제품 설명
HFW 시리즈 유성 윈치 기어박스는 18개의 정밀하게 배치된 프레임 크기로 구성됩니다. 콤팩트한 디자인으로 기어박스를 윈치 드럼에 통합할 수 있습니다. 안전 브레이크는 기어박스 내부에 통합하거나 외부에 장착할 수 있으며, 기어에 공통 윤활제를 사용합니다. 전기 구동 버전은 인라인 및 직각 구성으로 제공됩니다. 토크 정격은 기어에 대한 최소 승인 등급 안전 계수에 따라 FEM 등급별로 정리됩니다.
특징:
컴팩트한 구조와 공간 절약형 디자인
견고한 메인 베어링 시스템
높은 토크 용량
높은 하중 용량
통합 정적 다중 디스크 주차 브레이크
견인을 위한 옵션 분리 장치
옵션 빠른 분리 장치
간단한 장착
간편한 오일 교환
저소음 주행 작동
수업 승인 프로그램
ATEX 적합성 요구 사항
토크 정격은 FEM 클래스별로 정리됩니다.
안전 브레이크는 기어박스 내부에 통합되거나 외부에 장착될 수 있으며 기어에 공통 윤활이 제공됩니다.
명세서:
1.Our material warehouse
2. Our machining euqipment
3 Our Inspection equipment
4 Our assembly line
5 Our testing machine
6 Our painting line
7 Finished gearbox warehouse
결론적으로, 엘리트 유압(ELITE Hydraulic)은 다양한 산업 분야에 적합한 품질, 가치, 그리고 전문적인 동력 전달 솔루션을 제공합니다. 엘리트 유압의 전문성, 경험, 그리고 고객 만족을 위한 헌신을 통해 고객 여러분은 엘리트 유압과 함께하실 때 안심하고 맡기실 수 있습니다. 트래블 기어박스, 전기 구동 장치, 트래블 구동 장치, 슬루 기어박스, 윈치 기어박스, 커터 기어박스, 트럭 믹서 기어박스, 트윈 샤프트 믹서 또는 기타 유압 전달 솔루션이 필요하시다면, 엘리트 유압을 믿고 최고의 솔루션을 받아보세요. 지금 바로 연락하셔서 엘리트 유압의 동력 전달 제품 및 서비스에 대해 자세히 알아보세요.
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| 애플리케이션: | 모터, 오토바이, 기계, 농업 기계 |
|---|---|
| 기능: | 드라이브 토크 변경, 속도 변경, 속도 감소 |
| 경도: | 경화된 치아 표면 |
| 단계: | 3단계 |
| 유형: | 행성 기어 박스 |
| Input Speed: | 4000rpm |
| 사용자 정의: |
사용 가능
| 맞춤형 요청 |
|---|

Contribution of Planetary Gearboxes to Conveyor Belt Efficiency in Mining Operations
Planetary gearboxes play a significant role in enhancing the efficiency of conveyor belts used in mining operations:
- High Torque Capability: Planetary gearboxes are capable of providing high torque output, which is essential for handling heavy loads of mined materials on conveyor belts.
- 컴팩트한 디자인: The compact nature of planetary gearboxes allows them to be integrated into tight spaces, making them suitable for conveyor systems where space is limited.
- Multi-Stage Design: Planetary gearboxes can achieve high gear ratios through multiple stages of gear reduction. This allows for efficient power transmission from the motor to the conveyor, reducing the load on the motor and increasing overall efficiency.
- Load Distribution: Planetary gearboxes distribute the load across multiple planet gears, which helps in minimizing wear and ensuring longer lifespan of the gearbox.
- Variable Speed Control: By using planetary gearboxes with variable speed capabilities, conveyor belts can be operated at different speeds to match the processing requirements, optimizing material handling and energy consumption.
- Overload Protection: Some planetary gearboxes feature built-in overload protection mechanisms, safeguarding the gearbox and conveyor system from damage due to sudden increases in load.
Overall, planetary gearboxes enhance the efficiency, reliability, and performance of conveyor belts in mining operations by providing the necessary torque, compact design, and precise control needed to transport mined materials effectively.

Impact of Temperature Variations and Environmental Conditions on Planetary Gearbox Performance
The performance of planetary gearboxes can be significantly influenced by temperature variations and environmental conditions. Here’s how these factors impact their operation:
Temperature Variations: Extreme temperature fluctuations can affect the lubrication properties of the gearbox. Cold temperatures can cause the lubricant to thicken, leading to increased friction and reduced efficiency. On the other hand, high temperatures can cause the lubricant to thin out, potentially leading to insufficient lubrication and accelerated wear.
Environmental Contaminants: Planetary gearboxes used in outdoor or industrial environments can be exposed to contaminants such as dust, dirt, moisture, and chemicals. These contaminants can infiltrate the gearbox and degrade the quality of the lubricant. Additionally, abrasive particles can cause wear on gear surfaces, leading to decreased performance and potential damage.
Corrosion: Exposure to moisture, especially in humid or corrosive environments, can lead to corrosion of gearbox components. Corrosion weakens the structural integrity of gears and other components, which can ultimately result in premature failure.
Thermal Expansion: Temperature changes can cause materials to expand and contract. In gearboxes, this can lead to misalignment of gears and improper meshing, causing noise, vibration, and reduced efficiency. Proper consideration of thermal expansion is crucial in gearbox design.
Sealing and Ventilation: To mitigate the impact of temperature and environmental factors, planetary gearboxes need effective sealing to prevent contaminants from entering and to retain the lubricant. Proper ventilation is also essential to prevent pressure build-up inside the gearbox due to temperature changes.
Cooling Systems: In applications where temperature control is critical, cooling systems such as fans or heat exchangers can be incorporated to maintain optimal operating temperatures. This helps prevent overheating and ensures consistent gearbox performance.
Overall, temperature variations and environmental conditions can have a profound impact on the performance and lifespan of planetary gearboxes. Manufacturers and operators need to consider these factors during design, installation, and maintenance to ensure reliable and efficient operation.

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 2024-02-24