Altair Flux is a simulation software for optimizing motor, sensor, and actuator designs, enabling high-performance, cost-efficient, and precise electromechanical equipment development.
Vendor
Altair
Company Website
Altair Flux is a comprehensive simulation tool designed to accelerate the development of motors, sensors, and actuators by optimizing their performance, efficiency, size, weight, and cost. With over 35 years of industry leadership, Flux offers advanced simulation capabilities for magneto-static, steady-state, and transient conditions, as well as electrical and thermal properties. The software's versatility and precision allow designers to create optimized products faster and with fewer prototypes. With seamless integration into the Altair HyperWorks multiphysics optimization platform, Flux enables dynamic interaction evaluation across subsystems and streamlines the entire design process. Flux offers flexibility with tools like scripting and macros, and provides proven accuracy, allowing engineers to replicate real-world phenomena and generate reliable results. By leveraging advanced physical properties and robust solvers, Flux delivers high-fidelity analysis for complex electromechanical systems, making it a trusted choice for industries requiring efficient and high-performance design solutions. Features
- Efficient Geometry Description and Meshing: Accelerates pre-processing with Flux's toolkit, including sketcher, modeler, and auto-adaptive mesh.
- Advanced Physical Properties: Embedded models for magnetic, electric, and thermal analysis, including static, AC steady-state, and transient simulations.
- Powerful Modeling Techniques: Supports complex features like non-meshed coils, anisotropic materials, and hysteresis for accurate predictions.
- Fast and Robust Solvers: Utilizes multiple linear and non-linear solvers, enhanced by optimization methods and high-performance computing (HPC).
- Convincing Results: Versatile postprocessor for analysis and reporting, including electric and magnetic fields, mechanical quantities, and more.
- Seamless Multiphysics Optimization: Combines physics in a single optimization loop, automating the process to visualize complex phenomena quickly.