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1

Moore, Thomas J. The effect of electron beam welding on the creep rupture properties of a Nb-Zr-C alloy. National Aeronautics and Space Administration, 1986.

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2

United States. National Aeronautics and Space Administration., ed. Onorbit electron beam welding experiment definition: Final report. National Aeronautics and Space Administration, 1990.

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3

Conference on the Laser vs the Electron Beam in Welding, Cutting, and Surface Treatment (1985 Reno, Nev.). Proceedings of the Conference on the Laser vs the Electron Beam in Welding, Cutting, and Surface Treatment: State of the art, 1985. Edited by Bakish Robert A. Bakish Materials Corp., 1985.

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4

Colloque international sur le soudage et la fusion par faisceaux d'électrons et laser (5e 1993 La Baule, Loire-Atlantique, France). 5ème Colloque international sur le soudage et la fusion par faisceaux d'électrons et laser =: 5th International Conference on Welding and Melting by Electron and Laser Beams, La Baule, 14-18 juin 1993. Commissariat à l'énergie atomique, 1993.

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5

George C. Marshall Space Flight Center., ed. A comparison of the physics of gas tungsten arc welding (GTAW), electron beam welding (BBW), and laser beam welding. National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1985.

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6

International Conference on Power Beam Technology. (2nd 1990 Stratford-upon-Avon, England). Power beam technology: Second International Conference, Stratford-upon-Avon, UK, 23-26 September 1990. Abington Pub., 1991.

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7

United States. National Aeronautics and Space Administration., ed. Joining of ceramics for high temperature applications. National Aeronautics and Space Administration, 1987.

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8

Welding, International Institute of, ed. Electron and laser beam welding: Proceedings of the international conference held in Tokyo, Japan, 14-15 July 1986 under the auspices of the International Institute of Welding = Soudage par faisceau d'électrons et laser : communications présentéesa la conférence internationale tenue a Tokyo, Japon les 14-15 juillet 1986 sous les auspices de l'Institut international de la soudure. Published on behalf of the International Institute of Welding by Pergamon, 1986.

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9

Vsesoi͡uznai͡a konferent͡sii͡a po ėlektronno-luchevoĭ svarke (11th 1991 Mykolaïv, Mykolaïvsʹka oblastʹ, Ukraine). Materialy XI Vsesoi͡uznoĭ nauchno-tekhnicheskoĭ konferent͡sii po ėlektronnoluchevoĭ svarke, 1-3 okti͡abri͡a 1991 g., g. Nikolaev. Sudostroenie, 1991.

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10

K, Nazarenko O., and Instytut elektrozvari͡u︡vanni͡a︡ im. I͡E︡.O. Patona., eds. Avtomaticheskoe upravlenie tekhnologicheskim prot͡s︡essom ėlektronno-luchevoĭ svarki: Sbornik nauchnykh trudov. IĖS im. E.O. Patona, 1987.

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11

International Power Beam Conference (1988 San Diego, Calif.). Power beam processing: Electron, laser, plasma-arc : proceedings of the International Power Beam Conference, 2-4 May 1988, San Diego, California, USA. ASM International, 1988.

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12

J, Moore T., Grobstein Toni, and United States. National Aeronautics and Space Administration., eds. Creep properties of PWC-11 base metal and weldments as affected by heat treatment. National Aeronautics and Space Administration, 1986.

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13

J, Moore Thomas, Grobstein Toni, and United States. National Aeronautics and Space Administration., eds. Creep properties of PWC-11 base metal and weldments as affected by heat treatment. National Aeronautics and Space Administration, 1986.

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14

Ribton, C. N. Inverter developments with improved response to flashovers during electron beam welding. TWI, 1996.

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15

Canada, Atomic Energy of. Electron Beam Welding For Copper Used Fuel Disposal Containers Phase One. s.n, 1985.

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16

Guthrey, Harvey. A model for electron-beam-induced current analysis of mc-Si addressing defect contrast behavior in heavily contaminated PV material: Preprint. National Renewable Energy Laboratory, 2012.

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17

Sun, Zheng. Laser beam welding of austenitic-ferritic dissimilar steel joints. Lappeenranta University of Technology, 1992.

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18

M, Spivak V., ed. Sistemy upravlenii͡a︡ luchevykh tekhnologicheskikh ustanovok. "Tekhnika", 1988.

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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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Abstract:
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

Sigl, Matthäus. Ein Beitrag zur Entwicklung des Elektronenstrahlsinterns. H. Utz, 2008.

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21

H, Morren Sybil, and United States. National Aeronautics and Space Administration., eds. Evaluation of rhenium joining methods. National Aeronautics and Space Administration, 1995.

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22

Canada, Atomic Energy of. Electron Beam Welding of Thick-Walled Copper Containers For Nuclear Fuel Waste Disposal: Phase Two. s.n, 1985.

