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This chapter reviews the fatigue behavior of high performance concrete using the comparative analysis method.
The effect of these admixtures on rheological behavior of high performance concrete have been investigated and presented in this paper.
The paper presents an experimental study of behavior of high performance concrete (HPC) columns under monotonic concentric loading.
A new formulation to model the mechanical behavior of high performance fiber reinforced cement composites with arbitrarily oriented short fibers is presented.
This paper presents the results of an experimental study on the punching shear behavior of high performance steel fiber reinforced concrete (HPFRC) slabs without shear reinforcement, particularly considering the effect of fiber orientation.
In this paper, experimental investigations were carried out on the behavior of high performance concrete intended for a concrete tank to store hot water at temperature above 100 °C.
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The present study investigated experimentally autogenous shrinkage behaviors of high performance concrete (HPC) containing fly ash (FA) and blast-furnace slag (BS) exposed to different isothermal temperatures.
An experimental investigation was carried out to investigate the effect of solid concentration, HRWR cement combinations, and shear rate regime on pseudoplastic behavior of high-performance cement grouts.
This study investigated the effects of fiber type and matrix strength on the fiber pullout behavior of high-performance fiber-reinforced cementitious composites (HPFRCC).
An experimental investigation was carried out to evaluate the effect of w/c, HRWR cement combinations, and supplementary cementitious materials (SCM) on the pseudoplastic behavior of high-performance cement grouts.
This study experimentally investigated the effects of the reinforcing bar configuration on the shrinkage behavior of high-performance concrete (HPC), including the restrained shrinkage strain, shrinkage gradient, restrained stress, and cracking potential.
More suggestions(16)
behavior of high temperature
behavior of high viscosity
behavior of high power
behavior of high modulus
behavior of high aspect
behavior of high purity
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behavior of high aluminum
behavior of high school
behavior of high velocity
behavior of predictive performance
behavior of high immobilization
behavior of high Nb
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