Description du produit
Coresun Drive SC9 slewing drive gear motor worm gear for 18-32 square meter solar tracker system.
Slewing drive motor for single and dual axis solar plant,PV and CSP system.
|
Modèle |
SC9 |
IP |
IP65 |
|
Brand |
Coresun Drive |
Available Load Weight |
500-800kg |
|
IP Class |
IP65 |
Output Torque |
854N.m |
|
Tilting Moment Torque |
33.9KN.m |
Holding Torque |
38.7KN.m |
|
Mounting Bolts |
M16 |
Electrial Motor |
24VDC |
|
Gear Ratio |
61:1 |
Efficacité |
40% |
Coresun Drive Equipment HangZhou Co., Ltd. Slewing drives function with standard worm technology, in which the worm on the horizontal shaft acts as the driver for the gear. The rotation of the horizontal screw turns a gear about an axis perpendicular to the screw axis. This combination reduces the speed of the driven member and also multiplies its torque; increasing it proportionally as the speed decreases. The speed ratio of shafts depends CHINAMFG the relation of the number of threads on the worm to the number of teeth in the worm wheel or gear.
1.Our manufacturing standard is according to machinery standard JB/T2300-2011, we also has been found the efficient Quality Management Systems(QMS) of ISO 9001:2015 and GB/T19001-2008.
2.We devote ourselves to the R&D of customized slewing bearing with high precision,special purpose and requirements.
3.With abundant raw materials and high production efficiency, the company can supply products to customers as quickly as possible and shorten the time for customers to wait for products.
4.Our internal quality control includes first inspection, mutual inspection, in-process quality control and sampling inspection to ensure product quality.The company has complete testing equipment and advanced testing method.
5.Strong after-sales service team, timely solve customer problems, to provide customers with a variety of services.
Coresun Drive Slewing Drive Motor Production Photo and Application
Coresun Drive processes the metallography detection to check the material and organization structure of worm shaft,slewing gear and casting housing.
Coresun Drive slewing drive gear motor with 24VDC motor is certificated by CE
CONTACT US
It is sincerely looking CHINAMFG to cooperating with you for and providing you the best quality product & service with all of our heart!
| Output Torque: | 7320n.M |
|---|---|
| Solar Tracker: | Single and Dual Axis |
| Tilting Moment Torque: | 33.9kn.M |
| Holding Torque: | 38.7kn.M |
| 24VDC Motor: | 24V Sun Tracker Motor |
| Slewing Drive: | Worm Gear |
| Personnalisation : |
Disponible
| Demande personnalisée |
|---|

How do manufacturers ensure the precision of gear tooth profiles in gear reducers?
Manufacturers employ several techniques to ensure the precision of gear tooth profiles in gear reducers, which is crucial for optimal performance and efficiency:
1. Precision Machining: Gear teeth are typically machined using advanced CNC (Computer Numerical Control) machines that can achieve high levels of accuracy and repeatability. This ensures consistent gear tooth profiles across multiple components.
2. Quality Control Measures: Rigorous quality control processes, such as dimensional inspections and profile measurements, are performed at various stages of manufacturing to verify that gear tooth profiles meet the required specifications.
3. Tooth Profile Design: Engineers use specialized software and simulation tools to design gear tooth profiles with precise involute shapes and accurate dimensions. These designs are then translated into machine instructions for manufacturing.
4. Material Selection: High-quality materials with excellent wear resistance and dimensional stability are chosen to minimize the potential for deformation or inaccuracies during machining and operation.
5. Heat Treatment: Heat treatment processes, such as carburizing and quenching, are applied to enhance the surface hardness and durability of gear teeth, reducing the risk of wear and deformation over time.
6. Tooth Grinding and Finishing: After initial machining, gear teeth often undergo precision grinding and finishing processes to achieve the desired tooth profile accuracy and surface finish.
7. Post-Processing Inspection: Gear tooth profiles are inspected again after manufacturing processes to verify that the final components meet the specified tolerances and performance criteria.
8. Computer-Aided Manufacturing (CAM): CAM software is used to generate tool paths and machining instructions, enabling precise control over tool movements and material removal during gear manufacturing.
By combining these techniques and leveraging advanced manufacturing technologies, manufacturers can achieve the necessary precision in gear tooth profiles, resulting in reliable and efficient gear reducers for various industrial applications.

