Progress for sustainability in the mist assisted cooling techniques: a critical review
Autor: | Hussein Hegab, Qinghua Song, Mozammel Mia, Muhammed Jamil, Catalin I. Pruncu, Zhanqiang Liu, Munish Kumar Gupta, Gurraj Singh, Vishal S. Sharma, Aqib Mashood Khan, Murat Sarikaya |
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Rok vydání: | 2020 |
Předmět: |
0209 industrial biotechnology
Computer science business.industry Mechanical Engineering Machinability Sustainable manufacturing Mist Drilling 02 engineering and technology Industrial and Manufacturing Engineering Computer Science Applications Grinding 020901 industrial engineering & automation Nanofluid Work (electrical) Machining Control and Systems Engineering Sustainability Lubrication Process engineering business Software |
Zdroj: | The International Journal of Advanced Manufacturing Technology. 109:345-376 |
ISSN: | 1433-3015 0268-3768 |
DOI: | 10.1007/s00170-020-05529-x |
Popis: | 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. |
Databáze: | OpenAIRE |
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