Comparing experimental results of the shear capacity of steel fiber-reinforced concrete (SFRC) beams without stirrups to the capacity predicted using current design equations and other available formulations shows that predicting the shear capacity of SFRC beams without mild steel shear reinforcement is still difficult. The reason for this difficulty is the complex mechanics of the problem, where the steel fibers affect the different shear-carrying mechanisms. Since this problem is still not fully understood, we propose the use of artificial intelligence (AI) to derive an expression based on the available experimental data. We used a database of 430 datapoints obtained from the literature. The outcome is an artificial neural network-based e...
The use of high-strength concrete (HSC) has significantly increased over the last decade, especially...
An artificial neural network (ANN) model was developed using past experimental data on shear failure...
An artificial neural network model is developed to predict the shear capacity of reinforced concrete...
Comparing experimental results of the shear capacity of steel fiber-reinforced concrete (SFRC) beams...
Comparing experimental results on the shear capacity of steel fiber-reinforced concrete (SFRC) beams...
The assessment of shear behavior in SFRC beams is a complex problem that depends on several paramete...
Abstract In this paper, an artificial neural network (ANN-10) model was developed to predict the ult...
To calculate the shear capacity of concrete beams reinforced with fibre-reinforced polymer (FRP), cu...
The use of steel fibers for concrete reinforcement has been growing in recent years owing to the imp...
The main objective of this paper is to develop new design formulations for determining shear stress ...
The shear strength prediction of fiber-reinforced polymer- (FRP-) reinforced concrete beams is one o...
In recent years, numerous experimental tests were done on the concrete beams reinforced with the fib...
In this paper, an extensive simulation program is conducted to find out the optimal ANN model to pre...
An artificial neural network model is developed to predict the shear capacity of reinforced concrete...
© 2005 EUCENTRE. All rights reserved. An artificial neural network (ANN) model was developed using p...
The use of high-strength concrete (HSC) has significantly increased over the last decade, especially...
An artificial neural network (ANN) model was developed using past experimental data on shear failure...
An artificial neural network model is developed to predict the shear capacity of reinforced concrete...
Comparing experimental results of the shear capacity of steel fiber-reinforced concrete (SFRC) beams...
Comparing experimental results on the shear capacity of steel fiber-reinforced concrete (SFRC) beams...
The assessment of shear behavior in SFRC beams is a complex problem that depends on several paramete...
Abstract In this paper, an artificial neural network (ANN-10) model was developed to predict the ult...
To calculate the shear capacity of concrete beams reinforced with fibre-reinforced polymer (FRP), cu...
The use of steel fibers for concrete reinforcement has been growing in recent years owing to the imp...
The main objective of this paper is to develop new design formulations for determining shear stress ...
The shear strength prediction of fiber-reinforced polymer- (FRP-) reinforced concrete beams is one o...
In recent years, numerous experimental tests were done on the concrete beams reinforced with the fib...
In this paper, an extensive simulation program is conducted to find out the optimal ANN model to pre...
An artificial neural network model is developed to predict the shear capacity of reinforced concrete...
© 2005 EUCENTRE. All rights reserved. An artificial neural network (ANN) model was developed using p...
The use of high-strength concrete (HSC) has significantly increased over the last decade, especially...
An artificial neural network (ANN) model was developed using past experimental data on shear failure...
An artificial neural network model is developed to predict the shear capacity of reinforced concrete...