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1

R, Davis J., and ASM International. Handbook Committee., eds. Copper and copper alloys. Materials Park, OH: ASM International, 2001.

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2

Society, Non-Ferrous Founders, and Copper Development Association, eds. Copper casting alloys. New York: Copper Development Association, 1994.

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3

Justin, Furness, Segal Agnes, and Materials Information Service, eds. Using copper alloys. London: Institute of Materials, 1994.

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4

Wang, Shuisheng. Electrodeposition of copper-cobalt alloys and copper-nickel alloys and pulse plating of copper-cobalt alloys. [s.l: s.n.], 1989.

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5

Society, American Foundrymen's, ed. Casting copper-base alloys. 2nd ed. Schaumburg, Ill: American Foundrymen's Society, 2007.

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6

Casting copper-base alloys. 3rd ed. Schaumburg, Ill: American Foundrymen's Society, 2016.

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7

Society, American Foundrymen's, ed. Casting copper-base alloys. 2nd ed. Schaumburg, Ill: American Foundrymen's Society, 2007.

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8

Howard, Mendenhall J., ed. Understanding copper alloys: The manufacture and use of copper and copper alloy sheet and strip. Malabar, Fla: R.E. Krieger Pub. Co., 1986.

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9

Society, American Foundrymen's, ed. Casting copper-base alloys. 2nd ed. Schaumburg, Ill: American Foundrymen's Society, 2007.

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10

Volov, Igor. Copper and Copper Alloys: Studies of Additives. [New York, N.Y.?]: [publisher not identified], 2013.

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11

A, Malone G., Lewis Research Center, and United States. National Aeronautics and Space Administration., eds. Improved electroformed structural copper and copper alloys. [Cleveland, Ohio]: National Aeronautics and Space Administration, Lewis Research Center, 1998.

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12

Muster, T. H. Copper distributions in aluminum alloys. New York: Nova Science Publishers, 2008.

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13

Motohiro, Kanno, and United States. National Aeronautics and Space Administration., eds. The precipitation processes of Cu-Zr-Cr alloys. Washington, DC: National Aeronautics and Space Administration, 1988.

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14

Osint︠s︡ev, O. E. Medʹ i mednye splavy: Otechestvennye i zarubezhnye marki : spravochnik. Moskva: "Mashinostroenie", 2004.

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15

Simon, N. J. Properties of copper and copper alloys at cryogenic temperatures. Gaithersburg, Md: U.S. Dept. of Commerce, National Institute of Standards and Technology, 1992.

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16

Simon, N. J. Properties of copper and copper alloys at cryogenic temperatures. Washington, D.C: National Institute of Standards and Technology, 1992.

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17

S, Drexler E., Reed R. P. 1934-, International Copper Association, and National Institute of Standards and Technology (U.S.), eds. Properties of copper and copper alloys at cryogenic temperatures. Boulder, CO: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 1992.

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18

Naboka, Michael, and Jennifer Giordano. Copper alloys: Preparation, properties, and applications. Hauppauge, N.Y: Nova Science Publishers, 2011.

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19

Samandi, Masoud. The machining of copper-based alloys. Birmingham: University of Birmingham, 1988.

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20

R, Subramanian P., Chakrabarti D. J, and Laughlin D. E, eds. Phase diagrams of binary copper alloys. Materials Park, OH: ASM International, 1994.

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21

Society, American Foundry, ed. Casting defects handbook: Aluminum & aluminum alloys. Schaumburg, IL: American Foundry Society, 2010.

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22

Association, Copper Development, ed. Cost effective manufacturing: Copper and copper alloys designations and equivalents. Potters Bar, Herts: Copper Development Association, 1994.

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23

Chakrabarti, Dilip K. Copper and its alloys in ancient India. New Delhi: Munshiram Manoharlal Publishers Pvt. Ltd., 1996.

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24

United States. National Aeronautics and Space Administration., ed. Rapid solidification of high-conductivity copper alloys. Chicago, Ill: [Illinois Institute of Technology, 1989.

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25

Francis, Roger. The corrosion of copper and its alloys: A practical guide for engineers. Houston, Tex: NACE International, 2010.

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26

Ellis, David L. Effect of hydrogen exposure on a Cu-8 Cr-4 Nb alloy. [Washington, DC: National Aeronautics and Space Administration, 1993.

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27

Collini, Luca. Copper alloys: Early applications and current performance : enhancing processes. Rijeka: InTech, 2012.

