Descripción del Producto
Reducer Spiral Bevel Helical Speed Reduction Agriculture Agricultural Cycloidal Servo High Precision Planetary Winch Track Wheel Slewing Drive Nmrv Worm Gearbox
Our products
Caja de engranajes de tornillo sin fin: RV series, WP series, SWL series screw jack, VF series
Helical gearbox: R/F/K/S series, HB series, BKM series, RC series, SMR shaft mounted gearbox, TA shaft mounted gearbox
Cycloidal gearboxes: BL/XL flange vertical installed double shaft type, BW/XW baseboard horizontal installed double shaft type, BLD/XLD flange vertical installed motor direct-connection type, BWD/XWD baseboard horizontal installed motor direct-connection type
Planetary gearbox: High precision planetary gearboxes, Planetary gearbox for feed mixer, Planetary gearbox for construction mixer, Travel drives, Winch drives, Slew drives, Inline gear reducer
Agricultural gearbox: Planetary gearbox for feed mixer, Flail Mower Gearbox, Rotary Tiller Gearbox, Lawn Mower Gearbox, rotary cutter gearbox, post hole gearbox, rotary mower gearbox, irrigation gearbox, fertilizer spreader gearbox, hydraulic drive gearbox, rotary rakes gearbox, hay tedders gearbox, sewage agitators gearbox, cutter bars gearbox, snowblower gearbox…
Our Advantages
–Box processing accuracy assurance
Large horizontal box machining center
High-end fully automatic multi-axis CNC boring and milling machine
Fully CNC high-precision processing ensures the accuracy of hole location
–Fourth level precision of precision gear grinding
The tooth surface is carburized and hardened, which is durable
Fine rolling and grinding process, high efficiency, stable and low noise
–Automatic numerical control workshop
Standardized CNC production workshop
Pass the ISO9001 quality system certification
Efficient operation to ensure production duration
–Diversified configuration and matching as required
It can be equipped with common three-phase/single-phase, braking, frequency conversion, explosion-proof, servo, and other motors.
Different motor voltage/frequency, protection grade, and energy efficiency grade can be configured.
Customizable input end cover matching non-standard power input device
–Automatic painting assembly line
Fully automatic painting assembly line
Ensure both internal and external products
Exquisite appearance and brand expression
–Rich customization design capability
Design technology team with more than 20 years of experience
Can undertake customization of various non-standard reducers
Perfil de la empresa
The company specializes in producing worm gearboxes (reducers), agricultural gearboxes, planetary gearboxes, helical gearboxes, swl series screw gearboxes, R, K, F, S series helical gear reducers, B/X series cycloidal pin gear reducers, etc. The products are exported to dozens of countries and regions in Europe, America, Japan, India, Brazil, etc. The products are mainly used in plastics, rubber, metallurgy and mining, petrochemical industry, hoisting and transportation, light industrial food, and other fields.
The company has exact and sensitive equipment, challenging tooth surface processing, and manufacturing equipment: German and Swiss gear grinders, gear testers, hobbing machines, large boring and milling machines, Japanese machining centers, etc.
More than 20 projects, such as the high torque reducer developed by the company, have won the national patent invention certificate and also won the national “high-tech enterprise certificate” in 2571.
Since its establishment in 2003, the company has adhered to the concept of “sustainable operation,” the business philosophy of “people-oriented, customer first,” and the core values of “unity, friendship, dedication, innovation, and efficiency.” The company keeps up with the cutting-edge technology in the market and strives to create the most satisfactory products for customers!
Product processing flow
Box processing process
Mechanical modeling of metal mold → casting on production line → artificial aging treatment → shot peening treatment → machining center processing → CMM detection
Gear processing process
Forging → normalizing → rough turning → fine turning → gear hobbing → chamfering of tooth end → carburizing and quenching (HRC58-62) → shot blasting → grinding of the end face and inner hole → gear grinding → accuracy testing (tooth shape, tooth orientation, tooth pitch, etc., level 6) → wire cutting keyway → magnetic particle flaw detection → ultrasonic cleaning and rust prevention.
Process flow of gear shaft processing
Forging → normalizing → rough turning (including center hole drilling) → finish turning → gear hobbing → keyway milling → carburizing and quenching (HRC58-62) → shot blasting → grinding center hole → excircle grinding → gear grinding → testing (tooth shape, tooth pitch, etc., level 6) → magnetic particle inspection → ultrasonic cleaning and rust prevention.
Certifications
Embalaje y envío
How to select reducer
To determine the model of a reducer, the following parameters need to be determined:
1. Determine the running speed of the machine, and calculate the reduction ratio of the reducer according to this speed (reduction ratio=input shaft speed/output shaft speed=motor speed/mechanical required speed);
2. Calculate the load torque, select the output of the reducer according to this torque (refer to the “Output Torque Table” provided by the reducer manufacturer), and determine the reducer model;
3. Determine the additional functions of the reducer, such as power off braking, power on braking, frequency conversion, shrink frame, housing material, etc. Some additional functions can only be provided by specific factories.
| Solicitud: | Motor, Electric Cars, Motorcycle, Machinery, Marine, Toy, Agricultural Machinery, Car |
|---|---|
| Disposición: | Coaxial |
| Dureza: | Soft Tooth Surface |
| Paso: | Stepless |
| Transport Package: | Wooden Box |
| Specification: | Customize |
| Muestras: |
US$ 9999/Piece
1 unidad (pedido mínimo) | |
|---|

