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HIGH SPEED TURNING OF AISI 4140 STEEL USING NANOFLUID THROUGH TWIN JET SQL SYSTEM

机译:通过双流JET SQL系统使用纳米流体对AISI 4140钢进行高速车削

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Application of small quantity lubrication (SQL) technology in high speed machining is being recognized as a sustainable approach for achieving suitable cooling/lubrication in machining zone. Present investigation focused on effectiveness of SQL with nanofluids in high speed turning of AISI 4140 steel with a TiN-top coated multilayered carbide insert and explored the advantages of using a twin-jet SQL system instead of a single jet one. SQL system was developed in-house with external-mix nozzles. The experiment was conducted varying the cutting velocity at two different feed rates (0.05mm/rev and O.lOmm/rev) with conventional coolant and nanofluids. Immediate improvement in machinability and the quality of turned surface was observed with twin-jet nanofluid SQL. A significant reduction of force and specific energy could be achieved by using 3vol% alumina and 1vol% multi walled carbon nano tube (MWCNT) nanofluid instead of soluble oil. The MWCNT nanofluid was found to be superior to alumina nanofluid in reduction of tensile residual stress. Such a reduction is typically an indirect indication of reduction of cutting zone temperature, which could be achieved due to enhanced level of lubricity at chip-tool interface and enhanced level of heat dissipation ability of the nanofluids. Improvement in retention of sharpness of tool cutting edges was also observed under nanofluid-SQL environment, which could have played important role in improvement of surface quality.
机译:小量润滑(SQL)技术在高速加工中的应用被认为是在加工区实现合适的冷却/润滑的可持续方法。当前的研究集中在带有纳米流体的SQL在带有TiN顶部涂层的多层硬质合金刀片的AISI 4140钢的高速车削中的有效性,并探索了使用双射流SQL系统而不是单射流SQL系统的优势。 SQL系统是在内部使用外部混合喷嘴开发的。使用常规冷却剂和纳米流体,以两种不同的进给速度(0.05mm / rev和0.1mm / rev)改变切削速度,进行了实验。使用双喷嘴纳米流体SQL可以观察到切削性和车削表面质量的立即改善。通过使用3vol%的氧化铝和1vol%的多壁碳纳米管(MWCNT)纳米流体代替可溶性油,可以显着降低力和比能。发现在减少拉伸残余应力方面,MWCNT纳米流体优于氧化铝纳米流体。这样的降低通常是切割区温度降低的间接指示,这可以由于切屑-工具界面处的润滑性增强和纳米流体的散热能力增强而实现。在nanofluid-SQL环境下,还可以观察到刀具切削刃的锋利度保持性的提高,这可能在提高表面质量方面起着重要作用。

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