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A comprehensive review on the application of nanofluids in the machining process

机译:纳米流体在加工过程中的应用全面综述

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Industrial evolution and practical application of unusual methods for upgrading production procedures necessitate extensive studies in respective fields, particularly in the machining perspective. Higher yields and incomes are main factors for most of the manufacturers. Indeed, the substantial aim in manufacturing process is to optimize time of production, energy, cost, and resources while improving the function. Nowadays, exploitation of nanotechnology has gained great interest due to promising advantages toward higher yield in different processes. Hence, nanotechnology is considered in machining operations as nanofluid and coated cutting tools with nanoparticles. This review work attempts to represent a comprehensive review of the open literature describing recent advancements in machining application by using nanofluids. Basically, nanofluids could be beneficial in most of the cryogenic systems, heat transfer, and lubrication applications. Current study summarizes substantial aspects of utilizing novel nanofluids as coolant/lubricant with special focus on their impact on cutting parameters in various machining processes consisting of grinding, turning, milling, and drilling. Application of nanofluid enhances lubricant properties which leads to a high wettability and enables the lubrication process of the cutting zone much better while resulting in minimized frictional force. Therefore, cutting force could be reduced due to the reduction in frictional force. Nanofluid enable the production of the lowest surface roughness due to the inclusion of nanoparticles which boosts up the heat transfer rate and consequently improves the properties of the tool's rake face. Nanofluid prolongs the tool life due to the oil mist and the number of nanoparticles formed on flank face. The formed oil mist and nanoparticles in the cutting zone make possibility to create a film of barrier which eventually decreases the cutting force and tool wear. The application of nanofluids reduces tool wear by removing the heat from the primary shearing zone at faster rate and preventing the work piece hardening. Thus, the cutting tool can sustain longer the hardness of the work piece and prevent the tool wear issues.
机译:工业发展和升级生产程序的特殊方法的实际应用需要在各自的领域进行广泛的研究,尤其是在机械加工方面。对大多数制造商来说,更高的产量和收入是主要因素。实际上,制造过程的实质目标是优化生产时间、能源、成本和资源,同时改进功能。如今,纳米技术的开发因其在不同工艺中获得更高产率的优势而受到了极大的关注。因此,在机械加工操作中,纳米技术被视为纳米流体和纳米颗粒涂层刀具。这篇综述文章试图代表对公开文献的全面回顾,这些文献描述了纳米流体在机械加工应用中的最新进展。基本上,纳米流体在大多数低温系统、传热和润滑应用中都是有益的。当前的研究总结了利用新型纳米流体作为冷却剂/润滑剂的实质性方面,特别关注它们在各种加工过程(包括磨削、车削、铣削和钻孔)中对切削参数的影响。纳米流体的应用增强了润滑剂的性能,使其具有较高的润湿性,并使切削区的润滑过程更好,同时将摩擦力降至最低。因此,由于摩擦力的减小,切削力可以减小。纳米流体能够产生最低的表面粗糙度,因为纳米颗粒的加入提高了传热速率,从而改善了刀具前刀面的性能。由于油雾和侧面形成的纳米颗粒数量,纳米流体延长了刀具寿命。切削区形成的油雾和纳米颗粒有可能形成一层屏障,最终降低切削力和刀具磨损。纳米流体的应用通过更快地从主剪切区排出热量并防止工件硬化来减少刀具磨损。因此,刀具可以保持工件更长的硬度,并防止刀具磨损问题。

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