Optimization of MQL flow rate for minimum cutting force and surface roughness in end milling of hardened steel (HRC 40)

被引:102
作者
Mia, Mozammel [1 ]
Al Bashir, Mahmood [2 ]
Khan, Md Awal [3 ]
Dhar, Nikhil Ranjan [4 ]
机构
[1] Ahsanullah Univ Sci & Technol, Dhaka, Bangladesh
[2] Wichita State Univ, Wichita, KS USA
[3] Mil Inst Sci & Technol, Dhaka, Bangladesh
[4] Bangladesh Univ Engn & Technol, Dhaka, Bangladesh
关键词
Hard machining; Minimum quantity lubrication; Surface roughness; Cutting force; Grey relational analysis; Response surface methodology; QUANTITY LUBRICATION PARAMETERS; TOOL WEAR; MACHINING PARAMETERS; FLUID APPLICATION; TAGUCHI METHOD; ALLOY; ENVIRONMENTS; METHODOLOGY; TEMPERATURE; TI6AL4V;
D O I
10.1007/s00170-016-9080-8
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The present work focuses on the performance modeling of hard milling to attain an optimum parameter setting for the minimum cutting force and surface roughness. Furthermore, it was attempted to compute the minimum quantity lubricant flow rate precisely, besides the cutting speed and table feed rate, by adopting Grey-based Taguchi method and composite desirability function. The experimental data was collected by end milling of hardened AISI 4140 steel using carbide cutter under dry and minimum quantity lubrication conditions according to Taguchi L (16) orthogonal array. The predictive model of the responses was formulated by using response surface methodology. The analysis of variance revealed that the table feed has the maximum influence on cutting force, and the flow rate of lubricant has the highest effect on surface roughness. The parameter setting at lower table feed, higher cutting speed, and 150-ml/h lubricant flow yield the minimum value of the responses. Finally, the results of confirmation test verified the adequacy and supremacy of the optimization models; however, Grey-based Taguchi method induced a better optimization.
引用
收藏
页码:675 / 690
页数:16
相关论文
共 50 条
[21]   Multi-objective optimization of machining factors on surface roughness, material removal rate and cutting force on end-milling using MWCNTs nano-lubricant [J].
Okokpujie, I. P. ;
Ohunakin, O. S. ;
Bolu, C. A. .
PROGRESS IN ADDITIVE MANUFACTURING, 2021, 6 (01) :155-178
[22]   Minimization of cutting force, temperature and surface roughness through GRA, TOPSIS and Taguchi techniques in end milling of Mg hybrid MMC [J].
Gopal, P. M. ;
Prakash, K. Soorya .
MEASUREMENT, 2018, 116 :178-192
[23]   Cutting force, tool wear and surface roughness in high-speed milling of high-strength steel with coated tools [J].
Li, Yuan ;
Zheng, Guangming ;
Zhang, Xu ;
Cheng, Xiang ;
Yang, Xianhai ;
Xu, Rufeng .
JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2019, 33 (11) :5393-5398
[24]   Parametric Optimization of Trochoidal Step on Surface Roughness and Dish Angle in End Milling of AISID3 Steel Using Precise Measurements [J].
Santhakumar, J. ;
Iqbal, Mohammed U. .
MATERIALS, 2019, 12 (08)
[25]   Comparative analysis of aluminium surface roughness in end-milling under dry and minimum quantity lubrication (MQL) conditions [J].
Okonkwo, Ugochukwu C. ;
Okokpujie, Imhade P. ;
Sinebe, Jude E. ;
Ezugwu, Chinedu A. K. .
MANUFACTURING REVIEW, 2015, 2
[26]   Effects of nano graphene particles on surface roughness and cutting temperature during MQL milling of AISI 430 stainless steel [J].
Uysal, Alper .
MATERIALS TESTING, 2018, 60 (05) :533-537
[27]   An investigation into the surface integrity and cutting force characteristics in titanium alloy end milling using soluble oil and MQL as coolants [J].
Mohandas, K. N. ;
Hosamani, Basavaraj ;
Nagaraju ;
Kemminje, Vignesh ;
Raju, V. R. ;
Nagahanumaiah .
RESULTS IN SURFACES AND INTERFACES, 2024, 17
[28]   Effect of cutting edge radius on micro end milling: force analysis, surface roughness, and chip formation [J].
Vipindas, K. ;
Anand, K. N. ;
Mathew, Jose .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2018, 97 (1-4) :711-722
[29]   An experimental investigation on the effects of combined application of ultrasonic assisted milling (UAM) and minimum quantity lubrication (MQL) on cutting forces and surface roughness of Ti-6AL-4V [J].
Namlu, Ramazan Hakki ;
Sadigh, Bahram Lotfi ;
Kilic, Sadik Engin .
MACHINING SCIENCE AND TECHNOLOGY, 2021, 25 (05) :738-775
[30]   Effect of cutting edge radius on micro end milling: force analysis, surface roughness, and chip formation [J].
K. Vipindas ;
K. N. Anand ;
Jose Mathew .
The International Journal of Advanced Manufacturing Technology, 2018, 97 :711-722