Webinar on From Measured Strain to True Operating Loads: Enabling Accurate Digital Twins with True-Load
June 26 @ 10:30 am - 11:30 am

Description:
Modern engineering systems operate under complex and often unknown loading conditions. Accurate knowledge of operational loads is critical for structural integrity assessment, fatigue life prediction, digital twin development, and design validation. However, direct measurement of applied loads is often impractical or impossible.
Join us for an exclusive technical webinar where we demonstrate how True-Load® Load Reconstruction Software transforms measured strain and displacement data into accurate load histories and load cycles using advanced correlation-based reconstruction techniques.
What You Will Learn
- Fundamentals of load and load cycle reconstruction
- Challenges in identifying real-world operating loads
- Using measured strain and displacement data for load estimation
- Correlation matrix-based reconstruction methodology
- Integration of FEA-generated response databases with measured test data
- Reconstruction of static and dynamic load histories
- Load cycle identification for fatigue and durability assessments
- Building accurate Digital Twins using reconstructed operational loads
- Validation of reconstructed loads through simulation and testing4
Key Applications
- Aerospace Structures
- Automotive Components
- Rail and Transportation Systems
- Wind Energy Systems
- Heavy Machinery
- Offshore Structures
- Industrial Equipment
Who Should Attend?
- CAE Engineers
- FEA Analysts
- Structural Engineers
- Fatigue & Durability Engineers
- Test and Measurement Engineers
- Digital Twin Developers
- R&D Engineers
- Reliability Engineers
Why Attend?
✔ Convert measured responses into actual operating loads
✔ Improve Digital Twin fidelity and predictive accuracy
✔ Reduce testing costs and development time
✔ Enhance fatigue and structural life assessments
✔ Validate simulation models with real-world operational data
Register Now and discover how True-Load bridges the gap between measured responses and real-world loading conditions for next-generation Digital Twin development

