Performance Evaluation of Various Vegetable Oils and Distilled Water as Base Fluids Using Eco-friendly MQL Technique in Drilling of AISI 321 Stainless Steel

被引:0
作者
Amrit Pal
Sukhpal Singh Chatha
Hazoor Singh Sidhu
机构
[1] GZS Campus College of Engineering and Technology,
[2] Yadavindra College of Engineering,undefined
[3] Punjabi University Guru Kashi Campus,undefined
来源
International Journal of Precision Engineering and Manufacturing-Green Technology | 2022年 / 9卷
关键词
Minimum quantity lubrication; Vegetable oil; Stainless steel; Drilling;
D O I
暂无
中图分类号
学科分类号
摘要
Due to rising attention towards environmental and ecological issues caused by mineral oil-based lubricants in machining operations, the developing of an environmental favourable lubricant has become inevitable. As environmental favourable cutting fluids, vegetable oils have acquired great attention in machining operations due to their good biodegradability, non-toxicity and less environmental pollutant properties. Nowadays, the minimum quantity lubrication (MQL) technique is explored as alternative technique to conventional flood cooling technique. However, very limited work is done to investigate the effect of MQL technique using vegetable oils as the base oil for machining of hard materials. Moreover, systematic comparison of different vegetable oils as the base oil will be of great significance to the manufacturing industry. Therefore, in this study, the performance of six vegetable oils viz. castor, coconut, soybean, canola, palm and sunflower oil, and distilled water has been investigated during drilling of stainless steel (AISI 321) using minimum quantity lubrication technology. The main objective of this study is to compare the performance of various cooling strategies viz. dry, flood and seven MQL conditions with respect to drilling characteristics (thrust force, torque, surface roughness, coefficient of friction (COF), chip morphology and wear mechanism) in the drilling of stainless steel (AISI 321) by using HSS drill tools. Experimental findings showed that MQL drilling conditions have given excellent drilling performance by improving drilling characteristics than dry and flood drilling. Among the MQL fluids, sunflower oil provided better lubrication and improved the drilling characteristics followed by palm, canola, soybean, coconut, castor oil and distilled water. Sunflower oil had a thrust force, torque, surface roughness and coefficient of friction of 1425 N, 22.8 Nm, 4.356 µm and 4.000 µ, which reduced by 21.27%, 25.49%, 30.72% and 5.35%, respectively than that under flood drilling at 30th hole. The better lubrication performance of sunflower oil may be attributed to the rich presence of saturated-fatty acids. In addition, vegetable oils based MQL technique is more worthy to improve the cooling capabilities and promote sustainability in the manufacturing sector by saving resources and extending environmental benefits.
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页码:745 / 764
页数:19
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共 280 条
[51]  
Hadad M(2019)Chilled air system and size effect in micro-milling of nickel−titanium shape memory alloys International Journal of Precision Engineering and Manufacturing-Green Technology 6 4-403
[52]  
Tawakoli T(2019)Effects of minimal quantity lubrication (MQL) on Surface integrity in robotic milling of austenitic stainless steel International Journal of Precision Engineering and Manufacturing-Green Technology 126 403-1076
[53]  
Vesali A(2020)Ultrasonic assisted grinding process with minimum quantity lubrication using oil-based nanofluids International Journal of Precision Engineering and Manufacturing-Green Technology 220 2027-281
[54]  
Emami M(2017)High-speed milling of hardened mold steel P20 with minimum quantity lubrication Precision Engineering 22 393-705
[55]  
Mao C(2014)Experimental evaluation of an eco-friendly grinding process combining minimum quantity lubrication and graphene-enhanced plant-oil-based cutting fluid Journal of Cleaner Production 140 1060-2165
[56]  
Zou H(2005)Experimental investigation on the performance of MQL drilling of AISI 321 stainless steel using nano-graphene enhanced vegetable-oil-based cutting fluid Lubrication Engineering-Huangpu- 16 275-339
[57]  
Huang Y(2018)Comparison the effect of MQL, wet and dry turning on surface topography, cylindricity tolerance and sustainability Renewable Energy 139 685-515
[58]  
Li Y(2006)Eco-friendly cutting fluids in minimum quantity lubrication assisted machining: A review on the perception of sustainable manufacturing Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 45 2153-193
[59]  
Zhou Z(2010)Small quantity lubrication assisted end milling of aluminium using sunflower oil Lubrication Science 94 330-418
[60]  
Dhar NR(2017)Specific energy and surface roughness of minimum quantity lubrication grinding Ni-based alloy with mixed vegetable oil-based nanofluids Journal of Cleaner Production 51 509-505