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Original Articles

Nano-Cutting Fluid for Enhancement of Metal Cutting Performance

, , &
Pages 963-967 | Received 30 Mar 2011, Accepted 13 Jul 2011, Published online: 01 Aug 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (24)

Hamed Adibi, Omid Hatami & Seyed Mehdi Rezaei. (2023) Effects of minimum quantity lubrication (MQL) on grinding processes using eco-friendly nanofluids: a review. Advances in Materials and Processing Technologies 0:0, pages 1-42.
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Mayurkumar A. Makhesana & Kaushik M. Patel. (2022) Performance assessment of vegetable oil-based nanofluid in Minimum Quantity Lubrication (MQL) during machining of Inconel 718. Advances in Materials and Processing Technologies 8:3, pages 3182-3198.
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Roshan Lal Virdi, Sukhpal Singh Chatha & Hazoor Singh. (2022) Processing Characteristics of Different Vegetable Oil-based Nanofluid MQL for Grinding of Ni-Cr Alloy. Advances in Materials and Processing Technologies 8:1, pages 210-223.
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Jianhua Li, Peng Wei, Liqun Liu, Hui Cao, Zihao Shao, Haiyan Li, Chunli Lei & Ruicheng Feng. (2021) Effect of water medium on material removal and sub-surface defect evolution in nano-cutting of single-crystal γ-TiAl alloy. Molecular Simulation 47:17, pages 1433-1442.
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K. V. Ramanan, S. Ramesh Babu, M. Jebaraj & K. Nimel Sworna Ross. (2021) Face turning of Incoloy 800 under MQL and nano-MQL environments. Materials and Manufacturing Processes 36:15, pages 1769-1780.
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Rahul Anand, Ankush Raina, Mir Irfan Ul Haq, M. J. Mir, Ovais Gulzar & M. F. Wani. (2021) Synergism of TiO2 and Graphene as Nano-Additives in Bio-Based Cutting Fluid—An Experimental Investigation. Tribology Transactions 64:2, pages 350-366.
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Milon D. Selvam & N. M. Sivaram. (2020) A comparative study on the surface finish achieved during turning operation of AISI 4340 steel in flooded, near-dry and dry conditions. Australian Journal of Mechanical Engineering 18:3, pages 457-466.
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Rahul Katna, M. Suhaib & Narayan Agrawal. (2020) Nonedible vegetable oil-based cutting fluids for machining processes – a review. Materials and Manufacturing Processes 35:1, pages 1-32.
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Neelesh Kumar Sahu, Atul B. Andhare & Roja Abraham Raju. (2018) Evaluation of performance of nanofluid using multiwalled carbon nanotubes for machining of Ti–6AL–4V. Machining Science and Technology 22:3, pages 476-492.
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Roja Abraham Raju, Atul Andhare & Neelesh Kumar Sahu. (2017) Performance of multi-walled carbon nanotube-based nanofluid in turning operation. Materials and Manufacturing Processes 32:13, pages 1490-1496.
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Sourabh Paul, Abhinav Kumar Singh & Amitava Ghosh. (2017) Grinding of Ti-6Al-4V Under Small Quantity Cooling Lubrication Environment Using Alumina and MWCNT Nanofluids. Materials and Manufacturing Processes 32:6, pages 608-615.
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T. Rajmohan, S. D. Sathishkumar & K. Palanikumar. (2017) Effect of a nanoparticle-filled lubricant in turning of AISI 316L stainless steel (SS). Particulate Science and Technology 35:2, pages 201-208.
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Atul B. Andhare & Roja Abraham Raju. (2016) Properties of Dispersion of Multiwalled Carbon Nanotubes as Cutting Fluid. Tribology Transactions 59:4, pages 663-670.
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Anuj Kumar Sharma, Arun Kumar Tiwari & Amit Rai Dixit. (2015) Progress of Nanofluid Application in Machining: A Review. Materials and Manufacturing Processes 30:7, pages 813-828.
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Faraz Niyaghi, Karl R. Haapala, Stacey L. Harper & Michael C. Weismiller. (2014) Stability and Biological Responses of Zinc Oxide Metalworking Nanofluids (ZnO MWnF™) using Dynamic Light Scattering and Zebrafish Assays. Tribology Transactions 57:4, pages 730-739.
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M. Amrita, R.R. Srikant & A.V. Sitaramaraju. (2014) Performance Evaluation of Nanographite-Based Cutting Fluid in Machining Process. Materials and Manufacturing Processes 29:5, pages 600-605.
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