1. Fractography. Effect of High Pressure Hydrogen Gas on Crack Growth of Carbon Steel.
2. (2) Nishikawa H., Oda Y. and Noguchi H., Loading-Frequency Effects on Fatigue Crack Growth Behavior of a Low Carbon Steel JIS S10C in Hydrogen Gas Environment, Transactions of the Japan Society of Mechanical Engineers. A, Vol. 75, (2009), pp. 1615-1623: Journal of Solid Mechanics and Materials Engineering, Vol.2, No.2(2011), pp. 104-116.
3. (3) Nishikawa H., Oda Y. and Noguchi H., Investigation on Mechanism for Intergranular Fatigue Crack Propagation of Low Carbon Steel JIS S10C in Hydrogen Gas Environment, Transactions of the Japan Society of Mechanical Engineers. A, Vol. 75, (2009), pp. 1754-1763: Journal of Solid Mechanics and Materials Engineering.
4. New experiments concerning the slip processes at propagating fatigue cracks—I
5. (5) Oda Y., Furuya Y., Noguchi H., and Higashida K., AFM and SEM Observation on Mechanism of Fatigue Crack Growth in an Fe-Si Single Crystal, International Journal of Fracture, No. 113, (2002), pp. 213-231.