Ürün Açıklaması
Ürün Açıklaması
China made low price planetary gearbox for servo motor or nema32 brushless dc motor reducer
The deceleration ratio is 1:4 1:10 1:16 1:24 1:36 large spot inventory reduction ratio! Provide custom other spec reducer and deceleration ratio! No matter the quantity as long as you can provide drawings we can make it!
| KeyWords | Planetary gearbox |
| Model | PX80 |
| Oran | 1-stage: 4.6
2-stage: 10.16.24.36 3-stage: 64.96.125.144 |
| Color | Black/Silver or on customer request |
| Material of housing | Aluminum alloy with iron |
| Oil Seal | Input: SKF Output: NAK |
| Yağlayıcı | Synthetic or Mineral Oil |
| Garanti | 1 year |
| Paketleme | Carton and wooden case |
| Mass | 2.5Kg |
Click to get your special discount
Click to get your special discount
| product assortment |
Click to get your special discount
| Service |
Customer service officer
Our customer service personnel are experienced product specialists who can answer your questions 7 days a week from 9 am to 5 pm. Contact us now. |
OEM / ODMOur professional staffs allow us to have the capability to design and manufacture a wide range of new items according to the buyer’s requirements. Our ability to provide buyers labels and design services for our clients make us an attractive choice. |
Firm teamTimes Brilliant is committed to delivery quality products. We guarantee our products to be free from manufacture defects. We offer one-month of return & exchange service, one-year of parts replacement and lifetime tech support |
| Factory Tour |
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| Başvuru: | Motor |
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| Sertlik: | Yumuşak Diş Yüzeyi |
| Kurulum: | Dikey Tip |
| Özelleştirme: |
Mevcut
| Özelleştirilmiş İstek |
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Kargo Ücreti:
Birim başına tahmini yük. |
nakliye maliyeti ve tahmini teslimat süresi hakkında. |
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| Ödeme yöntemi: |
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İlk Ödeme Tam Ödeme |
| Para birimi: | US$ |
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| İade ve geri ödemeler: | Ürünleri teslim aldıktan sonra 30 gün içerisinde iade talebinde bulunabilirsiniz. |
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Are there any disadvantages or limitations to using gear reducer systems?
While gear reducer systems offer numerous advantages, they also come with certain disadvantages and limitations that should be considered during the selection and implementation process:
1. Size and Weight: Gear reducers can be bulky and heavy, especially for applications requiring high gear ratios. This can impact the overall size and weight of the machinery or equipment, which may be a concern in space-constrained environments.
2. Efficiency Loss: Despite their high efficiency, gear reducers can experience energy losses due to friction between gear teeth and other components. This can lead to a reduction in overall system efficiency, particularly in cases where multiple gear stages are used.
3. Cost: The design, manufacturing, and assembly of gear reducers can involve complex processes and precision machining, which can contribute to higher initial costs compared to other power transmission solutions.
4. Maintenance: Gear reducer systems require regular maintenance, including lubrication, inspection, and potential gear replacement over time. Maintenance activities can lead to downtime and associated costs in industrial settings.
5. Noise and Vibration: Gear reducers can generate noise and vibrations, especially at high speeds or when operating under heavy loads. Additional measures may be needed to mitigate noise and vibration issues.
6. Limited Gear Ratios: While gear reducers offer a wide range of gear ratios, there may be limitations in achieving extremely high or low ratios in certain designs.
7. Temperature Sensitivity: Extreme temperatures can affect the performance of gear reducer systems, particularly if inadequate lubrication or cooling is provided.
8. Shock Loads: While gear reducers are designed to handle shock loads to some extent, severe shock loads or abrupt changes in torque can still lead to potential damage or premature wear.
Despite these limitations, gear reducer systems remain widely used and versatile components in various industries, and their disadvantages can often be mitigated through proper design, selection, and maintenance practices.

