Books on the topic 'Steel, High strength Testing'

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1

Talja, Asko. Simplified design expressions for cold-formed channel sections. Espoo, Finland: Technical Research Centre of Finland, 1994.

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2

1964-, Healy J. (John), Spurrier J, and Marine Technology Directorate Limited, eds. Current and potential use of high strength steels in offshore structures. London: Marine Technology Directorate Limited, 1995.

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3

Roy, Tapas Kumar, Basudev Bhattacharya, Chiradeep Ghosh, and S. K. Ajmani, eds. Advanced High Strength Steel. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-7892-7.

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4

Taylor, Howard. Fatigue behaviour in high strength steel. Salford: University of Salford, 1986.

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5

Geck, Paul. Automotive lightweighting using advanced high-strength steels. Warrendale, Pennsylvania, USA: Society of Automotive Engineers, 2014.

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6

Pollock, W. J. Slow strain rate testing of high strength low-alloy steels: A technique for assessing the degree of hydrogen embrittlement produced by plating processes, paint strippers and other aircraft maintenance chemicals. Melbourne, Victoria: Dept. of Defence, Aeronautical Research Laboratories, 1985.

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7

Varis, Juha. A novel procedure for establishing clinching parameters for high strength steel sheet. Lappeenranta, Finland: Lappeenranta University of Technology, 2000.

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8

Al-Ogula, M. Hydrogen embrittlement of high strength structural steel. Manchester: UMIST, 1994.

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9

Advanced high-strength steels: Science, technology, and applications. Materials Park, Ohio: ASM International, 2013.

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10

Marquis, Gary B. Fatigue threshold behaviour of a high strength steel. Espoo: Technical Research Centre of Finland, 1994.

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11

Chiew, Sing-Ping, and Yan-Qing Cai. Design of High Strength Steel Reinforced Concrete Columns. Boca Raton : CRC Press, [2018]: CRC Press, 2018. http://dx.doi.org/10.1201/9781351203951.

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12

International, Symposium on Rail Steels for the 21st Century (1994 Baltimore Md ). Proceedings of the International Symposium on Rail Steels for the 21st Century: The symposium was held in conjunction with the 36th Mechanical Working and Steel Processing Conference, Baltimore, MD, October 17-18, 1994. Warrendale, PA: The Society, 1995.

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13

Radin, Shulamith Ryzhak. Soviet high-strength steels for aerospace applications. Falls Church, VA: Delphic Associates, 1987.

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14

Boehme, Jens. Strength of thin walled circular steel tubes filled with high strength concrete. Ottawa: National Library of Canada, 1990.

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15

Chen, Qishi. Bending strength of longitudinally stiffened steel cylinders. Edmonton, Canada: Dept. of Civil Engineering, University of Alberta, 1993.

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16

Vares, Sirje. Fibre-reinforced high-strength concrete. Espoo, Finland: Technical Research Centre of Finland, 1993.

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17

National Cooperative Highway Research Program, American Association of State Highway and Transportation Officials, and United States. Federal Highway Administration, eds. Design of concrete structures using high-strength steel reinforcement. Washington, D.C: Transportation Research Board, National Research Council, 2011.

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18

Chiew, Sing-Ping, and Yan-Qing Cai. Design Examples for High Strength Steel Reinforced Concrete Columns. Boca Raton : CRC Press, [2018]: CRC Press, 2018. http://dx.doi.org/10.1201/9780429469428.

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19

Russell, Henry G., Richard A. Miller, Kent A. Harries, and Bahram M. Shahrooz. Design of Concrete Structures Using High-Strength Steel Reinforcement. Washington, D.C.: National Academies Press, 2011. http://dx.doi.org/10.17226/14496.

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20

Ibrahim, Hisham H. H. Flexural behavior of high strength concrete columns. Edmonton, Alta: Dept. of Civil Engineering, University of Alberta, 1994.

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21

S, Kirkaldy J., Hawbolt E. B, Yue S, and Conference of Metallurgists (34th : 1995 : Vancouver, B.C.), eds. Phase transformations during the thermal/mechanical processing of steel: Proceedings of the International Symposium on Phase Transformations During the Thermal/Mechanical Processing of Steel - honouring Professor Jack Kirkaldy, Vancouver, British Columbia, August 20-24, 1995. Montreal: Canadian Institute of Mining, Metallurgy and Petroleum, 1995.

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22

Philleo, Robert E. Freezing and thawing resistance of high-strength concrete. Washington, D.C: Transportation Research Board, National Research Council, 1986.

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23

Elsudani, Abuagila H. Ali. Development of ultra-high strength in low carbon steel wire. Manchester: UMIST, 1993.

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24

Sarandily, Ali. High strength autoclaved cementitious matrices and steel fibre reinforced composites. Salford: University of Salford, 1986.

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25

International, Conference on HSLA Steels (1985 Beijing China). HSLA steels, metallurgy and applications: Proceedings of an International Conference on HSLA Steels '85, 4-8 November 1985, Beijing, China. [Metals Park, Ohio]: ASM International, 1986.

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26

J, DeArdo A., Iron and Steel Society, and Minerals, Metals and Materials Society., eds. Proceedings of the International Conference on Processing, Microstructure, and Properties of Microalloyed and Other Modern High Strength Low Alloy Steels: June 3-6, 1991, Pittsburgh, PA. Warrendale, PA: Iron & Steel Society, 1992.

