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1

Manufacturing technology: Foundry, forming and welding. New Delhi: Tata McGraw-Hill, 1987.

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2

Ramezani, Maziar. Rubber-pad forming processes: Technology and applications. Cambridge, UK: Woodhead Publishing, 2012.

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3

ICAFT 2003 (2003 Chemnitz, Germany). International Conference on Accuracy in Forming Technology, ICAFT 2003 : [in association with] 10th Saxon Conference on Forming Technology SFU 2003 : proceedings. Zwickau: Wissenschaftliche Scripten, 2003.

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4

(Dorel), Banabic D., and European Scientific Association for Material Forming, eds. Advanced methods in material forming. Berlin: Springer, 2007.

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5

Kaĭbyshev, O. A. Superplasticity: Microstructural refinement and superplastic roll forming. Arlington, Va: Futurepast, 2005.

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6

Sun, Baode, Jun Wang, and Da Shu. Precision Forming Technology of Large Superalloy Castings for Aircraft Engines. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-33-6220-8.

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7

Xian dai ye ya cheng xing ji shu: Modern hydroforming technology. Beijing Shi: Guo fang gong ye chu ban she, 2009.

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8

Hu, Ping, Ning Ma, Li-zhong Liu, and Yi-guo Zhu. Theories, Methods and Numerical Technology of Sheet Metal Cold and Hot Forming. London: Springer London, 2013. http://dx.doi.org/10.1007/978-1-4471-4099-3.

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9

International Symposium on Superplasticity and Superplastic Forming Technology (1st and 2nd 2001, 2002 Indianapolis, Ind., Columbus, Ohio). First and Second International Symposia on Superplasticity and Superplastic Forming Technology : Proceedings of symposia organized by ASM International, Materials Park, Ohio, USA, 5-8 November 2001, Indiana Convention Center, Indianapolis, Indiana, USA and 7-9 October 2002, Greater Columbus Convention Center, Columbus, Ohio, USA. Edited by Dunand David C and Sanders Dan G. Materials Park, Ohio: ASM International, 2003.

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10

Nimatulaev, Magomedhan. Information technology in professional activities. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1031122.

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The textbook is intended for studying of discipline "Information technologies in professional activity". Discusses key issues of forming of information society, basic notions and definitions of Informatization of various types and levels of professional activity, the analysis of information systems and technologies to solve economic and management problems. Meets the requirements of Federal state educational standards of higher education of the last generation. It is recommended that students enrolled in the bachelor in the direction of training "Management", as well as postgraduate and graduate students to update knowledge and skills in the application of information systems and technologies in the context of big data Analytics and managerial decision-making.
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11

Demange, Michel. Mineralogy for petrologists: Optics, chemistry, and occurrences of rock-forming minerals. Boca Raton, FL: CRC Press, 2012.

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12

Mineralogy for petrologists: Optics, chemistry, and occurrences of rock-forming minerals. Boca Raton, FL: CRC Press, 2012.

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13

International Symposium on Electrochemical Machining Technology (9th 2013 Fraunhofer Institut Werkzeugmaschinen und Umformtechnik). International Symposium on ElectroChemical Machining Technology INSECT 2013: Proceedings, November 12-13, 2013, Fraunhofer Institute for Machine Tools and Forming Technology IWU Chemnitz. Edited by Schubert Andreas 1960- and Hackert-Oschätzchen Matthias 1979-. Chemnitz, Germany: Technische Universität Chemnitz, Professorship Micromanufacturing Technnology, 2013.

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14

Obtaining resources for technology in education: A how-to guide for writing proposals, forming partnerships, & raising funds. 2nd ed. Eugene, Or: International Society for Technology in Education, 1997.

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15

Hu, Ping. Theories, Methods and Numerical Technology of Sheet Metal Cold and Hot Forming: Analysis, Simulation and Engineering Applications. London: Springer London, 2013.

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16

Bersee, H. E. N. Diaphragm forming of continuous fibre reinforced thermoplastics: Process analysis and development : proefschrift / door Harald Erik Niklaus Bersee. Delft: Delft University Press, 1996.

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17

Ye gu gao ya cheng xing ji shu yu ying yong: Technology and Application of Liquid Solid Forming Under High Pressure. Beijing Shi: Guo fang gong ye chu ban she, 2013.

