Behavior of thin-walled dodecagonal section double skin concrete-filled steel tubes under bending

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Duration: 29m
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level:Intermediate

Behavior of thin-walled dodecagonal section double skin concrete-filled steel tubes under bending

Course Content

Simulation Files

  • Tutorial Video
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  • Modeling Files

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Who this product is for :

  • Civil Engineers
  • Engineering students

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Simulation Files

  • Tutorial Video
    00:00
  • Modeling Files

Student Ratings & Reviews

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Description

Papers abstract:

The behavior of thin-walled dodecagonal section double-skin concrete-filled steel tubes under bending was studied in this paper. Both experimental investigation and finite element analysis (FEA) were carried out. A total of seven specimens were tested with a beam length of 2000 mm. The width-to-thickness ratio of the outer steel tube ranged from 75 to 133. The load–displacement curves, failure mode, and ultimate capacity of test specimens were obtained. A finite element model was developed for the thin-walled dodecagonal section double-skin concrete-filled steel tube subjected to bending. The FEA results were verified against the test results, and a parametric study was conducted using the verified model. In addition, the suitability of Han’s method, Uenaka’s method, and the proposed method for thin-walled circular section double-skin concrete-filled steel tubes subjected to bending was also evaluated.

 

Product Overview:
This tutorial provides a step-by-step guide for simulating the bending behavior of dodecagonal double skin concrete-filled steel tubes (CFDST) using Abaqus. The model replicates the experimental and numerical study from the referenced ISI paper, ensuring accuracy and practical applicability. Key simulation steps include:

  • Creation of dodecagonal cross-sections for outer/inner steel tubes and concrete core.
  • Assignment of material properties (concrete damage plasticity, ductile steel).
  • Application of boundary conditions (encastre support, displacement-controlled loading).
  • Tie constraints for concrete-steel interaction (alternative: frictional contact).
  • Static and explicit dynamic analyses for quasi-static and nonlinear failure simulation.
  • Post-processing to extract force-displacement curves, stress distribution, and damage evolution

 

In this tutorial, the bending response of CFDST beams is simulated, according to data from the work of Chen et al.

More information

  • This product bridges theoretical research and practical FEA application, offering a validated model for engineers studying composite structures. The tutorial emphasizes material modeling, mesh refinement, and analysis selection to replicate real-world behavior. By comparing results with the ISI paper, users gain confidence in applying the methodology to similar projects.

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Material Includes

  • Package Includes the following items:
  • Simulation files:
  • Abaqus files (The INP files are applicable to all versions):
  • CAE
  • INP
  • JNL
  • Instructional video:
  • Concise 29-minute guide to model setup and outputs for dodecagonal CFDST bending analysis simulation.

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