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au.\*:("OMORI, Toshihiro")

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Results 1 to 13 of 13

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Ductility enhancement and superelasticity in Fe-Ni-Co-Al-Ti-B polycrystalline alloyDOYUP LEE; OMORI, Toshihiro; KAINUMA, Ryosuke et al.Journal of alloys and compounds. 2014, Vol 617, pp 120-123, issn 0925-8388, 4 p.Article

Shape memory effect associated with FCC-HCP martensitic transformation in Co-Al alloysOMORI, Toshihiro; SUTOU, Yuji; OIKAWA, Katsunari et al.Materials transactions - JIM. 2003, Vol 44, Num 12, pp 2732-2735, issn 0916-1821, 4 p.Article

Two-way shape memory effect induced by bending deformation in ductile Cu-Al-Mn alloysOMORI, Toshihiro; JIJIE WANG; SUTOU, Yuji et al.Materials transactions - JIM. 2002, Vol 43, Num 7, pp 1676-1683, issn 0916-1821Article

Experimental and Thermodynamic Studies of the Fe―Si Binary SystemOHNUMA, Ikuo; ABE, Shinya; SHIMENOUCHI, Shota et al.ISIJ international. 2012, Vol 52, Num 4, pp 540-548, issn 0915-1559, 9 p.Article

Effectiveness of superelastic bars for seismic rehabilitation of clay-unit masonry wallsSHRESTHA, Kshitij C; ARAKI, Yoshikazu; NAGAE, Takuya et al.Earthquake engineering & structural dynamics. 2013, Vol 42, Num 5, pp 725-741, issn 0098-8847, 17 p.Article

Phase equilibria and phase transition of the Ni-Fe-Ga ferromagnetic shape memory alloy systemOIKAWA, Katsunari; OMORI, Toshihiro; SUTOU, Yuji et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2007, Vol 38, Num 4, pp 767-776, issn 1073-5623, 10 p.Conference Paper

Feasibility of Cu―Al―Mn superelastic alloy bars as reinforcement elements in concrete beamsSHRESTHA, Kshitij C; ARAKI, Yoshikazu; NAGAE, Takuya et al.Smart materials and structures. 2013, Vol 22, Num 2, issn 0964-1726, 025025.1-025025.12Article

Effects of annealing on martensitic and magnetic transitions of Ni-Ga-Fe ferromagnetic shape memory alloysOIKAWA, Katsunari; OMORI, Toshihiro; KAINUMA, Ryosuke et al.Journal of magnetism and magnetic materials. 2004, Vol 272-76, pp 2043-2044, issn 0304-8853, 2 p., 3Conference Paper

Feasibility of externally activated self-repairing concrete with epoxy injection network and Cu-Al-Mn superelastic alloy reinforcing barsPAREEK, Sanjay; SHRESTHA, Kshitij C; SUZUKI, Yusuke et al.Smart materials and structures. 2014, Vol 23, Num 10, issn 0964-1726, 105027.1-105027.13Article

Effects of aging and Co addition on martensitic and magnetic transitions in Ni-Al-Fe β-based shape memory alloysOIKAWA, Katsunari; TANAKA, Yuuki; SUTOU, Yuji et al.ISIJ international. 2006, Vol 46, Num 9, pp 1287-1291, issn 0915-1559, 5 p.Article

Abnormal Grain Growth Induced by Cyclic Heat TreatmentOMORI, Toshihiro; KUSAMA, Tomoe; KAWATA, Shingo et al.Science (Washington, D.C.). 2013, Vol 341, Num 6153, pp 1500-1502, issn 0036-8075, 3 p.Article

Rate-dependent response of superelastic Cu-Al-Mn alloy rods to tensile cyclic loadsARAKI, Yoshikazu; MAEKAWA, Nao; OMORI, Toshihiro et al.Smart materials and structures. 2012, Vol 21, Num 3, issn 0964-1726, 032002.1-032002.7Article

A simple method to treat an ingrowing toenail with a shape-memory alloy deviceISHIBASHI, Masaya; TABATA, Nobuko; SUETAKE, Takaki et al.Journal of dermatological treatment. 2008, Vol 19, Num 5, pp 291-292, issn 0954-6634, 2 p.Article

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