Investigation of Fiber-reinforced Self-consolidating Concrete

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Publisher :
ISBN 13 :
Total Pages : 19 pages
Book Rating : 4.:/5 (644 download)

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Book Synopsis Investigation of Fiber-reinforced Self-consolidating Concrete by : Michael Carey Brown

Download or read book Investigation of Fiber-reinforced Self-consolidating Concrete written by Michael Carey Brown and published by . This book was released on 2010 with total page 19 pages. Available in PDF, EPUB and Kindle. Book excerpt: The rising cost of materials and labor, as well as the demand for faster construction, has prompted development of cheaper, faster alternatives to conventional building techniques. Self-consolidating concrete (SCC), a high performance concrete characterized by its ability to flow without segregation under its own weight, promises to speed construction while reducing the need for skilled labor. However, experience has shown that SCC may be prone to shrinkage cracking, which may compromise its durability. In conventional concrete, fiber reinforcement has been used to control cracking and increase tensile and flexural strength. This study evaluated the feasibility of fiber-reinforced SCC (FR-SCC) for structural applications. Tests were conducted in the laboratory to assess the fresh and hardened properties of FR-SCC containing various types and concentrations of fibers. The results indicated that an SCC mixture can be prepared for use in transportation facilities that combines the properties of a high flow rate and some residual strength that would be beneficial for crack control. The residual strength is contributed by the internal fibers and provides load-carrying capacity after initial cracking of the concrete. At optimum fiber additions, FR-SCC mixtures can have the same fresh concrete properties as traditional SCC mixtures. FR-SCC also demonstrated a considerable improvement in the residual strength and toughness of a cracked section, which is expected to lead to the control of crack width and length. The improved performance of the FR-SCC cracked section indicated that it can be expected to have more durability in service conditions than would an identical SCC with no reinforcement. The study recommends that the Virginia Department of Transportation's Structure & Bridge Division evaluate FR-SCC in field applications such as link slabs and closure pours in continuous concrete decks; formed concrete substructure repairs; or prestressed beams where end zone cracking has been an issue. In such applications, construction with FR-SCC has the potential to be faster than with SCC, as traditional steel reinforcement may be reduced or eliminated, yielding reduced labor and materials costs for reinforcement placement. Enhanced public and worker safety may result from the reduction of overall construction time and required maintenance of traffic. The next step toward implementation of this technology would involve coordination with VDOT's Materials Division and Structure & Bridge Division to create special provisions or standard specifications regarding the use of FR-SCC and to identify candidate projects for field trials.

Development and Performance of Fiber-reinforced Self-consolidating Concrete for Repair Applications

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ISBN 13 :
Total Pages : 377 pages
Book Rating : 4.:/5 (886 download)

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Book Synopsis Development and Performance of Fiber-reinforced Self-consolidating Concrete for Repair Applications by : Fodhil Kassimi

