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Initial investigation on Surface Integrity when Machining Inconel 718 with Conventional and Electrostatic Lubrication

机译:用常规和静电润滑加工第718时表面完整性的初步研究

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Inconel 718 is largely used in high-temperature applications where high hot strength and hardness are required,such as in aerospace and oil & gas industries.The majority of parts made from Inconel718,especially in the aerospace industries,are safety-critical components where surface quality is of significant importance.In industrial practice,the development of satisfactory surface integrity for high-performance applications of Inconel 718 is still a difficult process when machining parts with conventional cutting fluid.However,a potential alternative to conventional cooling is Minimum Quantity Lubrication(MQL),since it avoids large amounts of cutting fluid,and enhances the functional behaviour of machined components through superior surface quality.In addition,further improvements can be achieved with electrostatic lubrication(EL).With EL,the lubricant is electrosprayed increasing penetrability,atomization,deposition and wettability in the machining area.In this paper,a nozzle designed for electrostatic spraying using MQL is presented.The effects of EL on surface integrity are discussed in comparison with conventional MQL and Flood strategies.Machining experiments have been carried out in line with finishing conditions analogous to those adopted in industry for the milling of nickel-based super alloys.For these experiments,MQL and EL are supplied with the same setup,except for charging conditions.Surface integrity characteristics such as roughness,hardness and surface defects are investigated together with power consumption and tool life.
机译:Inconel 718主要用于需要高温强度和硬度的高温应用,例如航空航天和石油和天然气行业。由Inconel718,特别是在航空航天行业中的大部分零件是安全关键的组件质量具有重要意义。在工业实践中,在使用常规切割液加工零件时,Inconel 718的高性能应用的令人满意的表面完整性的开发仍然是难以实现的。然而,传统冷却的潜在替代物是最小的润滑( MQL),由于它避免了大量的切削液,并且通过优异的表面质量增强了加工部件的功能性行为。此外,通过静电润滑(EL)可以实现进一步的改进。与EL,润滑剂是电喷雾的渗透性,加工区域中的雾化,沉积和润湿性。本文设计了喷嘴介绍了使用MQL的静电喷涂。与常规MQL和洪水策略相比,勘探EL对表面完整性的影响。总体上的实验已经符合了与工业中采用的镍碾磨的碾磨方法的整理条件进行了实验超级合金。对于这些实验,除了充电条件之外,MQL和EL提供了相同的设置,除了充电条件。诸如粗糙度,硬度和表面缺陷的表面完整性特征以及功耗和工具寿命。

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