Redüktörler şok yükleri ve ani tork değişimlerini nasıl karşılar?
Dişli redüktörleri, zorlu çalışma koşullarında dayanıklılıklarını ve güvenilirliklerini artıran çeşitli mekanizmalar aracılığıyla şok yükleri ve ani tork değişimlerini karşılayacak şekilde tasarlanmıştır.
1. Sağlam Yapı: Dişli redüktörleri, yüksek mukavemetli malzemeler ve hassas üretim teknikleri kullanılarak üretilir. Bu sayede dişliler, yataklar ve diğer bileşenler, ani darbelere ve yüksek tork dalgalanmalarına deformasyon veya arıza olmadan dayanabilir.
2. Darbe Emici Özellikler: Bazı redüktör tasarımları, esnek kaplinler, elastomerik elemanlar veya burulma esnekliğine sahip dişli tasarımları gibi şok emici özellikler içerir. Bu özellikler, ani şokların veya tork artışlarının enerjisini sönümlemeye ve dağıtmaya yardımcı olarak tüm sistem üzerindeki etkiyi azaltır.
3. Tork Sınırlayıcılar: Şok yüklerinin yaygın olduğu uygulamalarda, dişli redüktörüne tork sınırlayıcılar entegre edilebilir. Bu cihazlar, belirli bir tork eşiği aşıldığında otomatik olarak devreden çıkar veya kayar, böylece dişlilerin ve diğer bileşenlerin hasar görmesi önlenir.
4. Aşırı Yük Koruması: Dişli redüktörleri, kesme pimleri veya tork sensörleri gibi aşırı yük koruma mekanizmalarıyla donatılabilir. Bu mekanizmalar aşırı torku algılar ve tahriki geçici olarak devre dışı bırakarak sistemin şoku emmesine veya ani tork değişimine uyum sağlamasına olanak tanır.
5. Uygun Yağlama: Şok yüklerini ve ani tork değişikliklerini yönetmek için yeterli yağlama şarttır. Yüksek kaliteli yağlayıcılar sürtünmeyi ve aşınmayı azaltarak dişli redüktörünün dinamik kuvvetlere dayanmasına ve sorunsuz çalışmasına yardımcı olur.
6. Dinamik Yük Dağılımı: Dişli redüktörleri, dinamik yükleri birden fazla dişli dişi arasında dağıtarak, lokalize gerilim yoğunlaşmalarının önlenmesine yardımcı olur. Bu özellik, ani tork değişikliklerine maruz kaldığında diş kırılması ve dişli hasarı riskini en aza indirir.
Bu tasarım özellikleri ve mekanizmaları bir araya getirildiğinde, dişli redüktörleri şok yükleri ve torktaki ani değişiklikleri etkili bir şekilde karşılayabilir ve çeşitli endüstriyel ve mekanik sistemlerin uzun ömürlü ve güvenilir olmasını sağlar.

What are the benefits of using a gear reducer in industrial applications?
Gear reducers offer several benefits that make them indispensable in various industrial applications:
1. Speed Reduction: Gear reducers allow the reduction of high-speed input from motors or engines to lower, more usable output speeds for specific applications, ensuring proper equipment operation and safety.
2. Torque Increase: By leveraging the mechanical advantage of gear ratios, gear reducers can significantly increase torque output, enabling the handling of heavy loads and providing the necessary power for tasks such as lifting, conveying, and processing.
3. Precise Control: Gear reducers enable fine-tuning of rotational speed and torque, providing precise control over machinery and processes, which is crucial in industries like manufacturing, material handling, and robotics.
4. Shock Load Absorption: Gear reducers can absorb and dampen sudden shocks or changes in load, protecting both the machinery and connected components from abrupt forces that could otherwise lead to damage.
5. Versatility: With various gear types (e.g., spur, helical, worm) and designs, gear reducers can be tailored to different applications, including those requiring specific speed ratios, torque ranges, and environmental conditions.
6. Efficient Power Transmission: Gear reducers offer high mechanical efficiency, minimizing energy loss during power transmission, which is especially valuable in energy-conscious industries.
7. Compact Design: Gear reducers provide a compact solution for transmitting power and adjusting speeds, making them suitable for installations with space constraints.
8. Reliability and Longevity: Well-designed and properly maintained gear reducers can offer extended service life, contributing to reduced downtime and maintenance costs.
Overall, gear reducers enhance the performance, efficiency, and reliability of industrial equipment, making them essential components in a wide range of applications across various industries.


editor by CX 2024-02-01