Download or read book Development and Performance of Fiber-reinforced Self-consolidating Concrete for Repair Applications written by Fodhil Kassimi and published by . This book was released on 2013 with total page 377 pages. Available in PDF, EPUB and Kindle. Book excerpt: The use of self-consolidating concrete (SCC) in the concrete industry in cast-in-place applications, including repair applications, is growing given the various advantages offered in both fresh and hardened states. The present study deals with the design and performance of fiber-reinforced self-consolidating concrete (FR-SCC) as a repair material of concrete infrastructure. The study also considers the use of various steel and synthetic fibers (five fibers in total) that were used to produce FR-SCC and fiber-reinforced self-consolidating mortar (FR-SCM) that can be employed for structural and non-structural repair applications. The study evaluates the effect of material properties and mixture composition of the fibrous concrete and mortar on workability, mechanical, visco-elastic, durability, and structural behavior. The investigation that is presented in this thesis included the testing of 28 full-scale beams under four-point flexural loading. The majority of these beams were repaired by casting concrete to fill a relatively thin section along the tension zone of the beams. The repair technique was based on the FR-SCC characteristics including the maximum fiber volume and length. This technique required mixtures of high range of fluidity. The optimized FR-SCC and FR-SCM mixtures exhibited excellent flow characteristics along the 3.2-m long beams without blockage, segregation, nor debonding at the interface of repair-substrate concrete. Based on the structural characteristics of the composite beams, the overall performance of the beams repaired using the FR-SCC and FR-SCM was similar or higher (up to 2.6 times) than that of monolithic beams made with conventional vibrated concrete (CVC). The use of optimized FRSCC mixtures enabled the replacement of 50% of the tension steel reinforcement in repair sections; i.e., the number of bars in the tension zone decreased from three bars to two bars with the addition of fibers in the SCC without mitigating structural performance. The degree of prediction of crack width, cracking load/moment, ultimate loads, and deflection of various FR-SCC and FR-SCM mixture was evaluated using several design and code models. The results indicate that these code models can provide safe predictions for crack and ultimate loads, as well as crack width of FR-SCC. The deflection of FR-SCC is unsafe but predictable by these code models. In total, 18 large-scale beams were tested in four-point for flexural creep. FR-SCC incorporating steel fibers combined with expansive agent provided overall performance up to 10 times of that obtained with CVC with the same fiber type and volume. The cracking under constant load was reduced by 60% to 80% using self-consolidating fibrous mixtures made with or without expansion agents, compared to SCC without fibers. The best combination to reduce the cracking potential when the restrained shrinkage ring test was employed was obtained with SCC mixtures made with steel fibers and expansive agent. Models were elaborated to predict the time-to-cracking for FR-SCC and FR-SCM mixtures based on mixture modulus of elasticity and drying and autogenous shrinkages. The project involved extensive testing of highly flowable fibrous materials to determine drying shrinkage (nearly 260 prisms), modulus of rupture (nearly 180 prisms), as well as compressive and splitting tensile strengths and elastic modulus (nearly 2100 cylinders). Based on the results, models were proposed to predict these key material properties that affect the performance of FR-SCC and FR-SCM used in repair applications. In addition to FR-SCC, the investigation also was set to evaluate the feasibility of using fiber-reinforced superworkable concrete (FR-SWC) in construction and repair applications. Such highly flowable concrete that requires limited vibration consolidation can represent some advantages over FR-SCC (lower admixtures demand, lower risk of segregation, greater robustness, lower formwork pressure, etc.). The energy needed to ensure proper consolidation, using either vibration or rodding, applied on samples made with FR-SWC was determined. The energy requirement took into consideration the development of mechanical properties, the resistance to segregation, and the development of proper surface quality. The study also demonstrated the higher overall structural performance of optimized FR-SWC compared to the corresponding FR-SCC mixtures. The findings of the thesis on the design and performance of highly workable fiber-reinforced cementitious materials should facilitate the acceptance of such novel high-performance material in infrastructure construction and repair applications.

EXPERIMENTAL AND NUMERICAL INVESTIGATION OF FIBER-REINFORCED RUBBERIZED CONCRETE AND RUBBERIZED SELF-CONSOLIDATING CONCRETE

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (119 download)

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Book Synopsis EXPERIMENTAL AND NUMERICAL INVESTIGATION OF FIBER-REINFORCED RUBBERIZED CONCRETE AND RUBBERIZED SELF-CONSOLIDATING CONCRETE by :

