Helical-Bevel vs Helical-Worm Gearbox
Helical-bevel and helical-worm gearboxes can both provide right-angle output, but they should not be treated as interchangeable architectures. Compare duty, torque range, ratio, efficiency expectations, package size, output interface and maintenance requirements.
Quick technical comparison
K Series
| Attribute | Value |
|---|---|
| Type | Helical-Bevel Gear Unit |
| Shaft arrangement | Right Angle |
| Size range | K37–K187 |
| Reference power | 0.12–200 kW |
| Reference ratio | 3.73–210.00 |
| Reference maximum torque range | 200–50000 Nm |
S Series
| Attribute | Value |
|---|---|
| Type | Helical-Worm Gear Unit |
| Shaft arrangement | Right Angle |
| Size range | S37–S97 |
| Reference power | 0.12–22 kW |
| Reference ratio | 7.75–307.88 |
| Reference maximum torque range | 92–4000 Nm |
What should decide the selection?
1. Shaft arrangement
Choose the family that naturally fits the machine geometry. Avoid adding couplings or transfer shafts only to force an unsuitable gearbox layout.
2. Required output speed and ratio
Calculate the target ratio from actual input speed and process output speed. Then confirm the ratio exists in a valid performance row for the selected size.
3. Output torque and duty
Compare continuous duty, service factor, shock loading and external shaft loads. A larger reference maximum torque does not mean every configuration can operate continuously at that value.
4. Output and mounting interface
Solid shaft, hollow shaft, flange and shrink-disc arrangements can change replacement compatibility even when the base size is similar.
5. Maintenance and installation
Mounting position affects lubrication. Replacement work also requires dimensional confirmation against the existing machine.
Selection rule of thumb
Use the comparison to choose the gearbox family, then use the series selection table to choose the configuration.
Related products & technical resources
Need a gearbox configuration for your machine?
Send the required motor power, input speed, target output speed or ratio, expected output torque, mounting arrangement, and any installation drawing available. CHINFAR can use these inputs to narrow the R/F/K/S configuration before final engineering confirmation.
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