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Technological Investigation about Minimum Quantity Lubrication Grinding Metallic Material with Nanofluid

机译:纳米流体最小量磨削金属材料的工艺研究

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In the recent years, a number of patents have been developed to improve grinding techniques that will be beneficial to the environment. Among them, nanofluid minimum quantity lubrication (MQL) has emerged as the extremely significant aspect in grinding because of environmentally friendly, energy efficient and cost-effective properties. One patent is about a supply system for the grinding fluid in nano-particle jet MQL, which produced MQL lubricant by adding solid nano-particles in degradable grinding fluid. During grinding process, grinding fluid could be served in lubrication, cooling, cleaning and rust prevention, thus enabling to prolong service life of the grinding wheel, protect work-piece processing quality and precision, improve production efficiency, and lower cost. In considering of environmental protection, low carbon, processing performance and economical efficiency, flood grinding could not adapt to the concept of green manufacturing and sustainable development any longer. The clean and pollution-free MQL grinding technique has attracted wide research attentions. Particularly, with the continuous development of nanotechnology, nanofluid MQL grinding which combines nanotechnology and MQL grinding technique further improves the poor cooling effect of MQL grinding and becomes the frontier research topic of grinding process. This paper describes research progresses of nanofluid MQL grinding mainly from different nanofiuids, different base oil, different nanofluid concentrations and efflux parameters, and proposes the development trend of nanofluid MQL grinding.
机译:近年来,已经开发了许多专利来改进对环境有益的研磨技术。其中,由于具有环保,节能和具有成本效益的特性,纳米流体最小量润滑(MQL)已成为研磨中极为重要的方面。一项专利涉及一种用于纳米颗粒射流MQL中的研磨液的供应系统,该系统通过在可降解的研磨液中添加固体纳米颗粒来生产MQL润滑剂。在磨削过程中,磨削液可以起到润滑,冷却,清洁和防锈的作用,从而可以延长砂轮的使用寿命,保护工件的加工质量和精度,提高生产效率,并降低成本。考虑到环境保护,低碳,加工性能和经济效率,水磨不再适应绿色制造和可持续发展的概念。清洁且无污染的MQL研磨技术已引起广泛的研究关注。特别是随着纳米技术的不断发展,结合纳米技术和MQL磨削技术的纳米流体MQL磨削进一步改善了MQL磨削的不良冷却效果,成为磨削工艺的前沿研究课题。本文主要从不同的纳米流体,不同的基础油,不同的纳米流体浓度和流量参数出发,描述了纳米流体MQL的研究进展,并提出了纳米流体MQL的发展趋势。

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