Concrete reinforcement and column beam joint structures in ABAQUS

 225.0

Today, modeling structures with concrete, reinforcements, as well as beam and column joints are of great importance. This training package presents theories as well as various points of simulation of these structures.

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.inps,video files, Fortran files (if available), Flowchart file (if available), Python files (if available), Pdf files (if available)

Tutorial video duration

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language

English

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Applicable to all versions

Subtitle

English

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Concrete reinforcement and column beam joint structures in ABAQUS-Pack + Abaqus for beginners | Abaqus tutorial for civil engineering
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Description

Concrete reinforcement and column beam joint structures in ABAQUS

Today, modeling structures with concrete, reinforcements, as well as beam and column joints are of great importance. This training package presents theories as well as various points of simulation of these structures. These points related to how to model the geometry of these structures, the theory and implementation of concrete plasticity, concrete damage, and different types of simulation methods, and plot the hysteresis curve, and so on.

  • What do we learn from this package?
  • Teaching plan and Prerequisites and Next steps
  • Package specification

You can watch demo here.

  • Concrete damage plasticity in tension and how to apply it
  • Concrete damage plasticity in compression and how to apply it
  • Required outputs for CDP
  • How to embed beam in concrete box
  • How to view result of concrete damage
  • Plot Force vs displacement in FRP
  • Ductile damage initiation for metals
  • Ductile damage evolution for metals
  • Introduction to Hashin damage initiation for composites
  • Progressive damage for Composites
  • Concrete damage plasticity in tension and how to apply it
  • Concrete damage plasticity in compression and how to apply it
  • Required outputs for CDP
  • How to define composite materials in lamina type
  • How to define Hashin damage evolution for composites
  • How to define isotropic hardening plasticity for metals
  • How to define damage
  • How to create section profile for beam
  • How to define customized coordinate system
  • How to pattern in assembly module
  • What is the settings for outputs of different material types(Concretes, metals, composites)
  • How to embed beam in concrete box
  • How to view result of concrete damage /ductile damage/Hashin damage
  • Plot Force vs displacement in FRP
  • This workshop explains modeling reinforced beam-column (with bar and composite) FRP. All the concepts and related theories will be discussed at the beginning of the lesson. Concentrated concepts in this lesson are listed below: damage and continuum damage, ductile damage of metals, Hashin damage initiation and progressive damage based on energy method for composites, concrete definition, elastic properties, concrete plastic properties definition, and its behavior in tensile and compression and, progressive damage behavior in tensile and pressure of the concrete. Outputs of this workshop are listed below: investigating different stress and strain fields, displacement, and also investigating damage initiation in metals, composites and, concretes.
  • How to import part separately from AutoCAD software to Abaqus
  • Concrete damage plasticity (CDP) definition
  • Apply load and bandary conditions
  • Using MPC to define appropriate conditions between concrete and stirrups and RPs.
  • Solving convergency problem in Abaqus srandard solver
  • Mesh convergency
  • Plot hysteresis curve
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Features

Abaqus tutorial video
Lecture notes
Abaqus workshop files
Contains all required files
Certification
Works for all Abaqus versions
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Free 24/7 online mentoring
Access for life
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Time-Saving Short But Full
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Prepared by High-Level Researchers
Fortran Abaqus subroutines
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