Download or read book EXPERIMENTAL AND NUMERICAL INVESTIGATION OF FIBER-REINFORCED RUBBERIZED CONCRETE AND RUBBERIZED SELF-CONSOLIDATING CONCRETE written by and published by . This book was released on 2020 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Abstract : With the accelerated accumulation of scrap tires, the landfill becomes unacceptable due to limited space and its environmental pollution. The rubberized concrete materials containing scrap tire rubber particles as partial replacement of aggregates have been considered as one applicable method to recycle waste tire. However, the mechanical and durability properties of concrete materials can be significantly affected by adding rubbers without optimized designs. The main objective of this research is to develop the optimized designs for fiber-reinforced rubberized normal concrete and rubberized self-consolidating concrete through experimental evaluation of fresh performance, mechanical property, and durability resistance. For fiber-reinforced rubberized normal concrete, steel fibers and plastic fibers were added along with recycled rubber aggregates. The results showed steel fibers could improve compressive strength, splitting tensile strength, and flexural strength of rubberized normal concrete. In the case of plastic fibers, reduced compressive and flexural strength were found by comparing with that of control specimens. However, the fracture energy and post-crack extension were significantly improved by comparing that of control specimens in fiber-reinforced rubberized normal concrete samples regardless of fiber types, especially the fracture energy was increased about 10 to 50 times. The steel fiber-reinforced self-compacting rubber concrete (SRSCC) was also designed by introducing steel fiber and recycled rubber aggregates into self-compacting concrete (SCC). The experimental results showed the SRSCC can meet most requirements of fresh performance (flowability, filling ability, and passing ability) in terms of field applications. Regarding hardened properties, the compressive strength was reduced with the added rubber aggregate and steel fiber. However, SRSCC samples with 10% rubbers showed higher splitting tensile strength than that of plain SCC samples. The Load-crack mouth opening displacement (Load-CMOD) curves showed the increased flexural strength and total fracture energy of SRSCC samples with added steel fiber by comparing that with plain SCC. The critical fracture parameters, including initial fracture energy (Gf) and stress intensity factor (KIc) were increased with added rubber aggregate and steel fiber. With these properties, the bilinear strain-softening model (aggregate interlock effect) and trilinear strain-softening model (aggregate interlock and fiber-bridging effects) were calibrated. The strain-softening curves were utilized in the ATENA finite element model (FEM) to predict the flexural-fracture behaviors of corresponding specimens, and the simulation showed reasonable agreement with experiments. Also, the SRSCC specimens showed excellent freeze-thaw resistance after 600 F-T cycles. In the future, the success of applying fiber-reinforced rubber concrete materials could be an environmental-friendly utilization for recycling solid tire rubber waste and improve the mechanical and durability performance of conventional concrete materials.

Self-Consolidating Concrete

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Publisher : CRC Press
ISBN 13 : 020384422X
Total Pages : 304 pages
Book Rating : 4.2/5 (38 download)

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Book Synopsis Self-Consolidating Concrete by : Joseph Daczko

Download or read book Self-Consolidating Concrete written by Joseph Daczko and published by CRC Press. This book was released on 2012-03-06 with total page 304 pages. Available in PDF, EPUB and Kindle. Book excerpt: "A very interesting and useful book for all the different practitioners in the concrete industry. Each necessary step is thoroughly dealt with and explained in a nice and pedagogic way." Peter Billberg, Swedish Cement and Concrete Research Institute (CBI)"Quite comprehensive and with a narrative style at the practitioner level." Lloyd Keller, Direc

Fiber-reinforced Cement Composites

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Publisher : McGraw-Hill Companies
ISBN 13 :
Total Pages : 570 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Fiber-reinforced Cement Composites by : Perumalsamy N. Balaguru

Download or read book Fiber-reinforced Cement Composites written by Perumalsamy N. Balaguru and published by McGraw-Hill Companies. This book was released on 1992 with total page 570 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Performance of Fiber-reinforced Self-consolidating Concrete for Repair of Bridge Sub-structures and Fiber-reinforced Super-workable Concrete for Infrastructure Construction

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ISBN 13 :
Total Pages : 181 pages
Book Rating : 4.:/5 (11 download)

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Book Synopsis Performance of Fiber-reinforced Self-consolidating Concrete for Repair of Bridge Sub-structures and Fiber-reinforced Super-workable Concrete for Infrastructure Construction by : Kamal H. Khayat

