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1

Berns, Hans. High Interstitial Stainless Austenitic Steels. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

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2

Berns, Hans, Valentin Gavriljuk, and Sascha Riedner. High Interstitial Stainless Austenitic Steels. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-33701-7.

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3

Biermann, Horst, and Christos G. Aneziris, eds. Austenitic TRIP/TWIP Steels and Steel-Zirconia Composites. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-42603-3.

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4

Vafaei, Reza. The machinability of austenitic stainless steels. Birmingham: University of Birmingham, 1989.

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5

Li, Xiaoying. Charcterisation of low temperature plasma nitrided austenitic stainless steels. Birmingham: University of Birmingham, 1999.

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6

Leinonen, Jouko. Cast-To-Cast Variations In Weld Penetration In Austenitic Stainless Steels. Oulu: University of Oulu, 1987.

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7

McIntyre, Dale R. Experience survey: Stress corrosion cracking of austenitic stainless steels in water. St.Louis: MTI International, 1987.

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8

Ver Matrix 4: Resurrecciones | Película Completa [2021] En Español Latino. High manganese austenitic steels: Proceedings of a Conference on Manganese Containing Stainless Steels, held in conjunction with ASM's Materials Week '87, Cincinnati, Ohio, 10-15 October 1987. [Metals Park, Ohio]: ASM International, 1987.

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9

Engineers, National Association of Corrosion. Protection od austenitic stainless steels and other austenitic alloysfrom polythionic acid stress corosion cracking during shutdown of refinery equipment. Houston: NACE, 1993.

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10

Vanderborck, Y. Comparison of material property specifications of austenitic steels in fast breeder reactortechnology. Luxembourg: Commission of the European Communities, 1985.

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11

Engineers, National Association of Corrosion. Protection of austenitic stainless steels and other austenitic alloys from polythionic acid stress corrosion cracking during shutdown of refinery equipment. Houston: NACE, 1997.

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12

Keisler, J. Fatigue strain-life behavior of carbon and low-alloy steels, austenitic stainless steels, and alloy 600 in LWR environments. Washington, DC: U.S. Nuclear Regulatory Commission, 1995.

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13

Conference on Manganese Containing Stainless Steels. High manganese high nitrogen austenitic steels: Proceedings of two Conferences on High Manganese Austenitic Steels, the First Conference held in conjunction with ASM International's Materials Week '87, Cincinnati, Ohio, 10-15 October 1987, the Second Conference held in conjunction with ASM International's Materials Week '92, Chicago, Illinois, 2-4 November 1992. Materials Park, Ohio: ASM International, 1992.

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14

Chung, H. M. Irradiation-assisted stress corrosion cracking of model austenitic stainless steels irradiated in the Halden reactor. Washington, DC: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1999.

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15

Chung, H. M. Irradiation-assisted stress corrosion cracking of model austenitic stainless steels irradiated in the Halden reactor. Washington, DC: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1999.

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16

Chung, H. M. Irradiation-assisted stress corrosion cracking of model austenitic stainless steels irradiated in the Halden reactor. Washington, DC: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1999.

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17

International Conference, Duplex Stainless Steels (4th 1994 Glasgow, Scotland). Papers presented at the fourth International Conference, Duplex Stainless Steels: Glasgow, Scotland, 13-16 November, 1994. Cambridge, England: Abington Publishing, 1995.

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18

Sheakley, Brian J. Effect of water depth on the underwater wet welding of ferritic steels using austenitic Ni-based alloy electrodes. Monterey, Calif: Naval Postgraduate School, 2000.

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19

Bott, A. H. An investigation of the constitution, structure, and properties of some low activation austenitic stainless steels proposed for fusion. Abingdon, Oxfordshire: Culham Laboratory, 1986.

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20

Ramchandani, Ajit. Nitriding of austenitic stainless steel. Birmingham: University of Aston. Department of Mechanical and Production Engineering, 1985.

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21

Weiergräber, Matthias. Korrosionsbeständigkeit tiefgezogener rotationssymmetrischer Werkstücke aus austenitischen Stählen. Berlin: Springer-Verlag, 1986.

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22

Kazior, Jan. Analiza czynników technologicznych decydujących o własnościach spiekanych austenitycznych stali nierdzewnych. Kraków: Politechnika Krakowska im. Tadeusza Kościuszki, 1994.

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23

Stradomski, Zbigniew. Mikrostruktura w zagadnieniach zużycia staliw trudnościeralnych. Częstochowa: Wydawn. Politechniki Częstochowskiej, 2010.

