Descripción del Producto
Hb Industrial High Power Big Torque Right Angle Hollow Shaft Helical Gearbox
Descripción del Producto
1. High efficiency and save power.
2. Wide speed ranges and high torque.
3. Multi-structure, various assembling methods.
4. High loading support, stable transmitting, and low noise level.
5. Excellent sealing, a wide range of industry applications.
6. It adopts various cooling and lubricating modes.
Fotos detalladas
Parámetros del producto
| ANG HB Industrial Gear Reducer | |
| Type | Helical parallel shaft type, Bevel-helical right-angle type |
| Model | H1/B1~H26/B26 |
| Input power | 3 ~ 5000 KW; |
| Input speed | 750rpm ~ 1500rpm |
| Reduction ratio | 1/1.25 ~ 1/450 |
| Output torque | 3 ~ 900kN.m |
| Install type | Foot / CHINAMFG shaft / Hollow shaft / Output flange… |
| Eficiencia | Single-stage 98%, 2-stage 96%, 3-stage 94%, 4-stage 92% |
| Precision of gear | Accurate grinding, class 6 |
| Design position | A / B / C / D / E / F / G / H / I |
| Accessories | Back stop / Cooling fan / Cooling coil / Oil pump / Compensation tank … |
♦ Coal mining
♦ Power Plant Equipment
♦ Metallurgical Industry
♦ Metal Forming Machinery
♦ Petrochemical Industry
♦ Mining Machine
♦ Hoisting Machinery
♦ Cement and construction Industry
♦ Environmental Protection Industry
♦ Cable Industry
♦ Chemical industry
♦ Food Machinery
Modelos
Horizontal:
Parallel shaft gear unit box
H1SH1, H1SH3, H1SH5, H1SH7, H1SH9, H1SH11, H1SH13, H1SH15, H1SH17, H1SH19
H2SH, H2HH, H2DH, H2KH, H2FH, H3SH, H3HH, H3DH, H3HM, H3DM, H4SH, H4HH, H4DH, H4HM, H4DM
Bevel helical right angle gear unit
B2SH, B2HH, B2DH, B2HM, B2DM, B3SH, B3HH, B3DH, B3HM, B3DM, B4SH, B4HH, B4DH, B4HM, B4DM
Vertical:
Parallel shaft gear unit box
H2SV, H2HV, H2DV, H3SV, H3DV, H4SV, H4HV, H4DV, H4KV, H4FV
Bevel helical right angle gear unit
B2SV, B2HV, B2DV, B3SV, B3HV, B3DV, B4SV, B4HV, B4DV, B4KV, B4F
Our Advantages
Perfil de la empresa
Certifications
Exhibition
Preguntas frecuentes
Q: Can you make the gear reducer with customization?
A: Yes, we can customize per your request, like flange, shaft, configuration, material, etc.
Q: Do you provide samples?
A: Yes. Sample is available for testing.
Q: What is your MOQ?
A: It is 10pcs for the beginning of our business.
Q: What’s your lead time?
A: Standard products need 5-30 days, a bit longer for customized products.
Q: Do you provide technology support?
A: Yes. Our company has a design and development team, we can provide technology support if you
need.
Q: How to ship to us?
A: It is available by air, by sea, or by train.
Q: How to pay the money?
A: T/T and L/C are preferred, with different currencies, including USD, EUR, RMB, etc.
Q: How can I know if the product is suitable for me?
A: >1ST confirm drawing and specification >2nd test sample >3rd start mass production.
Q: Can I come to your company to visit?
A: Yes, you are welcome to visit us at any time.
Q: How shall we contact you?
A: You can send an inquiry directly, and we will respond within 24 hours.
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| Solicitud: | Machinery |
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| Dureza: | Superficie del diente endurecida |
| Instalación: | Horizontal Type |
| Muestras: |
US$ 500/Piece
1 unidad (pedido mínimo) | Order Sample 1pc for the normal type and design
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| Personalización: |
Disponible
| Solicitud personalizada |
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Shipping Cost:
Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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| Payment Method: |
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Initial Payment Full Payment |
| Currency: | US$ |
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| Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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Performance of Bevel Gearboxes in Heavy-Duty Applications like Construction Equipment
Bevel gearboxes are well-suited for heavy-duty applications such as construction equipment due to their robust design and reliable performance:
- Durability: Bevel gearboxes are designed to withstand high loads, shocks, and impacts commonly encountered in construction environments.
- Torque Transmission: Construction equipment requires high torque to move heavy loads, and bevel gearboxes efficiently transmit torque between intersecting shafts.
- Directional Changes: Bevel gearboxes enable smooth and precise changes in rotational direction, crucial for controlling construction machinery.
- Power Distribution: These gearboxes ensure efficient power distribution to various components of construction equipment, enhancing overall functionality.
- Steering Mechanisms: Many construction vehicles rely on bevel gearboxes for their steering systems, allowing operators to navigate equipment with ease.
- Reliability: In demanding construction conditions, bevel gearboxes offer reliable and consistent performance, minimizing downtime and maintenance needs.
The ability of bevel gearboxes to handle heavy loads, transmit torque, and facilitate directional changes makes them indispensable components in construction equipment, contributing to the efficiency and effectiveness of various construction operations.

