High Pressure Torsion (HPT) Simulation in Abaqus
Explore our complete collection of tutorials covering High Pressure Torsion (HPT) simulation in Abaqus—from model creation and material behavior to validation, convergence studies, and advanced constitutive models.
HPT Topics
Modeling a Solid Cylindrical Specimen under High Pressure Torsion in Abaqus
Modeling Large Plastic Deformation During High-Pressure Torsion Using Abaqus
How to Calculate Equivalent Plastic Strain in High-Pressure Torsion
Modeling Steel High Pressure Torsion Process Using Abaqus Explicit
Mesh Design and Convergence Study for High Pressure Torsion Analysis
High-Pressure Torsion Simulation in Abaqus (CAE + INP + PDF Tutorial)
HPT Simulation Validation Against Experimental Results
Parametric Study of Pressure, Rotation Speed, and Number of Turns in HPT
Common Errors in High Pressure Torsion Simulation in Abaqus and How to Fix Them
High Pressure Torsion Simulation Using Johnson-Cook Material Model
High Pressure Torsion (HPT) Simulation in Abaqus: Complete Step-by-Step Guide (2026)
Need Expert Support for Your High Pressure Torsion Simulation?
High Pressure Torsion (HPT) simulation involves severe plastic deformation, complex contact conditions, large strain analysis, and advanced material modeling. If you’re working on an industrial project or academic research, our Abaqus specialists can help you build accurate HPT models, validate your simulation results, and develop custom material models tailored to your application.From Johnson–Cook plasticity and damage models to mesh convergence studies and Abaqus/Explicit analysis, Mathech provides engineering solutions that deliver reliable and validated results.
