Descripción del Producto
Descripción del Producto
AOKMAN RC Series B14 Flange Mounted Helical Gear Reducer with Short Lead Time
Components:
1. Housing:Aluminum Alloys
2. Gears:Hardened Helical Gears
3. Input Configurations:Hollow Shaft with IEC Normalized Motor Flange /Solid Shaft Input
4. Applicable Motors:IEC-normalized Motors and Brake Motors/Explosion-proof Motors/Inverter Motors/Servo Motors
5. Output Configurations:Solid Shaft with B5 Output Flange/Solid Shaft with B14 Output Flange
Models:
RC(Foot-mounted): RC01,RC02,RC03,RC04
RCF(B5 Flange-mounted): RCF01,RCF02,RCF03,RCF04
RCZ(B14 Flange-mounted): RCZ01,RCZ02,RCZ03,RCZ04
Features:
1. Modular design, dismountable frame foot, optional different frame sizes and flanges
2. Aluminum housing, compact structures, light weight
3. Carburizing and grinding hardened gears, sturdy and durable
4. Multiple mounting positions
5. Low noise
Fotos detalladas
Parámetros del producto
Applications:Textile, Food, Ceramics, Packaging, Logistics, Plastics Industry
Instalación:Foot-mounted/B5 Flange-mounted/B14 Flange-mounted
Lubricación:Oil-bath and Splash Lubrication/Cooling:/Natural Cooling
| Frame Sizes | Power | Ratio | Max. Torque |
| 01,02,03,04 | 0.12kW~4kW | 3.66~54 | 120N.m~500N.m |
Packaging & Shipping
Company Profile
Our Advantages
Our Services:
| Pre-sale services | 1. Select equipment model. |
| 2.Design and manufacture products according to clients’ special requirement. | |
| 3.Train technical personal for clients | |
| Services during selling | 1.Pre-check and accept products ahead of delivery. |
| 2. Help clients to draft solving plans. | |
| After-sale services | 1.Assist clients to prepare for the first construction scheme. |
| 2. Train the first-line operators. | |
| 3.Take initiative to eliminate the trouble rapidly. | |
| 4. Provide technical exchanging. |
FAQ
1.Q:What kinds of gearbox can you produce for us?
A:Main products of our company: UDL series speed variator,RV series worm gear reducer, ATA series shaft mounted gearbox, X,B series gear reducer,
P series planetary gearbox and R, S, K, and F series helical-tooth reducer, more
than 1 hundred models and thousands of specifications
2.Q:Can you make as per custom drawing?
A: Yes, we offer customized service for customers.
3.Q:What is your terms of payment ?
A: 30% Advance payment by T/T after signing the contract.70% before delivery
4.Q:What is your MOQ?
A: 1 Set
If you have any demand for our products please feel free to contact me.
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| Solicitud: | Machinery |
|---|---|
| Función: | Change Drive Torque, Speed Changing, Speed Reduction |
| Disposición: | Coaxial |
| Dureza: | Superficie del diente endurecida |
| Instalación: | Tipo horizontal |
| Paso: | Un solo paso |
| Muestras: |
US$ 10/Piece
1 pieza (pedido mínimo) | |
|---|
| Personalización: |
Disponible
| Solicitud personalizada |
|---|

¿Cómo mejoran los reductores de engranajes la eficiencia de los sistemas de transporte y la robótica?
Los reductores de engranajes desempeñan un papel fundamental en la mejora de la eficiencia de los sistemas de transporte y la robótica, optimizando la velocidad, el par y el control. A continuación, se detalla su contribución:
Sistemas transportadores:
En los sistemas transportadores, los reductores de engranajes mejoran la eficiencia de las siguientes maneras:
- Control de velocidad: Los reductores de engranajes permiten un control preciso de la velocidad de rotación de las cintas transportadoras, garantizando que los materiales se transporten a la velocidad deseada para procesos de producción eficientes.
- Ajuste de par: Al ajustar las relaciones de engranajes, los reductores de engranajes proporcionan el torque necesario para manejar cargas variables y evitar la sobrecarga, minimizando el desperdicio de energía.
- Operación inversa: Los reductores de engranajes permiten un movimiento bidireccional suave de las cintas transportadoras, facilitando tareas como carga, descarga y distribución sin necesidad de componentes adicionales.
- Sincronización: Los reductores de engranajes garantizan el movimiento sincronizado de múltiples cintas transportadoras en sistemas complejos, optimizando el flujo de material y minimizando atascos o cuellos de botella.
Robótica:
En robótica, los reductores de engranajes mejoran la eficiencia a través de los siguientes medios:
- Movimiento de precisión: Los reductores de engranajes proporcionan un control preciso sobre el movimiento de las articulaciones y los brazos del robot, lo que permite un posicionamiento y una manipulación precisos de los objetos.
- Inercia reducida: Los reductores de engranajes ayudan a reducir la inercia que experimentan los componentes robóticos, lo que permite movimientos más rápidos y con mayor capacidad de respuesta al tiempo que conservan energía.
- Diseño compacto: Los reductores de engranajes ofrecen una solución compacta y liviana para lograr diversos perfiles de movimiento en sistemas robóticos, lo que permite un uso eficiente del espacio y los recursos.
- Amplificación de par: Al amplificar el torque del motor, los reductores de engranajes permiten a los robots manejar cargas más pesadas y realizar tareas que requieren mayor fuerza, mejorando sus capacidades generales.
Al proporcionar un control de velocidad preciso, ajuste de torque y transmisión de movimiento confiable, los reductores de engranajes optimizan el rendimiento de los sistemas transportadores y la robótica, lo que genera una mayor eficiencia, un menor consumo de energía y capacidades operativas mejoradas.

How do gear reducers handle shock loads and sudden changes in torque?
Gear reducers are designed to handle shock loads and sudden changes in torque through several mechanisms that enhance their durability and reliability in challenging operating conditions.
1. Robust Construction: Gear reducers are constructed using high-strength materials and precision manufacturing techniques. This ensures that the gears, bearings, and other components can withstand sudden impacts and high torque fluctuations without deformation or failure.
2. Shock-Absorbing Features: Some gear reducer designs incorporate shock-absorbing features, such as flexible couplings, elastomeric elements, or torsionally flexible gear designs. These features help dampen and dissipate the energy from sudden shocks or torque spikes, reducing the impact on the entire system.
3. Torque Limiters: In applications where shock loads are common, torque limiters may be integrated into the gear reducer. These devices automatically disengage or slip when a certain torque threshold is exceeded, preventing damage to the gears and other components.
4. Overload Protection: Gear reducers can be equipped with overload protection mechanisms, such as shear pins or torque sensors. These mechanisms detect excessive torque and disengage the drive temporarily, allowing the system to absorb the shock or adjust to the sudden torque change.
5. Proper Lubrication: Adequate lubrication is essential for managing shock loads and sudden torque changes. High-quality lubricants reduce friction and wear, helping the gear reducer withstand dynamic forces and maintain smooth operation.
6. Dynamic Load Distribution: Gear reducers distribute dynamic loads across multiple gear teeth, which helps prevent localized stress concentrations. This feature minimizes the risk of tooth breakage and gear damage when subjected to sudden changes in torque.
By incorporating these design features and mechanisms, gear reducers can effectively handle shock loads and sudden changes in torque, ensuring the longevity and reliability of various 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 2024-02-22