
HelloTriangle
HelloTriangle is an AI-powered platform that converts natural language prompts into reusable Python workflows for 3D modeling and simulation. It eliminates repetitive manual tasks by generating parametric geometry, simulation-ready meshes, and complete solver input files for tools like Abaqus and LS-DYNA. The platform also enables plain-language analysis of simulation results and instant sharing of interactive 3D visualizations via browser links.
- Artificial Intelligence
- AI Agents
- Data & Analytics
- Developer Tools
- Industrial Automation
- Manufacturing / Industry 4.0
- Software Only
Funding
Founders
Product
Problem
Simulation engineers and computational designers spend significant time on repetitive manual tasks such as parametric modeling, mesh generation, and geometry cleanup. These workflows often require extensive scripting knowledge and are difficult to reproduce across design variants, slowing down analysis and limiting iteration speed.
Solution
HelloTriangle turns natural language prompts into reusable Python workflows for 3D modeling and simulation, eliminating repetitive manual work. The platform generates parametric geometry and simulation-ready meshes directly from text, avoiding common CAD-to-mesh issues. Users can review, edit, and extend AI-generated Python scripts, then run, visualize, and share results instantly. The platform supports integration with industry-standard FEA and CFD solvers, and enables plain-language analysis of simulation results to highlight critical regions and compute custom metrics.
Target Audience
Primary users are simulation engineers, computational designers, and 3D printing engineers who need to accelerate parametric modeling, mesh generation, and simulation result analysis workflows.
Features
- AI-powered conversion of natural language prompts into executable Python scripts for 3D modeling and simulation
- Parametric mesh generation from beam and shell elements to full volume meshes, bypassing CAD-to-mesh complications
- Automated STL repair, remeshing into uniform triangle or quadrilateral meshes, and volume mesh generation for FEA/CFD preparation
- Definition of sets, boundary conditions, and export of complete solver input files for Abaqus and LS-DYNA
- Plain-language querying of simulation results to identify critical stress/strain regions and compute custom metrics
- One-click sharing of interactive 3D visualizations via browser links for collaborative exploration