Download or read book Performance of Fiber-reinforced Self-consolidating Concrete for Repair of Bridge Sub-structures and Fiber-reinforced Super-workable Concrete for Infrastructure Construction written by Kamal H. Khayat and published by . This book was released on 2017 with total page 181 pages. Available in PDF, EPUB and Kindle. Book excerpt: The proposed research investigates the combined use of self-consolidating concrete (SCC) and fibers reinforcements to develop a novel repair material, fiber-reinforced self-consolidating concrete (FR-SCC) that can be used for the rehabilitation and strengthening of existing structures. Furthermore, the feasibility of using super workable concrete (SWC) reinforced with different types of fibers for new structural cast-in-place applications is investigated. The use of SCC matrix can greatly enhance the workability of fibrous mixtures along with incorporation of greater volume of fibers. SWC is a new type of flowable concrete with lower workability than SCC. Containing lower binder content can be more cost effective than SCC. SWC requires some mechanical consolidation energy to ensure proper filling of the formwork. Eight types of fibers, including a propylene synthetic fiber, five steel fibers and a hybrid steel and polypropylene synthetic fiber were investigated. Fibers were incorporated at a volume of 0.5% in FR-SCC and at 0.5% and 0.75% in FR-SWC. Two types of expansive agents (EA), Type G and Type K, were added to both concrete types to reduce shrinkage and enhance resistance to restrained shrinkage cracking. The optimized mixtures exhibited high workability, mechanical properties, and freeze/thaw durability. The incorporation of fibers with 4% Type-G EA in FR-SCC increased the 56-day flexural strength by up to 32%, and flexural toughness up to 23 times. The incorporation of 0.5% of the 1.18 in. (30-mm) hooked end steel fibers (ST1) in FR-SCC made with 4% Type-G EA increased the elapsed time to cracking determined from restrained shrinkage ring test from 16 to 20 days compared to FR-SCC made with 0.5% ST1 fibers without EA. The use of ST1 steel fibers and 4% Type-G EA decreased the 1-year drying shrinkage by 48% compared to the reference SCC mixture without any fibers and expansive agent. In case of FR-SWC, the decrease in shrinkage was 37% compared to SWC. In addition, 20 monolithic full-scale beams were cast using different types of concrete, including conventional vibrated concrete (CVC), fiber-reinforced conventional vibrated concrete (FR-CVC), SCC, FR-SCC, SWC and FR-SWC. Twelve reinforced concrete beams were cast using CVC to fill two thirds of the beam height. They were then filled with five different types of FR-SCC and SCC to simulate beam repair in the tension zone. Findings indicated that macro fibers can be used with FR-SCC designated for repair with fiber length ≤ 2 in. (50 mm) up to 0.5% fiber volume. Macro fibers can be used with FR-SWC designated for construction with fiber length ≤ 2.6 in. (65 mm) up to 0.75% fiber volume. Fibers had great impact on structural performance of the full-scale monolithic beams. The incorporation of 0.5% of the 1.18 in. (30-mm) hooked end steel fibers combined with 0.5 in. (13-mm) straight steel fibers at ratio 4 to1 (STST) with 4% Type-G EA increased toughness of FR-SWC beams by 95% compared to SWC beams and by 86% in case of 0.75% 5D fibers. Repair using FR-SCC increased the flexural capacity of the beam by 6% and the toughness by 110% in case of using 0.5% ST1 fibers with 4% Type-G EA.

Rheology and Processing of Construction Materials

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Publisher : Springer Nature
ISBN 13 : 3030225666
Total Pages : 663 pages
Book Rating : 4.0/5 (32 download)

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Book Synopsis Rheology and Processing of Construction Materials by : Viktor Mechtcherine

Download or read book Rheology and Processing of Construction Materials written by Viktor Mechtcherine and published by Springer Nature. This book was released on 2019-08-24 with total page 663 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book gathers the peer-reviewed contributions presented at two parallel, closely interconnected events on advanced construction materials and processes, namely the 2nd International RILEM Conference on Rheology and Processing of Construction Materials (RheoCon2) and the 9th International RILEM Symposium on Self-Compacting Concrete (SCC9), held in Dresden, Germany on 8-11 September 2019. The papers discuss various aspects of research on the development, testing, and applications of cement-based and other building materials together with their specific rheological properties. Furthermore, the papers cover the latest findings in the fast-growing field of self-compacting concrete, addressing topics including components’ properties and characterization; chemical admixtures, effect of binders (incl. geopolymers, calcined clay, etc.) and mixture design; laboratory and in-situ rheological testing; constitutive models and flow modelling; numerical simulations; mixing, processing and casting processes; and additive manufacturing / 3D-printing. Also presenting case studies, the book is of interest to researchers, graduate students, and industry specialists, such as material suppliers, consultants and construction experts.

Performance of Hybrid Fiber Reinforced Self-consolidating and Normal Concrete in the State of Idaho

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Publisher :
ISBN 13 : 9780355044782
Total Pages : 312 pages
Book Rating : 4.0/5 (447 download)

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Book Synopsis Performance of Hybrid Fiber Reinforced Self-consolidating and Normal Concrete in the State of Idaho by : Bikash Sigdel

