Productomschrijving
Detailed Photos
Product Parameters
Model:220BX-E
More Code And Specification:
| E series | C series | ||||
| Code | Outline dimension | General model | Code | Outline dimension | The original code |
| 120 | Φ122 | 6E | 10C | Φ145 | 150 |
| 150 | Φ145 | 20E | 27C | Φ181 | 180 |
| 190 | Φ190 | 40E | 50C | Φ222 | 220 |
| 220 | Φ222 | 80E | 100C | Φ250 | 250 |
| 250 | Φ244 | 110E | 200C | Φ345 | 350 |
| 280 | Φ280 | 160E | 320C | Φ440 | 440 |
| 320 | Φ325 | 320E | 500C | Φ520 | 520 |
| 370 | Φ370 | 450E | |||
Gear ratio And Specification
| E Series | C Series | ||
| Code | Reductieverhouding | New code | Monomer reduction ratio |
| 120 | 43,53.5,59,79,103 | 10CBX | 27.00 |
| 150 | 81,105,121,141,161 | 27CBX | 36.57 |
| 190 | 81,105,121,153 | 50CBX | 32.54 |
| 220 | 81,101,121,153 | 100CBX | 36.75 |
| 250 | 81,111,161,175.28 | 200CBX | 34.86 |
| 280 | 81,101,129,145,171 | 320CBX | 35.61 |
| 320 | 81,101,118.5,129,141,171,185 | 500CBX | 37.34 |
| 370 | 81,101,118.5,129,154.8,171,192.4 | ||
| Note 1: E series,such as by the shell(pin shell)output,the corresponding reduction ratio by 1 | |||
| Note 2: C series gear ratio refers to the motor installed in the casing of the reduction ratio,if installed on the output flange side,the corresponding reduction ratio by 1 | |||
Reducer type code
REV: main bearing built-in E type
RVC: hollow type
REA: with input flange E type
RCA: with input flange hollow type
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Customized Product Service
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Veelgestelde vragen
Q: What’re your main products?
A: We currently produce Brushed Dc Motors, Brushed Dc Gear Motors, Planetary Dc Gear Motors, Brushless Dc Motors, Stepper motors, Ac Motors and High Precision Planetary Gear Box etc. You can check the specifications for above motors on our website and you can email us to recommend needed motors per your specification too.
Q: How to select a suitable motor?
A:If you have motor pictures or drawings to show us, or you have detailed specs like voltage, speed, torque, motor size, working mode of the motor, needed lifetime and noise level etc, please do not hesitate to let us know, then we can recommend suitable motor per your request accordingly.
Q: Do you have a customized service for your standard motors?
A: Yes, we can customize per your request for the voltage, speed, torque and shaft size/shape. If you need additional wires/cables soldered on the terminal or need to add connectors, or capacitors or EMC we can make it too.
Q: Do you have an individual design service for motors?
A: Yes, we would like to design motors individually for our customers, but it may need some mold developing cost and design charge.
Q: What’s your lead time?
A: Generally speaking, our regular standard product will need 15-30days, a bit longer for customized products. But we are very flexible on the lead time, it will depend on the specific orders.
Please contact us if you have detailed requests, thank you ! /* 22 januari 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Sollicitatie: | Machinery, Robotic |
|---|---|
| Hardheid: | Verhard tandoppervlak |
| Installatie: | Vertical Type |
| Indeling: | Coaxiaal |
| Tandwielvorm: | Cilindrische tandwiel |
| Stap: | Double-Step |
| Aanpassing: |
Beschikbaar
| Aangepast verzoek |
|---|

