实验分析了在干燥、矿物油和TiO2纳米润滑剂下加工难切削材料时的切削力

IF 0.6 Q4 ENGINEERING, MECHANICAL
I. Okokpujie, L. Tartibu
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引用次数: 6

摘要

难以加工的材料,例如钛合金,高度适用于具有屈服强度和耐磨性的各种行业。然而,由于高振动,它们很难加工,导致在加工过程中产生高切削力。这种振动是由切屑的不连续性引起的,从而导致切削工具和工件之间的高摩擦。为了最大限度地减少这些挑战,在机加工操作中使用润滑剂来减少摩擦和其他不必要的切削力,并提高表面光洁度。本研究的重点是研究纳米润滑剂在TI-6AL-4V-ELI合金加工中降低切削力的作用。此外,还对干式、矿物油和TiO2纳米润滑剂在端面铣削加工过程中进行了比较研究,以获得最佳性能。此外,本研究还利用田口L9正交阵列建立了切削力的预测数学模型。在加工过程之前,采用两步法开发纳米润滑剂。测功机用于收集每个样品末端的切削力数据。结果表明,润滑条件对切削力的降低起着重要作用。在TI-6AL-4V-ELI合金的加工过程中,矿物油基TiO2纳米润滑剂比矿物油减少了19%的切削力。此外,在TI-6AL-4V-ELI合金的面铣削过程中,减少切削力的最佳参数是3000rpm的切削速度、200mm/min的进给速率、0.3mm的切削深度以获得最小切削力30(N)。本研究得出结论,TiO2纳米颗粒在矿物油中的应用显著提高了热性能和机械性能,从而降低了切削力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental analysis of cutting force during machining difficult to cut materials under dry, mineral oil, and TiO2 nano-lubricant
Difficult-to-machine materials, e.g., Titanium alloys, are highly applicable in diverse industries that yield strength and wear resistance. However, they prove difficult to machine due to high vibration, leading to high cutting forces during the machining process. This vibration occurs from chip discontinuity and thereby leads to high friction between the cutting tool and workpiece. In order to minimize these challenges, lubricants are employed in machining operations to reduce frictional and other unnecessary cutting forces and improve surface finish. This research focuses on studying the nano-lubricant effects in reducing cutting forces in the machining of TI-6AL-4V-ELI alloy. Also, carry out a comparative study of dry, mineral oil, and TiO2 nano-lubricant during face-milling machining for optimal performance. Additionally, the study develops a predictive mathematical model for cutting force using a Taguchi L9 orthogonal array. A two-step approach was employed to develop the nano-lubricant before the machining process. The dynamometer is used to collect the cutting force data at the end of each sample. The Results show that the lubrication conditions play a significant role in the reduction of cutting forces. The mineral oil-based-TiO2 nano-lubricant reduces the cutting force by 19 % compared with the mineral oil during the machining of TI-6AL-4V-ELI alloy. Furthermore, the optimal parameters to reduce cutting forces during face milling of TI-6AL-4V-ELI alloy are cutting speed at 3000 rpm, 200 mm/min feed rate, 0.3 mm depth of cut to obtain the minimum cutting force 30 (N). This study concludes that the application of TiO2 nanoparticles in mineral oil significantly improves the thermal and mechanical properties, which leads to a reduction of cutting force.
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来源期刊
Journal of Measurements in Engineering
Journal of Measurements in Engineering ENGINEERING, MECHANICAL-
CiteScore
2.00
自引率
6.20%
发文量
16
审稿时长
16 weeks
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