Distinguishing Bevel Gearboxes from Other Gear Systems
Bevel gearboxes stand out from other types of gear systems due to their unique characteristics and applications:
- Angle of Intersection: Bevel gearboxes are designed to transmit motion between intersecting shafts at specific angles, making them ideal for changing the direction of rotational motion.
- Direction Change: Unlike parallel shaft gear systems, bevel gearboxes change the direction of motion by 90 degrees or other specified angles, allowing them to efficiently transmit power around corners.
- Compact and Space-Saving: Bevel gearboxes are often compact and space-saving, making them suitable for applications with limited room for gear assembly.
- Wide Range of Angles: Bevel gearboxes can handle various angle configurations beyond 90 degrees, providing flexibility in designing complex mechanical systems.
- Specialized Applications: Bevel gearboxes are commonly used in applications requiring changes in direction, such as automotive differential systems, steering mechanisms, printing presses, and machinery with intersecting axes.
These distinguishing features make bevel gearboxes a versatile choice for scenarios where changing the direction of rotational motion or transmitting power between intersecting shafts is essential.

Efficient Power Transmission and Torque Transfer with Bevel Gearboxes
Bevel gearboxes are designed to ensure efficient power transmission and torque transfer in various mechanical systems. Here’s how they contribute to these aspects:
- Multiple Gear Teeth Engagement: Bevel gearboxes typically have multiple gear teeth in contact simultaneously, distributing the load across a larger surface area. This feature enhances torque-carrying capacity and minimizes wear, resulting in efficient torque transfer.
- High Gear Ratio: Bevel gearboxes can achieve high gear ratios, allowing them to convert high-speed, low-torque input into low-speed, high-torque output. This capability is valuable for applications requiring precise control over rotational speed and force.
- Smooth Motion Transfer: The meshing of bevel gears ensures smooth and continuous motion transfer between intersecting shafts. This is essential for maintaining consistent power transmission and reducing vibration or noise.
- Optimized Gear Tooth Design: Bevel gear teeth are carefully engineered with specific profiles and angles to minimize friction and maximize contact area. This design optimization enhances the efficiency of torque transfer while reducing energy losses due to friction.
- Precise Machining and Alignment: Precision machining and proper alignment of bevel gears within the gearbox contribute to efficient power transmission. Accurate gear meshing reduces the likelihood of backlash and ensures minimal energy wastage.
Bevel gearboxes are chosen for applications where efficient power transmission, precise torque transfer, and reliable motion control are essential requirements.

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 2023-09-12