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Investigation of Machinability Characteristics on Turning of Nimonic 90A Using Al_2O_3 and CNT Nanoparticle in Groundnut Oil

机译:用Al_2O_3和CNT纳米粒子在地生油中转动NiMonic 90a的可加工特性的研究

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Nimonic 90A alloy is a nickel-chromium-cobalt alloy and found as a potential material for turbine blades, discs, forgings, a ring section, and hot-working tools. This paper presents the effect of concentration along with cutting speed and feed rate on Fz: cutting force, Ra: surface roughness and Vba: tool wear with the application of two different nanofluids (NFS) on turning of Nimonic 90A by TiAlN PVD carbide cutting inserts. The nanoparticles suspended in oil taken for present investigation are nAl_2O_3, nCNT, and groundnut oil. The Taguchi L9 orthogonal array and derringer’s desirability response surface has been employed for parameter design and optimal search. 3D surface plots, factor effect plots, Taguchi S/N, and variance tests are used to study the effect of concentration on the machining performance of Nimonic 90A. The statistical analysis revealed% concentration for nCNT and cutting speed for nAl_2O_3 are found as an influenced parameter on performance characteristics. From the optimization analysis, 0.25% nCNT NFs along with a cutting speed of 40 m/min and 0.17 mm/rev feed rate has proved the better machining performance on the above measures that of nAl_2O_3. Based on optical micrograph analysis, abrasion, adhesion, and edge hammering are found to be lower for nAl_2O_3 than that of nCNT NFs. On examination, the chip morphology, the curl diameter chips are exposed to very small for CNT due to the increase in lubricity and decrease of tool friction on turning of Nimonic 90A.
机译:NIMONIC 90A合金是镍 - 铬 - 钴合金,发现作为用于涡轮机叶片,圆盘,锻件,环部,和热加工工具的电势的材料。本文提出了切割速度和进给速率上Fz的沿集中的效果:切割力中,Ra:表面粗糙度和VBA:刀具磨损与两个不同的纳米流体(NFS)的由氮化铝钛PVD硬质合金切削刀片转动铌锰合金90A的应用。悬浮在采取本调查油的纳米颗粒是nAl_2O_3,nCNT,和花生油。田口L9正交阵列和derringer的可取响应表面已经用于设计参数和最优搜索。三维表面图,因子效应曲线,田口S / N,和方差测试用于研究浓度对铌锰合金90A的加工性能的影响。统计分析揭示%浓度nCNT和nAl_2O_3切削速度被发现作为性能特性的影响的参数。从优化分析,以40米/分钟和0.17毫米/切割速度沿着0.25%nCNT的NF转进料速率已被证明上述措施nAl_2O_3的更好的机械加工性能。基于光学显微照片分析,耐磨性,密合性,和边缘锤击被发现为nAl_2O_3比nCNT的NF的更低。在检查时,切屑形态,卷曲直径芯片暴露于非常小的CNT由于润滑性的增加和工具摩擦对铌锰合金90A的转向下降。

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