Description du produit
Description du produit
Moteur à engrenages planétaires SGR
Données techniques :
1. Plage de ratio : 8,1-191
2. Puissance absorbée : 0,12-270 kW
3. Plage de couple admissible : ≤ 50 000 N·m
4. Vitesse de sortie : 0,3 à 205 tr/min
5. Structure : Montage sur pieds, montage sur bride, montage sur arbre
| structure d'entrée | moteur, bride IEC |
| vitesse de sortie | motor,IEC flange,input shaft |
| arbre plein, arbre creux avec clavette, avec disque de serrage |
Caractéristiques:
1. Conception optimisée, combinaison de modules, sortie à angle droit, réduction de l'encombrement
2. Engrenages à haute résistance et longue durée de vie
3. Peut être combiné avec différents moteurs, plage de rapports plus étendue
4. Couple de sortie élevé, démarrage en douceur, rendement élevé
Photos de production :
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FAQ :
1. Êtes-vous une usine ou un commerçant ?
Nous sommes une usine professionnelle forte de 20 ans d'expérience et spécialisée dans la transmission par engrenages.
2 . MOQ?
Our MOQ is 1 pcs. However there is 1 handling cost $150 for the single order which less than $3000.00
3 . warranty
Notre garantie est de 12 mois.
4 . payment term
100% T/T à l'avance et LC à vue.
5 . Do you accept customization ?
YES. CHINAMFG have strong R&D team , we can provide customizable service according to requirements.
6 . packing
Généralement, nous utilisons des caisses en contreplaqué standard pour l'exportation afin d'organiser l'expédition.
7 . delivery time
En temps normal, le délai de livraison est de 30 jours après réception de l'acompte.
8. What kinds of certification do you use?
Certifications DNV-ISO9001:2008, SGS, CE, etc., et brevets pour les nouveaux produits.
9. What kinds inspection you do before shipment ?
Nous effectuons des tests de température, de bruit et d'étanchéité à l'huile, ainsi qu'une mise en service avant l'expédition.
10. How do you solve if the production have problem?
Mostly, we don ‘ t need customer send the goods back to us. Because the cost is very high, if there meets a problem,we firstly ask for the pictures for damaged parts. And base on the pictures, we can have a basic idea for the defect reason. Our guarantee is 12 months, if during the guarantee, we can supply repair .
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| Application: | Motor, Machinery |
|---|---|
| Fonction: | Distribution Power, Change Drive Torque, Speed Reduction |
| Mise en page: | Coaxial |
| Dureté: | Surface dentaire durcie |
| Installation: | Type vertical |
| Étape: | Single-Step |
| Samples: |
US$ 200/Piece
1 Piece(Min.Order) | |
|---|
| Personnalisation : |
Disponible
| Demande personnalisée |
|---|

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.

What role do gear ratios play in optimizing the performance of gear reducers?
Gear ratios play a crucial role in optimizing the performance of gear reducers by determining the relationship between input and output speeds and torques. A gear ratio is the ratio of the number of teeth between two meshing gears, and it directly influences the mechanical advantage and efficiency of the gear reducer.
1. Speed and Torque Conversion: Gear ratios allow gear reducers to convert rotational speed and torque according to the needs of a specific application. By selecting appropriate gear ratios, gear reducers can either reduce speed while increasing torque (speed reduction) or increase speed while decreasing torque (speed increase).
2. Mechanical Advantage: Gear reducers leverage gear ratios to provide mechanical advantage. In speed reduction configurations, a higher gear ratio results in a greater mechanical advantage, allowing the output shaft to deliver higher torque at a lower speed. This is beneficial for applications requiring increased force or torque, such as heavy machinery or conveyor systems.
3. Efficiency: Optimal gear ratios contribute to higher efficiency in gear reducers. By distributing the load across multiple gear teeth, gear reducers with suitable gear ratios minimize stress and wear on individual gear teeth, leading to improved overall efficiency and prolonged lifespan.
4. Speed Matching: Gear ratios enable gear reducers to match the rotational speeds of input and output shafts. This is crucial in applications where precise speed synchronization is required, such as in conveyors, robotics, and manufacturing processes.
When selecting gear ratios for a gear reducer, it’s important to consider the specific requirements of the application, including desired speed, torque, efficiency, and mechanical advantage. Properly chosen gear ratios enhance the overall performance and reliability of gear reducers in a wide range of industrial and mechanical systems.

How do gear reducers contribute to speed reduction and torque increase?
Gear reducers play a crucial role in mechanical systems by achieving speed reduction and torque increase through the principle of gear ratios. Here’s how they work:
Gear reducers consist of multiple gears with different sizes, known as gear pairs. These gears are meshed together, and their teeth interlock to transmit motion and power. The gear ratio is determined by the ratio of the number of teeth on the input gear (driver) to the number of teeth on the output gear (driven).
Speed Reduction: When a larger gear (output gear) is driven by a smaller gear (input gear), the output gear rotates at a slower speed than the input gear. This reduction in speed is proportional to the gear ratio. As a result, gear reducers are used to slow down the rotational speed of the output shaft compared to the input shaft.
Torque Increase: The interlocking teeth of gears create a mechanical advantage that allows gear reducers to increase torque output. When the input gear applies a force (torque) to the teeth, it is transmitted to the output gear with greater force due to the leverage provided by the larger diameter of the output gear. The torque increase is inversely proportional to the gear ratio and is essential for applications requiring high torque at lower speeds.
By selecting appropriate gear ratios and arranging gear pairs, gear reducers can achieve various speed reduction and torque multiplication factors, making them essential components in machinery and equipment where precise control of speed and torque is necessary.


editor by CX 2024-03-29