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Grindability Evaluation of Ultrasonic Assisted Grinding of Silicon Nitride Ceramic Using Minimum Quantity Lubrication Based SiO_(2)Nanofluid
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作者 Yusuf Suleiman Dambatta Changhe Li +8 位作者 Mohd Sayuti Ahmed A D Sarhan Min Yang Benkai Li Anxue Chu Mingzheng Liu Yanbin Zhang Zafar Said Zongming Zhou 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2024年第2期115-136,共22页
Minimum quantity Lubrication(MQL)is a sustainable lubrication system that is famous in many machining systems.It involve the spray of an infinitesimal amount of mist-like lubricants during machining processes.The MQL ... Minimum quantity Lubrication(MQL)is a sustainable lubrication system that is famous in many machining systems.It involve the spray of an infinitesimal amount of mist-like lubricants during machining processes.The MQL system is affirmed to exhibit an excellent machining performance,and it is highly economical.The nanofluids are understood to exhibit excellent lubricity and heat evacuation capability,compared to pure oil-based MQL system.Studies have shown that the surface quality and amount of energy expended in the grinding operations can be reduced considerably due to the positive effect of these nanofluids.This work presents an experimental study on the tribological performance of SiO_(2)nanofluid during grinding of Si_(3)N_(4)ceramic.The effect different grinding modes and lubrication systems during the grinding operation was also analyzed.Different concentrations of the SiO_(2)nanofluid was manufactured using canola,corn and sunflower oils.The quantitative evaluation of the grinding process was done based on the amount of grinding forces,specific grinding energy,frictional coefficient,and surface integrity.It was found that the canola oil exhibits optimal lubrication performance compared to corn oil,sunflower oil,and traditional lubrication systems.Additionally,the introduction of ultrasonic vibrations with the SiO_(2)nanofluid in MQL system was found to reduce the specific grinding energy,normal grinding forces,tangential grinding forces,and surface roughness by 65%,57%,65%,and 18%respectively.Finally,regression analysis was used to obtain an optimum parameter combinations.The observations from this work will aid the smooth transition towards ecofriendly and sustainable machining of engineering ceramics. 展开更多
关键词 Minimum quantity lubrication(MQL) Ultrasonic assisted grinding(uag) Eco-friendly lubricants NANOFLUID grinding CERAMIC
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单颗磨粒超声辅助磨削SiC陶瓷材料去除机理 被引量:5
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作者 丁凯 李奇林 +2 位作者 雷卫宁 徐铭洲 王许 《中国机械工程》 EI CAS CSCD 北大核心 2021年第19期2331-2339,共9页
为研究不同磨削速度下超声振动作用对SiC陶瓷磨削过程中材料去除机理的影响,采用钎焊单颗金刚石磨粒工具,基于连续变磨削深度试验方法,在SiC陶瓷抛光表面开展了超声辅助磨削与普通磨削对比试验。结果表明,随着单颗磨粒磨削深度的逐渐增... 为研究不同磨削速度下超声振动作用对SiC陶瓷磨削过程中材料去除机理的影响,采用钎焊单颗金刚石磨粒工具,基于连续变磨削深度试验方法,在SiC陶瓷抛光表面开展了超声辅助磨削与普通磨削对比试验。结果表明,随着单颗磨粒磨削深度的逐渐增大,SiC陶瓷超声辅助磨削与普通磨削时的材料去除机理均经历了“塑性去除→脆-塑转变→大尺寸脆性断裂”的变化;在磨削速度为1 m/s时,相比于普通磨削,单颗磨粒超声辅助磨削可显著增大SiC陶瓷的脆-塑转变临界切厚及相应的磨削划痕横截面积,并减小切向磨削力与磨削比能;而随着磨削速度的增大,超声辅助磨削与普通磨削在单颗磨粒磨削划痕尺寸、磨削力之间的差异逐渐减弱。 展开更多
关键词 单颗磨粒 超声辅助磨削 SIC陶瓷 磨削划痕形貌 材料去除机理
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