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28

Vladimirovich, Matveev Valentin, and Instytut problem mit͡s︡nosti (Akademii͡a︡ nauk Ukraïnsʹkoï RSR), eds. Splavy vysokogo dempfirovanii͡a︡ na mednoĭ osnove. Kiev: Nauk. dumka, 1986.

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29

Koji, Nagata, and United States. National Aeronautics and Space Administration., eds. On quench sensitivity of Cu-Cr alloys. Washington, D.C: National Aeronautics and Space Administration, 1988.

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30

Williams, S. A. The dealloying behaviour of copper/manganese alloys. Manchester: UMIST, 1993.

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31

Susan, La Niece, Stratford Neil, and British Museum, eds. Romanesque metalwork: Copper alloys and their decoration. London: Published for the Trustees of the British Museum by British Museum Publications, 1986.

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32

Alim, Khalaq Saiful. Electrodeposition of copper-cadmium and copper-indium alloys from aqueous solutions. [s.l: s.n.], 1987.

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33

Nitkiewicz, Zygmunt. Niekonwencjonalna krystalizacja stopów eutektycznych na bazie miedzi. Częstochowa: Wydawn. Politechniki Częstochowskiej, 1993.

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34

United States. National Aeronautics and Space Administration, ed. Effects of cold working on precipitation in age hardenable alloys (1st report): On the copper alloys. Washington, D.C: National Aeronautics and Space Administration, 1988.

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35

Meigh, Harry J. Cast and wrought aluminium bronzes: Properties, processes and structure. London: IOM Communications, 2000.

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36

Atlantic, Defence Research Establishment. Corrosion properties of rapidly solidified copper base alloys for Marine Service. [Halifax, N.S.]: Defence Research Establishment Atlantic, 1988.

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37

A, Noskova I., T͡S︡entralʹnyĭ nauchno-issledovatelʹskiĭ institut ėkonomiki i informat͡s︡ii t͡s︡vetnoĭ metallurgii (Soviet Union), and Gosudarstvennyĭ nauchno-issledovatelʹskiĭ, proektnyĭ i konstruktorskiĭ institut splavov i obrabotki t͡s︡vetnykh metallov (Soviet Union), eds. Proizvodstvo, primenenie i svoĭstva mednykh splavov obshchego i spet͡s︡ialʹnogo naznachenii͡a︡: Tezisy dokladov k Vsesoi͡u︡znoĭ nauchno-tekhnicheskoĭ konferent͡s︡ii, 11-15 noi͡a︡bri͡a︡ 1990 g. Moskva: T͡S︡entr. nauchno-issl. in-t ėkonomiki i informat͡s︡ii t͡s︡vetnoĭ metallurgii, 1990.

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38

L, Ellis David, Michal Gary Max, and Lewis Research Center, eds. Graphite/copper alloy interfacial energies determined using the sessile drop method. Cleveland, Ohio: Case Western Reserve University, 1991.

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39

Kowarsch, Aleksander. Miedź i jej stopy w budownictwie okrętowym. Gdańsk: Wydawn. Morskie, 1989.

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40

Engineers, Society of Automotive, ed. SAE copper AMS handbook. Warrendale, Pa: Society of Automotive Engineers, 1998.

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41

Engineers, Society of Automotive, ed. SAE copper AMS handbook. Warrendale, Pa: Society of Automotive Engineers, 1998.

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42

Ilczuk, Jan. Zjawiska tarcia wewnętrznego występujące podczas odwracalnej przemiany martenzytycznej stopów Cu-Zn-Al. Katowice: Uniwersytet Śląski, 1993.

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43

Metallkunde, Deutsche Gesellschaft für, ed. Atlas der Kaltformgebungseigenschaften von Nichteisenmetallen =: Atlas of cold working properties of nonferrous metals. Oberursel, Germany: Deutsche Gesellschaft für Metallkunde, 1987.

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44

Makar, H. V. Metallurgical effects of impurities in recycled copper alloys. Pittsburgh, Pa: U.S. Dept. of the Interior, Bureau of Mines, 1985.

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45

N, Kanani, ed. Electroplating and electroless plating of copper & its alloys. Stevenage: Finishing Publications, 2003.

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46

American Society for Testing and Materials. and Society of Automotive Engineers, eds. Metals & alloys in the unified numbering system. 8th ed. Warrendale, Pa: Society of Automotive Engineers, 1999.

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47

Copper & copper alloys. Potters Bar: Copper Development Association, 1991.

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48

Copper and Copper Alloys. Astm Intl, 2001.

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49

Copper & copper alloys: Composition and properties. Potters Bar: Copper Development Association, 1986.

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50

Casting Copper-Base Alloys. Amer Foundrymens Society, 2002.

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