Ensuring Tool Run-In When Milling AISI321 Steel in Various Technological Environments
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-61797-3_16
Reference13 articles.
1. Pang, S., et al.: Effect of cutting fluid on milled surface quality and tool life of aluminum alloy. Materials 16, 2198 (2023). https://doi.org/10.3390/ma16062198
2. Touggui, Y., Uysal, A., Emiroglu, U., Dzhemilov, E., Belhadi, S.: Improvement of the MQL efficiency in machining stainless steel by adding nanoparticles to the cutting fluid. In: Tonkonogyi, V., Ivanov, V., Trojanowska, J., Oborskyi, G., Pavlenko, I. (eds.) Advanced Manufacturing Processes III. InterPartner 2021. LNME, pp. 219–228. Springer, Cham (2022). https://doi.org/10.1007/978-3-030-91327-4_22
3. Saminathan, V., Iqbal, M., Ghani, J.A.: A study on the effects of hybridized metal oxide and carbonaceous nano-cutting fluids in the end milling of AA6082 aluminum alloy. Lubricants 11(2), 87 (2023). https://doi.org/10.3390/lubricants11020087
4. Baldin, V., et al.: Influence of graphene nanosheets on thermo-physical and tribological properties of sustainable cutting fluids for MQL application in machining processes. Lubricants 10, 193 (2022). https://doi.org/10.3390/lubricants10080193
5. Kilincarslan, S.K., Cetin, M.H.: Improvement of the milling process performance by using cutting fluids prepared with nano-silver and boric acid. J. Manuf. Process. 56, 707–717 (2020)
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