This paper briefly describes commonly used methods of determination of shear strength of reinforced concrete beams. Classical method, Eurocode 2 approach and most complex approach proposed by P. D. Zararis in a series of papers are depicted and compared. Experimental tests of RC beams shown in the subsequent paper (Part II) are confronted with the model predictions
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
In spite of the availability of different models proposed to predict the shear capacity of reinforce...
Safe and economical design and assessment of reinforced (RC) and prestressed concrete (PC) beams req...
Safe and economical design and assessment of reinforced (RC) and prestressed concrete (PC) beams req...
The paper presents a rational procedure for evaluating the concrete shear strength in reinforced con...
In a companion paper, shear strength models for reinforced concrete (RC) slender beams and deep bea...
The paper reports the results of a comparative analysis of the experimental shear capacity obtained ...
Application of reinforced concrete as a construction material was first found in the middle of the 1...
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
Available codes and models generally use partially modified shear design equation, developed earlier...
Current approaches for estimation of shear capacity of concrete beams reinforced with fiber-reinforc...
Due to the complex mechanism of the shear failure, most shear design equations in codes and guidelin...
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
Current approaches for estimation of shear capacity of concrete beams reinforced with fiber-reinforc...
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
In spite of the availability of different models proposed to predict the shear capacity of reinforce...
Safe and economical design and assessment of reinforced (RC) and prestressed concrete (PC) beams req...
Safe and economical design and assessment of reinforced (RC) and prestressed concrete (PC) beams req...
The paper presents a rational procedure for evaluating the concrete shear strength in reinforced con...
In a companion paper, shear strength models for reinforced concrete (RC) slender beams and deep bea...
The paper reports the results of a comparative analysis of the experimental shear capacity obtained ...
Application of reinforced concrete as a construction material was first found in the middle of the 1...
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
Available codes and models generally use partially modified shear design equation, developed earlier...
Current approaches for estimation of shear capacity of concrete beams reinforced with fiber-reinforc...
Due to the complex mechanism of the shear failure, most shear design equations in codes and guidelin...
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
Current approaches for estimation of shear capacity of concrete beams reinforced with fiber-reinforc...
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
The most well-known models for prediction of the contribution of externally bonded FRP for shear str...
In spite of the availability of different models proposed to predict the shear capacity of reinforce...