Biological Stability of Water-Based Cutting Fluids:Progress and Application  被引量:8

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作  者:Lizhi Tang Yanbin Zhang Changhe Li Zongming Zhou Xiaolin Nie Yun Chen Huajun Cao Bo Liu Naiqing Zhang Zafar Said Sujan Debnath Muhammad Jamil Hafiz Muhammad Ali Shubham Sharma 

机构地区:[1]School of Mechanical and Automotive Engineering,Qingdao University of Technology,Qingdao 266520,China [2]Hanergy(Qingdao)Lubrication Technology Co.,Ltd.,Qingdao 266200,China [3]Nanjing Kerun Lubricants Co.,Ltd.,Nanjing 211106,China [4]Chengdu Tool Research Institute Co.,Ltd,Chengdu 610500,China [5]School of Mechanical Engineering,Chongqing University,Chongqing 400044,China [6]Sichuan Future Aerospace Industry LLC,Shifang 618400,China [7]Shanghai Jinzhao Energy Saving Technology Co.,Ltd.,Shanghai 200436,China [8]Department of Sustainable and Renewable Energy Engineering,University of Sharjah,27272 Sharjah,United Arab Emirates [9]Mechanical Engineering Department,Curtin University,98009 Miri,Malaysia [10]College of Mechanical and Electrical Engineering,Nanjing University of Aeronautics and Astronautics,Nanjing 210016,China [11]Mechanical Engineering Department,King Fahd University of Petroleum and Minerals,Dhahran 31261,Saudi Arabia [12]Department of Mechanical Engineering,IK Gujral Punjab Technical University,Kapurthala 144603,Punjab,India

出  处:《Chinese Journal of Mechanical Engineering》2022年第1期7-30,共24页中国机械工程学报(英文版)

基  金:Supported by National Key Research and Development Program of China(Grant No.2020YFB2010500);National Natural Science Foundation of China(Grant Nos.51975305,51905289);Shandong Provincial Major Science and Technology Innovation Engineering Projects of China(Grant No.2019JZZY020111);Shandong Provincial Natural Science Foundation of China(Grant Nos.ZR2020KE027,ZR2020ME158,ZR2019PEE008);Applied Basic Research Youth Project of Qingdao Science and Technology Plan(Grant No.19-6-2-63-cg)。

摘  要:The application of cutting fluid in the field of engineering manufacturing has a history of hundreds of years,and it plays a vital role in the processing efficiency and surface quality of parts.Among them,water-based cutting fluid accounts for more than 90%of the consumption of cutting fluid.However,long-term recycling of water-based cutting fluid could easily cause deterioration,and the breeding of bacteria could cause the cutting fluid to fail,increase manufacturing costs,and even endanger the health of workers.Traditional bactericides could improve the biological stability of cutting fluids,but they are toxic to the environment and do not conform to the development trend of low-carbon manufacturing.Low-carbon manufacturing is inevitable and the direction of sustainable manufacturing.The use of nanomaterials,transition metal complexes,and physical sterilization methods on the bacterial cell membrane and genetic material could effectively solve this problem.In this article,the mechanism of action of additives and microbial metabolites was first analyzed.Then,the denaturation mechanism of traditional bactericides on the target protein and the effect of sterilization efficiency were summarized.Further,the mechanism of nanomaterials disrupting cell membrane potential was discussed.The effects of lipophilicity and the atomic number of transition metal complexes on cell membrane penetration were also summarized,and the effects of ultraviolet rays and ozone on the destruction of bacterial genetic material were reviewed.In other words,the bactericidal performance,hazard,degradability,and economics of various sterilization methods were comprehensively evaluated,and the potential development direction of improving the biological stability of cutting fluid was proposed.

关 键 词:Cutting fluid MICROORGANISM BACTERICIDE STERILIZATION 

分 类 号:TG501.5[金属学及工艺—金属切削加工及机床]

 

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