Transmission3D
Transmission3D
Transmission3D
Transmission3D
Transmission3D
Transmission3D is a 3-dimensional, multi-body gear contact analysis software capable of modeling complex gear systems. Multiple gear types, including: Helical, Straight Bevel, Spiral Bevel, Hypoids, Beveloids and Worms can be modeled. Multiple bearing types, as well as complex shafts, carriers and housings can also be modeled with the software. A variety of output data options including tooth bending stress, contact patterns, and displacement are also available.
The software features a file creation/editor interface called Guide which can be used to enter input data, analyze a model, and run access postprocessing menus to obtain results. An improved file editor called iSys has been recently released. The iSys interface improves the ease of data entry with a more intuitive interface which includes a built in 3D model viewer window which reflects real time model changes.
iGlass is a results viewer interface which allows users to easily view the 3D model. The model can be visualized in its unloaded and deformed state within iGlass. The viewer also allows the user to obtain the contact pressure and load distribution, as well as the stress distribution of the model.
Learn more about the Capabilities of Transmission 3D and it's Features or download the Transmission3D user's and examples manuals for more detailed information. The Model Gallery contains images of a rear axle model, reduction model, helical planetary model, and a spiral bevel planetary model. Transmission3D validation examples and articles are also available. For training and answers to some frequently asked questions associated with the use of Transmission3D, refer to our Training Videos.
Articles
- Evaluation of Root stresses of a Rattling Gear Pair(7.5MB)
- Dynamic Modeling of Gears: An Innovative Hybrid FEM-Analytical Approach(1.0MB)
- Experimental measurement and finite element simulation of elastic-body vibration in planetary gears(1.0MB)
- Study of Gear Root Strains in a Multi-Stage Planetary Wind Turbine Gear Train Using a Transmission3D Model and Experiments(2.9MB)
- Surface Durability Calculation using a Probabilistic (Lundberg-Palmgren) Approach(13.7MB)
- Rolling Element Bearing Stiffness Matrix Determination(3.6MB)
- Influence of Planetary Needle Bearings on the Performance of Single and Double Pinion Planetary Systems(1.0MB)
- Internal Gear Strains and Load Sharing in Planetary Transmssions(1.6MB)
- Spline Load Distribution(6.4MB)