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Research Article

Modeling and optimization of cutting process parameters in face milling of EN 31 alloy steel using nanoparticle fluids

ORCID Icon, , , , &
Pages 1523-1535 | Accepted 21 Mar 2023, Published online: 05 Apr 2023

References

  • Özbek O, Saruhan H. The effect of vibration and cutting zone temperature on surface roughness and tool wear in eco-friendly MQL turning of AISI D2. J Mater Res Technol. 2020;9(3):2762–2772.
  • Muaz M, Choudhury SK. Experimental investigations and multi-objective optimization of MQL-assisted milling process for finishing of AISI 4340 steel. Measurement. 2019;138:557–569.
  • Minh DT, The LT, Bao NT. Performance of Al2O3 nanofluids in minimum quantity lubrication in hard milling of 60si2mn steel using cemented carbide tools. Adv Mech Eng. 2017;9(7):1687814017710618.
  • Ul Haq MA, Hussain S, Ali MA, et al. Evaluating the effects of nano-fluids based MQL milling of IN718 associated to sustainable productions. J Clean Prod. 2021;310:127463.
  • Uysal A. Investigation of flank wear in MQL milling of ferritic stainless steel by using nano graphene reinforced vegetable cutting fluid. Industrial Lubrication and Tribology; 2016.
  • Uysal A, Demiren F, Altan E. Applying minimum quantity lubrication (MQL) method on milling of martensitic stainless steel by using nano MoS2 reinforced vegetable cutting fluid. Procedia Soc Behav Sci. 2015;195:2742–2747.
  • Yıldırım ÇV, Sarıkaya M, Kıvak T, et al. The effect of addition of hBN nanoparticles to nanofluid-MQL on tool wear patterns, tool life, roughness and temperature in turning of Ni-based Inconel 625. Tribol Int. 2019;134:443–456.
  • Wang CD, Chen M, An QL, et al. Tool wear performance in face milling Inconel 182 using minimum quantity lubrication with different nozzle positions. Int J Precis Eng Manuf. 2014;15(3):557–565.
  • Popov A, Babak S. Effect of cutting modes and tool wear on the microhardness of the surface layer after face milling of structural and stainless steels. Manuf Technol. 2018;18(6):1011–1014.
  • Singh T, Sharma VK, Rana M, et al. Multi response optimization of process variables in MQL assisted face milling of EN31 alloy steel using grey relational analysis. Mater Today Proc. 2021;47:4062–4066.
  • Singh T, Sharma VK, Rana M, et al. GRA based optimization of tool vibration and surface roughness in face milling of hardened steel alloy. Mater Today Proc. 2021;50:2288–2293.
  • Rana M, Singh T, Sharma VK, et al. Optimization of surface integrity in face milling of AISI 52,100 alloy steel using Taguchi based grey relational analysis. Mater Today Proc. 2021;50:2105–2110.
  • Žižović M, Miljković B, Marinković D. Objective methods for determining criteria weight coefficients: a modification of the CRITIC method. Decis Mak: Appl Manag Eng. 2020;3(2):149–161.
  • Sharma VK, Rana M, Singh T, et al. Multi-response optimization of process parameters using desirability function analysis during machining of EN31 steel under different machining environments. Mater Today Proc. 2021;44:3121–3126.
  • Wu HW, Zhen J, Zhang J. Urban rail transit operation safety evaluation based on an improved CRITIC method and cloud model. J Rail Transp Plan Manag. 2020;16:100206.
  • Sharma VK, Singh T, Rana M, et al. Experimental investigation of tool wear in face milling of EN-31 steel under different machining environments. Mater Today Proc. 2021;50:2135–2142.
  • Abas M, Alkahtani M, Khalid QS, et al. Parametric study and optimization of end-milling operation of AiSi 1522H steel using definitive screening design and multi-criteria decision-making approach. Materials. 2022;15(12):4086.
  • Nguyen DN, Dao TP, Prakash C, et al. Machining parameter optimization in shear thickening polishing of gear surfaces. J Mater Res Technol. 2020;9(3):5112–5126.
  • Prakash C, Singh S, Singh M, et al. Multi-objective parametric appraisal of pulsed current gas tungsten arc welding process by using hybrid optimization algorithms. Int J Adv Manuf Technol. 2019;101:1107–1123.
  • Uddin M, Basak A, Pramanik A, et al. Evaluating hole quality in drilling of Al 6061 alloys. Materials. 2018;11:2443.
  • Sharma, V.K., Singh, T., Singh, K., Rana, M. and Kaur, G., 2023. Multi-response Optimization in Face Milling of EN-31 Steel Using Hybrid CRITIC and DFA Technique. In Emerging Trends in Mechanical and Industrial Engineering: Select Proceedings of ICETMIE 2022 (pp. 723–738). Singapore: Singapore.
  • Sharma VK, Singh T, Singh K, et al. Optimization of surface qualities in face milling of EN-31 employing hBN nanoparticles-based minimum quantity lubrication. Mater Today Proc. 2022;69:303–308.
  • Singh, K., Singh, A.K. and Chattopadhyay, K.D., 2020. Application of Taguchi method to optimize the surface roughness during face milling of rolled steel (AISI 1040). In Proceedings of International Conference in Mechanical and Energy Technology: ICMET 2019, India (pp. 239–249). Springer Singapore
  • Prakash C, Singh G, Singh S, et al. Mechanical reliability and in vitro bioactivity of 3D-printed porous polylactic acid-hydroxyapatite scaffold. J Mater Eng Perform. 2021;30:4946–4956.
  • Singh H, Kumar R, Prakash C, et al. HA-based coating by plasma spray techniques on titanium alloy for orthopedic applications. Mater Today Proc. 2022;50:612–628.
  • Singh, K., Goyal, R., Singh, J., Gupta, R. and Madan, M., 2022. Optimization and Validation of Material Removal Rate During EDM of HSLA Steel. In Recent Trends in Industrial and Production Engineering: Select Proceedings of ICAST 2020 (pp. 163–171). Springer Singapore.

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