Modern Mechanical Engineering

Modern Mechanical Engineering

ISSN Print: 2164-0165
ISSN Online: 2164-0181
www.scirp.org/journal/mme
E-mail: mme@scirp.org
"Experimentation on Tool Wear and Surface Roughness in AISI D2 Steel Turning with WC Insert"
written by N. López-Luiz, O. Jiménez Alemán, F. Alvarado Hernández, M. Montoya Dávila, V. H. Baltazar-Hernández,
published by Modern Mechanical Engineering, Vol.8 No.3, 2018
has been cited by the following article(s):
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[1] Experimental investigation of turning AISI D2 steel using sillimanite (Al2SiO5)
Materials and …, 2024
[2] Contribution to practical analysis of surface roughness modeling during dry hard turning of cold work tool steel AISI D2
Surface Review and Letters, 2024
[3] A conceptual framework for sustainability impact assessment in machining bohler tool steel under hBN-enriched nano cutting fluids environment
Sustainable Materials and Technologies, 2023
[4] Comparison of performances of novel PVD insert and uncoated carbide insert in CNC turning of HCHC D2 steel for minimizing surface roughness
AIP Conference Proceedings, 2023
[5] Investigation of Machining Performance of MQL and MQCL Hard Turning Using Nano Cutting Fluids. Fluids 2022, 7, 143
2022
[6] Investigation of Machining Performance of MQL and MQCL Hard Turning Using Nano Cutting Fluids
Fluids, 2022
[7] A novel method for online monitoring of surface quality and predicting tool wear conditions in machining of materials
… International Journal of …, 2022
[8] Experimental investigation and optimization of abrasive waterjet machining parameters for GFRP composites using metaphor-less algorithms
2021
[9] Application of Utility Function Approach Aggregated with Imperialist Competitive Algorithm for Optimization of Turning Parameters of AISI D2 Steel
2020
[10] Parametric Optimization and Modeling for Flank Wear of TiSiN-TiAlN Nanolaminate Cutting Insert
2020
[11] Experimental Investigation on Tool Wear in AISI H13 Die Steel Turning Using RSM and ANN Methods
2020
[12] Application of Utility Function Approach Aggregated with Imperialist Competitive Algorithm for Optimization of Turning
2019
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