製品説明
MW High Quality Agricultural Industrial Aluminium Small Planetary NMRV Mower Rotary Cutter Spiral Bevel Swing Variable Speed Differential Reducer Tiller Gearbox
Our Gearbox has many items for your choosing and we can produce as per your drawing or sample to meet your special request
1. Large output torque
2. Safe, reliable, economical and durable
3. Stable transmission, quiet operation
4. High carrying ability
5. High modularization design, may equip with various outer power input conveniently. Same machine type may equip with various power motor. It is easy to realize the combination and junction between every machine type
6. Transmission ratio: Fine division, wide scope. The combined machine type may form very large transmission ratio, i. E. Output very low rotary speed.
7. Form of installation: The position to be installed is not limited.
8. High strength, compact the box body of high strength cast iron, gear and gear shaft adapts the gas carbonization, quenching and fine grinding process, therefore the bearing capacity of unit volume is high.
9. Long life: Under the condition of correct type chosen(including choosing suitable operation parament ) normal operation and maintenance, the life if main parts speed reducer(except wearing parts)should not be less than 20000 hours. The wearing parts include lubricating oil, oil seal and bearing.
10. Low noise: Because main parts of speed reducer are processed, and tested critically, therefore the noise of speed reducer is low.
11.Our gear box have reached the advance international level, can replace the same kind of products imported.
HangZhou CZPT Industry Co., Ltd. is a specialized supplier of a full range of chains, sprockets, gears, gear racks, gearbox, v belt pulley, timing pulley, V-belts, couplings, machined parts and so on.
Due to our CZPT in offering best service to our clients, understanding of your needs and overriding sense of responsibility toward filling ordering requirements, we have obtained the trust of buyers worldwide. Having accumulated precious experience in cooperating with foreign customers, our products are selling well in the American, European, South American and Asian markets.Our products are manufactured by modern computerized machinery and equipment. Meanwhile, our products are manufactured according to high quality standards, and complying with the international advanced standard criteria.
With many years’ experience in this line, we will be trusted by our advantages in competitive price, one-time delivery, prompt response, on-hand engineering support and good after-sales services.
Additionally, all our production procedures are in compliance with ISO9001 standards. We also can design and make non-standard products to meet customers’ special requirements. Quality and credit are the bases that make a corporation alive. We will provide best services and high quality products with all sincerity. If you need any information or samples, please contact us and you will have our soon reply.
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| 応用: | Motor, Machinery, Marine, Agricultural Machinery |
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| 関数: | 動力分配、クラッチ、駆動トルクの変更、駆動方向の変更、速度変更、速度低下、速度上昇 |
| レイアウト: | 同軸 |
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| Shipping Cost:
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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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Concept of Coaxial and Parallel Shaft Arrangements in Planetary Gearboxes
Coaxial and parallel shaft arrangements refer to the orientation of the input and output shafts in a planetary gearbox:
- Coaxial Shaft Arrangement: In this arrangement, the input and output shafts are aligned along the same axis, with one shaft passing through the center of the other. This design results in a compact and space-efficient gearbox, making it suitable for applications with limited space. Coaxial planetary gearboxes are commonly used in scenarios where the gearbox needs to be integrated into a compact housing or enclosure.
- Parallel Shaft Arrangement: In a parallel shaft arrangement, the input and output shafts are positioned parallel to each other but not on the same axis. Instead, they are offset from each other. This configuration allows for greater flexibility in designing the layout of the gearbox and the surrounding machinery. Parallel shaft planetary gearboxes are often used in applications where the spatial arrangement requires the input and output shafts to be positioned in different locations.
The choice between a coaxial and parallel shaft arrangement depends on factors such as available space, mechanical requirements, and the desired layout of the overall system. Coaxial arrangements are advantageous when space is limited, while parallel arrangements offer more design flexibility for accommodating various spatial constraints.

遊星ギアボックスの寿命を延ばすメンテナンス方法
遊星ギアボックスの寿命と最適な性能を確保するには、適切なメンテナンスが不可欠です。遊星ギアボックスの寿命を延ばすのに役立つ具体的なメンテナンス方法をご紹介します。
1. 定期検査: ギアボックスの定期的な目視検査をスケジュールに組み入れましょう。摩耗、損傷、オイル漏れ、その他の異常な状態がないか確認しましょう。問題を早期に発見することで、より深刻な問題を防ぐことができます。
2. 潤滑: ギアボックス部品間の摩擦と摩耗を低減するには、適切な潤滑が不可欠です。潤滑油の種類、粘度、交換間隔については、メーカーの推奨事項に従ってください。早期摩耗を防ぐため、ギアボックスが適切に潤滑されていることを確認してください。
3. 適切な取り付け: ギアボックスがメーカーのガイドラインと仕様に従って正しく取り付けられていることを確認してください。適切なアライメント、トルク設定、クリアランスは、ミスアライメントに起因する摩耗やその他の問題を防ぐために不可欠です。
4. 負荷監視: ギアボックスの設計容量を超える過負荷は避けてください。過負荷は摩耗を加速させ、ギアボックスの寿命を縮める可能性があります。負荷状態を定期的に監視し、ギアボックスの定格容量内であることを確認してください。
5. 温度制御: 動作温度は推奨範囲内に維持してください。過度の熱は摩耗の促進や潤滑油の劣化につながる可能性があります。高温環境では、適切な換気と冷却対策が必要となる場合があります。
6. シールとガスケットの検査: シールとガスケットに漏れの兆候がないか定期的に点検してください。シールが損傷すると潤滑剤が漏れて汚染され、早期摩耗やギアの損傷につながる可能性があります。
7. 振動解析: 振動解析技術を用いることで、位置ずれ、アンバランス、その他の機械的な問題の早期兆候を検出できます。振動レベルを監視することで、深刻な損傷につながる前に問題を特定することができます。
8. 予防保守: ギアボックスの運転状況と使用状況に基づいて予防保守プログラムを確立します。ギアの点検、潤滑油の交換、部品の交換など、定期的な保守作業を必要に応じて実施します。
9. トレーニングとドキュメント作成: メンテナンス担当者がギアボックスの適切なメンテナンス手順を習得していることを確認してください。ギアボックスの状態と履歴を追跡するために、メンテナンス作業、検査、修理の包括的な記録を保管してください。
10. メーカーのガイドラインを参照してください。 ギアボックスのモデルと用途に応じたメーカーのメンテナンスおよびサービスガイドラインを必ず参照してください。これらのガイドラインに従うことで、保証の適用範囲を維持し、ベストプラクティスを確実に遵守することができます。
これらのメンテナンス方法を遵守することで、遊星ギアボックスの寿命を大幅に延ばし、ダウンタイムを最小限に抑え、産業機械またはアプリケーションの信頼性の高いパフォーマンスを確保できます。

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. 潤滑: 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 2024-02-27