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1

Gavrilin, Igor V. Melting and crystallization of metals and alloys. Vladimir State University, 2001.

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2

Gridnev, V. N. Fizicheskie osnovy skorostnogo termouprochnenii͡a︡ titanovykh splavov. Nauk. dumka, 1986.

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3

Mekhanizm i kinetika fazovykh i strukturnykh prevrashcheniĭ v titanovykh splavakh. Nauka, 1994.

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4

Bian xing lü he jin re chu li gong yi. Zhong nan da xue chu ban she, 2011.

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5

A. K. M. Bazlur Rashid. Heat treatment and quality index of cast aluminium-silicon-magnesium alloys. University of Birmingham, 1993.

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6

Utevskiĭ, L. M. Obratimai͡a︡ otpusknai͡a︡ khrupkostʹ stali i splavov zheleza. "Metallurgii͡a︡", 1987.

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7

Compton, E. Conrad. Evaluation of a standard test method for total hemispherical emittance of surfaces from 293 K to 1673 K. National Aeronautics and Space Administration, Langley Research Center, 1986.

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8

Morton, Joanne. Hydrogen absorption and loss during heat-treatment of aluminium alloys containing magnesium and lithium. Brunel University, 1990.

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9

Srivastava, D., and Dinesh Srivastava. Microstructural examination of Zr-2.5%Nb pressure tube S-07 from Kakrapar atomic power station unit-2. Bhabha Atomic Research Centre, 2011.

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10

Lü re lian zha yuan li yu ji shu. Zhong nan da xue chu ban she, 2011.

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11

Krzyżanowski, Michał. Umocnienie powierzchniowe stopów żelaza przy wykorzystaniunagrzewania plazmowego. Wydawnictwa AGH, 1995.

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12

Campagnac, Marie Helene. Structures et proprietes mecaniques d'alliages de titane a bas transus Ti-10V-2Fe-3Al et Ti-10V-3Cu-3Al. Office national d'etudes et de recherches aerospatiales, 1989.

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13

Shipko, A. A. Uprochnenie staleĭ i splavov s ispolʹzovaniem ėlektronno-luchevogo nagreva. "Navuka i tėkhnika", 1995.

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14

Childs, James L. The effect of heat treatment and cyclic strain amplitude on the damping properties of iron-chromium alloys. Naval Postgraduate School, 1988.

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15

Kupka, Marian. Struktura i właściwości stopów na osnowie fazy FeAl otrzymanych w procesach metalurgicznych. Wydawn. Uniwersytetu Śląskiego, 2005.

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16

Tai he jin xiang bian ji re chu li / . Zhong nan da xue chu ban she, 2012.

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17

Brooks, Charlie R. Principles of the heat treatment of plain carbon and low alloy steels. ASM International, 1996.

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18

Saibaba, N. Microstructural studies of heat treated Zr-2.5 Nb alloy for pressure tube applications. Bhabha Atomic Research Centre, 2010.

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19

Radchenko, Tat'yana, and Yuriy Shevcov. The creation of protective and strengthening coatings by methods of electron beam processing in vacuum. INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1000599.

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This monograph presents basic theoretical and applied issues of the process of electron beam heat treatment, cladding and welding in various industries.
 Reviewed hardware and technological aspects, peculiarities of formation of structure of metals and alloys, as well as the patterns of change of such physical-mechanical properties, such as hardness, wear resistance, corrosion resistance, thermal conductivity. The specific examples of the electron beam to create a strengthening and protective coatings.
 Can be recommended as a textbook for students of technical universities, engineer
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20

Orr, J. Conservation of strategic alloying elements: The selection and heat treatment of alloy engineering steels with optimised compositions. Commission of the European Communities, 1985.

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21

Woodfield, Andrew Philip. The influence of heat treatment on the microstructure, microchemistry and mechanical properties of the titanium alloy Ti 5331S. University of Birmingham, 1985.

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22

Healing ADD: The breakthrough program that allows you to see and heal the six types of attention deficit disorder. G.P. Putnam's Sons, 2001.

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23

Healing ADD: The breakthrough program that allows you to see and heal the six types of attention deficit disorder. Berkley Books, 2002.

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24

Amen, Daniel G. Healing ADD: The breakthrough program that allows you to see and heal the six types of attention deficit disorder. Putnam's, 2000.

