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Elastic modulus of concrete is one of the desirable properties to predict.
The elastic modulus of concrete is one of the most important design parameters in many construction applications.
The chloride ion content along concrete depth direction, compressive strength and elastic modulus of concrete was measured with attack time.
A new micromechanical model for predicting the elastic modulus of concrete is presented and evaluated in this paper.
Furthermore, the compressive strength, rather than dynamic elastic modulus of concrete containing CRT glass, is more sensitive to sulfate attack.
The addition of ceramic fiber can significantly improve the dynamic strength and elastic modulus of concrete.
Damage evolution is detected via the degradation of modulus of concrete immersed in sulfate solution.
Because of various mix designs, the existing formulas for the elastic modulus of concrete cannot be used for recycled aggregate concrete (RAC).
Elastic modulus of concrete is one of the major mechanical properties used by civil engineers in design applications to calculate the drift and deflection of the concrete structures.
This paper presents the results of experimental investigations into the time-dependent static elastic modulus of concrete containing GGBFS.
The relationship between dynamic elastic modulus of concrete and first-order bending frequency of free slab was also obtained.
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