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1

Emmens, Wilko C. Formability. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-21904-7.

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2

-J, Bunge H., Po hlandt K, and Tekkaya A. E, eds. Formability of Metallic Materials: Plastic Anisotropy, Formability Testing, Forming Limits. Berlin, Heidelberg: Springer Berlin Heidelberg, 2000.

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3

Banabic, Dorel, H. J. Bunge, K. Pöhlandt, and A. E. Tekkaya. Formability of Metallic Materials. Edited by Dorel Banabic. Berlin, Heidelberg: Springer Berlin Heidelberg, 2000. http://dx.doi.org/10.1007/978-3-662-04013-3.

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4

Pöhlandt, Klaus. Werkstoffprüfung für die Umformtechnik: Grundlagen, Prüfmethoden, Anwendungen. Berlin: Springer, 1986.

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5

Emmens, Wilko C. Formability: A Review of Parameters and Processes that Control, Limit or Enhance the Formability of Sheet Metal. Berlin, Heidelberg: Wilko C. Emmens, 2011.

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6

Ellwood, Dieter George, Kuhn Howard A, and Semiatin S. L, eds. Handbook of workability and process design. Materials Park, OH: ASM International, 2003.

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7

Mahmudi, Reza. Structure and formability of Al-Fe-Mn sheets. Birmingham: University of Birmingham, 1987.

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8

R, Pickens J., United States. National Aeronautics and Space Administration. Scientific and Technical Information Division., Martin Marietta Laboratories, and Langley Research Center, eds. Superplastic formability of Al-Cu-Li alloy Weldalite. [Washington, D.C.?]: National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1991.

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9

Haberjahn, Martin. Bestimmung von versetzungsinduzierten Gitterdesorientierungen in verformten Metallen mit Beugungsmethoden. Freiberg: Technische Universität Bergakademie Freiberg, 2006.

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10

K, Sachdev A., Embury J. D, Metallurgical Society (U.S.). Mechanical Metallurgy Committee., and Metallurgical Society (U.S.). Shaping and Forming Committee., eds. Formability and metallurgical structure: Proceedings of a symposium co-sponsored by the Mechanical Metallurgy and Shaping and Forming Committees of TMS-AIME and held in Orlando, Florida October 5-9, 1986, at the Fall Meeting of the Metallurgical Society. Warrendale, PA: The Society, 1987.

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11

Ma, Bao-Tong. Superplastic formability of Al-Cu-Li alloy Weldalite 049. Hampton, Va: Langley Research Center, 1991.

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12

Zarapin, I͡Uriĭ Leonidovich. Proizvodstvo pret͡sizionnoĭ lenty iz trudnodeformiruemykh metallov i splavov. Moskva: "Metallurgii͡a", 1987.

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13

de, Larrard François, and National Institute of Standards and Technology (U.S.), eds. Testing and modelling of fresh concrete rheology. Gaithersburg, MD: U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology, 1998.

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14

Davis, Trevor. Formability and strength of sheet metals subjected to complex strain paths. Birmingham: University of Aston. Department of Mechanical & Production Engineering, 1985.

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15

Prasad, Y. V. R. K. and Sasidhara S, eds. Hot working guide: A compendium of processing maps. Materials Park, OH: ASM International, 1997.

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16

Weist, Christian. Der Kerbzugversuch als Einfachprüfverfahren für das richtungsabhängige Umformvermögen von Blechwerkstoffen. Berlin: Springer, 1987.

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17

United States. National Aeronautics and Space Administration., ed. Glass formability of high Tc BI-SR-CA-CU-O superconductors: Final report. [Washington, DC: National Aeronautics and Space Administration, 1992.

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18

L, Raphanel J., Sidoroff F, and Teodosiu C, eds. Large plastic deformations: Fundamental aspects and applications to metal forming. Rotterdam: A.A. Balekema, 1993.

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19

H, Wagoner R., Chan K. S, and Keeler S. P, eds. Forming limit diagrams: Concepts, methods, and applications : a reference book on the available experimental and analytical methods for determination of forming limit diagrams. Warrendale, Pa: TMS, 1989.

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20

International, Conference and Workshop on Numerical Simulation of 3D Sheet Metal Forming Processes (8th 2011 Seoul Korea. The 8th International Conference and Workshop on Numerical Simulation of 3D Sheet Metal Forming Processes (NUMISHEET 2011), Seoul, Republic of Korea, 21-26 August 2011 / editors, Kwansoo Chung ... [et al.]. Melville, N.Y: American Institute of Physics, 2011.

