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Beyond this value as the percentage of FA increased the shear strength decreased but the increase in BA content increase the strength of mixture further.
Based on the investigation, a simple 0.5 power relationship between compressive strength and splitting tensile strength of mixture S2, meanwhile, there was an exponential relationship between mechanical performance and permeability or porosity, respectively.
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Compressive strength development, modulus of elasticity and splitting tensile strength of mixtures were also studied.
However, the compressive strength of mixtures containing zeolite remains low compared to control mixture.
The compressive strength of mixtures B23, B25 and B27 (dosage of raw BA) was 69 % lower than that of the reference mixture (R2).
The 28 days compressive strength of mixtures produced by CCA of 10%% replacement decreased by 41%% compared to the control mixture.
The 28 days compressive strength of mixtures produced by 5 and 30%% of cement replacement by CCA decreased from 35.9 to 82.8 %, compared to the control mixture, respectively.
The 28 days compressive strength of mixtures containing 30%% replacement of olive's seed ash showed a 75%% decrease compared to the control mixture.
The compressive strength of mixtures containing olive's seed ash showed by 45 and 75%% decrease compared to the control mixtures.
Furthermore, three different curing methods were applied to evaluate the mechanism of latex effect on compressive strength of mixtures.
Based on fracture mechanic, Dissipated Creep Strain Energy (DCSE) was calculated for each sample, and fatigue strength of mixtures were investigated.
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