This package contains basic components 1D mechanical rotational drive trains.
| Name | Description |
|---|---|
| Flange fixed in housing at a given angle | |
| 1D-rotational component with inertia | |
| 1-dim. rotational rigid component without inertia, where right flange is rotated by a fixed angle with respect to left flange | |
| Linear 1D rotational spring | |
| Linear 1D rotational damper | |
| Linear 1D rotational spring and damper in parallel | |
| Backlash connected in series to linear spring and damper (backlash is modeled with elasticity) | |
| Backlash connected in series to linear spring and damper (backlash is modeled with elasticity; at start of contact the flange torque can jump, contrary to the ElastoBacklash model) | |
| Coulomb friction in bearings | |
| Brake based on Coulomb friction | |
| Clutch based on Coulomb friction | |
| Parallel connection of freewheel and clutch | |
| Ideal gear without inertia | |
| Gear with mesh efficiency and bearing friction (stuck/rolling possible) | |
| Ideal planetary gear box | |
| Realistic model of a gearbox (based on LossyGear) | |
| Gearbox transforming rotational into translational motion | |
| Simple 1-dim. model of an ideal rolling wheel without inertia | |
| Initializes a flange with pre-defined angle, speed and angular acceleration (usually, this is reference data from a control bus) | |
| Definition of relative state variables | |
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Signal adaptor for a Rotational flange with torque as output and angle, speed, and optionally acceleration as inputs (especially useful for FMUs) |
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Signal adaptor for a Rotational flange with angle, speed, and acceleration as outputs and torque as input (especially useful for FMUs) |
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Signal adaptor for a rotational flange with torque as output and angle, speed and acceleration as input (especially useful for FMUs) |
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Signal adaptor for a rotational flange with angle, speed, and acceleration as outputs and torque as input (especially useful for FMUs) |