Effect of strain amplitude on the low-cycle fatigue behavior of a new Fe–15Mn–10Cr–8Ni–4Si seismic damping alloy

Author:

Nikulin Ilya,Sawaguchi Takahiro,Kushibe Atsumichi,Inoue Yasuhiko,Otsuka Hiroaki,Tsuzaki Kaneaki

Funder

New Energy and Industrial Technology Development Organization

Scientific Research Fund

Japan Society for the Promotion of Science

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,Modeling and Simulation

Reference48 articles.

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2. Hysteresis dampers for controlling seismic response of bridges and structures;Ishii;Mitsubishi Heavy Industries, Ltd. Tech Rev,2005

3. Kasai K, Pu W, Wada A. Responses of controlled tall buildings in Tokyo subjected to the Great East Japan earthquake. In: Proceedings of the international symposium on engineering lessons learned from the 2011 Great East Japan earthquake, March 1–4, 2012, Tokyo, Japan; 2012. p. 1099–109.

4. Shape memory effect in γ↔ε transformation in Fe–30Mn–Si alloy single crystals;Sato;Acta Metall,1982

5. Vibration mitigation by the reversible fcc/hcp martensitic transformation during cyclic tension–compression loading of an Fe–Mn–Si-based shape memory alloy;Sawaguchi;Scripta Mater,2006

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