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Titlebook: High Performance Fiber Reinforced Cement Composites 6; HPFRCC 6 Gustavo J. Parra-Montesinos,Hans W. Reinhardt,A. E Book 2012 Springer Scien

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Strength Dependent Tensile Behavior of Strain Hardening Fiber Reinforced Concreteved performance when the matrix strength was increased, T- fibers take better advantage of higher strength matrices. A post-cracking tensile strength exceeding 15 MPa at a peak strain of 0.5% was achieved by using 2% T- fibers with an ultra-high strength matrix (M4).
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Tailoring SHCC Made of Steel Cords and Plastic Fibersated. It should be considered as the minimum amount of steel cords which can lead to the formation of multiple cracking and strain hardening under tensile actions. The aim of the present paper is to reduce such volume as much as possible, in order to improve the workability and reduce the final cost of SHCC.
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An Investigation of Mechanical Properties of Jute Fiber-Reinforced Concrete of fiber content, which indicated the jute fiber in HFC should limited for maintain the HFC characteristics. Also the effect of jute fiber in HFC increased its compressive and splitting tensile strength significantly when compared to those of NSC while the flexural strength was not significantly different compared to NSC.
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D. J. Kim,K. Wille,A. E. Naaman,S. El-Tawilcy makers. From its initial development, the input–output model has continuously evolved to incorporate more complex situations in a systematic manner. This includes integrating other biological, physical and social models into the input–output framework, developing dynamic models, and incorporating
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