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1

Naaman, Antoine E. Ferrocement and laminated cementitious composites. Techno Press, 2000.

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2

Sidney, Mindess, ed. Fibre reinforced cementitious composites. Elsevier Applied Science, 1990.

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3

Li, Victor C. Engineered Cementitious Composites (ECC). Springer Berlin Heidelberg, 2019. http://dx.doi.org/10.1007/978-3-662-58438-5.

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4

Han, Baoguo, Siqi Ding, Jialiang Wang, and Jinping Ou. Nano-Engineered Cementitious Composites. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-7078-6.

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5

Sidney, Mindess, ed. Fibre reinforced cementitious composites. 2nd ed. Taylor & Francis, 2007.

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6

Shah, S. P. Application of Fracture Mechanics to Cementitious Composites. Springer Netherlands, 1985.

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7

Herrmann, Heiko, and Jürgen Schnell, eds. Short Fibre Reinforced Cementitious Composites and Ceramics. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-00868-0.

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8

Shah, S. P., ed. Application of Fracture Mechanics to Cementitious Composites. Springer Netherlands, 1985. http://dx.doi.org/10.1007/978-94-009-5121-1.

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9

P, Shah S., and North Atlantic Treaty Organization. Scientific Affairs Division., eds. Application of fracture mechanics to cementitious composites. M. Nijhoff, 1985.

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10

Bawono, Ali Aryo. Engineered Cementitious Composites for Electrified Roadway in Megacities. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-88542-7.

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11

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

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12

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

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13

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

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14

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

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15

Abdel-Monem, Ahmed El-Badawy Sayed. The strength and fracture characteristics of autoclaved high volume fraction steel-fibre reinforced cementitious composites. University of Salford, 1990.

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16

1954-, Katz A., and International Union of Testing and Research Laboratories for Materials and Structures., eds. RILE M Second International Conference on the Interfacial Transition Zone in Cementitious Composites, Haifa, Isarel, March 8-12, 1998. E & FN Spon, 1998.

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17

Chao gao ren xing shui ni ji fu he cai liao zai gao xing neng jian zhu jie gou zhong de ji ben ying yong: Basic Application of Ultra High Toughness Cementitious Composites in Advanced Engineering Structures. Ke xue chu ban she, 2010.

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18

International Conference JMX (13th 1993 Lausanne, Switz.). Micromechanics of concrete and cementitious composites: Proceedings of the international conference JMX 13, Ecole polytechnique fédérale de Lausanne (EPFL), March 9-10, 1993. Presses polytechniques et universitaires romandes, 1993.

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19

Interfaces in Cementitious Composites. Routledge, 2004. http://dx.doi.org/10.4324/9780203626382.

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20

Advances in Engineered Cementitious Composites. Elsevier, 2022. http://dx.doi.org/10.1016/c2020-0-01202-8.

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21

Kodeboyina, Ganesh Babu. High Performance Self-Consolidating Cementitious Composites. Taylor & Francis Group, 2020.

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22

High Performance Self-Consolidating Cementitious Composites. Taylor & Francis Group, 2018.

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23

Interfacial Transition Zone in Cementitious Composites. Routledge, 2004. http://dx.doi.org/10.4324/9780203627211.

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24

Fibre Reinforced Cementitious Composites, Second Edition. Routledge, 2006. http://dx.doi.org/10.4324/9780203088722.

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25

Miller, M. Polymers in Cementitious Materials. Smithers Rapra Technology, 2005.

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26

Shah, S. P. Applications of Fracture Mechanics to Cementitious Composites. Springer, 1985.

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27

Herrmann, Heiko, and Jürgen Schnell. Short Fibre Reinforced Cementitious Composites and Ceramics. Springer, 2019.

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28

Ou, Jinping, Jialiang Wang, Baoguo Han, and Siqi Ding. Nano-Engineered Cementitious Composites: Principles and Practices. Springer, 2019.

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29

Bentur, Arnon. Fibre Reinforced cementitious Composites (Modern Concrete Technology). Taylor & Francis, 2006.

