Books on the topic 'Steel alloys – Mechanical properties'

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1

Dzugutov, M. I͡A. Plastichnostʹ i deformiruemostʹ vysokolegirovannykh staleĭ i splavov. 3rd ed. Moskva: "Metallurgii͡a", 1990.

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2

Balakrishnan, K. S. Evaluation of the mechanical properties of SA 333 Gr.6, AISI 304 and Zr-2.5% Nb through automated ball indentation (ABI) technique. Mumbai: Bhabha Atomic Research Centre, 2009.

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3

Ivanovich, Shemi͡a︡kin Evgeniĭ, ed. Teorii͡a︡ i tekhnologii͡a︡ uprochnenii͡a︡ metallicheskikh splavov. Novosibirsk: "Nauka," Sibirskoe otd-nie, 1990.

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4

Günther, Hans-Peter, ed. Use and Application of High-Performance Steels for Steel Structures. Zurich, Switzerland: International Association for Bridge and Structural Engineering (IABSE), 2005. http://dx.doi.org/10.2749/sed008.

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<p>New steel production processes have led to a remarkable improve­ment in steel products within the last few years, and now allows steels to be produced according to the desired mechanical and chemical properties. High-Performance Steel (HPS) is the designa­tion given to this new generation of steels that offer higher performance not only in terms of strength but also toughness, weld­ability, cold formability and corrosion resistance, compared to the traditionally used mild steel grades.</p> <p>The development of HPS goes with today's increased demand for slender lightweight structures, as for example in bridge design and the design of high-rise buildings, where there is a strong require­ment to use high-strength materials in combination with good execution and fabrication properties. However, on the structural engineering side there is a need for knowledge on these new steel grades, and quite often design codes do not provide sufficient information to fully exploit the advantageous properties of HPS.</p> <p>The present volume provides an overview of the development and application of HPS on an international level. This is done by giving information on, for example, the production process, the chemical and mechanical properties, the relevant design and fabrication standards and on recent research results. Approximately fifteen included examples of realised applications aim to provide detailed information based on existing technical solutions, and to point out the major benefits when using HPS in comparison to mild steels.</p> <p>The document is thus not a monograph but an assembly of contri­butions from different countries. lt is separated into chapters related to different countries, namely the USA, Canada, Japan and Europe, all of them providing a state-of-the-art report on HPS.</p>
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5

Berkhout, C. F. Metallurgy and mechanical properties of multipass submerged arc weld metal in C/MN and low alloy constructional steel. Luxembourg: Commission of the European Communities, 1987.

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6

Casting. Materials Park, OH: ASM International, 2008.

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7

Belin-Ferré, Esther. Mechanical properties of complex intermetallics. Singapore: World Scientific, 2011.

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8

1939-, Desai Pramod D., Payne James E. 1969-, Gilp Brian F. 1968-, and Dudley Ronald D. 1964-, eds. Properties of intermetallic alloys. West Lafayette, Ind: Metals Information Analysis Center, Center for Information and Numerical Data Analysis and Synthesis, Purdue University, 1994.

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9

Bhadeshia, H. K. D. H. Bainite in steel: Transformations, microstructure and properties. London: Institute of Materials, 1992.

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10

H.K.D.H Bhadeshia. Bainite in steels: Transformations, microstructure and properties. London: Institute of Materials, 1992.

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11

Bhaduri, Amit. Mechanical Properties and Working of Metals and Alloys. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-7209-3.

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12

1928-, Ho C. Y., and Desai P. D, eds. Properties of selected ferrous alloying elements. New York: Hemisphere Pub. Corp., 1989.

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13

International, Symposium on Processing Microstructure and Properties of HSLA Steels (1987 Pittsburgh Pa ). Processing, microstructure, and properties of HSLA steels: Proceedings of an International Symposium on Processing, Microstructure, and Properties of HSLA Steels. Warrendale, Pa: The Society, 1988.

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14

International, ASM, and ebrary Inc, eds. Parametric analyses of high-temperature data for aluminum alloys. Materials Park, Ohio: ASM International, 2008.

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15

Hamed, Q. S. Microstructure and mechanical properties of Al-Si casting alloys. Manchester: UMIST, 1993.

