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Cited article:

Adomian decomposition method for modelling the growthof FeB/Fe2B layer in boronizing process

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Confrontation of linear versus nonlinear approach in Fe2B boridelayer thickness predictions

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Zastita Materijala 65 (1) 97 (2024)
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Dybkov model for the estimation of boron diffusion in the FeB/Fe2B bilayer on AISI 316 steel

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Simple model and integral method for simulating the growth of the borided layer FeB/Fe2B on the AISI H13 steel

Omar Belguendouz, Bendaoud Mebarek, Guerri El, Mourad Keddam, Naima Hadjadj and Youcef Djafri
Zastita materijala 64 (4) 491 (2023)
https://doi.org/10.5937/zasmat2304491B

Simulation of the incubation time for the formation of (FeB/Fe2B) bilayer on pure iron

B. Mebarek, M. Keddam and M. Kulka
Koroze a ochrana materialu 65 (2) 49 (2021)
https://doi.org/10.2478/kom-2021-0006

SIMULATION MODEL OF THE GROWTH KINETICS OF Fe2B LAYERS WITH CONSIDERATION OF THE BORIDE INCUBATION TIME EFFECT

BENDAOUD MEBAREK, MOURAD KEDDAM and HAMZA BOUSSEBHA
Surface Review and Letters 27 (04) 1950127 (2020)
https://doi.org/10.1142/S0218625X19501270

A fuzzy neural network approach for modeling the growth kinetics of FeB and Fe2B layers during the boronizing process

Bendaoud Mebarek and Mourad Keddam
Matériaux & Techniques 106 (6) 603 (2018)
https://doi.org/10.1051/mattech/2019002

Comparaison de deux approches numériques pour le traitement de boruration thermochimique de l’acier XC38

Bendaoud Mebarek, Abdelouahab Zanoun and Abdelmajid Rais
Metallurgical Research & Technology 113 (1) 104 (2016)
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Simulation model of monolayer growth kinetics of Fe2B phase

Bendaoud Mebarek, Djamel Madouri, Abdelouahab Zanoun and Abdelkader Belaidi
Matériaux & Techniques 103 (7) 703 (2015)
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Investigation of boriding kinetics of AISI D2 steel

M. Ortiz-Domínguez, M. Keddam, M. Elias-Espinosa, O. Damián-Mejía, M. A. Flores-Rentería, A. Arenas-Flores and J. Hernández-Ávila
Surface Engineering 30 (7) 490 (2014)
https://doi.org/10.1179/1743294414Y.0000000273