A computational fluid dynamics (CFD) model for effective coolant application in deep hole gundrilling

被引:16
|
作者
Woon, K. S. [1 ]
Tnay, G. L. [2 ]
Rahman, M. [1 ]
Wan, S. [3 ]
Yeo, S. H. [4 ]
机构
[1] Natl Univ Singapore, Dept Mech Engn, 10 Kent Ridge Crescent, Singapore 119260, Singapore
[2] Singapore Inst Mfg Technol, Machining Technol, 71 Nanyang Dr, Singapore 638075, Singapore
[3] Inst High Performance Comp, Fluid Dynam, 1 Fusionopolis Way,16-16 Connexis North, Singapore 138632, Singapore
[4] Nanyang Technol Univ, Sch Mech & Aerosp Engn, 50 Nanyang Ave, Singapore 639798, Singapore
关键词
Deep hole gundrilling; Coolant flow; Chip evacuation; High pressure coolant; Tool design; NONSPHERICAL PARTICLES; INCONEL-718; FLOW;
D O I
10.1016/j.ijmachtools.2016.11.008
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Effective coolant application in deep hole gundrilling is crucial to prevent rapid degradation and failure of drills through high performance cooling, lubrication and chip evacuation. This paper presents a novel methodology to increase effectiveness of coolant application through strategic optimization of gun drill designs that leads to appreciable tool life improvement, based on computational fluid dynamics (CFD) analysis. Through the analyses of coolant flow characteristics and theological properties, conventional designs of critical drill geometries like nose grind contour, coolant hole configuration and shoulder dub-off angle, which are detrimental to coolant application and hence tool life are determined. A new, optimized gun drill design for the drilling of deep holes on Ni-based alloys is proposed. All findings are experimentally substantiated.
引用
收藏
页码:10 / 18
页数:9
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