ANSYS Impact Strength Simulation
Budget: ₹600 – ₹1,500 INR
I’ll supply the STL/STEP files and exact dimensions of the part; your task is to set up and run a high-fidelity impact test in ANSYS Workbench that captures how the piece behaves when printed at 70 % infill. Any of the three patterns—gyroid, concentric, or trihexagonal—can be applied, and I’m happy to settle on the one that delivers the most reliable results once we talk through practical meshing and solver considerations.
Material data are still open for discussion. If you have a proven dataset for common printable polymers or a recommendation on how to derive accurate density, modulus, and fracture values, please outline that approach so we can lock it in before you begin.
Deliverables I need:
• Fully set-up Workbench project file with all boundary conditions, contacts, and material definitions
• Brief, clear report (PDF or Word) summarising peak impact force, energy absorption, deformation profile, and any failure predictions
• High-resolution plots/animations that visualise stress waves and displacement over time
I’ll be on hand to answer questions quickly, so feel free to request any clarifications on geometry, impact velocity, or post-processing preferences before you hit run.
Material data are still open for discussion. If you have a proven dataset for common printable polymers or a recommendation on how to derive accurate density, modulus, and fracture values, please outline that approach so we can lock it in before you begin.
Deliverables I need:
• Fully set-up Workbench project file with all boundary conditions, contacts, and material definitions
• Brief, clear report (PDF or Word) summarising peak impact force, energy absorption, deformation profile, and any failure predictions
• High-resolution plots/animations that visualise stress waves and displacement over time
I’ll be on hand to answer questions quickly, so feel free to request any clarifications on geometry, impact velocity, or post-processing preferences before you hit run.