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1

National Research Council (U.S.). Transportation Research Board., ed. Cement, admixtures, and concrete, 1990. Transportation Research Board, National Research Council, 1990.

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2

1941-, Cable James K., Iowa. Dept. of Transportation., United States. Federal Highway Administration., and Iowa Highway Research Board, eds. Demonstration and field evaluation of alternative Portland cement concrete pavement reinforcement materials. Dept. of Civil, Construction and Environmental Engineering, Iowa State University, 2003.

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3

International Workshop "High Performance Fiber Reinforced Cement Composites" (2nd 1995 Ann Arbor, Mich.). High performance fiber reinforced cement composites 2 (HPFRCC2): Proceedings of the Second International Workshop "High Performance Fiber Reinforced Cement Composites" sponsored by RILEM ... [et al.], Ann Arbor, USA, June 11-14, 1995. E & FN Spon, 1996.

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4

Mobasher, Barzin. Mechanics of fiber and textile reinforced cement composites. CRC Press, 2011.

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5

Nemkumar, Banthia, MacDonald C. 1953-, Tatnall P, and American Concrete Institute Convention, eds. Structural applications of fiber reinforced concrete. ACI International, 1999.

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6

Sarvaranta, Leena. Characterization methods for polypropylene fibre-reinforced cement mortar composites. Technical Research Centre of Finland, 1993.

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7

N, Swamy R., and Barr B, eds. Fibre reinforced cements and concretes: Recent developments. Elsevier Applied Science, 1989.

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8

Corina-Maria, Aldea, American Concrete Institute Convention, and ACI Committee 549, Ferrocement., eds. Thin fiber and textile reinforced cementitious systems. American Concrete Institute, 2007.

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9

I, Daniel J., Shah S. P, ACI Committee 544., and ACI Committee 549, Ferrocement., eds. Thin-section fiber reinforced concrete and ferrocement. ACI, 1990.

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10

True, Graham. GRC: Production & uses. Routledge, 2003.

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11

International Union of Testing and Research Laboratories for Materials and Structures. (4th 1992 Sheffield, U.K.). Fibre reinforced cement and concrete: Proceedings of the fourth International Symposium held by RILEM (The International Union of Testing and Research Laboratories for Materials and Structures) and organized by the Dept. of Mechanical and Process Engineering, University of Sheffield, UK, Sheffield, July 20-23, 1992. E & FN Spon, 1992.

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12

1931-, Reinhardt H. W., Naaman Antoine E, International Union of Testing and Research Laboratories for Materials and Structures., American Concrete Institute, Universität Stuttgart, and University of Michigan, eds. High performance fiber reinforced cement composites: Proceedings of the International Workshop "High Performance Fiber Reinforced Cement Composites" held by RILEM (the International Union of Testing and Research Laboratories for Materials and Structures) and ACI (American Concrete Institute), Stuttgart University and the University of Michigan, and organized by Stuttgart University, Germany : Mainz, June 23-26, 1991. E & FN Spon, 1992.

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13

Indo-U.S. Workshop on High-Performance Cement-Based Concrete Composites (2005 Madras, India). High-performance cement-based concrete composites: Proceedings of the Indo-U.S. Workshop on High-Performance Cement-Based Concrete Composites, Chennai, India (2005). Edited by Biernacki Joseph J. American Ceramic Society, 2005.

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14

Philipose, K. E. Degradation of normal portland and slag cement concrete under load, due to reinforcement corrosion. Chalk River Laboratories, 1992.

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15

Soltesz, Steven M. Cementitious materials for thin patches. Oregon Dept. of Transportation, Research Group, 2001.

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16

éd, Reinhardt H. W., ed. Third International workshop on high performance fiber reinforced cement composition: Mainz, Germany, May 16-19, 1999. RILEM/Publications de l'ENS, 1999.

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17

International Workshop 'High Performance Fiber Reinforced Cement Composites' (1999 Mainz, Germany). Third International Workshop on High Performance Fiber Reinforced Cement Composites, HPFRCC3: Mainz, Germany, May 16-19, 1999. RILEM, 1999.

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18

Kabele, Petr. Multiscale approach to characterization of damage in fiber reinforced cementitious composites. České vysoké učení technické, 2009.

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19

Liu, Rongtang. Development and evaluation of cement-based patching materials for repair of corrosion-damaged reinforced concrete slabs. Purdue University Dept. of Civil Engineering, 2001.

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20

Sidney, Mindess, Shah S. P, and Materials Research Society, eds. Cement-based composites: Strain rate effects on fracture : symposium held December 4-5, 1985, Boston, Massachusetts, USA. Materials Research Society, 1986.

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21

MRS, International Meeting on Advanced Materials (1st 1988 Tokyo Japan). Advanced cements and chemically bonded ceramics: May 31-June 1, 1988, Sunshine City, Ikebukuro, Tokyo, Japan. Materials Research Society, 1989.

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22

International Workshop "High Performance Fiber Reinforced Cement Composites" (4th 2003 Ann Arbor, Mich.). Fourth International Workshop on High Performance Fiber Reinforced Cement Composites (HPFRCC4): Sponsored by RILEM ... [et al.], Ann Arbor, USA, June 15-18, 2003. RILEM Publications, 2003.

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23

1935-, Moslemi A. A., and International Inorganic-Bonded Wood and Fiber Composite Materials Conference (5th : 1996), eds. Inorganic-bonded wood and fiber composite materials. Forest Products Society, 1997.