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23

Canada, Atomic Energy of. Electron-beam welding of thick-walled copper containers for nuclear fuel waste disposal - phase three B. s.n, 1988.

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24

C, Nunes A., and George C. Marshall Space Flight Center., eds. An assessment of molten metal detachment hazards for electron beam welding in the space environment: Analysis and test results. National Aeronautics and Space Administration, Marshall Space Flight Center, 1998.

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25

United States. National Aeronautics and Space Administration., ed. Weldability of a nickel-based superalloy. National Aeronautics and Space Administration, 1994.

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26

United States. National Aeronautics and Space Administration., ed. Weldability of a nickel-based superalloy. National Aeronautics and Space Administration, 1994.

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27

Chalmers, Mark. A preliminary assessment into the effects of exposure (3500hrs at 500°c) and electron beam welding on the microstructure and mechanical properties of the burn resistant titanium alloy, TI-25V-15CR-2AL-0.2C (WT‰). University of Birmingham, 2003.

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28

Wilhelm, Gerald. Quantitative Optimierung des Energieeintrags beim MSG-Hochleistungsschweissen nichtrostender Stähle. DVS-Verlag, 2007.

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29

Welding, International Institute of, and International Conference on Electron and Laser Beam Welding (1986 : Tokyo, Japan), eds. Electron and laser beam welding: Proceedings of the international conference held in Tokyo, Japan, 14-15 July 1986 under the auspices of the International Institute of Welding = Soudage par faisceau d'électrons et laser : communications présentées à la conférence internationale tenue à Tokyo, Japon, les 14-15 juillet 1986 sous les auspices de l'Institut international de la soudure. Published on behalf of the International Institute of Welding by Pergamon Press, 1986.

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30

International Conference on Applications of Lasers and Electro-optics (1985 San Francisco, Calif.). Laser welding, machining, and materials processing: Proceedings of the International Congress on Applications of Lasers and Electro-optics, ICALEO '85, 11-14 November 1985, San Francisco, California, USA. IFS Publications, 1986.

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31

Bültermann, Gert Friedrich. Beitrag zur Fertigungsqualität beim Lichtbogenbahnschweissen von Grobblechen mit Industrierobotern. Deutscher Verlag für Schweisstechnik, 1985.

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32

Claussen, Carsten Martin. Heftschweissverfahren für das Lagefixieren von Werkstücken beim Schutzgasschweissen mit Industrierobotern. Springer-Verlag, 1991.

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33

Schultz, Dipl ing H. Electron beam welding. Woodhead Publishing Limited, 1994. http://dx.doi.org/10.1533/9781845698782.

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34

Schultz, Helmut. Electron Beam Welding. Woodhead Publishing, 1994.

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35

Schultz, H. Electron Beam Welding. Elsevier Science & Technology, 1994.

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36

Process specification for electron beam welding. American Welding Society, 1999.

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37

Wyatt, D. V. D V Wyatt Electron Beam Welding. Hodder Arnold H&S, 1999.

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38

Recommended Practices for Electron Beam Welding. American Welding Society, 1992.

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39

Recommended Practices for Electron Beam Welding (C7.1-92). Amer Welding Society, 1992.

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40

Paton, B. E. Electron Beam Welding, Achievements and Problems, A Review. Routledge, 1989.

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41

Source book on electron beam and laser welding. American Society for Metals, 1992.

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42

5eme Colloque international sur le soudage et la fusion par faisceaux d'electrons et laser =: 5th International Conference on Welding and Melting by Electron and Laser Beams, La Baule, 14-18 juin 1993. Commissariat a l'energie atomique, 1993.

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43

Creep properties of PWC-11 base metal and weldments as affected by heat treatment. National Aeronautics and Space Administration, 1986.

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44

High Energy Electron Beam Welding and Materials Processing: Proceedings from 1992 Conference. Amer Welding Society, 1994.

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45

Tu, Haoyun. Numerical Simulation and Experimental Investigation of the Fracture Behaviour of an Electron Beam Welded Steel Joint. Springer, 2018.

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46

Tu, Haoyun. Numerical Simulation and Experimental Investigation of the Fracture Behaviour of an Electron Beam Welded Steel Joint. Springer, 2017.

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47

Bakish, Robert A. Proceedings of Laser & Electron Beam in Welding, Cutting & Surface Treatment - State of the Art 1991. Bakish Materials Corporation, 1991.

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48

Danko, J. C. Proceedings: High Energy Electron Beam Welding and Materials Processing : September 21-23, 1992 Cambridge, Massachusetts. Amer Welding Society, 1994.

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49

Bakish, Robert A. The Proceedings of the Laser & the Electron Beam in Welding, Cutting & Surface Treatment - State of the Art, 1993. Bakish Materials Corporation, 1993.

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50

Assessment of corona/arcing hazard for electron beam welding in space shuttle bay at LEO for ISWE: Test results. National Aeronautics and Space Administration, Marshall Space Flight Center, 1996.

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