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30

Application of Fracture Mechanics to Cementitious Composites. Springer, 2011.

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31

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

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32

Cementitious Materials for Nuclear Waste Immobilization. Wiley & Sons, Incorporated, John, 2014.

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33

Ojovan, Michael I., Rehab O. Abdel Rahman, Ravil Z. Rakhimov, and Nailia R. Rakhimova. Cementitious Materials for Nuclear Waste Immobilization. Wiley & Sons, Incorporated, John, 2014.

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34

Ojovan, Michael I., Rehab O. Abdel Rahman, Ravil Z. Rakhimov, and Nailia R. Rakhimova. Cementitious Materials for Nuclear Waste Immobilization. Wiley, 2014.

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35

Katz, Amnon. Interfacial Transition Zone in Cementitious Composites (Rilem Proceedings, 35). Taylor & Francis, 1998.

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36

Recent Advances in Nano-Tailored Multi-Functional Cementitious Composites. Elsevier, 2022. http://dx.doi.org/10.1016/c2020-0-01967-5.

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37

Li, Victor C. Engineered Cementitious Composites: Bendable Concrete for Sustainable and Resilient Infrastructure. Springer, 2019.

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38

New Frontiers in Cementitious and Lime-Based Materials and Composites. MDPI, 2022. http://dx.doi.org/10.3390/books978-3-0365-3544-9.

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39

Fisher, David. Self-Healing Concrete. Materials Research Forum LLC, 2021. http://dx.doi.org/10.21741/9781644901373.

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Self-healing techniques are most successful in preventing concrete from cracking or breaking. The book reviews the most promising methods, including the use of polymers, epoxy resins, fungi or cementitious composites; biomineralization, continuing hydration or carbonation or wet/dry cycling. Various micro-organisms are able to produce favorable effects, such as denitrification, calcium carbonate formation, sulfate reduction or the production of methane. The book references 289 original resources and includes their direct web link for in-depth reading.
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40

Bonding in cementitious composites: Symposium held December 2-4, 1987, Boston, Massachusetts, U.S.A. Materials Research Society, 1988.

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41

Sidney, Mindness, Skalny Jan, and Materials Research Society, eds. Fiber-reinforced cementitious materials: Symposium held November 26-28, 1990, Boston, Massachusetts, U.S.A. Materials Research Society, 1991.

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42

Anand, Yogindra N. Structural Design, Cementitious Products and Case Histories: Proceedings of Three Sessions Sponsored by the Structural Division and the Michigan Sec. Amer Society of Civil Engineers, 1985.

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43

C, Maso J., and RILEM. Technical Committee 108., eds. Interfaces in cementitious composities: Proceedings of the International Conference held by RILEM (TheInternational Union of Testing and Research Laboratories for Materials and Construction) at the Université Paul Sabatier, Toulouse ... October 21-23 1992. Spon, 1993.

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44

N, Anand Yogindra, American Society of Civil Engineers. Structural Division., American Society of Civil Engineers. Michigan Section., and ASCE National Convention (1985 : Detroit, Mich.), eds. Structural design, cementitious products, and case histories: Proceedings of 3 sessions sponsored by the Structural Division and Michigan Section of the American Society of Civil Engineers, in conjunction with the ASCE Convention in Detroit, Michigan, October 22-24, 1985. ASCE, 1985.

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45

C, Maso J., International Union of Testing and Research Laboratories for Materials and Structures., RILEM Technical Committee 108., and Laboratory for Materials and Durability of Constructions., eds. Interfaces in cementitious composites: Proceedings of the international conference held by RILEM (the International Union of Testing and Research Laboratories for Materials and Construction) at the Université Paul Sabatier, Toulouse, and organised by RILEM Technical Committee 108 and the Laboratory for Materials and Durability of Constructions (LMDC), INSA-UPS, Toulouse, France : Toulouse, October 21-23, 1992. E & FN Spon, 1993.

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