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1

Ammen, C. W. Casting Aluminum. Blue Ridge Summit, PA, USA: Tab Books, 1985.

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2

A, Belov N., and Glazoff Michael V, eds. Casting aluminum alloys. Amsterdam: Elsevier Science, 2007.

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3

Melting & casting aluminium [sic.]. Bradley, Il: Lindsay Publications, 1987.

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4

Chaffin, Glen N. Guidelines for aluminum sow casting and charging. Washington, D.C: Aluminum Association, 1998.

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5

Ėskin, G. I. Physical metallurgy of direct chill casting of aluminum alloys. Boca Raton: Taylor & Francis, 2008.

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6

Eskin, D. G. Physical metallurgy of direct chill casting of aluminum alloys. Boca Raton: Taylor & Francis, 2008.

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7

Materials Solutions Conference '98 on Aluminum Castng Technology (1998 Rosemont, Ill.). Advances in aluminum casting technology: Proceedings from Materials Solutions Conference '98 on Aluminum Casting Technology, 12-15 October, 1998, Rosemont, Illinois. Materials Park, Ohio: ASM International, 1998.

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8

1950-, Cheng Shu-hong, and Mobley Carroll E. 1941-, eds. A fractography atlas of casting alloys. Columbus, Ohio: Battelle Press, 1992.

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9

Bradney, David D. The NFFS guide to aluminum casting design: Sand and permanent mold. Des Plaines, Ill: Non-Ferrous Founders' Society, 1994.

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10

Onat, Adem. Silicon carbide particulate reinforced aluminum alloys matrix composites fabricated by squeeze casting method. New York: Nova Science Publishers, 2011.

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11

Materials, Solutions Conference (2002 Columbus Ohio). Advances in aluminum casting technology II: Proceedings from Materials Solutions Conference 2002, the 2nd International Aluminum Casting Technology Symposium, 7-9 October 2002, Columbus, Ohio. Materials Park, OH: ASM International, 2002.

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12

Atlante metallografico delle leghe di alluminio da fonderia =: The atlas of microstructures of alluminium casting alloys. Brescia: Edimet, 1993.

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13

International, Symposium on Reduction and Casting of Aluminum (1988 Montréal Quebec). Proceedings of the International Symposium on Reduction and Casting of Aluminum, Montreal, Canada, August 28-31, 1988. New York: Pergamon Press, 1988.

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14

Shape Casting: the John Campbell Symposium (2005 San Francisco, Calif.). Shape casting: The John Campbell Symposium : proceedings of a symposium held at the 2005 TMS Annual Meeting : San Francisco, California, USA, February 13-17, 2005. Warrendale, Pa: TMS, 2005.

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15

Shape Casting Symposium (4th 2011 San Diego, Calif.). Shape casting: 4th International Symposium, 2011, in honor of Prof. John T. Berry : proceedings of a symposium sponsored by the Aluminum Committee of the Light Metals Division and the Solidification Committee of the Materials Processing & Manufacturing Division of TMS (The minerals, Metals & Materials Society), held during the TMS 2011 Annual Meeting & Exhibition, San Diego, California, USA, February 27-March 3, 2011. Hoboken, N.J: John Wiley & Sons Inc. [for] TMS, 2011.

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16

Lee, J. A. High-strength aluminum casting alloy for high-temperature applications: (MSFC Center director's discretionary fund final project no. 97-10). [Marshall Space Flight Center, Ala.]: National Aeronautics and Space Administration, Marshall Space Flight Center, 1998.

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17

International Symposium on Quality and Process Control in the Reduction and Casting of Aluminum and Other Light Metals (1987 Winnipeg, Man.). Proceedings of the International Symposium on Quality and Process Control in the Reduction and Casting of Alumninum and Other Light Metals, Winnipeg, Canada, August 23-26, 1987. New York: Pergamon Press, 1987.

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18

Lo, Henry S. H. Casting characteristics of aluminium bronze. Birmingham: University of Birmingham, 1998.

