Product Description
ADVANCE marine gearbox HCT600A/1 HCD800 HCT800 HCT800/1 HCT800/2 for ship and boat
marine gearbox ADVANCE HCT400A HCT400A/1 HC600A HCD600A HCT600A for ship and boat
marine gearbox ADVANCE Z300 T300/1 HCG403 J300 HC400 HCD400A for ship and boat
marine gearbox ADVANCE MB242 MB270A 300 HC300 D300A T300 for main propulsion
marine gearbox ADVANCE MB170 120B 120C 135A HC138 HCD138 for small boat engine
marine gearbox ADVANCE 06 16A 26 MA100A MA125A MA142A 40A for small boat engine
ADVANCE marine gearbox HCT800/3 HC1000 HCD1000 HCT1100 HC1200 for ship and boat
ADVANCE marine gearbox HC1200/1 HCT1200 HCT1200/1 HC1250 HCD1400 for ship and boat
ADVANCE marine gearbox HCT1400 HCT1600 HCD2000 HCT200 HCD2700 for ship and boat
ADVANCE marine gearbox JL250 JL320 JL360 HC200P for ship and boat marine engine
Multi-functional multi-output auxiliary box(speed up)
ADVANCE marine gearbox 4LZF1100A 2LZF650 for ship and boat marine engine
Hybrid gearbox (with PTO/PTI)
ADVANCE marine gearbox HCT601P HCD450P for ship and boat marine engine
ADVANCE marine gearbox HC038A HC65 MV100A HCQ138 HCA138 HC200 for ship and boat marine engine
ADVANCE marine gearbox HC201 HCQ300 HCA300 HCQ401 HCQ501 HCQ502 for ship and boat marine engine
ADVANCE marine gearbox HCQ700 HCQ701 HCQ1000 HCQ1400 HCA1400 for ship and boat marine engine
ADVANCE marine gearbox HCM1400 HCQ1600 HCQH1600 HCQH1601 for ship and boat marine engine
ADVANCE marine gearbox HCL30S HCL30F HCL100S HCL100F HCL250S for ship and boat marine engine
ADVANCE marine gearbox HCL250F HCL320S HCL320F HCL600S HCL600F for ship and boat marine engine
ZheJiang STONE DIESEL ENGINE CO.,LTD supply CHINAMFG marine engine and other brand engine with marine gearbox. Marine gearbox brand, ADVANCE, FADA, CHONGCHI, NGC,etc.
| mairne gearbox ADVANCE 06 | 2.52 3.05 3.5 | 1000 to 2100rpm |
| mairne gearbox ADVANCE 16A | 2.07 2.48 2.95 3.35 3.83 | 2000rpm |
| mairne gearbox ADVANCE 26 | 2.50 3.00 3.50 4.00 | 2500rpm |
| mairne gearbox ADVANCE MA100A | 1.60 2.00 2.55 3.11 3.59 3.88 | 3000rpm |
| mairne gearbox ADVANCE MA125A | 2.03 2.46 3.04 3.57 4.05 4.39 4.70 | 3000rpm |
| mairne gearbox ADVANCE MA142A | 1.97 2.52 3.03 3.54 3.95 4.50 5.06 5.47 | 2500rpm |
| mairne gearbox ADVANCE 40A | 2.07 2.96 3.44 | 2000rpm |
| mairne gearbox ADVANCE MB170 | 1.97 2.52 3.04 3.54 3.96 4.50 5.06 5.47 5.88 | 2500rpm |
| mairne gearbox ADVANCE 120B | 2.03 2.81 3.73 | 1800rpm |
| mairne gearbox ADVANCE 120C | 1.36 1.48 1.61 1.94 2.45 2.96 3.35 | 2500rpm |
| mairne gearbox ADVANCE 135A | 2.03 2.59 3.04 3.62 4.11 4.65 5.06 5.47 5.81 | 2000rpm |
| mairne gearbox ADVANCE HC138 | 2.00 2.52 3.00 3.57 4.05 4.45 | 2500rpm |
| mairne gearbox ADVANCE HCD138 | 5.05 5.63 6.06 6.47 | 2500rpm |
| mairne gearbox ADVANCE MB242 | 200 2.54 3.04 3.52 3.95 4.53 5.12 5.56 5.88 | 2500rpm |
| mairne gearbox ADVANCE MB270A | 3.00 4.05 4.53 5.12 5.50 5.95 6.39 6.82 | 2500rpm |
| mairne gearbox ADVANCE 300 | 1.54 1.75 1.87 2.04 2.54 3.00 3.35 3.53 4.10 4.47 4.61 4.94 5.44 | 2300rpm |
| mairne gearbox ADVANCE HC300 | 1.50 1.87 2.04 2.23 2.54 3.00 3.53 4.10 4.47 4.61 4.94 5.44 | 2500rpm |
| mairne gearbox ADVANCE D300A | 4.00 4.48 5.05 5.52 5.90 6.56 7.06 7.63 | 2300rpm |
| mairne gearbox ADVANCE T300 | 4.73 4.95 5.51 6.03 6.65 7.04 7.54 8.02 8.47 | 2300rpm |
| mairne gearbox ADVANCE Z300 | 1.54 1.75 1.87 2.04 2.54 3.00 3.35 3.53 4.10 4.47 4.61 4.94 5.44 | |
| mairne gearbox ADVANCE T300/1 | 8.94 9.45 | 2300rpm |
| mairne gearbox ADVANCE HCG403 | 6.21 6.40 7.01 7.45 7.92 8.43 8.97 9.32 9.94 10.43 10.87 10.61 | 2400rpm |
| mairne gearbox ADVANCE J300 | 2.04 2.54 3.0 3.47 3.95 | 2500rpm |
| mairne gearbox ADVANCE HC400 | 1.5 1.77 2.04 2.5 2.86 3 3.25 3.33 3.42 4.06 4.61 4.94 | 1800rpm |
| mairne gearbox ADVANCE HCD400A | 3.96 4.33 4.43 4.7 5 5.53 5.71 5.89 | 1800rp, |
| mairne gearbox ADVANCE HCT400A | 6.09 6.49 6.93 7.42 7.96 8.40 9 9.47 | 2100rpm |
| mairne gearbox ADVANCE HCT400A/1 | 8.15 8.69 9.27 9.94 10.6 11.37 12 12.5 13.96 | 2100rpm |
| ADVANCE marine gearbox HC600A | 2 2.48 3 3.58 3.89 | 2100rpm |
| ADVANCE marine gearbox HCD600A | 4.18 4.43 4.7 5 5.44 5.71 | 2100rpm |
| ADVANCE marine gearbox HCT600A | 6.06 6.49 6.97 7.51 8.04 8.66 9.35 | 2100rpm |
| ADVANCE marine gearbox HCT600A/1 | 7.04 7.69 8.23 8.82 9.47 10.10 10.8 11.65 12.57 13.64 14.44 15.91 | 2100rpm |
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| Application: | Motor, Marine |
|---|---|
| Layout: | Coaxial |
| Hardness: | Hardened Tooth Surface |
| Installation: | Horizontal Type |
| Step: | Three-Step |
| Type: | Worm Gear Box |

