium alloy using the cold air gun coolant system

机译:使用冷风枪冷却剂系统对空冷车削对Ti-6Al-4V钛合金可切削性的影响进行建模和分析

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摘要

This study provides the mathematical models for modeling and analyzing the effects of air-cooling on the machinability of Ti-6Al-4V titanium alloy in the hard turning process. A cold air gun coolant system was used in the experiments and produced a jet of compressed cold air for cooling the cutting process. The air-cooling process seems to be a good environment friendly option for the hard turning. In this experimental investigation, the cutting speed, feed rate and cutting depth were chosen as the numerical factor; the cooling method was regarded as the categorical factor. An experimental plan of a four-factor (three numerical plus one categorical) D-optimal design based on the response surface methodology (RSM) was employed to carry out the experimental study. The mathematical models based on the RSM were proposed for modeling and analyzing the cutting temperature and surface roughness in the hard turning process under the dry cutting process and air-cooling process. Tool wear and chip formation during the cutting process were also studied. The compressed cooling air in the gas form presents better penetration of the lubricant to the cutting zone than any conventional coolants in the cutting process do. Results show that the air-cooling significantly provides lower cutting temperature, reduces the tool wear, and produces the best machined surface. The machinability performance of hard turning Ti-6Al-4V titanium alloy on the application of air-cooling is better than the application of dry cutting process. This air-cooling cutting process easily produces the wrinkled and breaking chips. Consequently, the air-cooled cutting process offers the attractive alternative of the dry cutting in the hard turning process.
机译:这项研究提供了数学模型,用于建模和分析空气冷却对硬车削过程中Ti-6Al-4V钛合金的切削性能的影响。实验中使用了冷风枪冷却剂系统,并产生了压缩冷空气射流以冷却切割过程。对于硬车削来说,空气冷却工艺似乎是一种很好的环境友好选择。在本实验研究中,选择切削速度,进给速度和切削深度作为数值因子。冷却方法被视为分类因素。采用基于响应面法(RSM)的四因子(三数值加一分类)D-最优设计的实验方案进行了实验研究。提出了基于RSM的数学模型,对干切削和空冷过程中硬车削过程中的切削温度和表面粗糙度进行建模和分析。还研究了切削过程中的刀具磨损和切屑形成。气体形式的压缩冷却空气比切削过程中的任何传统冷却剂都能更好地将润滑剂渗透到切削区域。结果表明,空气冷却可显着降低切削温度,减少刀具磨损,并产生最佳的加工表面。硬切削Ti-6Al-4V钛合金在空冷条件下的切削加工性能优于干切削工艺。这种空冷切割过程很容易产生起皱和断屑。因此,在硬车削工艺中,风冷切削工艺提供了干切削的有吸引力的替代方案。

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