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19

Adefuye, Adefolabi Olusegun. Fluidity of aluminium-silicon casting alloys. Birmingham: University of Birmingham, 1997.

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20

Sangyōkyoku, Japan Tōhoku Keizai. Tōhoku chihō ni okeru aruminiumu gōkin chūzōhin no kōdoka ni shisuru yōtō seijōka ni kansuru chōsa hōkokusho: Heisei 18-nendo. [Sendai-shi: itakusha Tōhoku Keizai Sangyōkyoku], 2007.

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21

Australia) Australasian Asian Pacific Conference on Aluminium Cast House Technology (12th 2011 Melbourne. Aluminium cast house technology XII: Selected, peer reviewed papers from the 12th international conference and exhibition, on aluminium cast house technology, September 11-14, 2011, Melbourne, Australia. Switzerland: Trans Tech Publications, 2011.

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22

Fla.) AFS International Conference on Structural Aluminum Castings (2003 Orlando. Recent advancements for the design and manufacturing of reliable structural aluminum castings: November 2-4, 2003 Sheraton World, Orlando, FL. Des Plaines, Ill: American Foundry Society, 2003.

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23

Association, Aluminum. Standards for Aluminum sand and permanent mold castings. Washington, DC: Aluminum Association, 1992.

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24

Kenkyūjo, Nagoya Sangyō Kagaku, ed. Daikasuto chūzō ni okeru haisaikuru seikei kanagata gijutsu kaihatsu: Heisei 21-nendo senryakuteki kiban gijutsu kōdoka shien jigyō : seika hōkokusho. [Nagoya-shi: Chūbu Keizai Sangyōkyoku], 2010.

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25

Heinemann, Tim. Energy and Resource Efficiency in Aluminium Die Casting. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-18815-7.

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26

United States. Congress. House. Committee on the Judiciary. Nebraska Aluminum Castings, Inc.: Report (to accompany S. 3043). [Washington, D.C.?: U.S. G.P.O., 1990.

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27

Cunliffe, Edward L. The minimal gating of aluminium alloy castings. Birmingham: University of Birmingham, 1995.

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28

Australasian Asian Pacific Conference on Aluminum Cast House Technology (6th 1999 Sydney, Australia). Aluminium cast house technology: Sixth Australian Asian Pacific Conference [on] Aluminium Cast House Technology : held during 26-29 July, 1999 at the Novotel Brighton Beach, Sydney, Australia. Warrendale, Pennsylvania: Minerals, Metals & Materials Society, 1999.

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29

Braden, Amanda. Benchmarking employee involvment at the UK site of a Japanese manufacturing company, Ryobi Aluminium Casting (UK) Limited, with it's US and Japanese sites. (s.l: The Author), 1996.

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30

Butler, Simon Andrew. The development of a reliable high strength aluminium casting alloy. Birmingham: University of Birmingham, 2000.

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31

Gelder, Andrew. Lithium-aluminium casting alloys and their associated metal-mould reactions. Birmingham: Aston University. Department of Chemical Engineering and Applied Chemistry, 1992.

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32

Society, American Foundrymen's, ed. Aluminum casting technology. Des Plaines, Ill: American Foundrymen's Society, 1986.

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33

Zolotorevsky, Vadim S., Nikolai A. Belov, and Michael V. Glazoff. Casting Aluminum Alloys. Elsevier Science, 2007.

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34

Jorstad, John L. Aluminum Casting Technology. 2nd ed. American Foundrymen's Society, 1993.

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35

L, Jorstad John, Rasmussen Wayne M, Zalensas Donna L, and American Foundrymen's Society, eds. Aluminum casting technology. 2nd ed. Des Plaines, Ill: American Foundrymen's Society, 1997.

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36

Casting Aluminum Alloys. Elsevier, 2019. http://dx.doi.org/10.1016/c2015-0-02446-7.

