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Cryogenic turning of the Ti-6Al-4V alloy with modified cutting tool inserts

机译:带有改进型切削刀片的Ti-6Al-4V合金的低温车削

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摘要

Productivity in the machining of titanium alloys is adversely affected by rapid tool wear as a consequence of high cutting zone temperature. Conventional cutting fluids are ineffective in controlling the cutting temperature in the cutting zone. In this research work, an attempt has been made to investigate the effect of liquid nitrogen when it is applied to the rake surface, and the main and auxiliary flank surfaces through holes made in the cutting tool insert during the turning of the Ti-6A1-4V alloy. The cryogenic results of the cutting temperature, cutting forces, surface roughness and tool wear of the modified cutting tool insert have been compared with those of wet machining. It has been observed that in the cryogenic cooling method, the cutting temperature was reduced by 61-66% and the surface roughness was reduced to a maximum of 36% over wet machining. The cutting force was decreased by 35-42% and the flank wear was reduced by 27-39% in cryogenic cooling over that of wet machining. Cryogenic cooling enabled a substantial reduction in the geometry of tool wear through the control of the tool wear mechanisms. The application of liquid nitrogen to the heat generation zones through holes made in the cutting tool insert was considered to be more effective over conventional machining.
机译:由于切削区域温度高,快速磨损的刀具会对钛合金的加工生产率产生不利影响。传统的切削液在控制切削区域中的切削温度方面无效。在这项研究工作中,已经尝试了研究液氮在Ti-6A1车削时通过切削刀具刀片上的孔将液态氮施加到前刀面以及主侧面和副侧面的影响。 4V合金。修改后的切削刀具刀片的切削温度,切削力,表面粗糙度和刀具磨损的低温结果已与湿加工进行了比较。已经观察到,在低温冷却方法中,与湿式加工相比,切削温度降低了61-66%,表面粗糙度最大降低了36%。与湿加工相比,在低温冷却下切削力降低了35-42%,后刀面磨损降低了27-39%。低温冷却可通过控制刀具磨损机制来大幅降低刀具磨损的几何形状。通过切削刀具刀片上的孔将液氮施加到发热区比传统的机加工更为有效。

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