Future University In Egypt (FUE)
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Altagamoa Al Khames, Main centre of town, end of 90th Street
New Cairo
Egypt
Faculty of Engineering & Technology
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Dina Yehia Zakaria Ewais

Basic information

Name : Dina Yehia Zakaria Ewais
Title: Lecturer
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Personal Info: Dina Yehia Zakaria is a Assistant Lecturer at Future University in Egypt.She graduated from Faculty of Engineering, Ain Shams University, class 2011.she studied the premaster courses and finished it. she is currently do her research in strengthening of reinforced concrete girders using post-tensioned concrete jackets. View More...

Education

Certificate Major University Year
PhD ... Ain Shams 2023
Masters 2017
Bachelor 2011

Researches /Publications

Two-way Shear Full Behavior of Reinforced Concrete Flat Slabs under Membrane Tensile Forces.

Dina Yehia Zakaria Ewais

Eslam Mousa, Amr Abd Elrahman

04/02/2023

https://www.sciencedirect.com/science/article/pii/S2214509523000918

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Forecasting Compressive Strength of RHA Based Concrete Using Multi-Expression Programming

Dina Yehia Zakaria Ewais

26/05/2022

https://www.mdpi.com/1996-1944/15/11/3808

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Prediction of Compressive Strength of Sustainable Foam Concrete Using Individual and Ensemble Machine Learning Approaches

Dina Yehia Zakaria Ewais

27/04/2022

https://www.mdpi.com/1996-1944/15/9/3166

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Exploring Effect of In-plane Tensile Forces on the Two-way Shear Strength: review, comparative study and future works

Dina Yehia Zakaria Ewais

eslam ; amr

17/01/2021

https://digitalcommons.aaru.edu.jo/fej/vol2/iss1/5

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Exploring the Effect of In-plane Tensile Forces on the Two-way Shear Strength: review, comparative study and future works

Dina Yehia Zakaria Ewais

17/01/2021

https://digitalcommons.aaru.edu.jo/fej/vol2/iss1/5

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Flexural Strengthening of Reinforced Concrete Girders using Post-Tensioned Concrete Jackets

Dina Yehia Zakaria Ewais

Amr Abdelrahman; Hussien Okail

01/03/2017

This study discusses the flexural behavior of reinforced concrete girders strengthened using posttensioning embedded in concrete jackets. The concept benefits from the external jacket to help increasing the cross-section inertia as well as to host the post-tensioning tendons without the need of external deviators. This results in a significant enhancement to the strength and stiffness of the original girder. The experimental phase of the study was conducted on two stages the first deals with girders loaded on their original section firstly and then strengthened with the jacket and loaded to failure, while the second had the girders that were strengthened before being subjected to loads. In addition to the stage of jacket introduction, the difference between the original girder and the jacket’s concrete compressive strength was also studied. In the analytical phase of the study, a numerical model was built using the finite element method to simulate the response of the tested girders in the two experimental stages. This paper presents findings of the experimental program as well as the comparison with the analytical results of the model which showed a close correlation. This model may then be used with confidence to conduct an extensive analytical study for untested parameters

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