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21

International Conference and Workshop on Numerical Simulation of 3D Sheet Metal Forming Processes (8th 2011 Seoul, Korea. The 8th International Conference and Workshop on Numerical Simulation of 3D Sheet Metal Forming Processes (NUMISHEET 2011), Seoul, Republic of Korea, 21-26 August 2011 / editors, Kwansoo Chung ... [et al.]. Melville, N.Y: American Institute of Physics, 2011.

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22

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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23

Bunge, H. J., K. Pöhlandt, and A. E. Tekkaya. Formability of Metallic Materials: Plastic Anisotropy, Formability Testing, Forming Limits (Engineering Materials). Springer, 2001.

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24

Zidek, Milan. Metallurgical Aspects of Formability of Steels. Cambridge International Science Publishing, 1999.

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25

Modern Formability: Measurement, Analysis and Applications. Hanser Gardner Publications, 2006.

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26

Martins, Paulo A. F., and Chris V. Nielsen. Metal Forming: Formability, Simulation, and Tool Design. Elsevier Science & Technology Books, 2021.

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27

Martins, Paulo A. F., and Chris Nielsen. Metal Forming: Formability, Simulation, and Tool Design. Elsevier Science & Technology, 2021.

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28

Emmens, Wilko C. Formability: A Review of Parameters and Processes that Control, Limit or Enhance the Formability of Sheet Metal. Springer, 2011.

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29

Friction Stir Processing for Enhanced Low Temperature Formability. Elsevier, 2014. http://dx.doi.org/10.1016/c2013-0-09874-x.

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30

Friction Stir Processing For Enhanced Low Temperature Formability. Elsevier Science & Technology, 2014.

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31

Ah-Teck, T. C. T. Formability of long glass fibre reinforced polypropylene sheet. 1986.

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32

Rheological and Morphological Properties of Dispersed Polymeric Materials: Filled Polymers and Polymer Blends. Hanser Verlag, Carl, 2016.

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33

Rheological and Morphological Properties of Dispersed Polymeric Materials: Filled Polymers and Polymer Blends. Hanser Publications, 2016.

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34

Microstructure Evolution In Metal Forming Processes. Woodhead Publishing, 2012.

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35

Modelling Techniques for Metal Forming Processes. Alpha Science International, Limited, 2011.

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36

Straffelini, Giovanni. Ductility and Formability of Metals: A Metallurgical Engineering Perspective. Elsevier Science & Technology Books, 2023.

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37

Straffelini, Giovanni. Ductility and Formability of Metals: A Metallurgical Engineering Perspective. Elsevier Science & Technology, 2023.

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38

Mishra, Rajiv S., and Christopher B. Smith. Friction Stir Processing for Enhanced Low Temperature Formability: A Volume in the Friction Stir Welding and Processing Book Series. Elsevier Science & Technology Books, 2014.

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39

Sheet Metal Forming Fundamentals. ASM International, 2012.

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40

National Aeronautics and Space Administration (NASA) Staff. Superplastic Formability of Al-Cu-Li Alloy Weldalite (Tm) 049. Independently Published, 2018.

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41

Y. V. R. K. Prasad (Editor) and S. Sasidhara (Editor), eds. Hot Working Guide: A Compendium of Processing Maps. ASM International, 1997.

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42

Frank, Hanan. An advanced formability testing system in uniaxial stretching for forming process automation. 1987.

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43

Koc, M. Hydroforming for Advanced Manufacturing. Woodhead Publishing Ltd, 2008.

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44

(Editor), R. H. Wagoner, K. S. Chan (Editor), and S. P. Keeler (Editor), eds. Forming Limit Diagrams: Concepts, Methods, and Applications. Tms, 1989.

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45

Kivivuori, S. O. J. Designing extrusion and forging dies taking into account the limitations due to metal flow and formability. Helsinki University of Technology, 1987.

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46

Solid state forming of polymers. London: Mechanical Engineering Publications, 1992.

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47

Petrie, Edward M. Epoxy Adhesive Formulations (Chemical Engineering). McGraw-Hill Professional, 2005.

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48

(Editor), Lorenzo M. Smith, Li Zhang (Editor), Chuan-Tao Wang (Editor), Ming F. Shi (Editor), Jeong-Whan Yoon (Editor), Thomas B. Stoughton (Editor), Jian Cao (Editor), and Farhang Pourboghrat (Editor), eds. Numerical Simulation of 3D Sheet Metal Forming Processes : 6th International Conference and Workshop on Numerical Simulation of 3D Sheet Metal Forming ... / Materials Physics and Applications). American Institute of Physics, 2005.

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49

Hot Working Guide: A Compendium of Processing Maps. A S M International, 2015.

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50

Sachdev, A. K. Formability and Metallurgical Structure: Proceedings of a Symposium Co-Sponsored by the Mechanical Metallurgy and Shaping and Forming Committees of. Tms, 1987.

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