What maintenance practices are essential for prolonging the lifespan of gear reducers?
Proper maintenance is crucial for extending the lifespan and ensuring optimal performance of gear reducers. Here are essential maintenance practices:
- 1. Lubrication: Regular lubrication of gear reducers is vital to reduce friction, wear, and heat generation. Use the recommended lubricant and follow the manufacturer’s guidelines for lubrication intervals.
- 2. Inspection: Routinely inspect gear reducers for signs of wear, damage, or leaks. Check for unusual noises, vibrations, or temperature increases during operation.
- 3. Alignment: Ensure proper alignment of the input and output shafts. Misalignment can lead to increased wear, noise, and reduced efficiency. Align the components according to the manufacturer’s specifications.
- 4. Cooling and Ventilation: Maintain proper cooling and ventilation to prevent overheating. Ensure that cooling fans and vents are clean and unobstructed.
- 5. Seal Maintenance: Inspect and replace seals as needed to prevent contaminants from entering the gear reducer. Contaminants can lead to accelerated wear and reduced performance.
- 6. Bolts and Fasteners: Regularly check and tighten bolts and fasteners to prevent loosening during operation, which can cause misalignment or component damage.
- 7. Replacing Worn Components: Replace worn or damaged components, such as gears, bearings, and seals, with genuine parts from the manufacturer.
- 8. Vibration Analysis: Conduct periodic vibration analysis to identify potential issues early. Excessive vibration can indicate misalignment or component wear.
- 9. Maintenance Records: Keep detailed maintenance records, including lubrication schedules, inspection dates, and component replacements. This helps track the history of the gear reducer and aids in future maintenance planning.
- 10. Training: Provide proper training to maintenance personnel on gear reducer maintenance and troubleshooting techniques.
By adhering to these maintenance practices, you can maximize the lifespan of your gear reducers, minimize downtime, and ensure reliable operation in your industrial processes.

Quels sont les avantages de l'utilisation d'un réducteur à engrenages dans les applications industrielles ?
Les réducteurs de vitesse offrent plusieurs avantages qui les rendent indispensables dans diverses applications industrielles :
1. Réduction de vitesse : Les réducteurs de vitesse permettent de réduire la vitesse d'entrée élevée des moteurs à des vitesses de sortie plus basses et plus utilisables pour des applications spécifiques, garantissant ainsi le bon fonctionnement et la sécurité des équipements.
2. Augmentation du couple : En tirant parti de l'avantage mécanique des rapports d'engrenage, les réducteurs d'engrenages peuvent augmenter considérablement le couple de sortie, permettant ainsi la manutention de charges lourdes et fournissant la puissance nécessaire à des tâches telles que le levage, le transport et le traitement.
3. Contrôle précis : Les réducteurs de vitesse permettent un réglage précis de la vitesse de rotation et du couple, offrant un contrôle précis des machines et des processus, ce qui est crucial dans des secteurs comme la fabrication, la manutention et la robotique.
4. Absorption des chocs : Les réducteurs d'engrenages peuvent absorber et amortir les chocs soudains ou les variations de charge, protégeant ainsi la machine et les composants connectés des forces abruptes qui pourraient autrement entraîner des dommages.
5. Polyvalence : Grâce à différents types d'engrenages (par exemple, droits, hélicoïdaux, à vis sans fin) et à différentes conceptions, les réducteurs d'engrenages peuvent être adaptés à différentes applications, y compris celles nécessitant des rapports de vitesse, des plages de couple et des conditions environnementales spécifiques.
6. Transmission efficace de l'énergie : Les réducteurs à engrenages offrent un rendement mécanique élevé, minimisant les pertes d'énergie lors de la transmission de puissance, ce qui est particulièrement précieux dans les industries soucieuses de leur consommation d'énergie.
7. Conception compacte : Les réducteurs de vitesse offrent une solution compacte pour la transmission de puissance et le réglage des vitesses, ce qui les rend adaptés aux installations où l'espace est limité.
8. Fiabilité et longévité : Les réducteurs de vitesse bien conçus et correctement entretenus peuvent offrir une durée de vie prolongée, contribuant ainsi à réduire les temps d'arrêt et les coûts de maintenance.
De manière générale, les réducteurs de vitesse améliorent les performances, l'efficacité et la fiabilité des équipements industriels, ce qui en fait des composants essentiels dans un large éventail d'applications et dans divers secteurs d'activité.


editor by CX 2023-10-25