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Planetar y gearbox is a kind of reducer with wide versatility. The inner gear adopts low carbon alloy steel carburizing quenching and grinding or nitriding process. Planetary gearbox has the characteristics of small structure size, large output torque, high speed ratio, high efficiency, safe and reliable performance, etc. The inner gear of the planetary gearbox can be divided into spur gear and helical gear.
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| 애플리케이션: | 자동차, 기계, 선박, 농업 기계 |
|---|---|
| 기능: | 드라이브 토크 변경, 속도 변경, 속도 감소 |
| 경도: | 경화된 치아 표면 |
| 설치: | 세로형 |
| 유형: | 행성 기어 박스 |
| Size: | 60mm-160mm |
| 샘플: |
US$ 100/Piece
1개(최소 주문) | |
|---|
| 사용자 정의: |
사용 가능
| 맞춤형 요청 |
|---|

행성 기어박스에서 컴팩트함과 높은 기어비 달성의 과제
소형화를 유지하면서 높은 기어비를 갖춘 행성 기어박스를 설계하는 데는 여러 가지 과제가 있습니다.
- 공간 제약: 기어비가 증가함에 따라 필요한 기어단 수도 증가합니다. 이로 인해 기어박스 크기가 커질 수 있으며, 공간이 제한된 응용 분야에서는 이를 수용하기 어려울 수 있습니다.
- 지지 하중: 기어비가 높을수록 힘의 재분배로 인해 베어링 및 기타 부품에 가해지는 부하가 증가하는 경우가 많습니다. 이는 기어박스의 내구성과 수명에 영향을 미칠 수 있습니다.
- 능률: 각 기어단은 마찰 및 기타 요인으로 인해 손실을 발생시킵니다. 여러 단을 사용하면 기어박스의 전체 효율이 감소하여 에너지 효율에 영향을 미칠 수 있습니다.
- 복잡성: 높은 기어비를 달성하려면 복잡한 기어 배열과 추가 구성 요소가 필요할 수 있으며, 이로 인해 제조 복잡성과 비용이 증가할 수 있습니다.
- 열 효과: 기어비가 높을수록 마찰과 부하가 증가하여 열 발생이 커질 수 있습니다. 과열 및 부품 고장을 방지하기 위해서는 열 효과를 관리하는 것이 매우 중요합니다.
이러한 과제를 해결하기 위해 기어박스 설계자들은 첨단 소재, 정밀 가공 기술, 그리고 혁신적인 베어링 배열을 활용하여 소형화와 성능 향상을 위한 설계를 최적화합니다. 컴퓨터 시뮬레이션과 모델링은 다양한 작동 조건에서 기어박스의 동작을 예측하는 데 중요한 역할을 하며, 신뢰성과 효율성을 보장하는 데 도움이 됩니다.

Signs of Wear or Damage in Planetary Gearboxes and Recommended Service
Planetary gearboxes, like any mechanical component, can exhibit signs of wear or damage over time. Recognizing these signs is crucial for timely maintenance to prevent further issues. Here are some common signs of wear or damage in planetary gearboxes:
1. Unusual Noise: Excessive noise, grinding, or whining sounds during operation can indicate worn or misaligned gear teeth. Unusual noise is often a clear indicator that something is wrong within the gearbox.
2. Increased Vibration: Excessive vibration or shaking during operation can result from misalignment, damaged bearings, or worn gears. Vibration can lead to further damage if not addressed promptly.
3. Gear Tooth Wear: Inspect gear teeth for signs of wear, pitting, or chipping. These issues can result from improper lubrication, overload, or other operational factors. Damaged gear teeth can affect the gearbox’s efficiency and performance.
4. Oil Leakage: Leakage of gearbox oil or lubricant can indicate a faulty seal or gasket. Oil leakage not only leads to reduced lubrication but can also cause environmental contamination and further damage to the gearbox components.
5. Temperature Increase: A significant rise in operating temperature can suggest increased friction due to wear or inadequate lubrication. Monitoring temperature changes can help identify potential issues early.
6. Reduced Efficiency: If you notice a decrease in performance, such as decreased torque output or inconsistent speed, it could indicate internal damage to the gearbox components.
7. Abnormal Gear Ratios: If the output speed or torque does not match the expected gear ratio, it could be due to gear wear, misalignment, or other issues affecting the gear engagement.
8. Frequent Maintenance Intervals: If you find that you need to service the gearbox more frequently than usual, it could be a sign that the gearbox is experiencing excessive wear or damage.
When to Service: If any of the above signs are observed, it’s important to address them promptly. Regular maintenance checks are also recommended to detect potential issues early and prevent more significant problems. Scheduled maintenance should include inspections, lubrication checks, and replacement of worn or damaged components.
It’s advisable to consult the gearbox manufacturer’s guidelines for recommended service intervals and practices. Regular maintenance can extend the lifespan of the planetary gearbox and ensure it continues to operate efficiently and reliably.

Impact of Gear Ratio on Output Speed and Torque in Planetary Gearboxes
The gear ratio of a planetary gearbox has a significant effect on both the output speed and torque of the system. The gear ratio is defined as the ratio of the number of teeth on the driven gear (output) to the number of teeth on the driving gear (input).
1. Output Speed: The gear ratio determines the relationship between the input and output speeds of the gearbox. A higher gear ratio (more teeth on the output gear) results in a lower output speed compared to the input speed. Conversely, a lower gear ratio (fewer teeth on the output gear) leads to a higher output speed relative to the input speed.
2. Output Torque: The gear ratio also affects the output torque of the gearbox. An increase in gear ratio amplifies the torque delivered at the output, making it higher than the input torque. Conversely, a decrease in gear ratio reduces the output torque relative to the input torque.
The relationship between gear ratio, output speed, and output torque is inversely proportional. This means that as the gear ratio increases and output speed decreases, the output torque proportionally increases. Conversely, as the gear ratio decreases and output speed increases, the output torque proportionally decreases.
It’s important to note that the gear ratio selection in a planetary gearbox involves trade-offs between output speed and torque. Engineers choose a gear ratio that aligns with the specific application’s requirements, considering factors such as desired speed, torque, and efficiency.


editor by CX 2024-01-30