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24

Ozyildirim, H. Celik. Exploratory investigation of high-performance fiber-reinforced cementitious composites for crack control. Virginia Transportation Research Council, 2008.

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25

C, Bomar L., American Association of State Highway and Transportation Officials., and United States. Federal Highway Administration., eds. Determining deteriorated areas in portland cement concrete pavements using radar and video imaging. Transportation Research Board, National Research Council, 1988.

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26

Leonovich, Sergey, Evgeniy Shalyy, Elena Polonina, Elena Sadovskaya, Lev Kim, and Valentin Dorkin. Durability of port reinforced concrete structures (Far East and Sakhalin). INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1816638.

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Section I of the monograph is devoted to an urgent problem - forecasting the durability of port reinforced concrete structures, the destruction of which is associated with corrosion of steel reinforcement caused by chloride aggression and carbonation of concrete. The analysis of models for calculating the service life of structures and experimental data is carried out, the life cycles for the main degradation processes in concrete and reinforcement, the periods of initiation and propagation of corrosion are considered, the influence of environmental factors (temperature, humidity) and the qual
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27

Leonovich, Sergey, and Elena Sadovskaya. Technology and properties of fiber reinforced concrete with a nanomodified matrix. INFRA-M Academic Publishing LLC., 2024. https://doi.org/10.12737/2085120.

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The monograph substantiates the concept of multilevel reinforcement of structural heavy concrete, including the level of nano-, micro-reinforcement of cement stone with tubular carbon nanomaterials and macro-reinforcement of the concrete structure with steel fiber. Fiber-reinforced concrete compositions have been developed to determine the optimal content of steel fiber and carbon nanomaterial during monoarming, the properties of fiber-reinforced concrete of multilevel reinforcement with a combination of nano-, micro-reinforcement with tubular UNM and macro-reinforcement with steel fiber have
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28

International Symposium on Developments in Fibre Reinforced Cement and Concrete (3rd 1986 University of Sheffield). Third International Symposium on Developments in Fibre Reinforced Cement and Concrete: RILEM Technical Committee 49-TFR, 13-17 July 1986. RILEM Technical Committee 49-TFR, 1986.

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29

International Symposium on Developments in Fibre Reinforced Cement and Concrete (3rd 1986 University of Sheffield). Third International Symposium on Developments in Fibre Reinforced Cement and Concrete: RILEM Technical Committee 49-TFR, 13-17 July 1986. RILEM Technical Committee 49-TFR, 1986.

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30

Ng'ang'a, Amon. Alternative roofing technology. Intermediate Technology Kenya, 1997.

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31

W, Reinhardt H., Naaman Antoine E, and RILEM, eds. High performance fiber reinforced cement composites: Proceedings of the International Workshop "High Performance Fiber Reinforced Cement Composites" held by RILEM (The International Union of Testing and Research Laboratories for Materials and Structures) and ACI (American Concrete Institute), Stuttgart University and the University of Michigan, and organized by Stuttgart University, Germany. E & FN Spon, 1992.

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32

Fibre Reinforced Cement and Concrete. Routledge, 2004. http://dx.doi.org/10.4324/9780203627075.

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33

Swamy, R. N., ed. Fibre Reinforced Cement and Concrete. CRC Press, 1992. http://dx.doi.org/10.1201/9781482271225.

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34

Swamy, R. N. Fibre Reinforced Cement and Concrete. Taylor & Francis Group, 1992.

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35

Swamy, R. N. Fibre Reinforced Cement and Concrete. Taylor & Francis Group, 2021.

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36

Natural fibre reinforced cement and concrete. Blackie, 1988.

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37

Naaman, Antoine E. Fiber Reinforced Cement and Concrete Composites. Techno Press 3000, 2018.

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38

Gahlot, P. S. Fundamentals of Reinforced Cement Concrete Designs. CBS Publishers & Distributors, 2016.

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39

Johnston, Colin D. Fiber-Reinforced Cements and Concretes. Taylor & Francis Group, 2014.

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40

Johnston, Colin D. Fiber-Reinforced Cements and Concretes. Taylor & Francis Group, 2014.

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41

Johnston, Colin D. Fiber-Reinforced Cements and Concretes. Taylor & Francis Group, 2000.

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42

Johnston, Colin D. Fiber-Reinforced Cements and Concretes. Taylor & Francis Group, 2012.

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43

Johnston, Colin D. Fiber-Reinforced Cements and Concretes. Taylor & Francis Group, 2014.

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44

Handbook on repairs and rehabilitation of RCC buildings. Central Public Works Department, Govt. of India, 2011.

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45

Reinhardt, H. W., and Antoine E. Naaman. High Performance Fiber Reinforced Cement Composites (Rilem Proceedings). Van Nostrand Reinhold Company, 1992.

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46

Mindess, Sidney, and Jan Skalny. Fiber-Reinforced Cementitious Materials: Volume 211. University of Cambridge ESOL Examinations, 2014.

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47

Fibre Cement: Technology and Design. Birkhäuser Basel, 2006.

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48

Aci Committee 549. Thin Reinforced Cement-Based Products and Construction Systems. American Concrete Institute, 2004.

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49

Mechtcherine, Viktor, Volker Slowik, and Petr Kabele. Strain-Hardening Cement-Based Composites: Shcc4. Springer Netherlands, 2018.

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50

Mechtcherine, Viktor, Volker Slowik, and Petr Kabele. Strain-Hardening Cement-Based Composites: SHCC4. Springer, 2017.

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