Optimization in ABAQUS Analysis

(4 customer reviews)

 51.0

This tutorial teaches how optimize topology of a model in ABAQUS. Structural optimization is an iterative process that helps to improve designs and produce parts and components that are lightweight, strong and long-lasting.

Topology optimization begins with an initial design, which is assumed to be the maximum physical extent of the component, and determines a new material distribution by changing the density and the stiffness of the elements in the initial design while continuing to satisfy the optimization constraints. In this package different workshops to implement topology optimization are used.

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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

60 Minutes

language

English

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Applicable to all versions

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English

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optimization analysis ABAQUS + Linking ABAQUS with MATLAB for BESO Topology Optimization + Abaqus topology optimization +
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Description

Analysis of optimization  in ABAQUS

Analysis of optimization in ABAQUS is a tool for improving the development procedure by adding value to a designer’s experience and insight with an automated process.  The result of a well-designed structural optimization is a component that is lightweight, strong, and stable. Topology optimization (Topology Optimization – removes volume to find more efficient topologies) is a new and developing field of structural mechanics. It has become a powerful tool in computer-aided engineering, for the reason that it helps designers to gain intuition into alternative topological possibilities other than size and shape.

This tutorial presents a simple example of optimization module usage. In the first workshop, It’s a steel bridge with a Static-general procedure type. Running the problem in two ways (with and without optimization) performed to have a comparison between the two designs. Freezing load and boundary conditions implemented during the optimization process to find the best design.

In the second workshop, a stool model is optimized based on strain energy as a single-term design response and also volume as another design response. Volume reduction is restricted to 80% of the initial volume.

In the third workshop, a bending machine sheet is optimized based on strain energy and volume as two single-term design responses.

To more about optimization, the training package will be available via this link. You can also find some information about the optimization in ABAQUS documentation.

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

You can watch demo here.

  • Problem Description
  • How to model the bridge
  • How to run an optimization task in Abaqus
  • Problem Description
  • How to model the stool
  • How to run an optimization task in Abaqus
  • Problem Description
  • How to model the plate
  • How to run an optimization task in Abaqus
  • How to define frozen area for reference points
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Abaqus tutorial video
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Abaqus workshop files
Contains all required files
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Works for all Abaqus versions
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4 reviews for Optimization in ABAQUS Analysis

  1. Avatar of hakim haddad

    hakim haddad

    Very Nice case studies for learning optimization. I have a question? can I use Matlab to optimize my model?

    • Avatar of Experts of CAE Assistant Group

      Experts of CAE Assistant Group

      Yes. It is possible. You can use Matlab tools like Genetic algorithms to optimize the model. The “Linking ABAQUS and MATLAB” may help you.

  2. Avatar of Alina Sidorov

    Alina Sidorov

    It was great for practice. I also need some background theories of optimization in Abaqus. How can I find it?

  3. Avatar of Gang

    Gang

    This package has high performance price ratio.

    • Avatar of Experts Of CAE Assistant Group

      Experts Of CAE Assistant Group

      It seems good feedback for costumers to make suitable decision

  4. Avatar of Anouk

    Anouk

    What are the commonly used optimization algorithms in topology optimization within ABAQUS, and how can these algorithms be employed to achieve an optimal distribution of materials and stiffness in order to reduce the weight of components while enhancing their strength?

    • Avatar of Experts Of CAE Assistant Group

      Experts Of CAE Assistant Group

      Please watch the package carefully. It has been explained completely in the package.

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