Effect of cryogenic compressed air on the evolution of cutting force and tool wear during machining of Ti-6Al-4V alloy

被引:70
|
作者
Sun, Shoujin [1 ,4 ]
Brandt, Milan [1 ,4 ]
Palanisamy, Suresh [2 ,4 ]
Dargusch, Matthew S. [3 ,4 ]
机构
[1] RMIT Univ, Ctr Addit Mfg, Sch Aerosp Mech & Mfg Engn, Melbourne, Vic 3001, Australia
[2] Swinburne Univ Technol, Fac Engn & Ind Sci, Hawthorn, Vic 3122, Australia
[3] Univ Queensland, Sch Min & Mech Engn, Queensland Ctr Adv Mat Proc & Mfg AMPAM, Brisbane, Qld 4072, Australia
[4] Def Mat Technol Ctr, Hawthorn, Vic 3122, Australia
关键词
Machining; Ti-6Al-4V alloy; Cryogenic compressed air; Flank wear; Recession of cutting edge; Plastic deformation of cutting edge; CARBIDE TOOLS; INCONEL; 718; WC-CO; TITANIUM; DRY; PERFORMANCE; MECHANISMS; LIFE;
D O I
10.1016/j.jmatprotec.2015.02.017
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The effect of cryogenic compressed air cooling on tool wear and cutting forces during cutting Ti-6Al-4V alloy has been investigated at two cutting speeds at which cutting tool fails as the result of gradual flank wear and catastrophic plastic deformation of the cutting edge, respectively, during dry machining. It is found that the application of cryogenic compressed air dramatically increased tool life compared with dry machining, and the increase in tool life was more significant at higher cutting speed as the plastic deformation of cutting edge that occurred during dry machining was suppressed during machining with cryogenic compressed air cooling. The improvement of tool life with application of cryogenic compressed air cooling during machining is attributed to the low temperature and high pressure of cryogenic air jet, which leads to the reduction in cutting temperature due to the enhanced cooling and reduction in tool-chip contact length. Low cutting temperature results in reducing wear rate, size of chip built-up edge and maintaining the strength of the cutting edge in order to resist plastic deformation. (C) 2015 Elsevier B.V. All rights reserved.
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页码:243 / 254
页数:12
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