คำอธิบายผลิตภัณฑ์
คำอธิบายผลิตภัณฑ์
ZHangZhoug New CZPT Hydraulic Co., Ltd. is a professional manufacturer of planetary reducers/gearbox. At present,we developed tens of thousands specifications of the planetary reducer/gearbox, travel drive,swing drive and winch drive.The ratio range is 3.3~9000, and the output torque range is 500~1200000N.m. The installation, dimensions and performance parameters of the reducer are exactly the same as famous European brands, which can be perfectly replaced and interchanged.
Details as follows:
BONFIGLIOLI (300 series, 700C series, 700T series, 600W series)
BREVINI (EM, ED, ET, EQ, EC, PD, PDA, CTD, CTU, SL types)
DINAMIC OIL (types RE, GB, RA, GBA)
REGGIANA RIDUTTORI (RR, RA type)
COMER (PG, PGA, PGR, PGW types)
REXROTH (GFT, GFT-W, GFB type)
ROSSI (R2E, R3E, R4E, RCE, RC2E, RC3E, MR2E, MR3E, MR4E, MRCE, MRC2E, MRC3E)
ZOLLERN (ZHP3.13, ZHP3.15, ZHP3.19, ZHP3.20, ZHP3.22, ZHP3.24, ZHP3.25, ZHP3.26, ZHP3.27, ZHP3.29, ZHP3.31, ZHP3.32)
FAIRFIELD, AUBURN GEAR, OMNI GEAR, O&K, etc. Therefore,our planetary reducer/gearbox can be used to replace the gearboxes of these brands.
| Bonfiglioli | Dinamic oil | Brevini | RR | ||
| 300 | RE110 | EM1571 | ED1571 | ET2571 | RR65/105 |
| 301 | RE210 | EM1030 | ED1030 | ET2030 | RR110/210 |
| 303 | RE240 | ED2030 | ET3030 | EQ4030 | RR310 |
| 304 | RE310 | ED2040 | ET3040 | EQ4040 | RR510 |
| 305 | RE510 | EM1045 | ED2045 | ET3045 | RR510/710 |
| 306 | RE810 | EM1046 | ED2046 | ET3046 | RR810 |
| EM1065 | ED2065 | ET3065 | |||
| 307 | RE1571 | EM1090 | ED2090 | ET3090 | RR1571 |
| RE1520 | |||||
| 309 | RE1520 | ED2150 | ET3150 | EQ4150 | RR1700 |
| 310 | RE2520 | ED2250 | ET3250 | EQ4250 | RR2700 |
| ED2320 | ET3320 | EQ4320 | |||
| 311 | RE3510 | SL3001,SL3002,SL3003,SL3004 | RR4000 | ||
| 313 | RE3511,RE3512,RE3513,RE3514 | SL4001,SL4002,SL4003,SL4004 | RR5000/RR5200 | ||
| 315 | RE6520 | SL6001,SL6002,SL6003,SL6004 SL8501,SL8502,SL8503 | RR6500 | ||
| 316 | GB11000 | SL12001,SL12002,SL12003,SL12004 | RR8000 | ||
| 317 | GB18000,GB21000, | SL18001,SL18002,SL18003 | RR10000 | ||
| 318 | GB26000 | SL25001,SL25002,SL25003,SL25004 | RR15000 | ||
| 319 | GB53000,GB53000 | SL35001,SL35002,SL35003,SL35004 | RR20000 | ||
| 320 | |||||
| 321 | GB61000 | ||||
300 Series Planetary Geabox Parameter
| Model |
Rated Output Torque (N.m) |
Max.Power (KW) |
Max.Input Speed (rpm) |
Ratio | |
| 301 | 1750 | 30 | 3000 | 3.4-2700 | 7-700 |
| 303 | 2500 | 40 | 3000 | 3.6-2800 | 9-800 |
| 305 | 5000 | 60 | 3000 | 3.6-2800 | 9-800 |
| 306 | 8500 | 75 | 2500 | 3.6-2900 | 9-800 |
| 307 | 12500 | 100 | 2500 | 3.4-2400 | 13-700 |
| 309 | 18500 | 130 |
2500 |
3.4-2400 | 13-700 |
| 310 | 25000 | 150 | 2000 | 4-2500 | 40-900 |
| 311 | 35000 | 180 | 2000 | 4-2100 | 18-800 |
| 313 | 50000 | 200 | 2000 | 4-2200 | 18-800 |
| 315 | 80000 | 250 | 1500 | 4-1800 | 70-900 |
| 316 | 105000 | 270 | 1500 | 4.4-1200 | 50-600 |
| 317 | 150000 | 300 | 1000 | 4-1900 | 70-900 |
| 318 | 200000 | 340 | 1000 | 4.4-1100 | 200-700 |
| 319 | 30000 | 380 | 500 | 4.8-1400 | 300-800 |
Office Environment
Our Equipment
Accessories for 300 Series
Certificate
ติดต่อเรา
How to contact us?