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18

Pachurin, German. Technology for studying the destruction of structural materials under different loading conditions. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/981296.

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The textbook is devoted to solving topical issues related to the prediction of the effect of plastic deformation on the behavior in various operating conditions of a wide class of metals and alloys. The technology developed by the author for studying the mechanical properties and the process of destruction of plastically treated metal materials under various loading conditions (static at different temperatures, cyclic in air at low, room and elevated temperatures, as well as at room temperature in the presence of a corrosive environment) is described. Meets the requirements of the federal state educational standards of higher education of the latest generation. Addressed to bachelors and undergraduates of higher educational institutions of full-time and part-time education in the areas of training 20.03.01 Technosphere safety" (training profile "Safety of technological processes and production"), 22.03.01 and 22.04.01 "Materials Science and Materials Technology", 22.03.02 and 22.04.02 "Metallurgy", 15.03.01 and 15.04.01 "Mechanical Engineering", 15.05.01 "Design of technological machines and complexes", 15.03.02 "Technological machines and equipment", 15.03.04 and 15.04.04 "Automation of technological processes and production", 17.05.02 "Strelkovo-pushechnoe, artillery and rocket weapons", 15.03.05 "Design and technological support of machine-building industries". It can be useful for scientific and engineering workers of enterprises of automotive, aviation, shipbuilding and other metalworking branches of mechanical engineering, laboratory workers, as well as for training specialists in materials science, metal science and metal forming."
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19

Belyaev, Sergey, Nikolay Dovzhenko, Edvard Rudnitskiy, Igor Uskov, Sergey Sidelnikov, Igor Konstantinov, and Olga Lebedeva. Production of jewelry made of precious metals and their alloys. ru: INFRA-M Academic Publishing LLC., 2016. http://dx.doi.org/10.12737/14654.

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In the book are described for jewelry production, properties, structures, stamps, given technological bases of jewelry production methods of casting and metal forming, presented a special technology jewelry making and settlement processes of production of jewelry. Designed for students in higher education, professionals in the field of metallurgy of precious metals and jewelry production.
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20

Bahn, Volker. Implementierung der Mehrpunkt-Technologie in den Innenhochdruck-Blechumformungsprozess (IHB). Chemnitz: Fraunhofer-Institut für Werkzeugmaschinen und Umformtechnik, IWU, 2009.

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21

Hengartner, Thomas, and Johanna Rolshoven. Technik, Kultur: Formen der Veralltäglichung von Technik, Technisches im Alltag. Zürich: Chronos, 1998.

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22

Over, Michael. Technogene Nähe: Skizze zu annehmbaren Formen und Massverhältnissen des Aussersichseins. Berlin: Sine Causa Verlag, 2005.

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23

Duscha, Waldemar. Technologietransfer in die Volksrepublik China durch Wirtschaftskooperation: Bestimmungsgründe, Formen, Standorte und Wirkungen. Hamburg: Institut für Asienkunde, 1987.

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24

Holz, Hans Heinz. Seins-Formen: Über strengen Konstruktivismus in der Kunst. Bielefeld: Aisthesis, 2001.

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25

Erinnerungsräume: Formen und Wandlungen des kulturellen Gedächtnisses. München: C.H. Beck, 1999.

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26

Vincentz, Volkhart. Möglichkeiten, Inhalte und Formen technologiepolitischer Kooperationen zwischen Russland und der Bundesrepublik Deutschland. München: Osteuropa-Institut München, 1993.

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27

Weil, Stefan. Formen und Methoden der Ermittlung des Bedarfs an berufsbezogener wissenschaftlicher Weiterbildung: Gutachten im Auftrag des Bundesministeriums für Bildung und Wissenschaft. Tübingen: Institut für Angewandte Wirtschaftsforschung Tübingen, 1993.

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28

Feldhoff, Jürgen. Wandel des Betriebes durch Informationstechnologie: Akteure in der programmierten Arbeitswelt und neue Formen gewerkschaftlicher Praxis. Frankfurt/Main: Campus, 1994.

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29

Forschung, Rüstung und Krieg: Formen, Ausmass und Grenzen des Wissenschaftlereinsatzes für den Zweiten Weltkrieg im Deutschen Reich. Norderstedt: Books on Demand, 2005.

