Nonlinear Dental Implant FEM Study
Budget: €250 – €750 EUR
I’m looking for a complete, non-linear finite-element analysis that compares several dental-implant geometries placed at different positions within a jaw-bone and prosthesis assembly. My only real goal is to clearly visualise how stresses distribute through both the implant (titanium or another artificial alloy) and the surrounding bone once a realistic, static bite load is applied.
Here’s what I already have:
• CAD files for each implant variant (three to five in total) as well as the crown and bone segment, along with the elastic-plastic material data for cortical and cancellous bone.
• Pre-defined static loading cases — an axial bite force and an oblique force.
Here’s what I need you to do:
• Build a contact-rich, fully non-linear FE model for every implant-position combination.
• Run the simulations and extract von Mises, principal-stress and micro-strain maps for both the bone and the implant.
• Document your mesh strategy, convergence checks, boundary conditions and key findings in a concise report.
• Package all native files so I can rerun or tweak the study later (ANSYS Workbench, Abaqus or COMSOL are all acceptable).
Nothing about the geometry is overly complex, so turnaround should be straightforward. I’d like to review one pilot case first to confirm the workflow, then let you process the remaining variants. Two-week delivery is ideal, but let me know if you need a little flexibility.
Here’s what I already have:
• CAD files for each implant variant (three to five in total) as well as the crown and bone segment, along with the elastic-plastic material data for cortical and cancellous bone.
• Pre-defined static loading cases — an axial bite force and an oblique force.
Here’s what I need you to do:
• Build a contact-rich, fully non-linear FE model for every implant-position combination.
• Run the simulations and extract von Mises, principal-stress and micro-strain maps for both the bone and the implant.
• Document your mesh strategy, convergence checks, boundary conditions and key findings in a concise report.
• Package all native files so I can rerun or tweak the study later (ANSYS Workbench, Abaqus or COMSOL are all acceptable).
Nothing about the geometry is overly complex, so turnaround should be straightforward. I’d like to review one pilot case first to confirm the workflow, then let you process the remaining variants. Two-week delivery is ideal, but let me know if you need a little flexibility.
Related categories:
Solidworks
Mechanical Engineering
3D Modelling
Engineering Drawing
Autodesk Inventor
Simulation
Abaqus
3D CAD