Worm and Wheel Apparatus Technical Description: The permits investigations of the torques and the efficiency of the gear unit. The transmission ratio of the gear can be determined. Students learn the...
The permits investigations of the torques and the efficiency of the gear unit. The transmission ratio of the gear can be determined. Students learn the basic terminology of gearing in a simple manner: numbers of teeth; modulus; reference circle and axle base. The worm gear wheel and worm are ball bearing-mounted. The forces are generated by the sets of weights and can be quickly and easily varied. The model is intended for wall mounting. The well-structured instructional material sets out the fundamentals and provides a step-by-step guide through the experiments.
- on worm shaft: d=40mm - on worm gear wheel shaft: d=120mm
- axle base: 80mm - transmission ratio: 30:1 - modulus: m=4mm - number of gears: 1 - power transmission: 10
- 1x 50N - 1x 20N - 2x 10N - 1x 10N (suspended with balance mass)
- 1x 5N - 4x 2N - 1x 1N - 1x 0,5N - 1x 0,5N (suspended)
- LxWxH: 250x200x12mm
The permits investigations of the torques and the efficiency of the gear unit. The transmission ratio of the gear can be determined. Students learn the basic terminology of gearing in a simple manner: numbers of teeth; modulus; reference circle and axle base. The worm gear wheel and worm are ball bearing-mounted. The forces are generated by the sets of weights and can be quickly and easily varied. The model is intended for wall mounting. The well-structured instructional material sets out the fundamentals and provides a step-by-step guide through the experiments.
- on worm shaft: d=40mm - on worm gear wheel shaft: d=120mm
- axle base: 80mm - transmission ratio: 30:1 - modulus: m=4mm - number of gears: 1 - power transmission: 10
- 1x 50N - 1x 20N - 2x 10N - 1x 10N (suspended with balance mass)
- 1x 5N - 4x 2N - 1x 1N - 1x 0,5N - 1x 0,5N (suspended)
- LxWxH: 250x200x12mm
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