Mr. Dhaneshwar Prasad Sahu | Natural fibre-based composites structures | Best Researcher Award
Assistant Professor at Vignan Institute of Imformation Technology, Visakhapatnam, A.P, India
Publication Profile
Publications π
Assistant Professor at Vignan Institute of Imformation Technology, Visakhapatnam, A.P, India
Erhan Baysal is a Lecturer at BΓΌlent Ecevit University, specializing in Mechanical Engineering. With a strong background in materials science and manufacturing processes, particularly in friction welding, he has contributed to numerous academic publications. His academic journey spans various prestigious institutions, and he actively participates in research and academic projects related to material behavior, mechanical design, and welding technologies. ππ§π¨βπ«
Profile
An Overview of Deformation Path Shapes on Equal Channel Angular Pressing” (2022)
Authors: E. Baysal, O. KoΓ§ar, E. Kocaman, U. KΓΆklΓΌ
Journal: Metals 12 (11), 1800
Summary: This paper discusses the deformation paths formed during equal channel angular pressing (ECAP). The study focuses on how different processing parameters, such as the angle of the channels, affect the microstructure and mechanical properties of the material.
“Mechanical Behavior of a Friction Welded AA6013/AA7075 Beam” (2022)
Authors: O. KoΓ§ar, M. Yetmez, E. Baysal, H.A. Ozyigit
Journal: Materials Testing 64 (2), 284-293
Summary: This research investigates the mechanical properties of beams made from AA6013 and AA7075 aluminum alloys joined via friction welding. The study examines the mechanical behavior of the weld joint, focusing on parameters such as strength, hardness, and fracture toughness.
“A New Approach in Part Design for Friction Stir Welding of 3D-Printed Parts with Different Infill Ratios and Colors” (2024)
Authors: O. KoΓ§ar, N. AnaΓ§, E. Baysal
Journal: Polymers 16 (13), 1790
Summary: This paper introduces a novel approach to part design for friction stir welding (FSW) of 3D-printed parts. The study evaluates how different infill ratios and colors in 3D printing affect the welding process, quality, and mechanical properties of the final product.
“EΕit KanallΔ± AΓ§Δ±sal Presleme YΓΆnteminde Kanal AΓ§Δ±larΔ±nΔ±n ve Δ°Γ§ KΓΆΕe Kavisinin Deformasyona Etkisinin Sonlu Elemanlar Metodu ile Δ°ncelenmesi” (2023)
Authors: E. Baysal, O. KoΓ§ar, N. AnaΓ§, F. DarΔ±cΔ±
Journal: Γukurova Γniversitesi MΓΌhendislik FakΓΌltesi Dergisi 38 (3), 859-873
Summary: This paper investigates the effect of channel angles and inner corner radii on deformation during equal channel angular pressing (ECAP) using finite element method (FEM) simulations. The research provides insights into how these factors influence material flow and structural integrity.
“GΓΆrΓΌntΓΌ Δ°Εleme Teknikleri ile Rulo Sac Hassas DoΔrultmada Silindir KonumlarΔ±nΔ±n Belirlenmesi” (2021)
Authors: O. KoΓ§ar, S. Dikici, H. UΓ§ar, E. Baysal
Journal: El-Cezeri 8 (2), 604-617
Summary: This article explores the use of image processing techniques to determine the cylinder positions in precision flattening of rolled sheets. The study demonstrates how computer vision can enhance manufacturing processes, particularly in achieving high precision in material deformation.
“3B YazΔ±cΔ±da Γretilen PlakalarΔ±n SΓΌrtΓΌnme KarΔ±ΕtΔ±rma Kaynak Parametrelerinin YSA ile Tahmini” (2024)
Authors: N. AnaΓ§, O. KoΓ§ar, E. Baysal
Journal: NiΔde Γmer Halisdemir Γniversitesi MΓΌhendislik Bilimleri Dergisi 13 (1), 176-187
Summary: This paper presents a prediction model using artificial neural networks (ANN) to estimate the parameters for friction stir welding of 3D-printed plates. The research focuses on optimizing welding conditions to improve the quality and strength of the welded joints.