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24

Kijunbu, Genshiryoku Anzen Kiban Kikō Kikaku. PWR kankyōchū ōsutenaito-kei zairyō no hirō kiretsu shinten hyōka shishin. Tōkyō: Genshiryoku Anzen Kiban Kikō Kikaku Kijunbu, 2007.

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25

Wood, D. S. The tensile properties of austenitic steel weld metals. Luxembourg: Commission of the European Communities, 1986.

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26

Genet, F. AUSTIN: Austenitic steel irradiation E145-02 irradiation report. Luxembourg: Commission ofthe European Communities, 1987.

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27

Brooks, Charlie R. Principles of the austenitization of steels. London: Elsevier Applied Science, 1992.

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28

Wood, D. S. The stress rupture properties of austenitic steel weld metals. Luxembourg: Directorate-General Information Market and Innovation, Commission of the European Communities, 1986.

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29

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

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30

Lereculey, Arnaud. Intergranular corrosion of austenitic stainless steel in nitric acid. Birmingham: University of Birmingham, 2000.

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31

A, Fokina E., and Schastlivt͡s︡ev V. M, eds. Ostatochnyĭ austenit v zakalennoĭ stali. Moskva: "Nauka", 1986.

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32

Applications, AWS D18 Committee on Welding in Sanitary. Specification for welding of austenitic stainless steel tube and pipe systems in sanitary (hygienic) applications. Miami, Fla: The American Welding Society, 1999.

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33

Beatty, Allan W. Stainless steel butt welding pipe fittings: A history of product and process. [S.l.]: A.W. Beatty, 1994.

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34

Canada, Atomic Energy of. Tritium in Austenitic Stainless Steel Vessels: Hydrogen Effects on Weld Integrity. S.l: s.n, 1986.

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35

Yip, Tick-Hon. Cyclic plasticity of 17-7 precipitation-hardenable semi-austenitic stainless steel. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1998.

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36

Ryś, Janusz. Krystalograficzne aspekty oddziaływania ferrytu i austenitu w bikryształach i stalach dwufazowych: Crystallographic aspects of ferrite and austenite interaction in two-phase steels and bicrystals. Kraków: Wydawnictwa AGH, 2013.

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37

I, Uvarov A., and Sadovskiĭ V. D, eds. Uprochnenie austenitnykh staleĭ. Moskva: "Nauka", 1989.

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38

N, Gotalʹskiĭ I͡U. Svarka perlitnykh staleĭ austenitnymi materialami. 2nd ed. Kiev: Nauk. dumka, 1992.

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39

International, Current Status Seminar on Thermochemical Surface Engineering of Stainless Steel (2000 Osaka Japan). Stainless steel 2000: Proceedings of an International Current Status Seminar on Thermochemical Surface Engineering of Stainless Steel : held in Osaka, Japan, November 2000. London: Manley Pub. for the Institute of Materials in association with the International Federation for Heat Treatment and Surface Engineering and the Japan Society for Heat Treatment, 2001.

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40

Jokinen, Tommi. Novel ways of using Nd:YAG laser for welding thick section austenitic stainless steel. Espoo [Finland]: VTT Technical Research Centre of Finland, 2004.

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41

Cox, David Christopher. The study of selective oxidation of 20/25/Nb austenitic stainless steel. Birmingham: University of Birmingham, 1997.

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42

Ibraheem, A. K. Precipitation in the austenite of microalloyed low carbon steel. Manchester: UMIST, 1995.

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43

Kurban, Michael. Intergranular boron segregation and grain boundary character in Alloy 304 austenitic stainless steel. Ottawa: National Library of Canada, 2001.

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44

Vilpas, Martti. Prediction of microsegregation and pitting corrosion resistance of austenitic stainless steel welds by modelling. Espoo [Finland]: Technical Research Centre of Finland, 1999.

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45

National Association of Corrosion Engineers. Protective coatings for carbon steel and austenitic stainless steelsurfaces under thermal insulation and cementitious fireproofing. Houston: NACE, 1997.

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46

Henderson, J. Multi-axial creep of thick-walled tubes of type 316 austenitic steel at 600°c. East Kilbride: National Engineering Laboratory, 1990.

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47

Saleh, M. Husin Bin. Retained austenite in dual phase steel and its effect on mechanical properties. Manchester: UMIST, 1998.

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48

Abraham, T. Stress corrosion cracking tests on high-level-waste container materials in simulated tuff repository environments. Washington, D.C: Division of Waste Management, Office of Nuclear Material Safety and Safeguards, U.S. Nuclear Regulatory Commission, 1986.

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49

Horiuchi, T., and R. P. Reed. Austenitic Steels at Low Temperatures. Springer, 2013.

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50

High Interstitial Stainless Austenitic Steels. Springer-Verlag Berlin and Heidelberg GmbH &, 2012.

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