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37

Casting Aluminum Alloys. Elsevier, 2007. http://dx.doi.org/10.1016/b978-0-08-045370-5.x5001-9.

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38

Kaufman, J. Gilbert, and Elwin L. Rooy. Aluminum Alloy Castings. ASM International, 2004. http://dx.doi.org/10.31399/asm.tb.aacppa.9781627083355.

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Aluminum Alloy Castings: Properties, Processes and Applications is a practical guide to the process, structure, property relationships associated with aluminum alloy castings and casting processes. It covers a wide range of casting methods, including variations of sand casting, permanent mold casting, and pressure die casting, showing how key process variables affect the microstructure, properties, and performance of cast aluminum parts. Other chapters provide similar information on the effects of alloying and heat treating and the influence and control of porosity and inclusions. A significant portion of the book contains curated collections of property and performance data, including many previously unpublished aging response curves, growth curves, and fatigue curves; tensile properties at high and low temperatures and at room temperature after high-temperature exposure; the results of creep rupture tests conducted at temperatures from 212 to 600 °F (100 to 315 °C); and stress-strain curves obtained from casting alloys in various tempers under tensile or compressive loads. The book also discusses the factors that contribute to corrosion and fracture resistance and includes test specimen drawings as well as a glossary of terms. For information on the print version, ISBN 978-0-87170-803-8, follow this link.
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39

Company, American Aluminum, and Aluminum Corporation of America. Melting and Casting Aluminum. University Publishing House, 1995.

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40

Anderson. Melting and Casting Aluminum. Lindsay Pubns, 1987.

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41

Warmuzek, Malgorzata, ed. Aluminum-Silicon Casting Alloys. ASM International, 2016. http://dx.doi.org/10.31399/asm.tb.ascaam.9781627082969.

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42

Neff, David. Inclusions in Aluminum Casting Alloys. Amer Foundry Society, 2005.

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43

Aluminum Casting Technology (2nd ed). 2nd ed. Amer Foundrymens Society, 1993.

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44

Warmuzek, Malgorzata. Aluminum-Silicon Casting Alloys: Atlas of Microfractographs. ASM International, 2004.

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45

(Editor), Paul N. Crepeau, Murat Tiryakioglu (Editor), and John Campbell (Editor), eds. Shape Casting: 2nd International Symposium. Tms, 2007.

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46

Advances in Aluminum Casting Technology: Proceedings from Materials Solutions Conference '98 on Aluminum Casting Technology, 12-15 October, 1998, Rosemont, Illinois. ASM International, 1998.

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47

Zolotorevsky, Vadim S., Nikolai A. Belov, Michael V. Glazoff, Alexandra Khvan, and Alan Dinsdale. Casting Aluminum Alloys: Their Physical and Mechanical Metallurgy. Butterworth-Heinemann, 2018.

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48

(Editor), Murat Tiryakioglu, and Paul N. Crepeau (Editor), eds. Shape Casting: The John Campbell Symposium. Minerals, Metals, & Materials Society, 2005.

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49

Eskin, Dmitry G. Physical Metallurgy of Direct Chill Casting of Aluminum Alloys. Taylor & Francis Group, 2008.

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50

Saha, Pradip K. Aluminum Extrusion Technology. ASM International, 2000. http://dx.doi.org/10.31399/asm.tb.aet.9781627083362.

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Aluminum Extrusion Technology covers the theory and practice of extrusion and its application in the production of aluminum alloy parts. The first few chapters discuss the mechanics and thermodynamics of direct and indirect extrusion processes and the effect of key variables such as strain and strain rate, friction, pressure, flow stress, and temperature. Subsequent chapters explain how to implement and maintain industrial-scale aluminum extrusion processes. The chapters cover extrusion presses and equipment, tooling and die design, billet casting, and process control. They also provide information on the extrusion characteristics of soft, medium, and hard alloys and discuss the use of statistical process and quality control. For information on the print version, ISBN 978-0-87170-644-7, follow this link.
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