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16

N, Gunn Robert, ed. Duplex stainless steels: Microstructure, properties and applications. Cambridge, England: Abington Publishing, 1997.

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17

Rostásy, F. S. Assessment of mechanical properties of structural materials for cryogenic applications. London: Fédération Internationale de la Précontrainte, 1988.

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18

Falk, Jörg. Untersuchungen zum Einfluss der Belastungsgeschwindigkeit auf das Verformungs- und Bruchverhalten von Stählen unterschiedlicher Festigkeit und Zähigkeit. Düsseldorf: VDI Verlag, 1993.

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19

Liu, Wei. Thermische Stabilität und mechanische Eigenschaften quasikristalliner Legierungen. Düsseldorf: VDI, 1993.

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20

Zielińska-Lipiec, Anna. Analiza stabilności mikrostruktury modyfikowanych stali martenzytycznych 9% Cr w procesie wyżarzania i pełzania. Kraków: Wydawn. AGH, 2000.

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21

Greene, Michael K. The effects of titanium on the mechanical properties of shielded metal arc welding (SMAW) of C-Mn steels. Monterey, Calif: Naval Postgraduate School, 1997.

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22

Ciaś, Andrzej. Development and properties of Fe-Mn-(Mo)-(Cr)-C sintered structural steels. Kraków: Wydawnictwa AGH, 2004.

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23

Kaufman, J. G. Properties of aluminum alloys: Fatigue data and the effects of temperature, product form, and processing. Materials Park, Ohio: ASM International, 2008.

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24

Chechulin, B. B. T͡S︡iklicheskai͡a︡ i korrozionnai͡a︡ prochnostʹ titanovykh splavov. Moskva: "Metallurgii͡a︡", 1987.

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25

R, Kingsbury George, ASM International, ASM International. Wear-Resistant Metals and Alloys Committee., ASM International. Specialty Materials Division., ASM's Conference on Wear Resistance of Metals and Alloys (1988 : Chicago, Ill.), and World Materials Congress (1988 : Chicago, Ill.), eds. Wear resistance of metals and alloys: Proceedings of a conference held in conjunction with the 1988 World Materials Congress : Chicago, Illinois, USA, 24-30 September 1988. [Chicago, Ill.?]: ASM International, 1988.

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26

Kuti︠a︡ĭkin, V. G. Metrologicheskie i strukturno-fizicheskie aspekty deformirovanii︠a︡ staleĭ: Monografii︠a︡. Moskva: Akademii︠a︡ standartizat︠s︡ii, metrologii i sertifikat︠s︡ii, 2007.

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27

International Symposium on Metastable, Mechanically Alloyed and Nanocrystalline Materials (9th 2002 Seoul, Korea). Metastable, mechanically alloyed and nanocrystalline materials: ISMANAM-2002 : proceedings of the 9th International Symposium on Metastable, Mechanically Alloyed and Nanocrystalline Materials (ISMANAM-2002), held in Seoul, Korea, September 8-12, 2002. Edited by Ahn Jung-Ho and Hahn Yoo-Dong. Uetikon-Zuerich, Switzerland: Trans Tech Publications, 2003.

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28

Fracture resistance of aluminum alloys: Notch toughness, tear resistance, and fracture toughness. Washington, D.C: Aluminum Association, 2001.

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29

Poubanne, Philippe. Etude et modelisation du comportement mecanique d'un superalliage monocristallin pour aube de turbine. Chatillon, France: Office national d'etudes et de recherches aerospatiales, 1989.

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30

International Symposium on Metastable, Mechanically Alloyed and Nanochrystalline Materials (2001 Ann Arbor, Mich.). Metastable, mechanically alloyed and nanocrystalline materials: ISMANAM - 2001 : proceedings of the International Symposium on Metastable, Mechanically Alloyed and Nanocrystalline Materials, University of Michigan, Ann Arbor, MI, USA, June 24-29 2001. Edited by Ma E. 1945-, Atzmon M, and Koch C. C. Zuerich-Uetikon, Switzerland: Trans Tech, 2002.

