Nanoparticle-enhanced coolants in machining:mechanism,application,and prospects

被引:0
作者
Shuguo HU [1 ]
Changhe LI [1 ]
Zongming ZHOU [2 ]
Bo LIU [3 ]
Yanbin ZHANG [1 ]
Min YANG [1 ]
Benkai LI [1 ]
Teng GAO [1 ]
Mingzheng LIU [1 ]
Xin CUI [1 ]
Xiaoming WANG [1 ]
Wenhao XU [1 ]
YSDAMBATTA [1 ,4 ]
Runze LI [5 ]
Shubham SHARMA [1 ,6 ]
机构
[1] School of Mechanical and Automotive Engineering,Qingdao University of Technology
[2] Hanneng (Qingdao) Lubrication Technology Co,Ltd
[3] Sichuan New Aviation TA Technology Co, Ltd
[4] Mechanical Engineering Department,Ahmadu Bello University
[5] Massachusetts Institute of Technology
[6] Department of Mechanical Engineering,IK Gujral Punjab Technical University
关键词
nanoparticle-enhanced coolant; minimum quantity lubrication; biolubricant; thermophysical properties; turning; milling; grinding;
D O I
暂无
中图分类号
TH16 [机械制造工艺]; TH117.22 [];
学科分类号
0802 ; 080203 ;
摘要
Nanoparticle-enhanced coolants(NPECs) are increasingly used in minimum quantity lubrication(MQL)machining as a green lubricant to replace conventional cutting fluids to meet the urgent need for carbon emissions and achieve sustainable manufacturing.However,the thermophysical properties of NPEC during processing remain unclear,making it difficult to provide precise guidance and selection principles for industrial applications.Therefore,this paper reviews the action mechanism,processing properties,and future development directions of NPEC.First,the laws of influence of nano-enhanced phases and base fluids on the processing performance are revealed,and the dispersion stabilization mechanism of NPEC in the preparation process is elaborated.Then,the unique molecular structure and physical properties of NPECs are combined to elucidate their unique mechanisms of heat transfer,penetration,and antifriction effects.Furthermore,the effect of NPECs is investigated on the basis of their excellent lubricating and cooling properties by comprehensively and quantitatively evaluating the material removal characteristics during machining in turning,milling,and grinding applications.Results showed that turning of Ti-6Al-4V with multi-walled carbon nanotube NPECs with a volume fraction of 0.2% resulted in a 34% reduction in tool wear,an average decrease in cutting force of 28%,and a 7% decrease in surface roughness Ra,compared with the conventional flood process.Finally,research gaps and future directions for further applications of NPECs in the industry are presented.
引用
收藏
页码:7 / 53
页数:47
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