Unified Hydraulics and Mechanics Simulation
Model hydraulic circuits and mechanical components together in one environment. This eliminates co-simulation overhead for faster, more accurate predictions of clutch engagement and shift behavior.
GT-SUITE is the ideal tool for evaluating transmission component and system design and controls.
Solution Overview
GT-SUITE allows complete transmission system simulation, including shift strategy generation, powerflow specification, thermal warmup and lubrication studies, and shift quality and noise, vibration and harshness (NVH) evaluations.
Through integration with other GT-SUITE libraries, such as engine and vehicle, completely predictive powertrain models can be generated. Additional modeling detail can be added through the general multibody dynamics GT-SUITE library, which enables evaluation of more detailed component-level behavior, including finite element models.
Application Highlights
Advanced Features
Accelerate transmission development with comprehensive simulation tools for design, optimization, and validation.
Model hydraulic circuits and mechanical components together in one environment. This eliminates co-simulation overhead for faster, more accurate predictions of clutch engagement and shift behavior.
Automatically import ROMAX Dynamic Fusion Models to bring high-fidelity gear and bearing dynamics directly into your transmission simulation, streamlining the workflow from component design to full-system analysis.
Extend models from efficient 1D simulation to 2D/3D and finite element representations without rebuilding the architecture, adding structural detail precisely where it's needed.
Simulate the electrical and magnetic behavior of solenoids to predict actuation force and response with high accuracy. This enables fully predictive hydraulic control system design without relying on simplified lookup tables.
Capture thermal behavior of individual components, including clutches, gears, and bearings, to evaluate heat generation, thermal limits, and warm-up performance within the full system model.
Use GEM3D and SpaceClaim to discretize hydraulic flow paths directly from CAD geometry, then visualize gear and synchronizer behavior with dedicated output tools. This reduces setup time and improves result interpretation.
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