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Reinforced Concrete Structures under Cyclic Loading

Reinforced Concrete Structures under Cyclic Loading PDF Author: Farhad Aslani
Publisher: Trans Tech Publications Ltd
ISBN: 3038267236
Category : Technology & Engineering
Languages : en
Pages : 284

Book Description
Experimental programs in laboratories give real results to identify nonlinear behavior of reinforced concrete (RC) structures but they are limited to knowledge of particular cases under restricted structural dimensions, sizes, shapes, loading and boundary conditions but the computational simulation approach has no limit to its application. Constitutive models are developed to simulate the dynamic nonlinear response of concrete and steel reinforcement subjected to cyclic loading varying randomly in magnitude. The behavior of structural concrete under monotonic loading is affected by important material aspects including cracking, crushing, tension stiffening, compression softening and bond slip. Reversed cyclic loading introduces further complexities such as stiffness degradation in concrete and the Bauschinger effect in reinforcing steel. In this research the validity and reliability of some proposed constitutive models for concrete considering general loading i.e. cyclic, monotonic, partial, common point and transition loading are evaluated. Amongst many existing constitutive models, because of their simplicity and common usage in the finite element analysis of RC structures, only some common proposed models based on nonlinear elasticity-based approach are investigated. These models are verified against experimental data available in the literature and the results are discussed. In this study, also, a hysteretic stress–strain model is developed for unconfined concrete with the intention of providing efficient modeling for the structural behavior of concrete in seismic regions. The proposed model is based on the findings of previous experimental and analytical studies. The model for concrete subjected to monotonic and cyclic loading, comprises four components in compression and tension; an envelope curve (for monotonic and cyclic loading), an unloading curve, a reloading curve, and transition curve. Also presented are formulations for partial unloading and partial reloading curves. The proposed Constitutive model reliability is investigated by RC members non-linear finite element analysis (FEM) using by finite element software ABAQUS. Comparisons with test results showed that the proposed model provides a good fit to a wide range of experimentally established hysteresis loops.

Reinforced Concrete Structures under Cyclic Loading

Reinforced Concrete Structures under Cyclic Loading PDF Author: Farhad Aslani
Publisher: Trans Tech Publications Ltd
ISBN: 3038267236
Category : Technology & Engineering
Languages : en
Pages : 284

Book Description
Experimental programs in laboratories give real results to identify nonlinear behavior of reinforced concrete (RC) structures but they are limited to knowledge of particular cases under restricted structural dimensions, sizes, shapes, loading and boundary conditions but the computational simulation approach has no limit to its application. Constitutive models are developed to simulate the dynamic nonlinear response of concrete and steel reinforcement subjected to cyclic loading varying randomly in magnitude. The behavior of structural concrete under monotonic loading is affected by important material aspects including cracking, crushing, tension stiffening, compression softening and bond slip. Reversed cyclic loading introduces further complexities such as stiffness degradation in concrete and the Bauschinger effect in reinforcing steel. In this research the validity and reliability of some proposed constitutive models for concrete considering general loading i.e. cyclic, monotonic, partial, common point and transition loading are evaluated. Amongst many existing constitutive models, because of their simplicity and common usage in the finite element analysis of RC structures, only some common proposed models based on nonlinear elasticity-based approach are investigated. These models are verified against experimental data available in the literature and the results are discussed. In this study, also, a hysteretic stress–strain model is developed for unconfined concrete with the intention of providing efficient modeling for the structural behavior of concrete in seismic regions. The proposed model is based on the findings of previous experimental and analytical studies. The model for concrete subjected to monotonic and cyclic loading, comprises four components in compression and tension; an envelope curve (for monotonic and cyclic loading), an unloading curve, a reloading curve, and transition curve. Also presented are formulations for partial unloading and partial reloading curves. The proposed Constitutive model reliability is investigated by RC members non-linear finite element analysis (FEM) using by finite element software ABAQUS. Comparisons with test results showed that the proposed model provides a good fit to a wide range of experimentally established hysteresis loops.

