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首页> 外文期刊>Journal of Cleaner Production >Synergistic effect of silica and pure palm oil on the machining performances of Inconel 690: A study for promoting minimum quantity nano doped-green lubricants
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Synergistic effect of silica and pure palm oil on the machining performances of Inconel 690: A study for promoting minimum quantity nano doped-green lubricants

机译:二氧化硅和纯棕榈油在Inconel 690加工性能下的协同作用:促进最小量纳米掺杂润滑剂的研究

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Nanofluid based lubricants have immense acceptability in sustainable and eco-friendly machining of superalloys - this is due to their superior heat transfer ability. Extreme demands for sustainable manufacturing compelled the manufacturers to avail synergistic benefits with higher machinability and lower carbon footprint on the environment. For that purpose, the performance of an indigenously developed minimum quantity nano-green lubricant is investigated in milling of Inconel 690. Accordingly, nano-silica (vol% varying from 0.5 to 1.5%) was reinforced into palm oil and sprayed into the tool-chip interface through minimum quantity lubrication set up. The milling operations were executed under five different lubricating mediums: dry, minimum quantity palm oil, 0.5% silica deposited palm oil, 1% silica deposited palm oil, and 1.5% silica deposited palm oil. Comparative tool life, surface roughness, resultant cutting force, and cutting temperature were assessed. Subsequently, SEM and EDX images were analyzed to confirm the governing tool wear mechanisms. Experimental data shows that 1% silica deposited palm oil medium performs better concerning all machining responses. Furthermore, a multi-objective response surface methodology (MORSM) confirmed that speed of 88.18 m/min, feed of 0.11 mm/tooth, depth of cut of 0.50 mm, and 1%-MQNGL based lubricating condition are the optimal design parameters to achieve sustainable working environment. (C) 2020 Elsevier Ltd. All rights reserved.
机译:基于纳米流体的润滑剂在高温合金的可持续和环保加工方面具有巨大可接受性 - 这是由于其优异的传热能力。对可持续制造的极端需求使制造商能够利用具有更高的可加工性和环境的碳足额度较高的协同效益。为此目的,研究了本发明开发的最小量纳米绿润滑剂的性能,以铣削了690的铣削。因此,将纳米二氧化硅(Vol%从0.5-1.5%变化)加强到棕榈油中并喷洒到工具中 - 芯片接口通过最小数量润滑设置。在五种不同的润滑培养基下执行铣削操作:干燥,最小量棕榈油,0.5%二氧化硅沉积的棕榈油,1%二氧化硅沉积的棕榈油,1.5%二氧化硅沉积的棕榈油。评估比较工具寿命,表面粗糙度,产生的切割力和切削温度。随后,分析了SEM和EDX图像以确认调节工具磨损机制。实验数据表明,1%二氧化硅沉积的棕榈油介质表现出更好的所有加工响应。此外,多目标响应表面方法(Morsm)证实,速度为88.18米/分钟,进料0.11毫米/齿,切削深度为0.50 mm,1%-MQNGL的润滑条件是实现的最佳设计参数可持续的工作环境。 (c)2020 elestvier有限公司保留所有权利。

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