Comparing Bio-Ester and Mineral-Oil Emulsions on Tool Wear and Surface Integrity in Finish Turning a Ni-Based Superalloy

Paul Wood, Fathi Boud, Andrew Mantle, W. Carter, Syed Hossain, U. Gunputh, Marzena Pawlik, Yiling Lu, J. Diaz-Alvarez, M. Miguélez
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Abstract

The paper compares the performance of two bio-ester and two mineral-oil emulsion metalworking fluids (MWFs) in finish turning an Inconel 718 alloy bar with a high hardness (HB 397–418). In this study, a coolant with a lean concentrate diluted at 6.5% to create an emulsion with stabilised water hardness was used to prepare each MWF. The finish-turning method used a small tool nose radius (0.4 mm) and small depth of cut (0.25 mm) to turn down 52.5-mm diameter bars in multiple passes to reach a maximum tool flank wear of 200 µm. In each MWF turning test, the tool flank wear, cutting forces, and surface roughness were measured against cut time. Chips from each MWF turning test were also collected at the same cut time instances. The surface and subsurface integrity on a workpiece obtained from each MWF turning test were compared by using a new unworn tool. Overall, for the machining parameters studied, the findings suggest the bio-esters were capable of equivalent machining performance as the mineral-oil emulsions, apart from one bio-ester that displayed improved surface roughness. Common to all MWF turning tests was a change in the chip form at low flank wear, which is discussed. Further findings discussed include the sensitivity of the concentration of the MWF diluted in the emulsion and the effect of the workpiece hardness within the batch used, with useful recommendations to improve the finish-turning method for the assessment of MWFs.
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比较生物酯乳化液和矿物油乳化液在精车镍基超合金时对刀具磨损和表面完整性的影响
本文比较了两种生物酯和两种矿物油乳液金属加工液(MWF)在精车高硬度(HB 397-418)Inconel 718 合金棒材时的性能。在这项研究中,每种 MWF 都使用了稀释度为 6.5% 的贫浓缩物冷却液来制备具有稳定水硬度的乳液。精车方法使用较小的刀头半径(0.4 毫米)和较小的切削深度(0.25 毫米),多次车削直径为 52.5 毫米的棒材,以达到 200 微米的最大刀面磨损。在每次 MWF 车削测试中,都根据切削时间测量刀具侧面磨损、切削力和表面粗糙度。在相同的切削时间内,还收集了每次 MWF 车削测试的切屑。通过使用未磨损的新刀具,对每次 MWF 车削测试获得的工件表面和次表面完整性进行比较。总体而言,就所研究的加工参数而言,结果表明生物酯的加工性能与矿物油乳液相当,只有一种生物酯的表面粗糙度有所改善。所有 MWF 车削试验的共同点是在低侧面磨损时切屑形态的变化,本文对此进行了讨论。讨论的其他发现包括乳化液中稀释的 MWF 浓度的敏感性以及所用批次中工件硬度的影响,并为改进精车方法以评估 MWF 提出了有用的建议。
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