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Journal Articles

Evaluation of strength characteristics considering microscopic heterogeneity of structural steels and weld zone by using FEM-MD coupling method

Mochizuki, Masahito*; Higuchi, Ryota*; Katsuyama, Jinya; Toyoda, Masao*

Proceedings of 2007 ASME Pressure Vessels and Piping Division Conference/8th International Conference on Creep and Fatigue at Elevated Temperatures (PVP 2007/CREEP-8) (CD-ROM), 8 Pages, 2007/07

The strength properties of structural steels or their weld zone are influenced by the microscopic heterogeneity. It is important to investigate the stress distribution for clarification of the mechanism of fracture and the material design by considering a grain boundary or its neighborhood because either can be a zone where the stress concentration is likely to occur due to a mismatch of the displacement. For this purpose, FEM-MD coupling method is one of the useful methods because it can treat the mismatch of the displacement caused by the microscopic heterogeneity. In this study, FEM-MD coupling method is proposed and the influence of the microscopic heterogeneity of steels is investigated by using FEM-MD coupling method.

Journal Articles

A Dinuclear Ni($$mu$$-H)Ru complex derived from H$$_{2}$$

Ogo, Seiji*; Kabe, Ryota*; Uehara, Keiji*; Kure, Bunsho*; Nishimura, Takashi*; Menon, S. C.*; Harada, Ryosuke*; Fukuzumi, Shunichi*; Higuchi, Yoshiki*; Ohara, Takashi; et al.

Science, 316(5824), p.585 - 587, 2007/04

 Times Cited Count:228 Percentile:99.49(Multidisciplinary Sciences)

A novel dinuclear nickel-ruthenium complex with a bridging hydrido ligand, a Ni($$mu$$-H)Ru complex, was obtained from the reaction of a dinuclear NiRu aqua complex with dihydrogen (H$$_{2}$$) in water under ambient conditions. The structure of the Ni($$mu$$-H)Ru complex was unequivocally determined by neutron analysis. This is the first crystal structure of (six-coordinated Ni)($$mu$$-H)M (M=transition metal atoms) that is similar to the core structure of the proposed active form of the [NiFe]hydrogenase.

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