Jung Gi Kim

About Jung Gi Kim

Jung Gi Kim, With an exceptional h-index of 25 and a recent h-index of 23 (since 2020), a distinguished researcher at Gyeongsang National University, specializes in the field of Metallurgy, Extreme Materials, Additive Manufacturing, Heterogeneous Microstructure, Severe Plastic Deformation.

His recent articles reflect a diverse array of research interests and contributions to the field:

L-PBF 공정으로 제조된 Fe-15Cr-7Ni-3Mn 합금의 상온 및 극저온 (77K) 기계적 특성

Mechanical properties of lamellar-structured 18Ni300 maraging steel manufactured via directed energy deposition

Effect of microstructure on low cycle fatigue behavior of Inconel 706 at 650° C

Mechanical property of the shape memorable Ti–Zr–Nb–Sn alloy manufactured by in-situ alloying in directed energy deposition

Precipitation of metastable intermetallic phases and nanoindentation behaviors of a Ti-20Zr-9 Nb-4Sn (at%) alloy during aging treatment

Experimental and Crystal Plasticity Finite Element Study of the Deformation Behavior of High‐Mn Steel Micropillars

Microstructural Effects on J‐Integral Fracture Toughness of Welded High‐Mn Steels at 298 and 77 K

Fabricating Efficient and Biocompatible Filament for Material Extrusion-Based Low-Cost Additive Manufacturing: A Case Study with Steel

Jung Gi Kim Information

University

Position

___

Citations(all)

2092

Citations(since 2020)

1911

Cited By

730

hIndex(all)

25

hIndex(since 2020)

23

i10Index(all)

48

i10Index(since 2020)

46

Email

University Profile Page

Google Scholar

Jung Gi Kim Skills & Research Interests

Metallurgy

Extreme Materials

Additive Manufacturing

Heterogeneous Microstructure

Severe Plastic Deformation

Top articles of Jung Gi Kim

L-PBF 공정으로 제조된 Fe-15Cr-7Ni-3Mn 합금의 상온 및 극저온 (77K) 기계적 특성

소성· 가공

2024/2

Mechanical properties of lamellar-structured 18Ni300 maraging steel manufactured via directed energy deposition

Materials Science and Engineering: A

2024/2/1

Effect of microstructure on low cycle fatigue behavior of Inconel 706 at 650° C

Fatigue & Fracture of Engineering Materials & Structures

2024/2

Mechanical property of the shape memorable Ti–Zr–Nb–Sn alloy manufactured by in-situ alloying in directed energy deposition

Journal of Materials Research and Technology

2024/1/1

Precipitation of metastable intermetallic phases and nanoindentation behaviors of a Ti-20Zr-9 Nb-4Sn (at%) alloy during aging treatment

Journal of Alloys and Compounds

2023/2/5

Experimental and Crystal Plasticity Finite Element Study of the Deformation Behavior of High‐Mn Steel Micropillars

steel research international

2023/2

Microstructural Effects on J‐Integral Fracture Toughness of Welded High‐Mn Steels at 298 and 77 K

steel research international

2023/2

Fabricating Efficient and Biocompatible Filament for Material Extrusion-Based Low-Cost Additive Manufacturing: A Case Study with Steel

Journal of Materials Engineering and Performance

2023/2

Jung Gi Kim
Jung Gi Kim

H-Index: 17

Jeong Seok Oh
Jeong Seok Oh

H-Index: 11

Optimization of Laser‐Powder Bed Fusion Processed Fe–4.5 Si Alloy via Response Surface Methodology

steel research international

2023/2

Microstructural evolution and mechanical properties of laser-powder bed fusion processed 316L stainless steel with an ultrasonic-nanocrystalline surface modification

Journal of Electronic Materials

2016/10

Virtual surface morphology generation of Ti-6Al-4V directed energy deposition via conditional generative adversarial network

Virtual and Physical Prototyping

2023/1/1

고압비틀림 공정 처리된 Al7068 합금의 기계적 특성 및 미세조직 변화

대한금속재료학회지

2023

Fe55Co17.5Ni10Cr12.5Mo5 High-Entropy Alloy with Outstanding Cryogenic Mechanical Properties Driven by Deformation-Induced Phase Transformation …

Metals and Materials International

2023/1

Mechanical properties of laser-powder bed fusion processed Fe-15Cr-6Ni-6Mn multi-phase steel at room and cryogenic temperatures

Metals and Materials International

2023/12

Cryogenic tensile fracture behavior of equal-channel angular pressed high-Mn steel

Materials Letters

2023/10/15

Exploiting Electropulses to Optimize Microstructure in Ti–6Al–4V Fabricated by Selective Laser Melting

Metals and Materials International

2023/10/7

Jung Gi Kim
Jung Gi Kim

H-Index: 17

Laser Powder Bed Fusion 공정으로 제조된 Ti-6Al-4V 합금의 형상 차이에 따른 기계적 특성 변화

한국분말야금학회지

2023/4

L-PBF 공정 처리된 Fe-Si 합금의 열처리 조건에 따른 미세조직 및 기계적 특성

소성· 가공

2023/4

Microstructures and mechanical behavior of Ti-(38+ x) Ni-12Cu (at%)(x= 0∼ 3) alloys

Journal of Alloys and Compounds

2023/3/25

Optimizing interlayer cooling for SUS316L thin wall fabricated by directed energy deposition

Journal of Materials Research and Technology

2023/3/1

See List of Professors in Jung Gi Kim University(Gyeongsang National University)

Co-Authors

academic-engine