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传统和混合纳米流体在不同加工工艺中的应用:一项批判性综述。

Application of conventional and hybrid nanofluids in different machining processes: A critical review.

作者信息

Hemmat Esfe Mohammad, Bahiraei Mehdi, Mir Ashkan

机构信息

Department of Energy, Water, Energy and Environment center, Tehran, Iran.

Faculty of Engineering, Razi University, Kermanshah, Iran.

出版信息

Adv Colloid Interface Sci. 2020 Aug;282:102199. doi: 10.1016/j.cis.2020.102199. Epub 2020 Jun 13.

Abstract

This paper reviews the application of conventional and hybrid nano cutting fluids with different additives in various machining processes, namely turning, milling, drilling, and grinding ones. The literature states that using nanofluids, as cutting fluids, improves the lubrication and cooling in comparison with conventional cutting liquids, while the level of improvement depends on some parameters. In turning process, for each nanofluid, there is a specific pressure, flow rate, and nanoparticle volume fraction to reach optimum performance. Nanoparticle concentration in the range of 0.25%-0.5% (low and economical concentrations) is the most repetitive for optimal case in most of machining processes. Also, hybrid nanofluids show more positive effects compared with conventional nanofluids and base fluids. According to the reports, important parameters such as cutting temperature, cutting force, tool wear, and surface roughness experience 10%-40% and in some cases 50%-70% positive change after applying nanoparticles in turning processes. On the other hand, for the milling process, the SiO, MoS and graphene nanoparticles are reported as most applied and effective ones in the literature. For the drilling process, the Cu and diamond nanoparticles are the most applied nanoparticles with positive effect. Moreover, the most utilized nanoparticles for grinding process are MoS, AlO and diamond families. The corresponding challenges in this field are also examined and directions for future research are recommended.

摘要

本文综述了添加不同添加剂的传统纳米切削液和混合纳米切削液在车削、铣削、钻孔和磨削等各种加工工艺中的应用。文献表明,与传统切削液相比,使用纳米流体作为切削液可改善润滑和冷却效果,而改善程度取决于一些参数。在车削过程中,对于每种纳米流体,都有特定的压力、流速和纳米颗粒体积分数以达到最佳性能。在大多数加工工艺中,纳米颗粒浓度在0.25%-0.5%(低浓度且经济)范围内是最常出现的最佳情况。此外,与传统纳米流体和基础流体相比,混合纳米流体显示出更积极的效果。根据报告,在车削过程中应用纳米颗粒后,切削温度、切削力、刀具磨损和表面粗糙度等重要参数会出现10%-40%的积极变化,在某些情况下甚至会有50%-70%的积极变化。另一方面,对于铣削工艺,文献报道SiO、MoS和石墨烯纳米颗粒是应用最广泛且最有效的。对于钻孔工艺,Cu和金刚石纳米颗粒是应用最广泛且有积极效果的纳米颗粒。此外,磨削工艺中最常用的纳米颗粒是MoS、AlO和金刚石类。本文还研究了该领域相应的挑战,并推荐了未来的研究方向。

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