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不同冷却/润滑条件下使用赛隆陶瓷刀具车削尼特拉镍60钢的可加工性研究

Machinability Investigation of Nitronic 60 Steel Turning Using SiAlON Ceramic Tools under Different Cooling/Lubrication Conditions.

作者信息

Padhan Smita, Das Sudhansu Ranjan, Das Anshuman, Alsoufi Mohammad S, Ibrahim Ahmed Mohamed Mahmoud, Elsheikh Ammar

机构信息

Department of Production Engineering, Veer Surendra Sai University of Technology, Burla 768018, India.

Department of Mechanical Engineering, DIT University, Dehradun 248001, India.

出版信息

Materials (Basel). 2022 Mar 23;15(7):2368. doi: 10.3390/ma15072368.

Abstract

The machining of nickel-based super alloys is challenging, owing to the generation of high cutting temperatures, as well as difficulty in maintaining dimensional accuracy and minimizing surface roughness, which compels the use of cutting fluids for reducing these issues due to efficient cooling/lubrication strategies. The present work investigates the comparative performance of four cooling/lubrication techniques: dry cutting, wet, minimum quantity lubricant (MQL) and compressed-air modes in turning Nitronic 60 steel using a new-generation SiAlON ceramic inserts. Several machinability parameters were analyzed for performance evaluation. For this purpose, 16 cycles of turning trials were performed based on Taguchi's L orthogonal array experimental design by varying cutting conditions and lubrication modes. MQL exhibits beneficial effects as compared to the other lubrication conditions concerning low cutting force, improved surface finish, decreased cutting temperature, longer tool life, and lower white layer thickness on machined surface. Burr formation on the saw-tooth chip surface, as well as friction, greatly influenced the tool flank wear due to improper cooling and poor lubrication approach in dry, wet, and compressed-air-cooled machining environments in comparison to MQL-machining. From an economical perspective, the tool life in MQL machining improved by 11%, 72%, and 138% in the comparison with flooded, compressed-air, and dry conditions, respectively. The results of the study demonstrate that using the MQL system can help with heat extraction capability, and provide some promising outcomes.

摘要

镍基高温合金的加工具有挑战性,这是由于会产生较高的切削温度,以及难以保持尺寸精度并使表面粗糙度最小化,这就迫使人们使用切削液,通过高效的冷却/润滑策略来减少这些问题。本研究调查了四种冷却/润滑技术的对比性能:干式切削、湿式、微量润滑(MQL)和压缩空气模式,采用新一代SiAlON陶瓷刀片车削Nitronic 60钢。分析了几个可加工性参数以进行性能评估。为此,基于田口的L正交阵列实验设计,通过改变切削条件和润滑模式进行了16个周期的车削试验。与其他润滑条件相比,MQL在低切削力、改善表面光洁度、降低切削温度、延长刀具寿命以及降低加工表面的白层厚度方面表现出有益效果。与MQL加工相比,在干式、湿式和压缩空气冷却加工环境中,由于冷却不当和润滑方法不佳,锯齿状切屑表面上的毛刺形成以及摩擦对刀具后刀面磨损有很大影响。从经济角度来看,与淹没式、压缩空气式和干式条件相比,MQL加工中的刀具寿命分别提高了11%、72%和138%。研究结果表明,使用MQL系统有助于提高散热能力,并提供一些有前景的成果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3db9/8999871/0b5661872d22/materials-15-02368-g001.jpg

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