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Comparison of shape memory characteristics of a Ti-50.9 At. Pct Ni alloy aged at 473 and 673 KJAE IL KIM; MIYAZAKI, Shuichi.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2005, Vol 36, Num 12, pp 3301-3310, issn 1073-5623, 10 p.Article

Shape memory alloysLAGOUDAS, D. C.Mechanics of materials. 2006, Vol 38, Num 5-6, issn 0167-6636, 183 p.Serial Issue

Enhancement of stability of composite plates using shape memory alloy supportsBIRMAN, Victor.AIAA journal. 2007, Vol 45, Num 10, pp 2584-2588, issn 0001-1452, 5 p.Article

A constrained theory on actuation strain in ferromagnetic shape memory alloys induced by domain switchingMA, Y. F; LI, J. Y.Acta materialia. 2007, Vol 55, Num 9, pp 3261-3269, issn 1359-6454, 9 p.Article

Active materials and compositesSOTTOS, Nancy.Journal of intelligent material systems and structures. 1998, Vol 9, Num 5, issn 1045-389X, 78 p.Conference Proceedings

Understanding the Shape-Memory Behavior in Ti-(∼49 At. Pct) Ni Alloy by Nanoindentation MeasurementSINHA, A; DATTA, S; CHAKRABORTI, P. C et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2013, Vol 44, Num 4, pp 1722-1729, issn 1073-5623, 8 p.Article

Hysteresis in shape memory alloys. Is it always a constant?HUANG, W. M; XU, W.Journal of materials science. 2005, Vol 40, Num 11, pp 2985-2986, issn 0022-2461, 2 p.Article

Recent activities of association of shape memory alloys (ASMA) in JapanKOBAYASHI, J; YAMAUCHI, K; MIYASHITA, T et al.Journal de physique. IV. 1995, Vol 5, Num 8, pp C8.1159-C8.1163, issn 1155-4339, 2Conference Paper

Effects of macroscopic graphite particulates on the damping behavior of CuAlMn shape memory alloyQINGZHOU WANG; FUSHENG HAN; CHUNXIANG CUI et al.Journal of materials science. 2007, Vol 42, Num 13, pp 5029-5035, issn 0022-2461, 7 p.Article

Dünne Bänder aus CuAlNi-Formgedàchtnislegierungen hergestellt durch Melt-Spinning = Thin ribbons of CuAlNi shape memory alloys manufactured by melt-spinningUNTERWEGER, Elfriede; LOJEN, Gorazd; KNEISSL, Albert C et al.Praktische Metallographie. 2005, Vol 42, Num 9, pp 435-444, issn 0032-678X, 10 p.Article

KOSMAK: ein Stellantrieb mit Formgedächtnisdraht = KOSMAK: An actuator with shape memory wireWELP, E. G; BREIDERT, J.Konstruktion (1981). 2002, Num 7-8, pp 45-48, issn 0720-5953Article

Measuring and modeling of Shape Memory effects in SMAs for development of microactuatorsMIZAR, Shivananda P; PRYPUTNIEWICZ, Ryszard J.SPIE proceedings series. 2000, pp 574-579, isbn 0-930815-62-9Conference Paper

Relation between martensite volume fraction and equivalent transformation strain in an anisotropic CuAlBe shape memory alloyTAILLARD, Karine; ARBAB CHIRANI, Shabnam; CALLOCH, Sylvain et al.Proceedings of SPIE, the International Society for Optical Engineering. 2007, pp 65262G.1-65262G.11, issn 0277-786X, isbn 978-0-8194-6647-1, 1VolConference Paper

A note on constrained shape memory alloys upon thermal cyclingPAN, G. H; HUANG, W. M.Journal of materials science. 2006, Vol 41, Num 23, pp 7964-7968, issn 0022-2461, 5 p.Article

Compressive response of a single crystalline CoNiA1 shape memory alloyKARACA, H. E; KARAMAN, I; CHUMLYAKOV, Y. I et al.Scripta materialia. 2004, Vol 51, Num 3, pp 261-266, issn 1359-6462, 6 p.Article

The microstructure of melt spun Ti-Ni-Cu-Zr shape memory alloysVERMAUT, P; LITYNSKA, L; PORTIER, R et al.Materials chemistry and physics. 2003, Vol 81, Num 2-3, pp 380-382, issn 0254-0584, 3 p.Conference Paper

Electrochemical characterization of Ni47.7Ti37.8sNb14.5 shape memory alloy in artificial salivaMARECI, D; CHELARIU, R; CAILEAN, A et al.Materials and corrosion (1995). 2012, Vol 63, Num 9, pp 807-812, issn 0947-5117, 6 p.Article

Compliant Modular Shape Memory Alloy Actuators: Composable Flexible Small Actuators Built from Thin Shape SheetsTORRES-JARA, E; GILPIN, K; KARGES, J et al.IEEE robotics & automation magazine. 2010, Vol 17, Num 4, pp 78-87, issn 1070-9932, 10 p.Article

The study of distraction osteogenesis with nitinol shape memory alloy spring controlled by infrared lightCHENG WANG; ZENG, Rong-Sheng; WANG, Jian-Ning et al.Oral surgery, oral medicine, oral pathology, oral radiology, and endodontics. 2010, Vol 110, Num 2, pp 157-166, issn 1079-2104, 10 p.Article

Microstructures of Cast Fe-Mn-Si-Cr-Ni Shape Memory Alloys Characterized by Metallography = Mit Hilfe der Metallographie charakterisierte Mikrostrukturen von Fe-Mn-Si-Cr-Ni-FormgedächtnisgusslegierungenYANGYANG DU; HUABEI PENG; JIE CHEN et al.Praktische Metallographie. 2014, Vol 51, Num 2, pp 107-126, issn 0032-678X, 20 p.Article

Surface integrity evolution from main cut mode to finish trim cut mode in W-EDM of shape memory alloyLIU, J. F; LI, L; GUO, Y. B et al.Applied surface science. 2014, Vol 308, pp 253-260, issn 0169-4332, 8 p.Article

Derivation and simulation of an improved two-dimensional constitutive law for shape memory alloysWEI WANG; SHI YAN; GANGBING SONG et al.Proceedings of SPIE, the International Society for Optical Engineering. 2007, pp 65262P.1-65262P.8, issn 0277-786X, isbn 978-0-8194-6647-1, 1VolConference Paper

Variable Structure Control of Shape Memory Alloy Actuated Flexible Smart StructureDHAUALAKSHMI, K; UMAPATHY, M; EZHILARASI, D et al.Proceedings of SPIE, the International Society for Optical Engineering. 2007, pp 65281H.1-65281H.10, issn 0277-786X, isbn 978-0-8194-6649-5Conference Paper

Magnetic and magnetoelastic properties of melt-spun Ni-Mn-GaDEARING, N; JENNER, A. G.IEEE transactions on magnetics. 2006, Vol 42, Num 1, pp 78-80, issn 0018-9464, 3 p.Article

Can shape memory alloy composites be smart?MICHAUD, V.Scripta materialia. 2004, Vol 50, Num 2, pp 249-253, issn 1359-6462, 5 p.Article

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