Nancy Zhang
Foreign Sales&Marketing Manager
HangZhou Kemer Engineering Machinery Co.,LTD
| ความแข็ง: | พื้นผิวฟันที่แข็ง |
|---|---|
| การติดตั้ง: | ประเภทแนวนอน |
| เค้าโครง: | โคแอกเซียล |
| รูปร่างเฟือง: | Spur Gear |
| ขั้นตอน: | สามขั้นตอน |
| พิมพ์: | เกียร์ทดรอบแบบดาวเคราะห์ |
| การปรับแต่ง: |
มีอยู่
| คำขอที่กำหนดเอง |
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Contribution of Planetary Gearboxes to Conveyor Belt Efficiency in Mining Operations
Planetary gearboxes play a crucial role in enhancing the efficiency and performance of conveyor belts in mining operations:
- ระบบส่งกำลังแรงบิดสูง: Planetary gearboxes are capable of transmitting high torque with minimal backlash. This feature ensures that the gearbox efficiently handles the substantial load requirements of conveyor belts used in mining, preventing slippage and ensuring reliable material transportation.
- การออกแบบที่กะทัดรัด: The compact size of planetary gearboxes allows them to be integrated seamlessly into conveyor systems, optimizing space utilization and allowing for efficient equipment layout in mining environments.
- Variable Speed Control: Planetary gearboxes provide precise speed control and can accommodate various speed requirements of conveyor belts. This versatility allows operators to adjust the conveyor speed to match specific material handling needs.
- High Efficiency: The inherent design of planetary gearboxes minimizes energy losses due to efficient power transmission. This efficiency translates into reduced energy consumption and operational costs over the lifetime of the conveyor system.
- Reliability and Durability: Planetary gearboxes are engineered to withstand demanding conditions often encountered in mining environments, including shock loads, abrasive materials, and harsh weather. Their robust construction ensures reliable operation and minimal downtime.
- Low Maintenance: The durability of planetary gearboxes leads to reduced maintenance requirements. This benefit is particularly valuable in mining operations where minimizing downtime is essential for maintaining high productivity levels.
- Customizability: Planetary gearboxes can be tailored to suit specific conveyor system requirements, including gear ratios, torque ratings, and mounting options. This flexibility allows for optimized system design and performance.
By effectively transmitting power, providing accurate speed control, and offering a compact and robust design, planetary gearboxes significantly enhance the efficiency and reliability of conveyor belts in mining operations. Their ability to handle high loads, operate with low maintenance needs, and withstand harsh conditions contributes to improved productivity and reduced operational costs.

Advantages of Backlash Reduction Mechanisms in Planetary Gearboxes
Backlash reduction mechanisms in planetary gearboxes offer several advantages that contribute to improved performance and precision:
Improved Positioning Accuracy: Backlash, or the play between gear teeth, can lead to positioning errors in applications where precise movement is crucial. Reduction mechanisms help minimize or eliminate this play, resulting in more accurate positioning.
