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1

Werner, Theisen, and SpringerLink (Online service), eds. Ferrous Materials: Steel and Cast Iron. Berlin, Heidelberg: Springer-Verlag, 2008.

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2

1955-, Dowben Peter A., and Miller Allen 1932-, eds. Surface segregation phenomena. Boca Raton, Fla: CRC Press, 1990.

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3

Engineers, Society of Automotive, ed. SAE ferrous materials standards manual. Warrendale, Pa: Society of Automotive Engineers, 1997.

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4

SAE ferrous materials standards manual. Warrendale, PA: Society of Automotive Engineers, 1994.

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5

SAE ferrous materials standards manual. Warrendale, PA: Society of Automotive Engineers, 1996.

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6

Schröder, Jörg, and Doru C. Lupascu, eds. Ferroic Functional Materials. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-68883-1.

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7

Engineers, Society of Automotive. SAE ferrous materials standards manual: 1995 edition. Warrendale, Pa: Society of AutomotiveEngineers, 1995.

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8

Adaskin, Anatoliy, Aleksandr Krasnovskiy, and Tat'yana Tarasova. Materials science and technology of metallic, non-metallic and composite materials. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1143245.

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Book 1 of the textbook consists of two parts. Part I describes the structure of metallic, non-metallic, and composite materials. Technologies of production of metal materials are considered: metallurgical production of ferrous and non-ferrous metals; powder metallurgy; technologies of production of non-metallic materials: polymers, glass, graphite; technologies of production of composite materials, including semi-finished products-prepregs, premixes. Part II is devoted to methods for studying the properties of materials. Metal materials, technologies of their hardening by thermal, chemical-thermal treatment, and plastic deformation are considered. The features of organic and inorganic nonmetallic materials, as well as the possibility of changing their properties, are given. Composite materials are widely covered, and the areas of their rational application are shown. Revised chapter 14, which deals with intelligent materials. Meets the requirements of the federal state educational standards of higher education of the latest generation. For bachelors and undergraduates studying in groups of training areas 15.00.00 "Mechanical Engineering" and 22.00.00 "Materials Technologies". It can be used for training graduate students of engineering specialties, as well as for advanced training of engineering and technical workers of machine-building enterprises.
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9

Lookman, Turab, and Xiaobing Ren, eds. Frustrated Materials and Ferroic Glasses. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-96914-5.

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10

Seidel, Jan, ed. Topological Structures in Ferroic Materials. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-25301-5.

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11

Nechaev, Vladimir, Andrey Shuba, Stanislav Gridnev, and Vitaliy Topolov. Dimensional effects in phase transitions and physical properties of ferroics. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1898400.

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The monograph presents mathematical methods and a set of mathematical models describing, within the framework of phenomenological theory, phase transitions in 0D-. 1D-, 2D-, 3D-dimensional ferroelectrics, ferroelastics, ferromagnets and their static and dynamic physical properties near the phase transition point. The influence of the parameters characterizing the ferroic sample and its interaction with the environment on the features of the phase transition, phase transition temperature shift, heat capacity, generalized susceptibilities is analyzed. Mathematical models of multilayer thin-film structures and composite materials, where one of the components is a ferroic nanoparticle, are considered. In general, modern ideas about dimensional effects in ferroelectrics, ferroelastics, ferromagnets and mechanisms of purposeful influence on their properties are sufficiently fully covered. It is intended for researchers, students and postgraduates of physical specialties of universities interested in fundamental problems of formation of physical properties of low-dimensional materials. Research engineers, developers of new materials can use the presented material as a scientific and methodological basis to support the development of optimal solutions for their creation.
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12

Evtushenko, Sergej, and Viktor Logvinov. Resistance of materials. Laboratory works. 4th edition. 4th ed. ru: Publishing Center RIOR, 2016. http://dx.doi.org/10.12737/16966.

