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Engineering Structures, ISSN 0141-0296, 10/2016, Volume 124, pp. 405 - 417
Among the properties of steel fiber-reinforced concrete (SFRC), the volume fraction and shape of steel fibers play an important role when the concrete is... 
Steel fiber reinforced concrete | Shape | Volume fraction | Dynamic loading | COMPRESSIVE BEHAVIOR | SLABS | MECHANICAL-PROPERTIES | IMPACT RESISTANCE | FRACTURE-BEHAVIOR | HIGH-STRENGTH CONCRETE | ENGINEERING, CIVIL | HOPKINSON PRESSURE BAR | HIGH-PERFORMANCE CONCRETE | NUMERICAL-SIMULATION | BLAST | Steel | School construction
Journal Article
SAE technical paper series, Volume 983055.
This paper presents several basic construction techniques involved in using carbon fiber sandwich boards to reinforce a tubular steel spaceframe. Also... 
Simulation and modeling | Steel | Crash research | Fibers
eJournal
Cement and Concrete Composites, ISSN 0958-9465, 04/2014, Volume 48, pp. 91 - 97
In most cases, fiber reinforced concrete (FRC) contains only one type of fiber. The use of two or more types of fibers in a suitable combination has the... 
Hybrid composites | Toughness | Direct shear | Fiber reinforced concrete | Flexure | Steel fiber | Concrete | Cellulose fiber | Energy absorption | Strength | CARBON | CEMENT-BASED COMPOSITES | PERMEABILITY | MATERIALS SCIENCE, COMPOSITES | CONSTRUCTION & BUILDING TECHNOLOGY | SHRINKAGE | Analysis | Cellulose | Concretes | Shear | Shear tests | Fiber reinforced concretes | Mixes | Cements | Flexing | Fibers
Journal Article
Construction and Building Materials, ISSN 0950-0618, 12/2019, Volume 228, p. 116732
This study investigates the effects of the hybrid use of different types of fibres in terms of their orientations, volume and hybridisation properties on the... 
Fibre orientation | Post-cracking behaviour | Fracture behaviour | Steel fibre | Polymer fibre | Hybrid fibre reinforced concrete
Journal Article
Wear, ISSN 0043-1648, 06/2017, Volume 380-381, pp. 42 - 51
The effects of introducing glass fiber (GF) and/or carbon fiber (CF) filler materials on the friction and wear characteristics of ultra-high molecular weight... 
Surface roughness | UHMWPE | Friction and wear | Transfer film | STEEL | MATERIALS SCIENCE, MULTIDISCIPLINARY | RESISTANCE | TRIBOLOGICAL BEHAVIOR | POLYMERIC MATERIALS | ROUGHNESS | ENGINEERING, MECHANICAL | Water | Polyethylene | Tribology
Journal Article
Cement and Concrete Research, ISSN 0008-8846, 2011, Volume 41, Issue 10, pp. 1001 - 1014
Journal Article
Journal of Materials in Civil Engineering, ISSN 0899-1561, 06/2017, Volume 29, Issue 6, p. 6017005
Journal Article
Composites Part B, ISSN 1359-8368, 03/2014, Volume 58, pp. 122 - 133
For investigating the effect of fiber content on the material and interfacial bond properties of ultra high performance fiber reinforced concrete (UHPFRC),... 
B. Fracture | A. Fibers | C. Analytical modeling | Bond | DRYING SHRINKAGE | ENGINEERING, MULTIDISCIPLINARY | SLIP | TENSILE | MATERIALS SCIENCE, COMPOSITES | Fracture | FLEXURAL BEHAVIOR | STRENGTH | Analytical modeling Bond | BARS | Fibers | Steel | Analysis | Steel fibers | Cohesion | Fracture mechanics | Fiber reinforced concretes | Mathematical models | Bonding | Fracture toughness
Journal Article
Journal of Civil Engineering and Management, ISSN 1392-3730, 11/2017, Volume 23, Issue 8, pp. 1091 - 1099
Traditional fiberconcrete structures have fibres in the mix oriented in all spatial directions, distributed in the structural element volume homogenously, what... 
fiber reinforced concrete | fibers pull-out | oriented fiber distribution | fibers orientation | ENGINEERING, CIVIL | RAY COMPUTED-TOMOGRAPHY | STEEL FIBER | BEHAVIOR
Journal Article
Construction and Building Materials, ISSN 0950-0618, 02/2019, Volume 198, pp. 323 - 331
Structural concrete members subjected to tensile stresses crack due to the brittleness of the concrete. Concrete brittleness can be reduced by adding various... 
Recycled fibres | Fibre reinforced concrete | Steel fibres | Equivalent flexural strength | ENGINEERING, CIVIL | CONSTRUCTION & BUILDING TECHNOLOGY | PERFORMANCE | BEHAVIOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | STEEL-FIBER | STRESS-STRAIN CURVES | UHPFRC | Mechanical properties | Analysis | Reinforced concrete, Fiber
Journal Article
Cement and Concrete Composites, ISSN 0958-9465, 03/2017, Volume 77, pp. 29 - 48
The orientation and distribution of the fibres is decisive in the mechanical behaviour of fibre-reinforced concrete. Several classical models have extensively... 
Fibre orientation | Modelling | Fibre reinforced concrete | Polyolefin fibre | Fracture behavior | Fibre distribution | PERFORMANCE | MATERIALS SCIENCE, COMPOSITES | MECHANICAL-PROPERTIES | FLOW | CONSTRUCTION & BUILDING TECHNOLOGY | FRC | FRAMEWORK | FLEXURAL BEHAVIOR | Steel | Analysis | Concrete
Journal Article