In this tutorial, the simulation of steel beam-open leg column joints under cyclic loading in Abaqus has been done. Steel structure columns are vertical members in a steel structure that support the load-bearing beams and other structural elements above. They are typically made of high-strength steel and come in various ...
Read More »Simulation cyclic loading of a steel beam-column joint with welded steel angle and stiffeners in Abaqus
In this tutorial, the Simulation cyclic loading of a steel beam-column joint with welded steel angle and stiffeners in Abaqus. Box column, steel beam angles, and stiffeners are modeled as the three-dimensional solid part. If a structural steel member is subjected to a cyclically varying load of sufficient amplitude it ...
Read More »Simulation of cyclic loading of a steel beam reinforced with epoxy and CFRP in Abaqus
In this tutorial, the Simulation of cyclic loading of a steel beam reinforced with epoxy and CFRP in Abaqus has been done. The steel beam is modeled as a three-dimensional shell part. The epoxy and CFRP are modeled as three-dimensional solid parts. You can see a figure of the assembled ...
Read More »Simulation cyclic loading of a steel beam-column joint filled with the UHPC and welded stiffeners in Abaqus
In this tutorial, the Simulation cyclic loading of a steel beam-column joint filled with the UHPC and welded stiffeners in Abaqus has been done. The Ultra-High-Performance-Concrete is modeled as a three-dimensional solid part. The steel beam and column are modeled as three-dimensional shell parts. The stiffeners are modeled as three-dimensional ...
Read More »Simulation cyclic loading of a steel beam embedded in a concrete block in Abaqus
In this tutorial, the Simulation cyclic loading of a steel beam embedded in a concrete block in Abaqus has been done. The steel beam (or column) is modeled as a three-dimensional shell part. The concrete block is modeled as a three-dimensional solid part. The half of the steel beam is ...
Read More »Simulation cyclic loading of a composite Column(UHPC + Steel box) in Abaqus
In this tutorial, the Simulation cyclic loading of a composite Column(UHPC + Steel box) in Abaqus has been studied. The Ultra-High-Performance Concrete column is modeled as a three-dimensional solid part. The steel box cover is modeled as a three-dimensional shell part. You can see a figure of the assembled parts ...
Read More »Simulation cyclic loading over an Ultra-High-Performance-Fiber-Reinforcement Concrete column in Abaqus
In this tutorial, the Simulation cyclic loading over a Ultra-High-Performance-Fiber-Reinforcement Concrete column in Abaqus has been studied. The UHPFRC column is modeled as a three-dimensional solid part. You can see a figure of the assembled part below Ultra-high performance fiber reinforced concrete (UHPFRC) is a special type of concrete produced ...
Read More »Simulation Ultra High Performance Concrete beam-column joint under cyclic loading in Abaqus
In this tutorial, the Simulation Ultra High Performance Concrete beam-column joint under cyclic loading in Abaqus has been investigated. The UHPC beam-column joint is modeled as a three-dimensional solid part. The steel bars and strips are modeled as three-dimensional wire part. You can see a figure of the assembled parts ...
Read More »Simulation cyclic loading of the steel beam-column structure and damage investigation in Abaqus
In this tutorial, the Simulation cyclic loading of the steel beam-column structure and damage investigation in Abaqus has been investigated. The beam is modeled as a three-dimensional shell part and two steel columns are modeled as three-dimensional shell part. You can see a figure of the assembled parts below To ...
Read More »Simulation cyclic loading over steel beam column structure reinforced with CFRP in Abaqus
In this tutorial, Simulation cyclic loading over the steel beam-column structure reinforced with CFRP in Abaqus has been investigated. The steel beam and column are modeled as a three-dimensional shell part. The CFRP plates are modeled as a planar shell part. You can see a figure of the assembled parts ...
Read More »Simulation cyclic loading over steel beam column with steel angle and gusset in Abaqus
In this tutorial, Simulation cyclic loading over steel beam-column with steel angle and gusset in Abaqus has been investigated. The steel beam and box column are modeled as a three-dimensional shell part. The steel angle and gusset are modeled as a three-dimensional solid part. You can see a figure of ...
Read More »Simulation cyclic loading of the reduce beam section-column with stiffener in Abaqus
In this tutorial, Simulation cyclic loading of the reduce beam section-column with a stiffener in Abaqus has been investigated. The RBS part is modeled as a three-dimensional shell part, the box column, and the stiffener is modeled as three-dimensional shell parts. You can see a figure of the assembled parts ...
Read More »Simulation composite column (steel beam and concrete) under cyclic loading in Abaqus
In this tutorial, the simulation composite column(steel beam and concrete)under cyclic loading in Abaqus has been studied. The steel beam and the concrete parts are modeled as three-dimensional solid parts. You can see a figure of the assembled parts at below The steel material is used for the steel beam ...
Read More »Simulation steel beam-column connection with steel angle under cyclic loading in Abaqus
In this tutorial Simulation steel beam-column connection with steel angle under cyclic loading in Abaqus has been investigated. The beam and column are modeled as three-dimensional shell parts and the steel angle is modeled as a three-dimensional shell part. You can see a figure of the assembled parts at below ...
Read More »Simulation cyclic loading over a steel column with stiffeners in Abaqus-Damage investigation
In this tutorial, Simulation cyclic loading over a steel column with stiffeners in Abaqus-Damage investigation- has been studied. The box column is modeled as a three-dimensional shell part and the stiffener is modeled as a planar shell part. You can see a figure of assembled part at below The stiffeners ...
Read More »