Use Claude Code to control Abaqus for modeling, simulation runs, and result extraction.
Copy the install command and let the AI configure it · recommended for beginners
No copy-paste install info for "Abaqus MCP Server" yet — see the docs or source repo.
Create an Abaqus model for a 2D tensile plate with a circular hole, including material, boundary conditions, and mesh, and explain what parts and steps you will create.
A modeling plan is returned, along with the corresponding Abaqus model structure or script.
Submit the current Abaqus model as an analysis job and continuously monitor the log; if errors appear, summarize the key messages.
The tool returns job submission status, run progress, and key error or completion messages from the log.
Extract the maximum displacement and key stress results from a completed ODB file, and organize them by step and frame.
A structured result summary is produced, including extracted displacement, stress, and other simulation outputs.
Researchers or engineering developers can use it when they need to quickly build Abaqus models, letting Claude Code automate model generation and setup. This reduces manual work and speeds up simulation preparation.
When users need to run Abaqus analyses and check execution status, this tool can submit jobs and monitor logs. It is useful for catching errors early or confirming successful completion.
After an analysis is finished, users can use it to extract result data from ODB files, such as displacement or stress information. This helps organize key outputs more efficiently for further analysis.
It is an MCP tool that lets Claude Code interact with Abaqus finite element software. Its stated capabilities include model generation, job submission, log monitoring, and result extraction from ODB files.
Based on the provided description, it can handle modeling, submitting analysis jobs, monitoring run logs, and reading ODB results. For more details, see the source repository.
From the available material, we can only confirm that it is designed for interaction between Abaqus and Claude Code. Specific installation steps, runtime requirements, or licensing details are not provided; see the source repository.
Control Abaqus via MCP for scripting, simulation jobs, and FEA automation.
Connect Claude to Civil 3D for automated drafting and model editing.
Connect AI to Ansys tools for simulation setup, solving, and result analysis.
Compile, run, and diagnose COMSOL Java model scripts in batch workflows.
Control ETABS through Claude for model creation and engineering checks.
Connect AI to SAP for searching, editing, and activating ABAP objects.