“Etial 180 AlaΕΔ±mΔ±na Δ°lave Edilen BakΔ±rΔ±n MikroyapΔ±, Sertlik ve Korozyon Γzerindeki Etkisi” (2023)
Authors: E. Kocaman, E. Baysal, O. KoΓ§ar, A.S. GΓΌldibi, S. Εirin
Journal: NiΔde Γmer Halisdemir Γniversitesi MΓΌhendislik Bilimleri Dergisi 12 (2), 604-611
Summary: This study investigates the impact of adding copper to Etial 180 alloy, focusing on its effect on microstructure, hardness, and corrosion resistance. The findings highlight the potential improvements in material properties when copper is incorporated into the alloy.
“Barkhausen Noise as A Magnetic Nondestructive Testing Technique”
Authors: Γ. Adanur, O. KoΓ§ar, A.S. GΓΌldibi, E. Kocaman, E. Baysal
Journal: Black Sea Journal of Engineering and Science 7 (4), 7-8
Summary: The paper explores the use of Barkhausen noise as a nondestructive testing (NDT) technique to assess the magnetic properties of materials. This method is useful in evaluating the integrity and structural health of components without causing damage.
“AA6013/AA7075 AlΓΌminyum Malzemelerin SΓΌrtΓΌnme KaynaΔΔ± YΓΆntemiyle BirleΕtirilmesi ve Analizi”
Authors: E. Baysal, O. KoΓ§ar, M. Yetmez, H.A. Ozyigit
Summary: This research focuses on the friction stir welding (FSW) of AA6013 and AA7075 aluminum alloys, analyzing the mechanical properties, microstructure, and joint quality achieved by this welding method.
Erhan Baysal has shown exceptional dedication to advancing mechanical engineering through his research and teaching. His focus on cutting-edge manufacturing technologies, coupled with his broad publication history, makes him a strong candidate for the Best Researcher Award. With further interdisciplinary integration and industry collaborations, he could significantly elevate the practical applications of his research, solidifying his role as a leading figure in the field. His ongoing work promises to continue shaping the future of mechanical engineering.
Dr. Gia Toai Truong is academic and researcher in the field of renewable energy, holds a PhD in Bio systems Engineering from Kangwon National University, South Korea. His academic journey has been marked by a profound dedication to advancing solar energy technologies, specifically in solar thermal harvesting and its integration into agricultural and architectural applications.
π Ph.D. in Structural Engineering (03.2016 – 08.2020)
Thesis title: Mechanical and fracture characteristics of carbon fiber reinforced polymer composites incorporating nanomaterials
π Soongsil University, Seoul, Korea
π¨βπ« Advisor: Prof. Kyoung-Kyu Choiπ M.S. in Structural Engineering (09.2012 – 08.2014)
Thesis title: Shrinkage and creep behavior of amorphous steel fiber-reinforced concrete
π Soongsil University, Seoul, Korea
π¨βπ« Advisor: Emeritus Prof. Oan Chul Choiπ B.S. in Civil Engineering (09.2006 – 05.2011)
Graduation project title: Sunwal tower office building β District 1
π Ho Chi Minh City University of Architecture, Ho Chi Minh City, Viet Nam
π¨βπ« Lecturer (From 04.2023)
π Dong A University, Da Nang, Viet Namπ¨βπ¬ Postdoctoral Research Professor (03.2021 β 02.2023)
π Seoul National University of Science and Technology (SeoulTech), Seoul, Koreaπ¬ Postdoctoral Researcher (10.2020 – 02.2021)
π Soongsil University, Seoul, Korea
π¨βπ« Advisor: Prof. Kyoung-Kyu Choiπ¨βπ« Lecturer (09.2020)
π School of Architecture, Soongsil Universityπ¨βπ« Lecturer (09.2014 – 02.2016)
π Ho Chi Minh University of Architecture, Ho Chi Minh City, Viet Nam
π¨βπ« Assistant Lecturer (06.2011 – 08.2012)
π Ho Chi Minh University of Architecture, Ho Chi Minh City, Viet Nam
π οΈ Structural Engineer (03.2011 – 05.2011)
π Khanh Phat Construction – Designing – Consultant Company Limited – Ho Chi Minh City, Viet Nam
π Reviewer for the following journals:
Journal of Building EngineeringStructuresInternational Journal of Concrete Structures and MaterialsMaterialsPolymersCase Studies in Construction MaterialsTechno Press
π¬ Seoul National University of Science and Technology (SeoulTech) (03.2021 – 02.2023)Structural analysis and application of machine learning in estimating structural performance of reinforced concrete members and material properties