Challenges of Using Bevel Gearboxes
While bevel gearboxes offer various benefits, there are certain challenges that can arise when using them:
- Lubricación: Proper lubrication is essential to reduce friction, wear, and heat generation in bevel gearboxes. However, ensuring effective lubrication in the meshing bevel gears can be challenging due to their complex geometry and the potential for oil pooling or inadequate coverage.
- Noise and Vibration: Bevel gearboxes can produce noise and vibration during operation, especially at higher speeds. The interaction of the gear teeth can lead to noise generation, which may require additional measures such as sound insulation or vibration dampening to mitigate.
- Alignment: Precise alignment of the bevel gears is crucial to ensure smooth and efficient power transmission. Misalignment can lead to increased wear, reduced efficiency, and even gear tooth failure. Achieving proper alignment can be more complex in bevel gearboxes compared to other gearbox types.
- Maintenance: Bevel gearboxes may require more frequent maintenance compared to other gear systems. Regular inspections, lubrication checks, and gear tooth profile monitoring are necessary to detect and address any issues before they escalate.
- Restricciones de espacio: The design of bevel gearboxes can be bulky, especially when used in applications that require a high gear ratio. This can pose challenges in situations where space is limited.
- Heat Dissipation: High-speed or heavy-duty applications can generate significant heat in bevel gearboxes. Adequate heat dissipation mechanisms, such as cooling fins or lubrication cooling, may be required to prevent overheating and premature failure.
Engineers and manufacturers need to carefully address these challenges to ensure the reliable and effective use of bevel gearboxes in various applications.

Caja de engranajes cónicos: funcionamiento y mecánica
Una caja de engranajes cónicos es un tipo de dispositivo mecánico diseñado para transmitir movimiento rotacional y potencia entre dos ejes que se cruzan con ejes no paralelos. Emplea un conjunto de engranajes cónicos para cambiar la dirección del movimiento en 90 grados. Las cajas de engranajes cónicos se utilizan comúnmente en diversos sistemas y aplicaciones mecánicas donde se requiere un cambio en la dirección de rotación.
La función de una caja de engranajes cónicos se puede resumir de la siguiente manera:
- Cambio de dirección: Una caja de engranajes cónicos se utiliza principalmente para redirigir el movimiento de rotación desde un eje de entrada a un eje de salida orientado perpendicularmente. Esto permite la transmisión de potencia y movimiento en curvas o entre diferentes planos.
- Transferencia de par: Las cajas de engranajes cónicos son capaces de transmitir par entre ejes que se cruzan, lo que permite la transferencia eficiente de la fuerza de rotación desde el eje de entrada al eje de salida.
- Reducción o aumento de velocidad: Dependiendo de la disposición de los engranajes cónicos, una caja de engranajes cónicos también puede modificar la velocidad de rotación del eje de salida con respecto al eje de entrada. Esto permite reducir o aumentar la velocidad según sea necesario en el sistema mecánico.
El funcionamiento de una caja de engranajes cónicos se basa en el uso de engranajes cónicos, que poseen dientes de forma cónica que les permiten engranar entre sí en un ángulo determinado. Los tipos más comunes de engranajes cónicos utilizados en estas cajas son los engranajes cónicos rectos y los engranajes cónicos espirales.
Cuando el eje de entrada gira, su engranaje cónico acoplado se engrana con el primer engranaje cónico de la caja de engranajes. Como resultado, el movimiento de rotación se transmite al segundo engranaje cónico, montado en el eje de salida. La interacción de estos engranajes cambia el sentido de giro y transmite el par motor al eje de salida.
Las cajas de engranajes cónicos se encuentran en diversas aplicaciones, incluidos los diferenciales de automóviles, herramientas eléctricas, imprentas, máquinas herramienta y otros sistemas mecánicos donde la transmisión de par y los cambios de dirección son esenciales.


editor by CX 2024-01-26