Junichiro Yamabe

About Junichiro Yamabe

Junichiro Yamabe, With an exceptional h-index of 33 and a recent h-index of 28 (since 2020), a distinguished researcher at Fukuoka University, specializes in the field of Hydrogen Embrittlement, Strength of Materials.

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

Hydrogen diffusivity in X65 pipeline steel: Desorption and permeation studies

Hydrogen Gas Embrittlement: Mechanisms, Mechanics, and Design

Effects of Cr, Mn, and Fe on the hydrogen solubility of Ni in high-pressure hydrogen environments and their electronic origins: An experimental and first-principles study

Technique for Introducing Internal Defects with Arbitrary Sizes and Locations in Metals via Additive Manufacturing and Evaluation of Fatigue Properties

水素助長粒界破壊を伴う純ニッケルの延性低下における水素と硫黄の相乗的役割

Hydrogen-induced intergranular cracking of pure nickel under various strain rates and temperatures in gaseous hydrogen environment

Experimental comparison of gaseous and electrochemical hydrogen charging in X65 pipeline steel using the permeation technique

複素数階微分近似を用いた超弾性モデルの簡易材料定数の同定法

Junichiro Yamabe Information

University

Position

Department of Mechanical Engineering

Citations(all)

3230

Citations(since 2020)

2135

Cited By

1976

hIndex(all)

33

hIndex(since 2020)

28

i10Index(all)

68

i10Index(since 2020)

56

Email

University Profile Page

Google Scholar

Junichiro Yamabe Skills & Research Interests

Hydrogen Embrittlement

Strength of Materials

Top articles of Junichiro Yamabe

Title

Journal

Author(s)

Publication Date

Hydrogen diffusivity in X65 pipeline steel: Desorption and permeation studies

International Journal of Hydrogen Energy

Erik Koren

Junichiro Yamabe

Xu Lu

Catalina MH Hagen

Dong Wang

...

2024/4/3

Hydrogen Gas Embrittlement: Mechanisms, Mechanics, and Design

Hisao Matsunaga

Junichiro Yamabe

Osamu Takakuwa

Yuhei Ogawa

Saburo Matsuoka

2024/1/12

Effects of Cr, Mn, and Fe on the hydrogen solubility of Ni in high-pressure hydrogen environments and their electronic origins: An experimental and first-principles study

International Journal of Hydrogen Energy

Kazuma Ito

Misaho Yamamura

Tomohiko Omura

Junichiro Yamabe

Hisao Matsunaga

2024/1/2

Technique for Introducing Internal Defects with Arbitrary Sizes and Locations in Metals via Additive Manufacturing and Evaluation of Fatigue Properties

International Journal of Automation Technology

Kazuyuki Morishita

Taichi Yamaguchi

Kentaro Wada

Junichiro Yamabe

2023/7/5

水素助長粒界破壊を伴う純ニッケルの延性低下における水素と硫黄の相乗的役割

材料

和田健太郎, 柴田千博, 山辺純一郎

2023/6/15

Hydrogen-induced intergranular cracking of pure nickel under various strain rates and temperatures in gaseous hydrogen environment

Materials Science and Engineering: A

K Wada

C Shibata

H Enoki

T Iijima

J Yamabe

2023/5/17

Experimental comparison of gaseous and electrochemical hydrogen charging in X65 pipeline steel using the permeation technique

Corrosion Science

Erik Koren

Catalina MH Hagen

Dong Wang

Xu Lu

Roy Johnsen

...

2023/5/1

複素数階微分近似を用いた超弾性モデルの簡易材料定数の同定法

実験力学

藤川正毅, 上地恭平, 山辺純一郎, 前田成人, 小石正隆

2022/10/7

複素数階微分近似による超弾性モデルの簡易カーブフィット

上地恭平, 藤川正毅, 山辺純一郎, 前田成人, 小石正隆

2022

Fatigue crack threshold and crack growth behavior of 17–4 PH steel determined with internal hydrogen

Engineering Fracture Mechanics

Junichiro Yamabe

Jean-Gabriel Sezgin

Kentaro Wada

2022/12/1

Mechanism of hydrogen-induced hardening in pure nickel and in a copper–nickel alloy analyzed by micro Vickers hardness testing

Materials Science and Engineering: A

Kentaro Wada

Junichiro Yamabe

Hisao Matsunaga

2021/2/23

硬さ試験と二次イオン質量分析による水素チャージしたニッケルの水素濃度分布測定

山辺純一郎, 和田健太郎, 粟根徹

2021

純ニッケルにおける水素トラップと水素脆化挙動に及ぼす硫黄の影響

柴田千博, 山辺純一郎, 和田健太郎

2021

純ニッケルの水素助長延性低下に及ぼす硫黄の影響

柴田千博, 和田健太郎, 山辺純一郎

2021

硬さ試験を用いた純ニッケルの転位組織発達挙動に及ぼす水素の影響調査

和田健太郎, 山辺純一郎, 松永久生

2021

工業用ゴム材料の Micro-Sphere 型超弾性モデルの開発

藤川正毅, 上地恭平, 山辺純一郎, 和田健太郎, 前田成人, 小石正隆

2021

The effect of the Ni/Cu ratio on H-induced ductility loss and its mechanism in Cu–Ni binary alloy system

International Journal of Hydrogen Energy

Kentaro Wada

Junichiro Yamabe

2021/11/16

冷間圧延したステンレス鋼の疲労特性に及ぼす圧延方向および水素の影響

和田健太郎, 山辺純一郎

2021

Interpretation of complex, tensile-fracture phenomena in precipitation-hardened, martensitic stainless steels, 17-4PH, in presence of hydrogen

Materials Science and Engineering: A

Junichiro Yamabe

Jean-Gabriel Sezgin

Kentaro Wada

2021/8/17

高圧水素ガス中における各種表面皮膜 (Cu, Zn, Ni) を付与したステンレス鋼の水素侵入特性: 拡散律速に基づく数値解析結果との比較

山辺純一郎, 和田健太郎

2021

See List of Professors in Junichiro Yamabe University(Fukuoka University)

Co-Authors

academic-engine