Better Reversal Characteristics: Backlash can cause a delay in reversing the direction of motion. With reduction mechanisms, the reversal is smoother and more immediate, making them suitable for applications requiring quick changes in direction.
Enhanced Efficiency: Backlash can lead to energy losses and reduced efficiency due to the impacts between gear teeth. Reduction mechanisms minimize these impacts, improving overall power transmission efficiency.
Reduced Noise and Vibration: Backlash can contribute to noise and vibration in gearboxes, affecting both the equipment and the surrounding environment. By reducing backlash, the noise and vibration levels are significantly decreased.
Better Wear Protection: Backlash can accelerate wear on gear teeth, leading to premature gearbox failure. Reduction mechanisms help distribute the load more evenly across the teeth, extending the lifespan of the gearbox.
Enhanced System Stability: In applications where stability is crucial, such as robotics and automation, backlash reduction mechanisms contribute to smoother operation and reduced oscillations.
Compatibility with Precision Applications: Industries such as aerospace, medical equipment, and optics require high precision. Backlash reduction mechanisms make planetary gearboxes suitable for these applications by ensuring accurate and reliable motion.
Increased Control and Performance: In applications where control is critical, such as CNC machines and robotics, reduction mechanisms provide better control over the motion and enable finer adjustments.
Minimized Error Accumulation: In systems with multiple gear stages, backlash can accumulate, leading to larger positioning errors. Reduction mechanisms help minimize this error accumulation, maintaining accuracy throughout the system.
Overall, incorporating backlash reduction mechanisms in planetary gearboxes leads to improved accuracy, efficiency, reliability, and performance, making them essential components in precision-driven industries.

Challenges and Solutions for Managing Power Transmission Efficiency in Planetary Gearboxes
Managing power transmission efficiency in planetary gearboxes is crucial to ensure optimal performance and minimize energy losses. Several challenges and solutions are involved in maintaining high efficiency:
1. Gear Meshing Efficiency: The interaction between gears can lead to energy losses due to friction and meshing misalignment. To address this, manufacturers use precision manufacturing techniques to ensure accurate gear meshing and reduce friction. High-quality materials and surface treatments are also employed to minimize wear and friction.
2. Lubrication: Proper lubrication is essential to reduce friction and wear between gear surfaces. Using high-quality lubricants with the appropriate viscosity and additives can enhance power transmission efficiency. Regular maintenance and monitoring of lubrication levels are vital to prevent efficiency losses.
3. Bearing Efficiency: Bearings support the rotating elements of the gearbox and can contribute to energy losses if not properly designed or maintained. Choosing high-quality bearings and ensuring proper alignment and lubrication can mitigate efficiency losses in this area.
4. Bearing Preload: Incorrect bearing preload can lead to increased friction and efficiency losses. Precision assembly and proper adjustment of bearing preload are necessary to optimize power transmission efficiency.
5. Mechanical Losses: Various mechanical losses, such as windage and churning losses, can occur in planetary gearboxes. Designing gearboxes with streamlined shapes and efficient ventilation systems can reduce these losses and enhance overall efficiency.
6. Material Selection: Choosing appropriate materials with high strength and minimal wear characteristics is essential for reducing power losses due to material deformation and wear. Advanced materials and surface coatings can be employed to enhance efficiency.
7. Noise and Vibration: Excessive noise and vibration can indicate energy losses in the form of mechanical inefficiencies. Proper design and precise manufacturing techniques can help minimize noise and vibration, indicating better power transmission efficiency.
8. Efficiency Monitoring: Regular efficiency monitoring through testing and analysis allows engineers to identify potential issues and optimize gearbox performance. This proactive approach ensures that any efficiency losses are promptly addressed.
By addressing these challenges through careful design, material selection, manufacturing techniques, lubrication, and maintenance, engineers can manage power transmission efficiency in planetary gearboxes and achieve high-performance power transmission systems.


editor by CX 2023-10-23