Gearboxes & Speed Reducers
Worm, planetary, helical and right-angle reducers.
Also searched as: speed reducerplanetary gearboxworm reducerright angle gearbox
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233 rpm 7.50:1 3.54" Cd 140TC Universal Hollow Bore Worm Gear Speed Reducer
Bore Diameter: 1-3/8 inchBore Type: HollowFrame Size: 140TCInput Speed: 1750 rpmOutput Speed: 233 rpm
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F Style Size 724 30:1 Ratio B5 Motor Flange G Output Left Projection Speed Reducer
Motor Flange: B5Output: GProjection: LeftRatio: 30:1Size: 724
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Right Angle Speed Reducer
Bore Diameter: 1"Horsepower: 16 HPInput Speed: 1750 rpmMotor Flange: B5Overhung Load: 500 lb
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Size 710 40:1 Ratio G Output Worm Gear Left Projection Speed Reducer
Gear Type: Worm GearOutput: GProjection: LeftRatio: 40:1Size: 710
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Worm Gear Speed Reducer, 117 rpm, 15:1 Ratio, 2.95" Cd, 56C, Universal Hollow Bore
Bore Diameter: 1-1/4 inchBore Type: HollowFrame Size: 56CInput Speed: 1750 rpmOutput Speed: 117 rpm
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Worm Gear Speed Reducer, 175 rpm, 10:1 Ratio, 1.97" Cd, 56C, Universal Hollow Bore
Bore Diameter: 1 inchBore Type: HollowFrame Size: 56CInput Speed: 1750 rpmOutput Speed: 175 rpm
About gearboxes & speed reducers
Gearboxes and speed reducers are mechanical power transmission devices that modify torque and rotational speed between a prime mover and a driven load. They typically consist of a series of gears enclosed within a housing. Key types include worm, planetary, helical, and right-angle configurations. Worm gearboxes offer high reduction ratios in a compact footprint, often providing self-locking characteristics. Planetary gearboxes provide high torque density and coaxial input/output shafts. Helical gearboxes are known for their efficiency, quiet operation, and ability to handle high loads. Right-angle gearboxes, including bevel and worm types, reorient the drive axis by 90 degrees. Selection parameters include reduction ratio (e.g., 5:1 to 100:1), input and output torque ratings (Nm), input speed (RPM), backlash (arcmin), efficiency (%), and mounting orientation (e.g., foot-mounted, flange-mounted, shaft-mounted). Housing materials commonly include cast iron, aluminum alloys, and stainless steel, with gear materials typically being hardened alloy steels such as 42CrMo4 or 17CrNiMo6. Finishes vary from standard painted surfaces to specialized coatings for corrosive environments or food-grade applications.
How to choose
When selecting a gearbox, first define the required output torque and speed, and the available input speed from the motor. This determines the necessary reduction ratio and torque capacity. Second, consider the spatial constraints and desired shaft orientation to choose between inline (helical, planetary) or right-angle (worm, bevel) designs. Evaluate the application's duty cycle and shock loading to ensure the gearbox's service factor is adequate. Third, assess the required precision and backlash specifications; planetary gearboxes often offer lower backlash for precise positioning. Finally, review environmental factors such as temperature, potential for contaminants, and washdown requirements, which will dictate housing materials, sealing, and lubrication type.