Download or read book Performance of Hybrid Fiber Reinforced Self-consolidating and Normal Concrete in the State of Idaho written by Bikash Sigdel and published by . This book was released on 2017 with total page 312 pages. Available in PDF, EPUB and Kindle. Book excerpt: The first part of this study aims at developing hybrid fiber reinforced self-consolidating concrete (HFRSCC) made with a very high volume of supplementary cementitious materials (SCMs). Self-consolidating concrete (SCC) is a highly workable concrete that can easily flow through heavily reinforced concrete sections without the need for mechanical vibration. The percentages (by volume) of fibers considered were 0.1% and 0.2% hybrid combinations of nylon (PVA) and steel fibers, respectively. Cement was replaced by various percentages of SCMs by up to 70%. The mechanical properties (compressive strength, modulus of elasticity and tensile strength) and unrestrained drying shrinkage of the developed mixtures were evaluated and compared to the standard specifications. The second part of this study aims at evaluating the mechanical properties (compressive strength, modulus of elasticity, tensile strength, and modulus of rupture), thermal properties and unrestrained drying shrinkage of the paving and structural concrete mixtures being used in the six districts of the State of Idaho. The focus of this evaluation was to develop a material database required for the implementation of the "AASHTOWare Pavement ME Design" (ME) Software which is used to design rigid Portland Cement Concrete (PCC) pavements. The data developed and examples of its implementation in the ME software were conducted, evaluated, and presented.

Fiber Reinforced Self-consolidating Concrete

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Publisher :
ISBN 13 : 9781617822278
Total Pages : 128 pages
Book Rating : 4.8/5 (222 download)

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Book Synopsis Fiber Reinforced Self-consolidating Concrete by :

Download or read book Fiber Reinforced Self-consolidating Concrete written by and published by . This book was released on 2010 with total page 128 pages. Available in PDF, EPUB and Kindle. Book excerpt: Provides insight into the state of the art of the topic in academia, in the industry and in real life applications of fiber-reinforced self-consolidating concrete. The topics of the papers cover aspects ranging from mix composition and influence of fibers on the fresh state performance, to connection between fresh state behavior, fiber dispersion and orientation and mechanical properties of the fiber reinforced composite to full scale testing and development of prototype applications for structures and infrastructures.

Development of Carbon Fiber Reinforced Self-consolidating Concrete Patch for Repair Applications

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Publisher :
ISBN 13 :
Total Pages : 171 pages
Book Rating : 4.:/5 (86 download)

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Book Synopsis Development of Carbon Fiber Reinforced Self-consolidating Concrete Patch for Repair Applications by : Mohamed Yakhlaf

Download or read book Development of Carbon Fiber Reinforced Self-consolidating Concrete Patch for Repair Applications written by Mohamed Yakhlaf and published by . This book was released on 2013 with total page 171 pages. Available in PDF, EPUB and Kindle. Book excerpt: Fiber-reinforced self-consolidating concrete is a relatively new material in civil engineering applications. The purpose of this study is to examine the effects of discrete Pitch-based carbon fibers on the fresh properties of self-consolidating concrete (SCC).

Self-Compacting Concrete: Materials, Properties and Applications

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Publisher : Woodhead Publishing
ISBN 13 : 012817370X
Total Pages : 410 pages
Book Rating : 4.1/5 (281 download)

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Book Synopsis Self-Compacting Concrete: Materials, Properties and Applications by : Rafat Siddique

Download or read book Self-Compacting Concrete: Materials, Properties and Applications written by Rafat Siddique and published by Woodhead Publishing. This book was released on 2019-11-19 with total page 410 pages. Available in PDF, EPUB and Kindle. Book excerpt: Self-Compacting Concrete: Materials, Properties and Applications presents the latest research on various aspects of self-compacting concrete, including test methods, rheology, strength and durability properties, SCC properties at elevated temperature, SC manufacturing with the use of SCMs, recycled aggregates and industrial by-products. Written by an international group of contributors who are closely associated with the development of self-compacting concrete, the book explores the main differences between SCC and normal concrete in terms of raw materials, fresh properties and hardened properties. Other topics discussed include the structure and practical applications of fiber reinforced SCC. Researchers and experienced engineers will find this reference to be a systematic source to SCC with its accounting of the latest breakthroughs in the field and discussions of SCC constructability, structural integrity, improved flows into complex forms, and superior strength and durability. Offers a systematic and comprehensive source of information on the latest developments in SCC technology Includes mix design procedures, tests standards, rheology, strength and durability properties Explores the properties and practical applications of SCC

Design, Production and Placement of Self-Consolidating Concrete

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Publisher : Springer Science & Business Media
ISBN 13 : 9048196647
Total Pages : 444 pages
Book Rating : 4.0/5 (481 download)

