دنبال کردن
Dalia Mahmoud
Dalia Mahmoud
Lecturer, Alexandria University, Faculty of Engineering
ایمیل تأیید شده در alexu.edu.eg
عنوان
نقل شده توسط
نقل شده توسط
سال
Lattice Structures and Functionally Graded Materials Applications in Additive Manufacturing of Orthopedic Implants: A Review
D Mahmoud, M Elbestawi
Journal of Manufacturing and Materials Processing 1 (13), 2017
4402017
The influence of selective laser melting defects on the fatigue properties of Ti6Al4V porosity graded gyroids for bone implants
D Mahmoud, KS Al-Rubaie, MA Elbestawi
International Journal of Mechanical Sciences 193, 106180, 2021
1052021
On the application of machine learning for defect detection in L-PBF additive manufacturing
MG Mohammadi, D Mahmoud, M Elbestawi
Optics & Laser Technology 143, 107338, 2021
802021
Applications of Machine Learning in Process Monitoring and Controls of L-PBF Additive Manufacturing: A Review
D Mahmoud, M Magolon, J Boer, MA Elbestawi, MG Mohammadi
Appl. Sci. 11 (11910), 2021
772021
Selective laser melting of porosity graded lattice structures for bone implants
D Mahmoud, MA Elbestawi
The International Journal of Advanced Manufacturing Technology 100, 2915-2927, 2019
752019
Enhancement of heat exchanger performance using additive manufacturing of gyroid lattice structures
D Mahmoud, SRS Tandel, M Yakout, M Elbestawi, F Mattiello, S Paradiso, ...
The International Journal of Advanced Manufacturing Technology 126 (9), 4021 …, 2023
492023
The importance of additive manufacturing processes in industrial applications
M Al-Makky, D Mahmoud
The International Conference on Applied Mechanics and Mechanical Engineering …, 2016
242016
Process–structure–property relationships in selective laser melting of porosity graded gyroids
D Mahmoud, MA Elbestawi, B Yu
Journal of Medical Devices 13 (3), 031005, 2019
202019
Optimization of the longitudinal resolution of a structured light shape reconstruction system, a DOE approach
D Mahmoud, A Khalil, M Younes
International Journal of Precision Engineering and Manufacturing 16 (9 …, 2015
72015
Characterizing mineral ellipsoids in new bone formation at the interface of Ti6Al4V porous implants
J Deering, J Chen, D Mahmoud, T Tang, Y Lin, Q Fang, GR Wohl, ...
Advanced Materials Interfaces 10 (24), 2300333, 2023
52023
Processing of hydroxyapatite (HA)–Ti–6Al–4V composite powders via laser powder bed fusion (LPBF): effect of HA particle size and content on the microstructure and mechanical …
E Fereiduni, M Balbaa, D Mahmoud, M Elbestawi, G Li, J Chen, L Yujing
journal of materials research and technology 24, 8766-8781, 2023
52023
Laser powder bed fusion of hydroxyapatite functionalized Ti-6Al-4V bi-material with potential biomedical applications
E Fereiduni, D Mahmoud, M Balbaa, M Elbestawi
Materials Letters 326, 132973, 2022
52022
Osseointegration of functionally graded Ti6Al4V porous implants: Histology of the pore network
J Deering, D Mahmoud, E Rier, Y Lin, AC do Nascimento Pereira, ...
Biomaterials Advances 155, 213697, 2023
32023
A single scan longitudinal calibration technique for fringe projection profilometry
D Mahmoud, A Khalil, M Younes
Optik 166, 270-277, 2018
32018
Osteogenic properties of titanium alloy Ti6Al4V-hydroxyapatite composites fabricated by selective laser melting
Y Lin, M Balbaa, W Zeng, Y Yang, D Mahmoud, M Elbestawi, F Deng, ...
Journal of Materials Engineering and Performance 33 (18), 9664-9675, 2024
22024
Selective Laser Melting of Porosity Graded Gyroids for Bone Implant Applications
D Mahmoud
12020
Characterizing Mineral Ellipsoids in New Bone Formation at the Interface of Ti6Al4V Porous Implants (Adv. Mater. Interfaces 24/2023).
J Deering, J Chen, D Mahmoud, T Tang, Y Lin, Q Fang, GR Wohl, ...
Advanced Materials Interfaces 10 (24), 2023
2023
Effect of Microstructure and Internal Defects on the Mechanical Properties of Ti6Al4V Gyroid Lattice Structures for Biomedical Implants
D Mahmoud, M Elbestawi, K Al-Rubaie
Fourth ASTM Symposium on Structural Integrity of Additive Manufactured …, 2020
2020
سیستم در حال حاضر قادر به انجام عملکرد نیست. بعداً دوباره امتحان کنید.
مقاله‌ها 1–18