A Contribution to the Analysis of Concrete Structures Under Cyclic Loading

A Contribution to the Analysis of Concrete Structures Under Cyclic Loading PDF Author: Richard Wayne Litton
Publisher:
ISBN:
Category :
Languages : en
Pages : 318

Book Description


Strain Development in Concrete Under Cyclic Loading

Strain Development in Concrete Under Cyclic Loading PDF Author: Marek Foglar
Publisher: LAP Lambert Academic Publishing
ISBN: 9783838350936
Category :
Languages : en
Pages : 128

Book Description
Fatigue is a process of permanent progressive changes in the structure of a material exposed to cyclic loading. High stress ranges in structures like bridges or crane-ways can result into accelerated crack propagation, higher deflections, structural stiffness reduction and consequently into fatigue failure. Bridge decks with damaged or missing insulation, crane-ways in industrial environment, bridge piers adjacent to roads maintained with the use of de-icing salts, maritime structures subjected to wave impact load cycles or cyclic loaded foundations of industrial machinery are exposed to cyclic loading and deteriorative solutions at the same time. In this text, the state-of-art in the field of fatigue of concrete structures is presented together with a brief introduction to deterioration of concrete. On hand of this information a way of describing the strain development under cyclic loading - the fatigue damage function - is proposed and experimentally verified on pre-stressed and reinforced concrete specimens. The way of incorporating the effect of material deterioration in this approach is shown.

Investigation of Reinforced Concrete Beam-column Joints Under Reversed Cyclic Loading

Investigation of Reinforced Concrete Beam-column Joints Under Reversed Cyclic Loading PDF Author: Aly Marei Said
Publisher:
ISBN:
Category :
Languages : en
Pages : 434

Book Description


Behavior and analysis of reinforced concrete structures under alternate actions inducing inelastic response

Behavior and analysis of reinforced concrete structures under alternate actions inducing inelastic response PDF Author: FIB – International Federation for Structural Concrete
Publisher: FIB - International Federation for Structural Concrete
ISBN: 2883940150
Category : Technology & Engineering
Languages : en
Pages : 312

Book Description


RC Elements Under Cyclic Loading

RC Elements Under Cyclic Loading PDF Author: Comité euro-international du béton
Publisher: Thomas Telford
ISBN: 9780727720863
Category : Technology & Engineering
Languages : en
Pages : 214

Book Description
This text provides a review of relevant knowledge in the area of constitutive modelling of concrete steel bonds and their interaction. It discusses the problems encountered in assembling the various elements with the purpose of constructing the model of an element made of reinforced concrete. Whether physically or empirically based, very simple or sophisticated, long-established or brand new, the models presented in this book are produced in as rational a framework as possible, and are accompanied by comments on their advantages and limitations.

Testing of 3-D Shear Wall Under Cyclic Loading

Testing of 3-D Shear Wall Under Cyclic Loading PDF Author: Daniel Palermo
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Behaviour of Reinforced Concrete Under Cyclic Loading

Behaviour of Reinforced Concrete Under Cyclic Loading PDF Author: Kardiyono Tjokrodimuljo
Publisher:
ISBN:
Category : Earthquake engineering
Languages : en
Pages : 193

Book Description


Durability of Concrete Structures and Constructions

Durability of Concrete Structures and Constructions PDF Author: L.M. Poukhonto
Publisher: CRC Press
ISBN: 9789058092298
Category : Technology & Engineering
Languages : en
Pages : 430

Book Description
Contents: General principles of durability design of reinforced concrete structures: State of the art; Structural features of engineering installations for storage of dry materials and liquids; Analysis of defects and damages in reinforced concrete silos, bunkers, and reservoirs in service; Analysis of main degradation processes in concrete and reinforced concrete structures of engineering installations; Analysis of models of durability for the main degradation processes in concrete and reinforcement ; Investigation of statistical parameters of operational loads in engineering structures; Experimental and theoretical investigation of strength of reinforced concrete members of engineering structures under sustained low-cycle loading; Durability design of reinforced concrete structures of engineering installations based on the Limit State Method; Application of Finite Element Method in numerical investigation of durability of reinforced concrete silos; Practical methods of enhancing durability of reinforced concrete structures of engineering installations service; Conclusion; Index.

Strain-Hardening Cement-Based Composites

Strain-Hardening Cement-Based Composites PDF Author: Viktor Mechtcherine
Publisher: Springer
ISBN: 9402411941
Category : Technology & Engineering
Languages : en
Pages : 811

Book Description
This is the proceedings of the 4th International Conference on Strain-Hardening Cement-Based Composites (SHCC4), that was held at the Technische Universität Dresden, Germany from 18 to 20 September 2017. The conference focused on advanced fiber-reinforced concrete materials such as strain-hardening cement-based composites (SHCC), textile-reinforced concrete (TRC) and high-performance fiber-reinforced cement-based composites (HPFRCC). All these new materials exhibit pseudo-ductile behavior resulting from the formation of multiple, fine cracks when subject to tensile loading. The use of such types of fiber-reinforced concrete could revolutionize the planning, development, dimensioning, structural and architectural design, construction of new and strengthening and repair of existing buildings and structures in many areas of application. The SHCC4 Conference was the follow-up of three previous successful international events in Stellenbosch, South Africa in 2009, Rio de Janeiro, Brazil in 2011, and Dordrecht, The Netherlands in 2014.