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25

Walsh, Ronald A. McGraw-Hill machining and metalworking handbook. 3rd ed. McGraw-Hill, 2006.

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26

Walsh, Ronald A. McGraw-Hill machining and metalworking handbook. 3rd ed. McGraw-Hill, 2006.

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27

Walsh, Ronald A. McGraw-Hill machining and metalworking handbook. McGraw-Hill, 1994.

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28

Ber, Leonid B., Nikolai Kolobnev, and Evgeniy N. Kablov. Heat Treatment of Aluminum Alloys (Advances in Metallic Alloys). CRC, 2009.

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29

George C. Marshall Space Flight Center. and University of Alabama in Huntsville. Johnson Research Center., eds. Heat treatment study II: Final report. Johnson Research Center, University of Alabama in Huntsville, 1990.

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30

Center, NASA Glenn Research, ed. Dual microstructure heat treatment of a nickel-base disk alloy. National Aeronautics and Space Administration, Glenn Research Center, 2001.

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31

Introduction to Aluminum Alloys and Tempers. ASM International, 2000.

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32

Harry, Chandler, ed. Heat treater's guide: Practices and procedures for nonferrous alloys. ASM International, 1996.

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33

Lazarovna, Tofpenet͡s︡ Rimma, ed. Fizicheskie osnovy termot͡s︡iklicheskoĭ obrabotki starei͡u︡shchikh splavov. "Navuka i tėkhnika", 1992.

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34

Chandler, Harry. Heat Treater's Guide: Practices and Procedures for Nonferrous Alloys. ASM International, 1996.

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35

Z, Jin, and Minerals, Metals and Materials Society., eds. Hot deformation of aluminum alloys 2003. TMS, 2003.

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36

Chandler, Harry. Heat Treater's Guide: Practices and Procedures for Irons and Steels. 2nd ed. ASM International, 1995.

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37

Harry, Chandler, ed. Heat treater's guide: Practices and procedures for irons and steels. 2nd ed. ASM International, 1995.

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38

Tucker, Robert D. The heat treatment response found in an Al-Li-Cu-Mg-Zr alloy following superplastic deformation. 1989.

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39

Metallurgy of Basic Weld Metal. Woodhead Publishing, 1997.

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40

Ionnai͡a︡ khimiko-termicheskai͡a︡ obrabotka splavov. Izd-vo MGTU im. N.Ė. Baumana, 1999.

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41

Saimoto, Shigeo, and G. R. Purdy. Solute-Defect Interaction: Theory and Experiment. Pergamon, 1986.

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42

Saimoto, Shigeo, and G. R. Purdy. Solute-Defect Interaction: Theory and Experiment. Pergamon, 1986.

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43

Tansy, James L. The heat treatment response of an Al-Li-Cu-Mg-Zr alloy. 1992.

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44

Shigeo, Saimoto, Purdy Gary R, Kidson Geoffrey V, and Natural Sciences and Engineering Research Council Canada., eds. Solute-defect interaction: Theory and experiment : proceedings of the international seminar, Kingston, Canada, August 5-9, 1985. Pergamon Press, 1986.

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45

G, Maksimovich G., and Fizyko-mekhanichnyĭ instytut im. H.V. Karpenka., eds. Termicheskai͡a︡ obrabotka titanovykh i ali͡u︡minievykh splavov v vakuume i inertnykh sredakh. Nauk. dumka, 1987.

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46

E, Boyer Howard, and Cary Philip R, eds. Quenching and control of distortion. ASM International, 1988.

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47

Li, Xiao. The effects of thermal processing on the mechanical properties of AA2024, 2014 and 2618 aluminum alloys. 1993.

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48

Atlas of time-temperature diagrams for nonferrous alloys. ASM International, 1991.

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49

Homogenization and annealing of aluminum and copper alloys: Proceedings of a symposium sponsored by the Non-Ferrous Metals Committee of the Metallurgical Society and the Annealing and Recovery Committee of MSD/ASM International, Cincinnati, Ohio, October 12-13, 1987. The Society, 1988.

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50

P, Stanton W., and George C. Marshall Space Flight Center., eds. A new aging treatment for improving cryogenic toughness of the main structural alloy of the super lightweight tank. National Aeronautics and Space Administration, Marshall Space Flight Center, 1996.

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