Is it Possible to Reverse the Direction of a Worm Gearbox?
Yes, it is possible to reverse the direction of a worm gearbox by changing the orientation of either the input or output shaft. However, reversing the direction of a worm gearbox can have some implications that need to be considered:
- Efficiency: Reversing the direction of a worm gearbox can potentially affect its efficiency. Worm gearboxes are typically more efficient in one direction of rotation due to the design of the worm and worm wheel.
- Backlash: Reversing the direction of rotation might lead to increased backlash or play in the gearbox, which can impact precision and smooth operation.
- Lubrication: Depending on the gearbox’s design, reversing the direction could affect lubrication distribution and lead to uneven wear on the gear teeth.
- Load: Reversing the direction might also impact the gearbox’s load-carrying capacity, especially if it’s designed for predominantly one-way operation.
- Noise and Vibration: Direction reversal can sometimes result in increased noise and vibration due to changes in gear engagement and meshing behavior.
If you need to reverse the direction of a worm gearbox, it’s advisable to consult the gearbox manufacturer’s guidelines and recommendations. They can provide insights into whether the specific gearbox model is suitable for reversible operation and any precautions or adjustments needed to ensure proper functioning.

How to Calculate the Efficiency of a Worm Gearbox
Calculating the efficiency of a worm gearbox involves determining the ratio of output power to input power. Efficiency is a measure of how well the gearbox converts input power into useful output power without losses. Here’s how to calculate it:
- Step 1: Measure Input Power: Measure the input power (Pin) using a power meter or other suitable measuring equipment.
- Step 2: Measure Output Power: Measure the output power (Pout) that the gearbox is delivering to the load.
- Step 3: Calculate Efficiency: Calculate the efficiency (η) using the formula: Efficiency (η) = (Output Power / Input Power) * 100%
For example, if the input power is 1000 watts and the output power is 850 watts, the efficiency would be (850 / 1000) * 100% = 85%.
It’s important to note that efficiencies can vary based on factors such as gear design, lubrication, wear, and load conditions. The calculated efficiency provides insight into how effectively the gearbox is converting power, but it’s always a good practice to refer to manufacturer specifications for gearbox efficiency ratings.

What Industries Commonly Use Worm Reducers?
Worm reducers are versatile mechanical components that find applications in various industries due to their unique advantages and capabilities. Some of the industries that commonly use worm reducers include:
- Material Handling: Worm reducers are widely used in material handling equipment such as conveyors, bucket elevators, and cranes to control movement and manage heavy loads.
- Automotive: They are utilized in automotive manufacturing processes, assembly lines, and vehicle positioning systems.
- Food and Beverage: Worm reducers are used in food processing and packaging machinery where hygiene and cleanliness are crucial.
- Agriculture: Agricultural equipment like irrigation systems and tractors use worm reducers for controlling rotational motion.
- Mining and Construction: Heavy-duty applications in mining equipment, excavators, and construction machinery benefit from the torque multiplication provided by worm reducers.
- Energy: Wind turbines and solar tracking systems use worm reducers to convert low-speed, high-torque motion into rotational energy.
- Textile: Textile machinery employs worm reducers for controlling speed and tension in weaving and spinning operations.
- Packaging: Packaging equipment relies on worm reducers for precise movement and positioning of packaging materials.
- Medical: Medical devices and equipment often utilize worm reducers for their accuracy and controlled motion.
- Printing: Printing machines use worm reducers to regulate paper feed and ensure consistent printing quality.
Worm reducers’ ability to provide high torque output, compact design, and self-locking characteristics makes them suitable for applications requiring reliable and controlled motion across various industries.


editor by CX 2024-03-12