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Data on laboratory works on resistance of materials are provided, the assessment of errors of results of measurements and experiments is given, statistical processing of experimental data is in detail stated. The book contains information on nondestructive methods and control devices of characteristics and diagnostics of materials and designs. In a grant the International system of units (SI) (tab. 1 of the Appendix) is used, designations of sizes are accepted according to the international recommendations of ISO. Data on physicomechanical characteristics of steel, cast iron, non-ferrous metals, wood and polymers and the allowed tension for them are provided in tab. 2-8 of the Appendix. The grant is intended for the students studying courses of resistance of materials, mechanics of materials and designs, applied mechanics, construction mechanics and construction designs.
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13

"International Seminar on Non-ferrous Metals and Materials" (2000 National Metallurgical Laboratory). Non-ferrous metals & materials: Proceedings of the International Seminar, February 9-11, 2000. Edited by Chakrabarti D. M, National Metallurgical Laboratory (India), and Corporate Monitor Inc. Jamshedpur: National Metallurgical Laboratory & Corporate Monitor, Calcutta, 2000.

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14

1943-, Wayman Michael L., and British Museum, eds. The ferrous metallurgy of early clocks and watches: Studies in post medieval steel. London: British Museum, 2000.

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15

E, Cross L., and Fousek Jan, eds. Domains in ferroic crystals and thin films. New York: Springer, 2010.

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16

Wiraka, Haradewa Siṅgha, and Wolfgang Kleemann. Ferroics and multiferroics: Special topic volume with invited peer reviewed papers only. Zurich: Trans Tech Publications, 2012.

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17

Tekhnologii, i. oborudovanie dli︠a︡ proizvodstva ogneuporov; Ispolʹzovanie novykh vidov ogneupornykh izdeliĭ v. metallurgicheskoĭ promyshlennosti (2005 Moskva Russia). Tekhnologii i oborudovanie dli︠a︡ proizvodstva ogneuporov; Ispolʹzovanie novykh vidov ogneupornykh izdeliĭ v metallurgicheskoĭ promyshlennosti: Materialy mezhdunarodnoĭ konferent︠s︡ii, 9 fevrali︠a︡ 2005 = Technologies & Equipment for Refractory Manufactory; Using of New Kind of Refractorie in Ferrous & Non-Ferrous Metallurgy, February 9, 2005. Moskva: Teploėnergetik, 2005.

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18

G, Morris James, Minerals, Metals and Materials Society. Structural Materials Division., and Minerals, Metals and Materials Society. Non-ferrous Metals Committee., eds. Aluminum alloys for packaging: Proceedings of a symposium sponsored by the Struuctural [sic] Materials Division (SMD), Non-Ferrous Metals Committee, held at Materials Week '92 in Chicago, Illinois, November 1-5, 1992. Warrendale, Pa: The Society, 1993.

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19

Daniel, Bryant J., White Dawn R, Minerals, Metals and Materials Society. Structural Materials Division., Minerals, Metals and Materials Society. Non-ferrous Metals Committee., and Materials Week '95 (1995 : Cleveland, Ohio), eds. Aluminum and magnesium for automotive applications: Proceedings of a symposium sponsored by the Structural Materials Division (SMD) Non-Ferrous Metals Committee of the Minerals, Metals & Materials Society (TMS) held during Materials Week '95 in Cleveland, Ohio, October 29-November 2, 1995. Warrendale, PA: Minerals, Metals & Materials Society, 1996.

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20

G, Paris Henry, Hunt W. H, International Magnesium Association, TMS-AIME Nonferrous Metals Committee., and Metallurgical Society (U.S.). Meeting, eds. Advances in magnesium alloys and composites: Proceedings of a symposium sponsored by the International Magnesium Association and the Non-Ferrous Metals Committee, held at the Annual Meeting of the Minerals, Metals, and Materials Society in Phoenix, Arizona, January 26, 1988. Warrendale, Pa: The Society, 1988.