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Book Synopsis Design, Production and Placement of Self-Consolidating Concrete by : Kamal Henri Khayat

Download or read book Design, Production and Placement of Self-Consolidating Concrete written by Kamal Henri Khayat and published by Springer Science & Business Media. This book was released on 2010-08-12 with total page 444 pages. Available in PDF, EPUB and Kindle. Book excerpt: Dear Colleagues, We are pleased to organize the Sixth International RILEM Symposium on SCC and the Fourth North-American Conference on the Design and Use of SCC, held on Sept 26-29, 2010 in Montreal, Quebec, Canada. The RILEM series of symposia started in 1999 in Stockholm, followed by Tokyo in 2001, Reykjavik in 2003, Chicago in 2005, and Ghent in 2007 with a steadily increasing number of papers, participants, and interest from across the globe. Due to the growing success of SCC, regional conferences have been organized, such as the North-American Conference on the Design and Use of SCC held in Chicago in 2002, 2005, and 2008; the International Symposium on Design, Performance and Use of SCC held nd in Changsa, China in 2005 and in Beijing, China in 2009; as well as the 2 International Conference on Advances in Concrete Technology in the Middle East: SCC held in Abu Dhabi in 2009. It can be concluded that these regional Conferences and Symposia were highly successful and reached a far more international audience than anticipated. Nearly 100 papers were submitted for these proceedings from which the International Scientific Committee selected 37 contributions covering a wide range of timely and original subjects from around the world. We would like to acknowledge the input of the International Scientific Committee for providing critical input to guarantee high quality of these peer-reviewed proceedings. We invite you to explore a wealth of information in the electronic proceedings.

Steel Fiber Reinforced Concrete

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Publisher : Springer
ISBN 13 : 981102507X
Total Pages : 181 pages
Book Rating : 4.8/5 (11 download)

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Book Synopsis Steel Fiber Reinforced Concrete by : Harvinder Singh

Download or read book Steel Fiber Reinforced Concrete written by Harvinder Singh and published by Springer. This book was released on 2016-10-26 with total page 181 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book discusses design aspects of steel fiber-reinforced concrete (SFRC) members, including the behavior of the SFRC and its modeling. It also examines the effect of various parameters governing the response of SFRC members in detail. Unlike other publications available in the form of guidelines, which mainly describe design methods based on experimental results, it describes the basic concepts and principles of designing structural members using SFRC as a structural material, predominantly subjected to flexure and shear. Although applications to special structures, such as bridges, retaining walls, tanks and silos are not specifically covered, the fundamental design concepts remain the same and can easily be extended to these elements. It introduces the principles and related theories for predicting the role of steel fibers in reinforcing concrete members concisely and logically, and presents various material models to predict the response of SFRC members in detail. These are then gradually extended to develop an analytical flexural model for the analysis and design of SFRC members. The lack of such a discussion is a major hindrance to the adoption of SFRC as a structural material in routine design practice. This book helps users appraise the role of fiber as reinforcement in concrete members used alone and/or along with conventional rebars. Applications to singly and doubly reinforced beams and slabs are illustrated with examples, using both SFRC and conventional reinforced concrete as a structural material. The influence of the addition of steel fibers on various mechanical properties of the SFRC members is discussed in detail, which is invaluable in helping designers and engineers create optimum designs. Lastly, it describes the generally accepted methods for specifying the steel fibers at the site along with the SFRC mixing methods, storage and transport and explains in detail methods to validate the adopted design. This book is useful to practicing engineers, researchers, and students.

Lightweight Self Consolidating Fiber Reinforced Concrete

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Publisher :
ISBN 13 :
Total Pages : 53 pages
Book Rating : 4.:/5 (87 download)

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Book Synopsis Lightweight Self Consolidating Fiber Reinforced Concrete by : Johanna Paulette Doukakis

