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Progress for sustainability in the mist assisted cooling techniques: a critical review
The International Journal of Advanced Manufacturing Technology ( IF 3.4 ) Pub Date : 2020-07-01 , DOI: 10.1007/s00170-020-05529-x
Gurraj Singh , Munish Kumar Gupta , Hussein Hegab , Aqib Mashood Khan , Qinghua Song , Zhanqiang Liu , Mozammel Mia , Muhammed Jamil , Vishal S. Sharma , Murat Sarikaya , Catalin Iulian Pruncu

The proper implementation of sustainable manufacturing processes is an effective step towards a clean environment. The modern cooling strategies applied in the manufacturing sector have presented promising solutions that enable economic growth and ecological environment. In machining operations, cryogenic cooling and minimum quantity lubrication (MQL) have been extensively utilized to replace conventional cooling techniques. Thus, this work offers a detailed review of major works focused on manufacturing processes that use some of these sustainable cooling/lubrication modes (i.e., MQL, nanocutting fluids, nanofluid-based MQL strategy, and other miscellaneous MQL upgrades). The main driver of this study is to create a bridge between the past and present studies related to MQL and MQL upgrades. In this way, a new guideline can be established to offer clear directions for a better economic vision and a cleaner manufacturing process. Thus, this review has mainly focused on the machining of the most commonly used materials under MQL-related methods in conventional operations including turning, milling, drilling, and grinding. Current work provides a detailed insight into the major benefits, limitations, as well as mechanisms of cooling strategies that directly affects the machinability performance from a sustainable point of view. In summary, further potential upgrades are indicated so that it will help to drive more sustainable approaches in terms of cooling and lubrication environment during machining processes.



中文翻译:

薄雾辅助冷却技术的可持续性进展:关键评论

正确实施可持续制造流程是迈向清洁环境的有效步骤。制造业中采用的现代冷却策略提出了有希望的解决方案,可实现经济增长和生态环境。在机加工操作中,低温冷却和最小量润滑(MQL)已被广泛用于替代常规冷却技术。因此,这项工作提供了对主要工作的详细回顾,这些工作主要集中在使用某些可持续冷却/润滑模式(即MQL,纳米切削液,基于纳米流体的MQL策略以及其他MQL升级)的制造过程中。这项研究的主要驱动力是在与MQL和MQL升级相关的过去和现在的研究之间架起一座桥梁。通过这种方式,可以建立新的指南,以提供明确的指导,以实现更好的经济前景和更清洁的制造过程。因此,这篇综述主要集中在与MQL相关的方法的常规操作(包括车削,铣削,钻孔和磨削)中,对最常用材料的加工。当前的工作提供了从可持续性角度直接影响切削性能的主要优势,局限性以及冷却策略机制的详细见解。总而言之,表明了进一步的潜在升级,从而将有助于在加工过程中在冷却和润滑环境方面推动采用更可持续的方法。这篇综述主要侧重于在常规操作(包括车削,铣削,钻孔和磨削)中采用MQL相关方法对最常用的材料进行机加工。当前的工作提供了从可持续性角度直接影响切削性能的主要优势,局限性以及冷却策略机制的详细见解。总而言之,表明了进一步的潜在升级,从而将有助于在加工过程中在冷却和润滑环境方面推动采用更可持续的方法。这篇综述主要侧重于在常规操作(包括车削,铣削,钻孔和磨削)中采用MQL相关方法对最常用的材料进行机加工。当前的工作提供了从可持续性角度直接影响切削性能的主要优势,局限性以及冷却策略机制的详细见解。总而言之,表明了进一步的潜在升级,从而将有助于在加工过程中在冷却和润滑环境方面推动采用更可持续的方法。以及从可持续的角度直接影响切削性能的冷却策略机制。总而言之,表明了进一步的潜在升级,从而将有助于在加工过程中在冷却和润滑环境方面推动采用更可持续的方法。以及从可持续的角度直接影响切削性能的冷却策略机制。总而言之,表明了进一步的潜在升级,从而将有助于在加工过程中在冷却和润滑环境方面推动采用更可持续的方法。

更新日期:2020-07-02
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