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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Milling of Ti-6Al-4V under hybrid Al2O3-MWCNT nanofluids considering energy consumption, surface quality, and tool wear: a sustainable machining
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Milling of Ti-6Al-4V under hybrid Al2O3-MWCNT nanofluids considering energy consumption, surface quality, and tool wear: a sustainable machining

机译:在杂交Al2O3-MWCNT纳米流体下铣削Ti-6Al-4V,考虑到能耗,表面质量和工具磨损:可持续加工

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Sustainable manufacturing philosophy strives for energy-efficient, high quality, and productivity as critical characteristics of a milling process. Hence, an attempt was made to limit the energy consumption, and tool wear in the face milling of hard-to-cut titanium alloy without compromising product quality and productivity. For that, a strong influence of hybrid alumina and multiwalled carbon nanotube (Al2O3-MWCNT) nanoadditive-based minimum quantity lubrication (MQL) was investigated on key machining characteristics. The simultaneous influence of control factors on machining characteristics was evaluated through mathematical modeling and the most straightforward multi-objective optimization. Based on the multi-objective decision approach, the energy consumption of Ec = 829.78 W, surface roughness Ra = 0.549 mu m, and material removal rate MRR = 303.9 mm(3)/min were attained at cutting speed N = 3800 rpm, feed f = 0.012 mm/tooth, depth of cut a(p) = 0.40 mm, and width of cut a(e) = 3.6 mm respectively. Despite the trade-off among energy consumption, surface roughness, and material removal rate, the desirability function tried to strike a balanced operating level to achieve less energy consumption, better surface quality, and higher materials removal rate. Additionally, tool wear, chip analysis, and surface topography as key characteristics of the milling process were considered to analyze the wear behavior, chip sliding, and machined surface characteristics under hybrid nanoadditive-based MQL machining. The novelty of this experimental work lies in considering important milling characteristics of hard-to-cut Ti-6Al-4V alloy under hybrid nanofluid-assisted MQL machining. Regarding sustainable green cutting technology, clean cutting of titanium alloy was implemented by nanoadditive-assisted MQL technique.
机译:可持续的制造理念致力于节能,高质量和生产力作为铣削过程的关键特性。因此,尝试限制能量消耗,并在淬火钛合金的面铣削方面的工具磨损,而不会影响产品质量和生产率。为此,对关键加工特性研究了杂化氧化铝和多壁碳纳米管(Al 2 O 3 -MWCNT)纳米碳碳的最小量润滑(MQL)的强烈影响。通过数学建模和最直接的多目标优化评估控制因素对加工特性的同时影响。基于多目标决策方法,EC = 829.78W的能量消耗,表面粗糙度Ra =0.549μm,以及在切割速度N = 3800rpm,饲料中获得材料去除率MRR = 303.9mm(3)/ min。 F = 0.012 mm /齿,切割深度a(p)= 0.40mm,分别切割(e)= 3.6mm的宽度。尽管能耗,表面粗糙度和材料去除率之间进行了折衷,但期望的功能试图达到均衡的操作水平,以实现更少的能耗,更好的表面质量和更高的材料去除率。另外,刀具磨损,芯片分析和表面形貌作为铣削过程的关键特性,分析了混合纳米彩色的MQL加工下的磨损行为,芯片滑动和加工表面特性。该实验工作的新颖性在于在杂交纳米流体辅助MQL加工下考虑难以切割的Ti-6Al-4V合金的重要铣削特性。关于可持续的绿色切削技术,通过纳米载辅助的MQL技术实现钛合金的清洁切割。

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