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31

International Conference on Aluminum Alloys (7th 2000 Charlottesville, Va.). Aluminium alloys: Their physical and mechanical properties : proceedings of the 7th International Conference ICAA7, held in Charlottesville, Virginia, April 9-14, 2000. Edited by Starke E. A, Sanders T. H, and Cassada W. A. Uetikon-Zuerich, Switzerland: Trans Tech Publications, 2000.

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32

International Conference on Aluminum Alloys (8th 2002 Cambridge, England). Aluminium alloys 2002: Their physical and mechanical properties : proceedings of the 8th International Conference ICAA8, Cambridge, UK, 2-5 July 2002. Uetikon-Zuerich, Switzerland: Trans Tech Publications, 2002.

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33

International Symposium on Metastable, Mechanically Alloyed and Nanocrystalline Materials (1995 Québec, Canada). Metastable, mechanically alloyed and nanocrystalline materials: ISMANAM-95 : proceedings of the International Symposium on Metastable, Mechanically Alloyed and Nanocrystalline Materials, held in Québec, Canada, July 24-28, 1995. Edited by Schulz Robert. Zuerich-Uetikon, Switzerland: Transtec Publications, 1996.

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34

Qld.) International Conference on Aluminium Alloys (9th 2004 Brisbane. Aluminium alloys: Their physical and mechanical properties : proceedings of the 9th International Conference on aluminium alloys (ICAA9). North Melbourne, Vic: Institute of Materials Engineering Australasia, 2004.

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35

Shankar, Mall, and Nicholas T, eds. Titanium matrix composites: Mechanical behavior. Lancaster, Pa: Technomic Pub. Co. Inc., 1998.

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36

Al-Zoubi, N. Chapter 1 Alloy Steel: Properties and Use First-Principles Quantum Mechanical Approach to Stainless Steel Alloys. InTechOpen, 2011.

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37

Bailey, N., and G. M. Evans. Metallurgy of Basic Weld Metal. William Andrew Publishing, 1997.

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38

R, Lesuer D., Syn C. K, Sherby Oleg D, Minerals, Metals and Materials Society. Structural Materials Committee., and Materials Week '97 (1997 : Indianapolis, Indiana), eds. Thermomechanical processing and mechanical properties of hypereutecoid steels and cast irons: Proceedings of the Symposium : held at the 1997 TMS-ASM Materials Week in Indianapolis, Indiana, September 14-18, 1997. Warrendale, PA: Metallurgical Society, 1996.

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39

Mechanical and corrosion properties of a high-strength, high chromium reinforcing steel for concrete. Pierre, SD (700 East Broadway) : South Dakota Department of Transportation, Office of Research, 2002.

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40

Tobushi, Hisaaki, Ryosuke Matsui, Kohei Takeda, and Elzbieta A. Pieczyska. Mechanical Properties of Shape Memory Materials. Nova Science Pub Inc, 2013.

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41

Frederickson, Jean Fyfe, and Dorothy Rowe Hubbard. Thermoelectric Properties of Nickel Steel Alloys. Creative Media Partners, LLC, 2018.

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42

Properties of intermetallic alloys. West Lafayette, Ind: Metals Information Analysis Center, Center for Information and Numerical Data Analysis and Synthesis, Purdue University, 1996.

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43

Hirsch, Jürgen, Günter Gottstein, and Birgit Skrotzki. Aluminium Alloys: Their Physical and Mechanical Properties. Wiley & Sons, Incorporated, John, 2008.

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44

Jr, T. H. Sanders, W. A. Cassada, and E. A. Starke. Aluminium Alloys - Their Physical and Mechanical Properties. Trans Tech Publications, Limited, 2000.

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45

Aluminium alloys: Their physical and mechanical properties. Zurich-Uetikon, Switzerland: Trans Tech Publications, 1996.

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46

Microstructure and Mechanical Properties of Titanium Alloys. MDPI, 2021. http://dx.doi.org/10.3390/books978-3-0365-2284-5.

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47

Liu, Ho. Mechanical properties of Nb-Ti composite superconducting wires. 1991.

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48

Basic Compounds for Superalloys: Mechanical Properties. Elsevier, 2018.

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49

Pelleg, Joshua. Basic Compounds for Superalloys: Mechanical Properties. Elsevier, 2018.

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50

Wang, Wego. Engineering Alloys: Properties and Applications (Dekker Mechanical Engineering). CRC, 2009.

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