Libros sobre el tema "SILICA FUMES"

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1

Rashad, Alaa M. Silica Fume in Geopolymers. Cham: Springer Nature Switzerland, 2023. http://dx.doi.org/10.1007/978-3-031-33219-7.

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2

M, Malhotra V., ed. Condensed silica fume in concrete. Boca Raton, Fla: CRC Press, 1987.

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3

Whiting, D. Silica fume concrete for bridge decks. Washington, D.C: National Academy Press, 1998.

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4

V, Lisichkin G., ed. Modifit͡s︡irovannye kremnezemy v sorbt͡s︡ii, katalize i khromatografii. Moskva: "Khimii͡a︡", 1986.

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5

Boddy, Andrea M. The effect of product form and silica content of silica fume on its ability to control alkali-silica reaction. Ottawa: National Library of Canada, 2000.

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6

Pun, Pierre Che Ho. Influence of silica fume on chloride resistance of concrete. Ottawa: National Library of Canada, 1997.

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7

Elias, Wiliam Shila. Effects of silica fume on corrosion resistance of reinforced concrete. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1991.

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8

Douglas, E. Compilation of abstracts of papers from recent international conferences and symposia on condensed silica fume in concrete. [Ottawa]: Energy, Mines, and Resources Canada, Canada Centre for Mineral and Energy Technology, 1988.

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9

Smith, Amanda J. Factors affecting the sulphate resistance of mortars containing slag and silica fume. Ottawa: National Library of Canada, 2002.

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10

Pashutinski, Igor. Mechanisms of improved sulphate resistance of concrete containing slag or silica fume. Ottawa: National Library of Canada, 1990.

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11

Nakassa, Ali S. The effects of silica fume pulverized fuel ash and superplasticizer on ferrocement. Manchester: UMIST, 1996.

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12

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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13

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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14

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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15

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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16

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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17

Brooks, Eric W. Silica fume latex modified concrete bridge deck overlay: Tualatin River Bridge #1417N : final report. Salem, Or: Oregon Dept. of Transportation, Research Unit, 1997.

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18

International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (9th 2007 Warsaw, Poland). Ninth CANMET/ACI international conference on fly ash, silica fume, slag & natural pozzolans in concrete. Editado por Malhotra V. M, Canada Centre for Mineral and Energy Technology. y American Concrete Institute. Farmington Hills, Mich: American Concrete Institute, 2007.

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19

National Institute of Standards and Technology (U.S.), ed. Microporous fumed-silica insulation as a standard reference material of thermal resistance at high temperature. [Washington, D.C.]: U.S. Dept. of Commerce, National Insitute of Standards and Technology, 1989.

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20

National Institute of Standards and Technology (U.S.), ed. Microporous fumed-silica insulation as a standard reference material of thermal resistance at high temperature. [Washington, D.C.]: U.S. Dept. of Commerce, National Insitute of Standards and Technology, 1989.

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21

National Institute of Standards and Technology (U.S.), ed. Microporous fumed-silica insulation as a standard reference material of thermal resistance at high temperature. [Washington, D.C.]: U.S. Dept. of Commerce, National Insitute of Standards and Technology, 1989.

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22

National Institute of Standards and Technology (U.S.), ed. Microporous fumed-silica insulation as a standard reference material of thermal resistance at high temperature. [Washington, D.C.]: U.S. Dept. of Commerce, National Institute of Standards and Technology, 1989.

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23

International, Conference on Fly Ash Silica Fume Slag and Natural Pozzolans in Concrete (7th 2001 Chennai India). Seventh CANMET/ACI International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete: [proceedings of the conference held July 22-27, 2001, in Chennai (Madras), India]. Farmington Hills, MI: American Concrete Institute, 2001.

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24

International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (6th 1998 Bangkok, Thailand). Fly ash, silica fume, slag & natural pozzolans in concrete: Proceedings, Sixth CANMET/ACI International Conference, Bangkok, Thailand, 1998. Editado por Malhotra V. M, Canada Centre for Mineral and Energy Technology. y American Concrete Institute. Farmington Hills, Mich: ACI International, 1998.

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25

International, Conference on Fly Ash Silica Fume Slag and Natural Pozzolans in Concrete (7th 2001 Madras India). Seventh CANMET/ACI International Conference on Fly Ash, Silica Fume, Slag and Natural Pozzolans in Concrete. Farmington Hills, Michigan: ACI International, 2001.

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26

International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (9th 2007 Las Vegas, Nev.). Ninth CANMET/ACI International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete. Editado por Malhotra V. M y American Concrete Institute. Farmington Hills, MI: American Concrete Institute, 2007.

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27

Malhotra, V. M. Pozzolanic and cementitious materials. Amsterdam, The Netherlands: Gordon and Breach, 1996.

