

MISULAB® is an advanced simulation software that predicts residual stresses, work hardening and microstructural changes induced by machining operations.
By linking machining parameters to material integrity, MISULAB enables engineers to anticipate the real mechanical state of components after manufacturing.
This predictive capability allows manufacturers to optimize machining strategies while ensuring the durability and reliability of critical components.

Based on scientifical experience

MISULAB stands as the embodiment of expertise forged through 17 years of experience in the field. The method has been developed on a strong foundation of knowledge derived from 7 theses, contributing to several dozen scientific articles. Every line of code, every integrated feature attests to this wealth of knowledge and commitment to continuous innovation.
Experimental calibration

The scientific method is based on in-depth experimental trials and concrete industrial case studies. This has allowed the identification of key parameters and verification of the method's robustness. MISULAB integrates an experimental calibration system, ensuring that the numeric data aligns with reality.
Full 3D model with multi revolution simulation

The input data is crucial for the software: material properties, tool geometry, cutting conditions, and mesh parameters. With this information, the software can simulate multiple tool passes, thereby achieving a stabilized simulation regime of thermomechanical phenomena. This feature is essential for obtaining reliable and relevant results.
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