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Yuichiro Koizumi

Yuichiro Koizumi

D-Index & Metrics

Materials Science

D-Index
50
Citations
10126
World Ranking
10170
National Ranking
621

Overview

Yuichiro Koizumi is affiliated with Osaka University in Japan and has an extensive research portfolio primarily in engineering and materials science. Their work encompasses multiple subfields, including mechanical engineering, materials chemistry, automotive engineering, aerospace engineering, and industrial and manufacturing engineering.

The scientist's research focuses significantly on additive manufacturing materials and processes, additive manufacturing and 3D printing technologies, and high entropy alloys studies. Additional main topics include solidification and crystal growth phenomena, titanium alloys microstructure and properties, aluminum alloy microstructure properties, and welding techniques and residual stresses.

Yuichiro Koizumi's recent publications highlight a range of research interests and advancements. Notable papers include the following:

  • "Si-addition contributes to overcoming the strength-ductility trade-off in high-entropy alloys" (2022) published in International Journal of Plasticity
  • "Atezolizumab plus bevacizumab versus lenvatinib or sorafenib in non-viral unresectable hepatocellular carcinoma: an international propensity score matching analysis" (2022) published in ESMO Open
  • "Elucidating the effect of preheating temperature on melt pool morphology variation in Inconel 718 laser powder bed fusion via simulation and experiment" (2020) published in Additive Manufacturing
  • "Control of Crystallographic Texture and Mechanical Properties of Hastelloy-X via Laser Powder Bed Fusion" (2021) published in Crystals
  • "Inverse Columnar-Equiaxed Transition (CET) in 304 and 316L Stainless Steels Melt by Electron Beam for Additive Manufacturing (AM)" (2021) published in Crystals

The scientist frequently collaborates with several coauthors. Key collaborators include Masayuki Okugawa, Takayoshi Nakano, Takuya Ishimoto, Akihiko Chiba, and Yuheng Liu.

Yuichiro Koizumi has published in various recognized venues, with repeated contributions to journals such as MATERIALS TRANSACTIONS, Journal of Smart Processing, Additive Manufacturing, ISIJ International, and Materials.

Best Publications

  • The effect of lattice misfit on the dislocation motion in superalloys during high-temperature low-stress creep

    J.X. Zhang;J.C. Wang;H. Harada;Y. Koizumi

  • Ultragrain refinement of plain low carbon steel by cold-rolling and annealing of martensite

    R. Ueji;N. Tsuji;Y. Minamino;Y. Koizumi

  • Novel Co-rich high performance twinning-induced plasticity (TWIP) and transformation-induced plasticity (TRIP) high-entropy alloys

    Daixiu Wei;Xiaoqing Li;Jing Jiang;Weicheng Heng

  • Dependence of creep strength on the interfacial dislocations in a fourth generation SC superalloy TMS-138

    J.X. Zhang;T. Murakumo;H. Harada;Y. Koizumi

  • Novel Co-rich high entropy alloys with superior tensile properties

    Daixiu Wei;Xiaoqing Li;Weicheng Heng;Yuichiro Koizumi

  • Build direction dependence of microstructure and high-temperature tensile property of Co-Cr-Mo alloy fabricated by electron beam melting

    Shi Hai Sun;Yuichiro Koizumi;Shingo Kurosu;Yun Ping Li

  • Relationship between the microstructure and mechanical properties of an equiatomic AlCoCrFeNi high-entropy alloy fabricated by selective electron beam melting

    Hiroshi Shiratori;Tadashi Fujieda;Kenta Yamanaka;Yuichiro Koizumi

  • CoCrFeNiTi-based high-entropy alloy with superior tensile strength and corrosion resistance achieved by a combination of additive manufacturing using selective electron beam melting and solution treatment

    Tadashi Fujieda;Hiroshi Shiratori;Kosuke Kuwabara;Mamoru Hirota

  • First demonstration of promising selective electron beam melting method for utilizing high-entropy alloys as engineering materials

    Tadashi Fujieda;Hiroshi Shiratori;Kosuke Kuwabara;Takahiko Kato

  • Strain-induced martensitic transformation near twin boundaries in a biomedical Co–Cr–Mo alloy with negative stacking fault energy

    Yuichiro Koizumi;Sho Suzuki;Kenta Yamanaka;Byoung Soo Lee

  • Si-addition contributes to overcoming the strength-ductility trade-off in high-entropy alloys

    Unknown

  • Formation of nanocrystalline surface layers in various metallic materials by near surface severe plastic deformation

    Masahide Sato;Nobuhiro Tsuji;Yoritoshi Minamino;Yuichiro Koizumi

  • Microstructural change of ultrafine-grained aluminum during high-speed plastic deformation

    N. Tsuji;T. Toyoda;Y. Minamino;Y. Koizumi

  • Mechanical and corrosion properties of AlCoCrFeNi high-entropy alloy fabricated with selective electron beam melting

    Kosuke Kuwabara;Hiroshi Shiratori;Tadashi Fujieda;Kenta Yamanaka

  • Development of Ir-base refractory superalloys

    Y. Yamabe;Y. Koizumi;H. Murakami;Y. Ro

  • Toughness of Ultrafine Grained Ferritic Steels Fabricated by ARB and Annealing Process

    Nobuhiro Tsuji;Susumu Okuno;Yuichiro Koizumi;Yoritoshi Minamino

  • Effect of rolling reduction on ultrafine grained structure and mechanical properties of low-carbon steel thermomechanically processed from martensite starting structure

    Rintaro Ueji;Nobuhiro Tsuji;Yoritoshi Minamino;Yuichiro Koizumi

  • Phase and grain size inhomogeneity and their influences on creep behavior of Co-Cr-Mo alloy additive manufactured by electron beam melting

    Shi Hai Sun;Yuichiro Koizumi;Shingo Kurosu;Yun Ping Li

  • A 5 th GENERATION SC SUPERALLOY WITH BALANCED HIGH TEMPERATURE PROPERTIES AND PROCESSABILITY

    A. Sato;H. Harada;A.-C. Yeh;K. Kawagishi

  • Molten pool behavior and effect of fluid flow on solidification conditions in selective electron beam melting (SEBM) of a biomedical Co-Cr-Mo alloy

    Yufan Zhao;Yuichiro Koizumi;Kenta Aoyagi;Daixiu Wei

  • Rh-base refractory superalloys for ultra-high temperature use

    Y. Yamabe-Mitarai;Y. Koizumi;H. Murakami;Y. Ro

  • In-situ fabrication and characterization of ultrafine structured Cu–TiC composites with high strength and high conductivity by mechanical milling

    Fenglin Wang;Yunping Li;Xiaoyu Wang;Yuichiro Koizumi

Frequent Co-Authors

Akihiko Chiba
Akihiko Chiba Tohoku University
Nobuhiro Tsuji
Nobuhiro Tsuji Kyoto University
Takayoshi Nakano
Takayoshi Nakano Osaka University
Haruyuki Inui
Haruyuki Inui Kyoto University
Yukichi Umakoshi
Yukichi Umakoshi Osaka University
Koji Hagihara
Koji Hagihara Osaka University
Mitsuo Niinomi
Mitsuo Niinomi Tohoku University
Hiroaki Tsuchiya
Hiroaki Tsuchiya Osaka University
Zhongchang Wang
Zhongchang Wang International Iberian Nanotechnology Laboratory
Hidemi Kato
Hidemi Kato Tohoku University

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