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28

International Conference on the Use of Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (4th 1991 Istanbul, Turkey). Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, fourth international conference, Istanbul, Turkey, May 1992. Editado por Malhotra V. M, Canada Centre for Mineral and Energy Technology. y American Concrete Institute. Detroit, Mich: American Concrete Institute, 1993.

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29

M, Malhotra V. y International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (5th : 1995 : Milwaukee, Wis.), eds. Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, fifth international conference, Milwaukee, Wisconsin, USA, 1995. Detroit: American Concrete Institute, 1995.

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30

M, Malhotra V., American Concrete Institute, Canada Centre for Mineral and Energy Technology., Canadian Society for Civil Engineering. y International Conference on the Use of Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete, (2nd : 1986 : Madrid, Spain), eds. Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, second international conference, Madrid, Spain, 1986. Detroit: American Concrete Institute, 1986.

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31

M, Malhotra V., American Concrete Institute, Canada Centre for Mineraland Energy Technology., Norges tekniske hogskole y International Conference on the Use of Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete, (3rd : 1989 : Trondheim, Norway), eds. Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, third international conference, Trondheim, Norway, 1989. Detroit: American Concrete Institute, 1989.

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32

M, Malhotra V., American Concrete Institute, Canada Centre for Mineral and Energy Technology., Norges tekniske hogskole y International Conference on the Use of Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete, (3rd : 1989 : Trondheim, Norway), eds. Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, third international conference, Trondheim, Norway, 1989. Detroit: American Concrete Institute, 1989.

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33

International, Conference on Fly Ash Silica Fume Slag and natural Pozzolans in Concrete (5th 1995 Milwaukee Wis ). Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings fifth International Conference, Milwaukee, Wisconsin, USA, 1995. Detroit: American Concrete Institute, 1995.

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34

National Council for Cement and Building Materials (India), Cement Manufacturers' Association (India) y Construction Industry Development Council, eds. National Seminar on Performance Enhancement of Cements and Concretes by Use of Flyash, Slag, Silica Fume, and Chemical Admixtures, New Delhi, 15-17 January 1998: Proceedings. [New Delhi: The National Council, 1998.

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35

M, Malhotra V., Canada Centre for Mineral and Energy Technology. y American Concrete Institute, eds. Ninth CANMET/ACI International Conference on Recent Advances in Concrete Technology. Farmington Hills, Mich: American Concrete Institute, 2007.

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36

English, Joe. Predicting the compressive strength of high-performance silica fume concrete by Bayesian methods: Joint C-SHRP/Newfoundland Bayesian application. Ottawa: Canadian Strategic Highway Research Program, Transportation Association of Canada, 1995.

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37

Chan, Willy G. The use of rapid scan boltammetry to study the effects of adding silica fume and commercial corrosion inhibitors to cured cement paste containing embedded iron exposed. Ottawa: National Library of Canada, 1996.

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38

General Castings Co., Liberty Road Facility, Delaware, Ohio. Atlanta, Ga.?]: U.S. Department of Health and Human Services, Public Health Service, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, 1992.

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39

Gahir, Jagdeep y Samdish Abrol. Effect of Silica Fumes on Cement Concrete. Independently Published, 2018.

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40

Smedley, Julia, Finlay Dick y Steven Sadhra. Chemical hazards. Oxford University Press, 2013. http://dx.doi.org/10.1093/med/9780199651627.003.0002.

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Chemical hazards: classification and labelling 42Chemical hazards, sampling and analysis methods 44Particles, fibres, fumes, and mistsCoal dust 49Cotton dust 50Flour dust 51Grain dust 52Wood dust 53Crystalline silica (quartz) 54Asbestos 55Machine-made mineral fibre 56Diesel engine exhaust emissions ...
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41

Malhotra, V. M. Condensed Silica Fume in Concrete. Taylor & Francis Group, 2018.

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42

Condensed Silica Fume in Concrete. Taylor & Francis Group, 2018.

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43

Malhotra, V. M. Condensed Silica Fume in Concrete. Taylor & Francis Group, 2018.

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44

Malhotra, V. M. Condensed Silica Fume in Concrete. Taylor & Francis Group, 2018.

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45

Malhotra, V. M., V. S. Ramachandran, R. F. Feldman y Pierre-Claude Aïtcin. Condensed Silica Fume in Concrete. CRC Press, 2018. http://dx.doi.org/10.1201/9781351070843.

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46

Malhotra, V. M. Condensed Silica Fume in Concrete. Taylor & Francis Group, 2017.

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47

McGrath, Patrick. Internal self-dessication of silica fume concrete. 1989.

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48

Al-Eesa, Azmi Sami Said. Silica fume concrete in hot and temperate environments. 1990.

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49

Shehata, Medhat H. The effects of fly ash and silica fume on alkali silica reaction in concrete. 2001.

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50

Condensed Silica Fume in Concrete (Fip State of Art Report). American Society of Civil Engineers, 1988.

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