Libri sul tema "Nickel-titanium"
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Wiese, W. L. Spectroscopic data for titanium, chromium and nickel. Oak Ridge, Tenn: Controlled Fusion Atomic Data Center, Oak Ridge National Laboratory, 1989.
Cerca il testo completoG, Pushin V., e Kondratʹev V. V, a cura di. Nikelid titana: Struktura i svoĭstva. Moskva: "Nauka", 1992.
Cerca il testo completoGi͡unter, V. Ė. Nikelid titana: Medit͡sinskiĭ material novogo pokolenii͡a. Tomsk: NII medit͡sinskikh materialov i implantatov s pami͡atʹi͡u formy Sibirskogo fiziko-tekhnicheskogo instituta pri Tomskom gos. universitete, 2006.
Cerca il testo completoTietze, Holger. Phasenübergänge mit Memory Effekt: Neutronenstreuung an der Shape Memory Legierung NiTi. Frankfurt am Main: Verlag für Akademische Schriften, 1985.
Cerca il testo completoStróż, Danuta. Oddziaływanie zniekształceń sieciowych na przebieg przemiany martenzytycznej w stopach NiTi. Katowice: Wydawnictwo Uniwersytetu Śląskiego, 2005.
Cerca il testo completoFisher, G. T. Effects of composition and processing variables on transverse rupture strength and hardness of nickel-alloy-bonded titanium carbide. Pittsburgh, Pa: U.S. Dept. of the Interior, Bureau of Mines, 1987.
Cerca il testo completoMines, United States Bureau of. Effects of Composition and Processing Variables on Transverse Rupture Strength and Hardness of Nickel-Alloy-Bonded Titanium Carbide. S.l: s.n, 1987.
Cerca il testo completoInstitution, British Standards. Welding fusion welded joints in steel, nickel, titanium, and their alloys beam welding excluded: Quality levels for imperfections : BS EN ISO 5817:2003. London: British Standards Institute, 2003.
Cerca il testo completoL, Jerina Kenneth, ASTM International, ASTM International Committee E08 on Fatigue and Fracture e ASTM Committee F-4 on Medical and Surgical Materials and Devices, a cura di. Fatigue and fracture of medical metallic materials and devices: 2nd volume. West Conshohocken, PA: ASTM International, 2010.
Cerca il testo completoOshida, Yoshiki, e Toshihiko Tominaga. Nickel-Titanium Materials: Biomedical Applications. de Gruyter GmbH, Walter, 2020.
Cerca il testo completoOshida, Yoshiki, e Toshihiko Tominaga. Nickel-Titanium Materials: Biomedical Applications. de Gruyter GmbH, Walter, 2020.
Cerca il testo completoOshida, Yoshiki, e Toshihiko Tominaga. Nickel-Titanium Materials: Biomedical Applications. de Gruyter GmbH, Walter, 2020.
Cerca il testo completoNickel-Titanium Smart Hybrid Materials. Elsevier, 2022. http://dx.doi.org/10.1016/c2020-0-04498-1.
Testo completoZargar, Dr AB Wahid, e Dr Omer Hussain, a cura di. Nickel-Titanium Single-File Systems. Weser Books, 2022. http://dx.doi.org/10.33545/wb.book.209.
Testo completoL, Wiese W., Musgrove Arlene e Oak Ridge National Laboratory. Controlled Fusion Atomic Data Center., a cura di. Spectroscopic data for titanium, chromium, and nickel. Oak Ridge, Tenn: Controlled Fusion Atomic Data Center, Oak Ridge National Laboratory, 1989.
Cerca il testo completoNickel-Titanium Instruments and Applications in Endodontics. Medico Dental Media International, 1995.
Cerca il testo completoBourke, Allyson. Force characteristics of nickel-titanium open-coil springs. 2007, 2007.
Cerca il testo completoChow, Wilbur L. Force characteristics of nickel titanium closed coil springs. 2006.
Cerca il testo completoJackson, Mark J., Alisson R. Machado e Marcio B. da Silva. Machining of Titanium and Nickel Alloys for Aerospace Applications. Springer, 2020.
Cerca il testo completoBest, Andrew Sheldon. Torsional cyclic fatigue of an endodontic nickel-titanium rotary instrument. 2003, 2003.
Cerca il testo completoMajumdar, Arunava. Interaction of aluminum, titanium and chromium with oxygen in nickel melts. 1994.
Cerca il testo completoPark, Jae Hyun. Interfacial reactions in nickel/titanium ohmic contacts to n-type silicon carbide. 2003.
Cerca il testo completoA Comparison of Dental and Skeletal Changes Between Rapid Palatal Expansion and Nickel Titanium Palatal Expansion. Storming Media, 1999.
Cerca il testo completoHafezi, Ashkan. Examination and comparison of torsional fatigue profiles of rotary nickel-titanium files of varying size and design. 2005.
Cerca il testo completoDivision, India Mineral Economics, e Indian Bureau of Mines, a cura di. Status of special alloy metals in India: Cadmium, cobalt, molybdenum, nickel, niobium (columnium) & tantalum, selenium & tellurium, tin, titanium, tungsten and vandadium. Nagpur: Controller-General, Indian Bureau of Mines, 1998.
Cerca il testo completoKong, X. Y., Y. C. Wang, X. F. Fan, G. F. Guo e L. M. Tong. Free-standing grid-like nanostructures assembled into 3D open architectures for photovoltaic devices. A cura di A. V. Narlikar e Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533060.013.22.
Testo completoKahn, S. Lowell, e Sergio Rojas. Deployment Finesse of the Gore Excluder Stent Graft. A cura di S. Lowell Kahn, Bulent Arslan e Abdulrahman Masrani. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780199986071.003.0002.
Testo completoCockrem, Jeremy Maurice. Investigation of plasma nitriding and titanium nitride coating by physical vapour deposition of titanium 6A14V alloy to improve the wear resistance of inner bores V2:Final test results of plasma nitrided and physical vapour deposited titanium nitride coated titanium 6A1-4V samples and compared with samples coated using the established techniquesof electroless nickel phosphorous plating. 1995.
Cerca il testo completoUnited States. National Aeronautics and Space Administration. Scientific and Technical Information Division. e Failure Analysis Associates, a cura di. Nonequilibrium phase chemistry in high temperature structural alloys. [Washington, D.C.]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1991.
Cerca il testo completoHigh temperature composites. [Washington, DC]: National Aeronautics and Space Administration, 1995.
Cerca il testo completoThiehsen, Kurt. The effect of primary alpha, nickel, and chromium on the creep properties of Ti 6242Si. 1993.
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