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21

G, Langdon T., Minerals, Metals and Materials Society. Non-ferrous Metals Committee., and Minerals, Metals and Materials Society. Fall Meeting, eds. Hot deformation of aluminum alloys: Proceedings of a symposium by the Non-Ferrous Metals Committee of the Minerals, Metals and Materials Society, Detroit, Michigan, October 8-10, 1990. Warrendale, Penn: The Society, 1991.

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22

Calif.) Sohn International Symposium (2006 San Diego. Advanced processing of metals and materials: Proceedings of the International Symposium, August 27-31, 2006, San Diego, California, USA : Thermo and physicochemical principles: non-ferrous high-temperature processing. Warrendale, Pa: Minerals, Metals and Materials Society, 2006.

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23

V, Jata K., Minerals, Metals and Materials Society. Non-ferrous Metals Committee., and Minerals, Metals and Materials Society. Meeting, eds. Lightweight alloys for aerospace application: Proceedings of symposium sponsored by the Non-Ferrous Metals Committee of the Structural Materials Division (SMD) of TMS (The Minerals, Metals & Materials Society), held at the TMS Annual Meeting in New Orleans, LA, USA, February 12-14, 2001. Warrendale, Pa: TMS, 2001.

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24

ASM International. Handbook Committee, ed. Metals handbook. Materials Park, OH: ASM International, 1990.

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25

Sperti, Luigi, Margherita Tirelli, and Silvia Cipriano. Prima dello scavo. Venice: Edizioni Ca' Foscari, 2018. http://dx.doi.org/10.30687/978-88-6969-284-0.

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Il volume raccoglie i risultati della prima campagna di survey effettuata dall’Università Ca’ Foscari nel sito di Altino, in località Ghiacciaia, un’ampia area di proprietà demaniale che corrisponde alla parte nord-orientale dell’abitato della città antica. Si tratta quindi di uno dei pochi interventi sistematici sull’area urbana, rimasta sino ad ora ai margini delle ricerche sulla città veneta. I docenti, i dottorandi e gli studenti coinvolti affrontano sia temi generali – dalla storia degli studi sull’area alle tecniche di ricognizione – sia il ricco materiale emerso nel corso della ricognizione, fornendone un basilare inquadramento tipologico e cronologico. L’indagine archeologica e la ricerca scientifica che in questi ultimi decenni hanno interessato l’area altinate mettono sempre più in luce la rilevanza del sito, che si impone come uno dei luoghi nodali nel panorama veneto dalla prima età del Ferro fino all’età tardoantica, indissolubilmente legato alla nascita di Torcello e quindi all’origine di Venezia.
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26

G, Morris James, Das Subodh K, Goodrich H. S, Minerals, Metals & Materials Society. Non-ferrous Metals Committee., Minerals, Metals & Materials Society. Aluminum Committee., and Minerals, Metals & Materials Society. Meeting, eds. Aluminum alloys for packaging II: Proceedings of a symposiumsponsored by the Structural Materials Division (SMD), Non Ferrous Metals Committee and the Light Metals Division (LMD), Aluminum Committee of the Minerals, Metals & Materials Society held during the TMS Annual Meeting in Anaheim,California, February 4-8, 1996. Warrendale, Pa: The Society, 1996.

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27

A, Taylor K., Thompson S. W, Fletcher F. B, TMS Ferrous Metallurgy Committee., ASM International. Phase Transformations Committee., and ASM Materials Week '92 (1992 : Chicago, Ill.), eds. Physical metallurgy of direct-quenched steels: Proceedings of a symposium sponsored by the Ferrous Metallurgy Committee and the Phase Transformations Committee of ASM International, held at Materials Week '92 in Chicago, Illinois, November 2-4, 1992. Warrendale, Pa: The Society, 1993.

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28

W, Lee Eui, Minerals, Metals and Materials Society. Non-ferrous Metals Committee., and Minerals, Metals and Materials Society. Meeting, eds. Light weight alloys for aerospace applications IV: Proceedings of the fourth "Light weight alloys for aerospace applications" symposium : sponsored by the Non-Ferrous Metals Committee of the Structural Materials Division (SMD) of the Minerals, Metals & Materials Society (TMS), held February 10-13, 1997, TMS Annual Meeting in Orlando, Florida. Warrendale, Pa: Minerals, Metals & Materials Society, 1997.