Download or read book Lightweight Self Consolidating Fiber Reinforced Concrete written by Johanna Paulette Doukakis and published by . This book was released on 2013 with total page 53 pages. Available in PDF, EPUB and Kindle. Book excerpt: The object of this research was to determine the effects steel and polypropylene fibers have on the fresh and mechanical properties of a lightweight self consolidating concrete (LWSCC). Secondary objectives were to determine which of the two chosen fibers yield superior results, and to determine approximate optimal fiber content by volume. A LWSCC mix was developed for the control mix using a design procedure based on the volumetric method. Two fibers, steel and polypropylene, were chosen for this research. Each fiber type had two different densities by volume creating a total of five mixes including the control. All mixes were tested for workability, passing ability, density, compressive strength, elastic modulus, splitting tension, and flexural strength. All tests were performed in accordance with the appropriate ASTM specification. Overall, fiber specimens performed better than the control in splitting tension, compression, and flexural strength testing since they could hold a residual load. Effect on modulus of elasticity and workability was minimal. Fibers did increase the density of the samples; however the equilibrium density of all mixes fell into acceptable ranges. Passing ability was greatly affected by the addition of fibers; however simple adjustments in mix proportion could easily resolve this issue. The steel samples outperformed the polypropylene samples. More specifically the Steel30 samples produced the best results.

PRO 7: 1st International RILEM Symposium on Self-Compacting Concrete

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Author :
Publisher : RILEM Publications
ISBN 13 : 9782912143099
Total Pages : 822 pages
Book Rating : 4.1/5 (43 download)

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Book Synopsis PRO 7: 1st International RILEM Symposium on Self-Compacting Concrete by : Åke Skarendahl

Download or read book PRO 7: 1st International RILEM Symposium on Self-Compacting Concrete written by Åke Skarendahl and published by RILEM Publications. This book was released on 1999 with total page 822 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Behaviour of Self Consolidating Steel Fiber Reinforced Concrete Beams Under Reversed Cyclic Loading

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (833 download)

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Book Synopsis Behaviour of Self Consolidating Steel Fiber Reinforced Concrete Beams Under Reversed Cyclic Loading by : Nima Aghniaey

Download or read book Behaviour of Self Consolidating Steel Fiber Reinforced Concrete Beams Under Reversed Cyclic Loading written by Nima Aghniaey and published by . This book was released on 2002 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Concrete is a very weak and brittle material in tension. It has been shown in previous researches that the addition of steel fibers to a concrete matrix can improve this behavior. The ability of fibers to control and redistribute stresses after cracking results in a number of improvements in the structural behaviour of concrete. A review of existing literature shows that the addition of steel fibers enhances concrete's tensile resistance, crack control properties, ductility and damage tolerance. In beams, fibers can transform brittle shear response into a flexural response and promote ductility, thereby allowing for a full or partial replacement of traditional shear reinforcement. The enhanced shear capacity, ductility and damage tolerance of Steel Fiber Reinforced Concrete (SFRC) can also potentially be used to relax seismic detailing requirements in frames by partially replacing the required transverse reinforcement in the plastic hinge regions of RC beams. One of the drawbacks associated with SFRC is that the addition of steel fibers to a traditional concrete mix at high fiber contents can result in workability problems. The combined use of Self-Consolidating Concrete (SCC) and fibers can solve this problem and facilitate placement for a wider range of structural applications. Although several studies have been conducted on the behaviour of SFRC beams subjected to monotonic loading, there is limited research on the behaviour of SFRC beams under cyclic or reverse-cyclic loading. This thesis presents the results of an experimental and analytical study conducted on nine SFRC beam specimens tested under load reversals. The main objective of this research program was to investigate the effect of fibers on structural behaviour and to examine the ability of steel fibers to replace transverse reinforcement. The experimental and analytical results show that use of fibers results in several improvements in behaviour, including enhanced damage tolerance and post-peak ductility. The results also show that steel fibers can potentially be used to allow for a reduction of transverse reinforcement in beams, however further research is required.

High Performance Self-Consolidating Cementitious Composites

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Author :
Publisher : CRC Press
ISBN 13 : 1351664972
Total Pages : 375 pages
Book Rating : 4.3/5 (516 download)

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Book Synopsis High Performance Self-Consolidating Cementitious Composites by : Ganesh Babu Kodeboyina

Download or read book High Performance Self-Consolidating Cementitious Composites written by Ganesh Babu Kodeboyina and published by CRC Press. This book was released on 2018-02-19 with total page 375 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book attempts to bring together some of the basic intricacies in the production of the complete range of self-consolidating cementitious composites, with a proper understanding of the contributions of different materials and their combinations, including performance and limitations. Presents a comprehensive perspective of the state of the art in self-compacting concretes while explaining the basic background and principles, includes possible alternatives of making SCC with different powder extenders and pozzolanic materials Explores concepts through theoretical and graphical representations