Cooling techniques to improve the machinability and sustainability of light-weight alloys: A state-of-the-art review
Yazarlar (9)
Prof. Dr. Murat SARIKAYA Sinop Üniversitesi, Türkiye
Munish Kumar Gupta
Shandong University, Çin
Italo Tomaz
Fluminense Federal Institute, Brezilya
Mohd Danish
University Of Jeddah, Suudi Arabistan
Mozammel Mia
Imperial College London, İngiltere
Saeed Rubaiee
University Of Jeddah, Suudi Arabistan
Mohd Jamil
Nanjing University Of Aeronautics And Astronautics, Çin
Danil Yu Pimenov South Ural State University, Rusya Federasyonu
Navneet Khanna
Institute Of Infrastructure, Technology, Research And Management, Hindistan
Makale Türü Özgün Makale (SSCI, AHCI, SCI, SCI-Exp dergilerinde yayınlanan tam makale)
Dergi Adı Journal of Manufacturing Processes (Q1)
Dergi ISSN 1526-6125 Dergi Bilgileri (2021)
Dergi Tarandığı Indeksler SCI-Expanded
Makale Dili İngilizce Basım Tarihi 02-2021
Cilt / Sayı / Sayfa 62 / 1 / 179–201 DOI 10.1016/j.jmapro.2020.12.013
Makale Linki http://dx.doi.org/10.1016/j.jmapro.2020.12.013
UAK Araştırma Alanları
Üretim Teknolojileri
Özet
A well-acknowledged role of cutting fluids in any cutting operation has made them inevitable to utilize regarding the provision of adequate cooling and lubrication. Mineral-based cutting fluids are common practice in the industry; however, they are not suitable for our ecology and health. Therefore, there is a need to implement sustainable cooling/lubrication system that helps the environment and improves the machinability of light weight alloys. This review is presenting the machining and sustainability characteristics of minimum quantity lubrication (MQL), nanofluids-MQL, Ranque-Hilsch vortex tube MQL (RHVT + MQL), cryogenic-MQL as alternative to flood cooling applications in the cutting of light-weight materials. It can be stated that MQL advancements can offer clear guidelines to implement hybrid cooling techniques to improve heat transfer, lubrication, and sustainable implementations.
Anahtar Kelimeler
Cryogenic cooling | Economic sustainability | Environmental sustainability | Light-weight alloys | MQL advances
Science Direct
BM Sürdürülebilir Kalkınma Amaçları
Atıf Sayıları
Web of Science 157
Scopus 174
Google Scholar 194
Cooling techniques to improve the machinability and sustainability of light-weight alloys: A state-of-the-art review

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