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خانه / Abaqus tutorial videos / Abaqus advanced tutorials / Simulation steel concrete composite column under vertical and horizontal load in Abaqus

Simulation steel concrete composite column under vertical and horizontal load in Abaqus

In this tutorial Simulation steel concrete composite column under vertical and horizontal load in Abaqus has been investigated. Steel-concrete composite columns are new composite members. They are widely used due to  their high load-bearing capacity, full usage of materials, high stiffness and ductility and large  energy absorption capacity as pointed out by researcher.Combining reinforced concrete (RC) and structural steel sections provides several advantages  over traditional reinforced concrete and steel members. The concrete provides fire resistance  to the steel section and restrains the steel member from buckling .Applying steel-concrete composite columns has a beneficial impact on the course and values of concrete  strains in relation to reinforced concrete columns.However, SRC columns require  longitudinal and transverse reinforcement to prevent the concrete from spalling while being  subjected to axial load, fire, or an earthquake

The concrete column and steel beam as core are modeled as three dimensional part, the bar as wire and pusher plate as rigid . You can see figures of assembled parts at below

Elastic plastic material with ductile damage criterion is used for steel members and Concrete Damage Plasticity or CDP model is used for concrete column. In this tutorial general static and dynamic explicit procedure are used separately and the result of the compared at the end of simulations. The contact between concrete and steel beam is assumed as perfect contact and bars embedded in the concrete host. Vertical concentrated  force is applied to the top surface of column and pressure load is applied to the side surface of concrete. After the two static and dynamic simulation all results such as stress,strain,damage,displacement and force diagram can be achieve . You can see some figures of these two simulation at below

You can provide CAE ,INP,and English video files of this simulation here. The cost of these files is Twenty-Six Euros. you can click on the bellow bottom to beginning process

You can purchase the tutorial through a PayPal account, a Visa, or a Master card,  just before payment,send me an email to this address: karampourp@gmail.com

 

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