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29

A, Taylor K., Thompson S. W, Fletcher F. B, TMS Ferrous Metallurgy Committee., and ASM-MSD Phase Transformations Committee., eds. Physical metallurgy of direct-quenched steels: Proceedings of a symposium sponsored by the Ferrous Metallurgy Committee of TMS and the Phase Transformations Committee of ASM International, held at Materials Week '92 in Chicago, Illinois, November 2-4, 1992. Warrendale, Pa: Minerals, Metals & Materials Society, 1993.

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30

1965-, Kongoli Florian, Thomas B. G, Sawamiphakdi Krich, and Minerals, Metals and Materials Society., eds. Modeling, control, and optimization in ferrous and nonferrous industry: Proceedings of the symposium sponsored by ... the Iron & Steel Society (ISS) ... [et al.] : held at the Materials Science & Technology 2003 Conference in Chicago, Illinois, USA, November 9-12, 2003. Warrendale, Pa: TMS, 2003.

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31

Material Specifications: Ferrous Materials/Part A/Fx002A. Amer Society of Mechanical, 1986.

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32

Material Specifications: Non Ferrous Materials/Part B/Fx002B. Amer Society of Mechanical, 1986.

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33

Ferrous Material Specifications: 1992 Asme Boiler and Pressure Vessel Code It Materials Part A (Materials). Amer Society of Mechanical, 1992.

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34

Ferrous Materials. Berlin, Heidelberg: Springer Berlin Heidelberg, 2008. http://dx.doi.org/10.1007/978-3-540-71848-2.

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35

Dowben, Peter A., and Allen Miller. Surface Segregationphenomena. CRC, 1990.

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36

Spittel, Marlene, and Thilo Spittel. Ferrous Alloys. Springer Berlin / Heidelberg, 2009.

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37

Sae Ferrous Materials Standards Manual. Society of Automotive Engineers Inc, 2000.

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38

Berns, Hans, Werner Theisen, and Gillian Scheibelein. Ferrous Materials: Steel and Cast Iron. Springer, 2010.

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39

Engineers, Society of Automotive. Sae Ferrous Materials Standards Manual, 1999. SAE International, 1999.

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40

Engineers, Society of Automotive. Sae Ferrous Materials Standards Manual 1997. SAE International, 1997.

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41

Aluminum and magnesium for automotive applications: Proceedings of a symposium sponsored by the Structural Materials Division (SMD) Non-Ferrous Metals Committee of the Minerals, Metals & Materials Society (TMS) held during material week '95 in Cleveland, Ohio, October 29-November 8, 1995. Warrendale, PA: Minerals, Metals & Materials Society, 1996.

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42

Yu, Hailiang, Zhilin Liu, and Xiaohui Cui, eds. Advances in High-Performance Non-ferrous Materials. MDPI, 2023. http://dx.doi.org/10.3390/books978-3-0365-6653-5.

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43

Wadhawan, Vinod. Introduction to Ferroic Materials. Taylor & Francis Group, 2019.

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44

Wadhawan, Vinod. Introduction to Ferroic Materials. Taylor & Francis Group, 2000.

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45

Wadhawan, Vinod. Introduction to Ferroic Materials. Taylor & Francis Group, 2019.

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46

Introduction to Ferroic Materials. CRC, 2000.

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47

Wadhawan, Vinod. Introduction to Ferroic Materials. Taylor & Francis Group, 2000.

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48

Fiebig, Manfred. Nonlinear Optics on Ferroic Materials. Wiley & Sons, Incorporated, John, 2023.

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49

Virk, Hardev. Ferroic Materials: Synthesis and Applications. Trans Tech Publications, Limited, 2015.

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50

Lookman, Turab, and Xiaobing Ren. Frustrated Materials and Ferroic Glasses. Springer, 2018.

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