Journal of Surface Engineered Materials and Advanced Technology

Journal of Surface Engineered Materials and Advanced Technology

ISSN Print: 2161-4881
ISSN Online: 2161-489X
www.scirp.org/journal/jsemat
E-mail: jsemat@scirp.org
"Effects of Laser Hardening Process Parameters on Case Depth of 4340 Steel Cylindrical Specimen—A Statistical Analysis"
written by Noureddine Barka, Abderrazak El Ouafi,
published by Journal of Surface Engineered Materials and Advanced Technology, Vol.5 No.3, 2015
has been cited by the following article(s):
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[1] Effects of laser process parameters on the hardness profile of AISI 4340 cylindrical samples: statistical and experimental analyses
… International Journal of …, 2022
[2] Investigation of Surface Residual Stress for Medium Carbon Steel Quenched by YAG Laser with Extended Cycloidal Motion
Metals, 2022
[3] Analysis of residual stress distribution characteristics of laser surface hardening based on Voronoi model
Optics & Laser Technology, 2022
[4] Laser hardening process simulation for cast iron
AIP Conference …, 2022
[5] Simulation of laser hardening process of EN8 and EN24 steel
AIP Conference …, 2022
[6] СЕЛЕКТИВНЕ ПОВЕРХНЕВЕ ЗМІЦНЕННЯ ВАЛУ МЕХАНІЗМУ ПЕРЕДАЧ РОБОТИЗОВАНОЮ ЛАЗЕРНОЮ 3D СИСТЕМОЮ
… : Нові рішення у …, 2022
[7] Finite element analysis and experimental validation of high-speed laser surface hardening process
2021
[8] Inspection géométrique d'alliages d'aluminium soudés au laser: exploration, modélisation et optimisation des techniques d'inspection avec et sans contact-Alliages …
2021
[9] Research Regarding the Increase of Durability of Flexible Die Made from 50CrMo4 Used in the Typographic Industry
2021
[10] Numerical and statistical modelling of high speed rotating diode laser surface hardening process on a steel rod
2021
[11] Optimization of Laser Hardening Process Parameters for Cast Iron Using a Design of Experiment Method
2021
[12] Effects of laser hardening process parameters on hardness depth of Ck45 steel using Taguchi's optimization technique
2020
[13] Combining laser transformation hardening and ultrasonic impact strain hardening for enhanced wear resistance of AISI 1045 steel
2020
[14] INVESTIGATIONS ON EFFECT OF LASER HARDENING PROCESS PARAMETERS ON MICROHARDNESS AND TRIBOLOGICAL CHARACTERISTICS OF …
2020
[15] Effects of Laser Hardening Process Parameters on Hardness Profile of 4340 Steel Spline—An Experimental Approach
2020
[16] Proposal of High-Quality Laser Hardening System for Shaft Parts Using Cylindrical Mirror and Ring-Beam Shaped by High-Speed Laser Scan System
2020
[17] Temperature Field Numerical Analysis Mode and Verification of Quenching Heat Treatment Using Carbon Steel in Rotating Laser Scanning
2019
[18] Effect of Process Parameters on Surface Properties of Laser-Hardened Cast Iron
2019
[19] Servo-Control applied to the Parameters of the Laser Hardening Process for a Regular Case Depth of 4340 Steel Cylindrical Specimen
2019
[20] Experimental Investigation of Laser Surface Transformation Hardening of 4340 Steel Spur Gears
Journal of Manufacturing and Materials Processing, 2019
[21] Provided for non-commercial research and educational use. Not for reproduction, distribution or commercial use
2019
[22] Optimization of the Case Depth of a Cylinder Made with 4340 Steel by a Control of the Laser Heat Treatment Parameters
2018
[23] Prediction of the hardness profile of an AISI 4340 steel cylinder heat-treated by laser-3D and artificial neural networks modelling and experimental validation
Journal of Mechanical Science and Technology, 2017
[24] Provided for non-commercial research and educational use. Not for reproduction, distribution or commercial use.
2017
[25] Prédiction du profil de dureté sur des cannelures traitées thermiquement au laser: modèle 3D et réseaux de neurones
2016
[26] A Predictive Modeling Based on Regression and Artificial Neural Network Analysis of Laser Transformation Hardening for Cylindrical Steel Workpieces
2016
[27] Prédiction du profil de dureté sur des cannelures traitées thermiquement au laser—Modèle 3D et réseaux de neurones
2016
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