What are the considerations for choosing the appropriate lubrication for gear reducers?
Choosing the appropriate lubrication for gear reducers is crucial for ensuring optimal performance, longevity, and efficiency. Several considerations should be taken into account when selecting the right lubrication:
1. Load and Torque: The magnitude of the load and torque transmitted by the gear reducer affects the lubrication’s viscosity and film strength requirements. Heavier loads may necessitate higher viscosity lubricants.
2. Operating Speed: The speed at which the gear reducer operates impacts the lubrication’s ability to maintain a consistent and protective film between gear surfaces.
3. Temperature Range: Consider the temperature range of the operating environment. Lubricants with suitable viscosity indexes are crucial to maintaining performance under varying temperature conditions.
4. Contaminant Exposure: If the gear reducer is exposed to dust, dirt, water, or other contaminants, the lubrication should have proper sealing properties and resistance to contamination.
5. Lubrication Interval: Determine the desired maintenance interval. Some lubricants require more frequent replacement, while others offer extended operational periods.
6. Compatibility with Materials: Ensure that the chosen lubricant is compatible with the materials used in the gear reducer, including gears, bearings, and seals.
7. Noise and Vibration: Some lubricants have properties that can help reduce noise and dampen vibrations, improving the overall user experience.
8. Environmental Impact: Consider environmental regulations and sustainability goals when selecting lubricants.
9. Manufacturer Recommendations: Follow the manufacturer’s recommendations and guidelines for lubrication type, viscosity grade, and maintenance intervals.
10. Monitoring and Analysis: Implement a lubrication monitoring and analysis program to assess lubricant condition and performance over time.
By carefully evaluating these considerations and consulting with lubrication experts, industries can choose the most suitable lubrication for their gear reducers, ensuring reliable and efficient operation.

Met welke factoren moet u rekening houden bij het selecteren van de juiste tandwielkast?
Bij het kiezen van de juiste tandwielkast moet u rekening houden met een aantal cruciale factoren om optimale prestaties en efficiëntie voor uw specifieke toepassing te garanderen:
- 1. Koppel- en vermogensvereisten: Bepaal hoeveel koppel en vermogen uw machine nodig heeft voor de werking ervan.
- 2. Snelheidsverhouding: Bereken de benodigde snelheidsverlaging of -verhoging om de invoer- en uitvoersnelheid op elkaar af te stemmen.
- 3. Versnellingstype: Selecteer het juiste tandwieltype (schroef, kegel, worm, planetair, enz.) op basis van de koppel-, nauwkeurigheids- en efficiëntievereisten van uw toepassing.
- 4. Montageopties: Houd rekening met de beschikbare ruimte en de montageconfiguratie die geschikt is voor uw machine.
- 5. Omgevingsomstandigheden: Evalueer factoren zoals temperatuur, vochtigheid, stof en corrosieve elementen die van invloed kunnen zijn op de prestaties van de tandwielkast.
- 6. Efficiëntie: Beoordeel de efficiëntie van de tandwielkast om vermogensverlies te minimaliseren en de algehele systeemprestaties te verbeteren.
- 7. Terugslag: Houd rekening met het acceptabele niveau van speling tussen de tanden, aangezien dit de precisie kan beïnvloeden.
- 8. Onderhoudsvereisten: Bepaal de onderhoudsintervallen en -procedures die nodig zijn voor een betrouwbare werking.
- 9. Geluid en trillingen: Controleer het geluids- en trillingsniveau om er zeker van te zijn dat dit voldoet aan de eisen van uw machinepark.
- 10. Kosten: Vergelijk de initiële kosten en de langetermijnwaarde van verschillende tandwielreductoren.
Door deze factoren zorgvuldig te beoordelen en te overleggen met fabrikanten van tandwielkasten, kunnen ingenieurs en professionals uit de industrie weloverwogen beslissingen nemen en de juiste tandwielkast selecteren voor hun specifieke toepassing. Zo optimaliseren ze de prestaties, levensduur en kosteneffectiviteit.

How do gear reducers handle variations in input and output speeds?
Gear reducers are designed to handle variations in input and output speeds through the use of different gear ratios and configurations. They achieve this by utilizing intermeshing gears of varying sizes to transmit torque and control rotational speed.
The basic principle involves connecting two or more gears with different numbers of teeth. When a larger gear (driving gear) engages with a smaller gear (driven gear), the rotational speed of the driven gear decreases while the torque increases. This reduction in speed and increase in torque enable gear reducers to efficiently adapt to variations in input and output speeds.
The gear ratio is a critical factor in determining how much the speed and torque change. It is calculated by dividing the number of teeth on the driven gear by the number of teeth on the driving gear. A higher gear ratio results in a greater reduction in speed and a proportionate increase in torque.
Planetary gear reducers, a common type, use a combination of gears including sun gears, planet gears, and ring gears to achieve different speed reductions and torque enhancements. This design provides versatility in handling variations in speed and torque requirements.
In summary, gear reducers handle variations in input and output speeds by using specific gear ratios and gear arrangements that enable them to efficiently transmit power and control motion characteristics according to the application’s needs.


redacteur door CX 2024-05-03