極低温疲労グループCryogenic Fatigue Group

論文リスト

2026

  • Madambashi R., Umezawa O., Ono Y., Komatsu M.

    Effects of Martensite Matrix Structure and Retained Austenite Distribution on Low-Temperature Toughness of 9 Pct Ni Steel with Intermediate Treatment

    Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science.57[3](2026)1299-1320

2025

  • Komoda R., Kubota M., Staykov A., Zhang N., Wada K.

    Effect of water temperature in the deep sea on the mitigation of hydrogen embrittlement by O2 impurity

    Engineering Failure Analysis.180(2025)109885

  • Meguro S., Takagiwa Y., Kimura T., Hiroto T., Nakamura T.

    Elemental distribution at diffusion bonding interface of FeAlSi thermoelectric material and Cu

    Welding in the World.(2025)

  • Somekawa H., Ono Y., Naito K., Singh A.

    Enhancement of ductility in low temperature regimes via detwinning in Mg alloys

    Scripta Materialia.264(2025)116694

  • Wada K., Komatsu M., Ono Y., Yamabe J., Enoki H., Iijima T.

    Hydrogen-induced degradation of SUS304 austenitic stainless steel at cryogenic temperatures

    Materials Science and Engineering: A.927(2025)147988

  • Yoshimura S., Wada K., Park S., Matsunaga H.

    Factors determining the torsional fatigue strength in bainitic steels with banded microstructures

    International Journal of Fatigue.192(2025)108714

2024

  • Nagashima N., Hayakawa M., Masuda H., Nagai K.

    Estimating the S-N Curve by Machine Learning Random Forest Method

    Materials Transactions.65[4](2024)428-433

  • Yamabe J., Hashiguchi K., Wada K.

    EFFECTS OF HYDROGEN ON FATIGUE LIFE PROPERTIES OF COLD-ROLLED METASTABLE AUSTENITIC STAINLESS STEELS WITH ARTIFICIAL DEFECTS

    American Society of Mechanical Engineers, Pressure Vessels and Piping Division (Publication) PVP.4(2024)V004T06A006

  • Yamabe J., Kato S., Morishita K., Wada K.

    Comparison of hydrogen diffusion properties and hydrogen-induced ductility loss of additively and conventionally manufactured 17-4PH stainless steel

    Engineering Failure Analysis.162(2024)108437

  • Yamabe J., Yoshimoto R., Wada K., Yano T., Fujiyama K., Iijima T., Enoki H.

    Determination of hydrogen compatibility for Cu-Al-Ni-Fe-Mn cast alloys prepared by varying Al and Ni contents

    Journal of Alloys and Compounds.997(2024)174766

2023

  • Kanazawa T., Hayakawa M., Vinas D., Tahara Y., Hata N., Yoshimoto M.

    Sustainable technology for remanufacturing of carburized steels by laser hardening

    Journal of Materials Research and Technology.24(2023)39-48

  • Morishita, K., Yamaguchi, T., Wada, K., Yamabe, J.

    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.17[4](2023)378-387

  • Ozeki, G., Yokobori, T.A., Jr., Tabuchi, M., Hayakawa, M., Nikbin, K.

    Testing and Estimation Methods of Crack Growth Life for Alloy 617 under Strain-Controlled Creep-Fatigue Conditions Using Circular Sharp Notched Round Bar Specimen

    ASTM Special Technical Publication.STP 1643(2023)42-62

  • Tsuchiyama T., Tsugumi K., Ma T., Masumura T., Ono Y.

    Nitrogen-Enhanced Temperature Dependence of Grain Refinement Strengthening in Austenitic Stainless Steel

    Steel Research International.94[10](2023)2200428

  • Wada K., Shibata C., Yamabe J.

    Synergistic Effect of Hydrogen and Sulfur on Ductility Loss in Pure Nickel Accompanied by Hydrogen-Induced Intergranular Fracture [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]

    Zairyo/Journal of the Society of Materials Science, Japan.72[6](2023)453-459

  • Wada, K., Shibata, C., Enoki, H., Iijima, T., Yamabe, J.

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

    Materials Science and Engineering: A.873(2023)145040

  • Álvarez G., Harris Z., Wada K., Rodríguez C., Martínez-Pañeda E.

    Hydrogen embrittlement susceptibility of additively manufactured 316L stainless steel: Influence of post-processing, printing direction, temperature and pre-straining

    Additive Manufacturing.78(2023)103834