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Failure assessment of hip stem due to pelvic positioning and femoral stem loosening
Faculty
Engineering
Year:
2024
Type of Publication:
ZU Hosted
Pages:
Authors:
Hossameldien Mohamed Salam Helmy
Staff Zu Site
Abstract In Staff Site
Journal:
Fatigue & Fracture of Engineering Materials & Structures wiley
Volume:
Keywords :
Failure assessment , , stem , , pelvic positioning , femoral
Abstract:
The hip joint is subjected to different loads, leading to hip stem failure from the crack nucleation to the final implant failure. The main objective of the present work is to assess hip stem damage due to pelvic positioning and femur movem
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Hossameldien Mohamed Salam Helmy, "Effects of composite patching on cyclic crack tip deformation of cracked pinned metallic joints", Taylor & Francis Group, 2021
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Hossameldien Mohamed Salam Helmy, "Intrinsic fracture toughness of fiber reinforced and functionally graded concretes: An innovative approach", sciencedirect, 2021
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Hossameldien Mohamed Salam Helmy, "Flexural behavior of functionally graded concrete beams with different patterns", springer, 2021
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Hossameldien Mohamed Salam Helmy, "Mechanical properties of sustainable concrete comprising various wastes", Springer, 2023
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Hossameldien Mohamed Salam Helmy, "An Assessment of ASTM E1922 for Measuring the Translaminar Fracture Toughness of Laminated Polymer Matrix Composite Materials", MDPI, 2021
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Department Related Publications
Ibrahim Attia Abdelmegeed Abdelgawad, "An experimental study of different factors affecting the bond of NSM FRP bars in concrete", ScienceDirect, 2013
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Mohamed Abdallah Hussin Elmenyawy, ""Positron annihilation spectroscopy and mechanical properties studies for epoxy matrices reinforced with different nanoparticles"", Journal of Polymer Research ( J Polym Res ), 2016
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Ibrahim Attia Abdelmegeed Abdelgawad, "The influence of interaction between NSM and internal reinforcements on the structural behavior of upgrading RC beams", Elsevier, 2019
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Hossameldien Mohamed Salam Helmy, "Utilization of Various Industrial Wastes in Ordinary Concrete Under Normal Manufacturing Conditions", Springer, 2023
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