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30

Ökonomie, Technologie und Region: Voraussetzungen, Formen und Folgen des Strukturwandels : [Festschrift für Prof. Dr. Hans-Dieter Feser]. Regensburg: Roderer, 2010.

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31

Raj, Baldev, and S. Venugopal. Metal Forming Technology. Narosa Publishing House, 2020.

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32

Vidosic, Joseph P. Metal MacHining and Forming Technology. John Wiley & Sons, 2000.

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33

Z, Blazynski T., ed. Plasticity and modern metal-forming technology. London: Elsevier Applied Science, 1989.

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34

Manufacturing Technology: Foundry, Forming and Welding. McGraw-Hill Education, 1999.

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35

J, Cima Michael, American Ceramic Society Meeting, and Symposium on Forming Science and Related Properties of Ceramics (1991 : Cincinnati, Ohio), eds. Forming science and technology for ceramics. Westerville, Ohio: American Ceramic Society, 1992.

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36

Technology of Skilled Processes: Forming (Technology of Skilled Processes). Hyperion Books, 1986.

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37

Sheet/hydro/gas forming technology and modeling. Warrendale, PA: Society of Automotive Engineers, 2004.

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38

Ramezani, Maziar, and Zaidi Mohd Ripin. Rubber-Pad Forming Processes: Technology and Applications. Woodhead Publishing, 2018.

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39

Konstantinov, Igor', and Sergey Sidel'nikov. Fundamentals of technology of metal forming processes. Infra-M Academic Publishing House, 2016. http://dx.doi.org/10.12737/14048.

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40

Engineers, Society of Automotive, and SAE World Congress (2005 : Detroit, Mich.), eds. Sheet/hydro/gas forming technology and modeling 2005. Warrendale, Pa: Society of Automotive Engineers, 2005.

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41

(Editor), Thomas J. Oetjens, Thomas B. Stoughton (Editor), Michael J. Saran (Editor), Jwo Pan (Editor), and Sheng-Dong Liu (Editor), eds. Sheet/Hydro/Gas Forming Technology and Modeling: Sp-1840. Society of Automotive Engineers Inc, 2004.

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42

Carol, Cimino, National Catholic Educational Association, and Selected Programs for Improving Catholic Education., eds. Forming innovative learning environments through technology: Conversations in excellence. Washington, DC: National Catholic Educational Association, 2000.

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43

Engineers, Society of Manufacturing, ed. Cold forming technology: April 7-8, 1987, Southfield, Michigan. Dearborn, Mich. (1 SME Dr., Dearborn 48121): Society of Manufacturing Engineers, 1987.

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44

Haney, Regina, Joseph O'Keefe, and Carol Cimino. Forming Innovative Learning Environment Through Technology: SPICE Conversations in Excellence. National Catholic Educational Association (NCEA), 1999.

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45

Handbook of Ease or Difficulty in Press Forming by the Thin Sheet Steel Forming Technology Study Association. Natl Center for Manufacturing, 1993.

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46

Yilbas, Bekir Sami. Laser Forming and Welding Processes. 2013.

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47

J, Kingsley J., Schilling Christopher H, Adair James H, American Ceramic Society, and Symposium on Science, Technology, and Commercialization of Powder Synthesis and Shape Forming Processes (1995 : Cincinnati, Ohio), eds. Science, technology, and commercialization of powder synthesis and shape forming processes. Westerville, Ohio: American Ceramic Society, 1996.

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48

Kaibyshev, Oscar A., and Farid Z. Utyashev. Superplasticity: Microstructural Refinement And Superplastic Roll Forming (Istc Science and Technology). Futurepast, 2005.

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49

Moore, Graham, and Brian Attwood. An Introduction to the Theory and Practice of Multiply Forming (Pira Technology). Pira International, 1996.

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50

Kobayashi, Shiro, Soo-Ik Oh, and Taylan Altan. Metal Forming and the Finite-Element Method. Oxford University Press, 1989. http://dx.doi.org/10.1093/oso/9780195044027.001.0001.

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The application of computer-aided design and manufacturing techniques is becoming essential in modern metal-forming technology. Thus process modeling for the determination of deformation mechanics has been a major concern in research . In light of these developments, the finite element method--a technique by which an object is decomposed into pieces and treated as isolated, interacting sections--has steadily assumed increased importance. This volume addresses advances in modern metal-forming technology, computer-aided design and engineering, and the finite element method.
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