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27

Xin, Xian Zuo. Behaviour of reinforced concrete interior beam-column joints designed using high strength concrete and steel. Christchurch, N.Z: University of Canterbury, Dept. of Civil Engineering, 1992.

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28

Colo.) International Conference on Advanced High Strength Sheet Steels for Automotive Applications (2004 Winter Park. International Conference on Advanced High Strength Sheet Steels for Automotive Applications proceedings: June 6-9, 2004, Winter Park, Colorado. Edited by Ashburn Ronald E, Baker Margaret A, Association for Iron & Steel Technology, and Colorado School of Mines. Advanced Steel Processing and Products Research Center. Warrendale, PA: Association for Iron & Steel Technology, 2004.

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29

Duncan, G. Effect of stray currents on high strength steel prestressingwire in concrete. Manchester: UMIST, 1994.

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30

Olsen, Edward. Initiation and growth of microcracks in high strength steel butt welds. Springfield, Va: Available from the National Technical Information Service, 1993.

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31

Microalloying '88 (1988 Chicago, Ill.). Microalloyed HSLA steels: Proceedings of Microalloying '88 held in conjunction with the 1988 World Materials Congress, Chicago, Illinois, USA, 24-30 September 1988. [Metals Park? Ohio]: ASM International, 1988.

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32

Pressure, Vessels and Piping Conference (1986 Chicago Ill ). Properties of high-strength steels for high-pressure containments: Presented at the 1986 Pressure Vessels and Piping Conference and Exhibition, Chicago, Illinois, July 20-24, 1986. New York, N.Y. (345 E. 47th St., New York 10017): American Society of Mechanical Engineers, 1986.

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33

Pressure Vessels and Piping Conference (1986 Chicago, Ill.). Properties of high-strength steels for high-pressure containments: Presented at the 1986 Pressure Vessels and Piping Conference and Exhibition, Chicago, Illinois, July 20-24, 1986. New York, N.Y. (345 E. 47th St., New York 10017): American Society of Mechanical Engineers, 1986.

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34

Hang kong chao gao qiang du gang de fa zhan: Development of aeronautical ultra-high strength steels. Beijing Shi: Guo fang gong ye chu ban she, 2012.

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35

Kugushin, A. A. Vysokoprochnai︠a︡ armaturnai︠a︡ stalʹ. Moskva: "Metallurgii︠a︡", 1986.

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36

Alca, Nedim. Effect of size on flexural behaviour of high-strength concrete beams. Edmonton, Alta: Dept. of Civil Engineering, University of Alberta, 1993.

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37

Carrasquillo, P. M. Guidelines for use of high strength concrete in Texas highways. Austin, Tex: Center for Transportation Research, Bureau of Engineering Research, University of Texas at Austin, 1986.

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38

Kulak, Geoffrey L. A field study of fastener tension in high-strength bolts. Edmonton, Alta: Dept. of Civil Engineering, University of Alberta, 1992.

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39

Mufti, Aftab A. Strength evaluation by testing of an old t-beam bridge. Downsview: Research and Development Branch, Ontario Ministry of Transportation, 1991.

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40

International Conference on New Developments on Metallurgy and Applications of High Strength Steels (2008 Buenos Aires, Argentina). New developments on metallurgy and applications of high strength steels: Buenos Aires 2008 : proceedings of the International Conference on New Developments on Metallurgy and Applications of High Strength Steels. Warrendale, Pa: TMS, 2008.

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41

Wrigley, Nigel Stuart. The fracture characteristics of a boron containing high strength low alloy steel. Salford: University ofSalford, 1994.

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42

Bose, Waldek Wladimir Filho. Micromechanisms of brittle fracture in high strength low alloy steel weld metals. Birmingham: University of Birmingham, 1995.

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43

Osuch, Władysław. Bliźniaki przemiany w stalach niskowęglowych. Kraków: Wydawnictwa AGH, 2010.

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44

Ćwiek, Janusz. Niszczenie wodorowe stali spawalnych o wysokiej wytrzymałości. Gdańsk: Politechnika Gdańska, 2006.

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45

Haagensen, P. J. IIW recommendations on methods for improving the fatigue strength of welded joints: IIW-2142-10. Cambridge, UK: Woodhead Publ., 2013.

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46

L, Long Donald, Rummel Ward D, and United States. National Aeronautics and Space Administration., eds. NDE detectability of fatigue-type cracks in high-strength alloys: NDE reliability assessments, final report. Denver, Colo: Martin Marietta Astronautics Group, Space Launch Systems Company, 1989.

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47

Shi, Gang, Huiyong Ban, and Xuesen Chen. High-Strength Steel Structures. Elsevier Science & Technology, 2021.

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48

International Iron and Steel Institute. Committee on Technology., ed. High strength low alloy steels. Brussels, Belgium: International Iron and Steel Institute, 1987.

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49

executive, Health and safety. Static Strength of High-Strength Steel Tubular Joints (Report). Health and Safety Executive (HSE), 1999.

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50

Roy, Tapas Kumar, Basudev Bhattacharya, Chiradeep Ghosh, and S. K. Ajmani. Advanced High Strength Steel: Processing and Applications. Springer, 2018.

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