Leonid Dvorkin, Vadim Zhitkovsky, Oleh Bordiuzhenko, Yuri Ribakov
High Performance Concrete Optimal Composition Design (eBook, PDF)
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Leonid Dvorkin, Vadim Zhitkovsky, Oleh Bordiuzhenko, Yuri Ribakov
High Performance Concrete Optimal Composition Design (eBook, PDF)
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The book deals with experimental and theoretical data forming a basis for design and production of high-strength rapid hardening concrete and fiber reinforced concrete. Such concrete has high early strength at 12 - 24 hours after casting and saves energy resources during the construction stage.
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The book deals with experimental and theoretical data forming a basis for design and production of high-strength rapid hardening concrete and fiber reinforced concrete. Such concrete has high early strength at 12 - 24 hours after casting and saves energy resources during the construction stage.
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Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 212
- Erscheinungstermin: 1. September 2023
- Englisch
- ISBN-13: 9781000962765
- Artikelnr.: 68161708
- Verlag: Taylor & Francis
- Seitenzahl: 212
- Erscheinungstermin: 1. September 2023
- Englisch
- ISBN-13: 9781000962765
- Artikelnr.: 68161708
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Leonid Dvorkin: DSc (1983), Full Professor since 1985. Head of Constructing Products Technology and Material Science Department, National University of Water and Environmental Engineering, Ukraine. Published more than 40 monographs and textbooks on actual problems in technology of binders, concrete and other constructing material. Published many scientific papers and presented research reports at national and international conferences.
Vadim Zhitkovsky: PhD in Constructing Materials and Products (2003). Since 2007 Associate Professor at the Constructing Products Technology and Material Science Department, National University of Water and Environmental Engineering, Ukraine. Research interests: technology High Performance Concretes, mortars and dry mixes, concrete mix design with desired properties.
Oleh Bordiuzhenko: PhD in Constructing Materials and Products (2002). Associate Professor at the Constructing Products Technology and Material Science Department, National University of Water and Environmental Engineering, Ukraine. Research interests: fiberreinforced concrete, foam concrete, concrete mix design with desired properties. Co-author of 7 monographs, published about 100 papers in scientific journals.
Yuri Ribakov: PhD in Structural Engineering (2001). Full Professor at the Ariel University in Israel since 2014. Chair of Structural Engineering Research interests: structural concrete, reinforced concrete structures, fiber reinforced concrete, etc. Co-authored 7 monographs, co-edited 2 books, published about 200 papers in scientific journals and conference proceedings. Member of editorial boards in international journals.
Vadim Zhitkovsky: PhD in Constructing Materials and Products (2003). Since 2007 Associate Professor at the Constructing Products Technology and Material Science Department, National University of Water and Environmental Engineering, Ukraine. Research interests: technology High Performance Concretes, mortars and dry mixes, concrete mix design with desired properties.
Oleh Bordiuzhenko: PhD in Constructing Materials and Products (2002). Associate Professor at the Constructing Products Technology and Material Science Department, National University of Water and Environmental Engineering, Ukraine. Research interests: fiberreinforced concrete, foam concrete, concrete mix design with desired properties. Co-author of 7 monographs, published about 100 papers in scientific journals.
Yuri Ribakov: PhD in Structural Engineering (2001). Full Professor at the Ariel University in Israel since 2014. Chair of Structural Engineering Research interests: structural concrete, reinforced concrete structures, fiber reinforced concrete, etc. Co-authored 7 monographs, co-edited 2 books, published about 200 papers in scientific journals and conference proceedings. Member of editorial boards in international journals.
Preface. PART I: HIGH STRENGTH RAPID HARDENING CONCRETE. Theoretical
prerequisites. Technological ways for producing high-strength
rapid-hardening concrete. Cement concrete with high early strength.
Experimental-statistical models of strength parameters of high strength
rapid hardening concrete (HSRH¿). Designing high-strength concrete
compositions with specified values of strength and workability.
Multi-parameter design of high-strength concrete compositions. PART II:
HIGH STRENGTH FIBER REINFORCED CONCRETE. The influence of dispersed
reinforcement factors on the strength properties of fiber reinforced
concrete. Technological properties of fiber reinforced concrete mixtures.
Properties of fiber concrete determining its durability. High-strength
fiber reinforced concrete with composite dispersed reinforcement. Dynamic
characteristics of fiber reinforced concrete. Design of high strength fiber
reinforced concrete compositions. Conclusions. References.
prerequisites. Technological ways for producing high-strength
rapid-hardening concrete. Cement concrete with high early strength.
Experimental-statistical models of strength parameters of high strength
rapid hardening concrete (HSRH¿). Designing high-strength concrete
compositions with specified values of strength and workability.
Multi-parameter design of high-strength concrete compositions. PART II:
HIGH STRENGTH FIBER REINFORCED CONCRETE. The influence of dispersed
reinforcement factors on the strength properties of fiber reinforced
concrete. Technological properties of fiber reinforced concrete mixtures.
Properties of fiber concrete determining its durability. High-strength
fiber reinforced concrete with composite dispersed reinforcement. Dynamic
characteristics of fiber reinforced concrete. Design of high strength fiber
reinforced concrete compositions. Conclusions. References.
Preface. PART I: HIGH STRENGTH RAPID HARDENING CONCRETE. Theoretical
prerequisites. Technological ways for producing high-strength
rapid-hardening concrete. Cement concrete with high early strength.
Experimental-statistical models of strength parameters of high strength
rapid hardening concrete (HSRH¿). Designing high-strength concrete
compositions with specified values of strength and workability.
Multi-parameter design of high-strength concrete compositions. PART II:
HIGH STRENGTH FIBER REINFORCED CONCRETE. The influence of dispersed
reinforcement factors on the strength properties of fiber reinforced
concrete. Technological properties of fiber reinforced concrete mixtures.
Properties of fiber concrete determining its durability. High-strength
fiber reinforced concrete with composite dispersed reinforcement. Dynamic
characteristics of fiber reinforced concrete. Design of high strength fiber
reinforced concrete compositions. Conclusions. References.
prerequisites. Technological ways for producing high-strength
rapid-hardening concrete. Cement concrete with high early strength.
Experimental-statistical models of strength parameters of high strength
rapid hardening concrete (HSRH¿). Designing high-strength concrete
compositions with specified values of strength and workability.
Multi-parameter design of high-strength concrete compositions. PART II:
HIGH STRENGTH FIBER REINFORCED CONCRETE. The influence of dispersed
reinforcement factors on the strength properties of fiber reinforced
concrete. Technological properties of fiber reinforced concrete mixtures.
Properties of fiber concrete determining its durability. High-strength
fiber reinforced concrete with composite dispersed reinforcement. Dynamic
characteristics of fiber reinforced concrete. Design of high strength fiber
reinforced concrete compositions. Conclusions. References.