Produktbeschreibung
Product Description:
Planetar 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.
Technical parameter:
| Section number | single section | ||||||||
| Reduction ratio | i | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 |
| Rated output torque (Ta) | Nm | 55 | 50 | 60 | 55 | 50 | 45 | 40 | 40 |
| Emergency stop torque (Tzwor*) | Nm | Three times the rated output torque | |||||||
| Rated input speed (n) | U/min | 5000 | |||||||
| Maximum input speed (na) | U/min | 1000o | |||||||
| Ultra-precision backlash (PO) | Bogenminute | – | |||||||
| Precision backlash (P1) | Bogenminute | ≤3 | |||||||
| Standard backlash (P2) | Bogenminute | ≤5 | |||||||
| Torsional rigidity | Nm/arcmin | 7 | |||||||
| Allowable radial force | N | 1530 | |||||||
| allowable axial force | N | 765 | |||||||
| service life | hr | 20000 | |||||||
| effectiveness (n) | % | ≥97% | |||||||
| weight | kg | 1.3 | |||||||
| Operating temperature | ºC | -10°ºC~+90°ºC | |||||||
| lubricating | Synthetic grease | ||||||||
| Protection class | IP64 | ||||||||
| Installation direction | any direction | ||||||||
| Noise value(n1=3000rpm,no load) | dB(A) | ≤58 | |||||||
| Moment of inertia (J) | kg-cm’ | 0.16 0.14 0.13 | |||||||
Picture:
Rear Reducer features:
1. High-quality aluminum alloy, light in weight and non-rusting.
2. Large in output torque.
3. Smooth running and low noise,durable in dreadful conditions.
4. High radiation efficiency.
5. Good-looking appearance, durable in service life and small volume.
6. Geeignet für omnilagerfähige Installationen.
Company Information:
HangZhou ChangLong Motor Co.,Ltd
( original HangZhou LINNAN Special Motor Factory)
With 20 years’ hard working on developing , designing and manufacturing the high-speed electrical spindle, we have got our new GDZ-series electrical spindle, which is well recognized by clients for its great and stable quality after being put large quantities to the market. We provide quality guarantee and after-sales service for all of our products with the free manual work and the cost price for the materials or fittings.
FAQ:
How about the warrantly about your company?
bearings=half a year, other parts a year
Which kinds of bearing you are using?
It will according to your order. We have different price range for you with different bearing.
Do you have other spare parts for spindle motor, just like gripper, VFD, collet ?
We have all kits.And we can let engineers help you to program them.
Can I visit your factory?
Yes, welcome to our factory.
Do you have installation page?
Yes,we have.
Can you show me the inspection report ?
Yes We will send you inspection report of spindle after you send me full money before despatch.
The reasen is that I’m not sure which spindle will be sent to you.Every spindle have it’s inspection report .And they are different in details.Only if you pay the money,we can decide which spindle to deliver you.
We also have spindle motor matching inverter(VFD), collet , gripper etc.
If you need other kinds of parts, please don’t hesitate to contact us.
| Anwendung: | Motor, Electric Cars, Motorcycle, Machinery, Marine, Toy, Agricultural Machinery |
|---|---|
| Funktion: | Distribution Power, Change Drive Torque, Speed Changing, Speed Reduction |
| Layout: | Zykloid |
| Härte: | Gehärtete Zahnoberfläche |
| Schritt: | Double-Step |
| Typ: | Planetary Gear Box |
| Anpassung: |
Verfügbar
| Kundenspezifische Anfrage |
|---|

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.

What role do gear ratios play in optimizing the performance of gear reducers?
Gear ratios play a crucial role in optimizing the performance of gear reducers by determining the relationship between input and output speeds and torques. A gear ratio is the ratio of the number of teeth between two meshing gears, and it directly influences the mechanical advantage and efficiency of the gear reducer.
1. Speed and Torque Conversion: Gear ratios allow gear reducers to convert rotational speed and torque according to the needs of a specific application. By selecting appropriate gear ratios, gear reducers can either reduce speed while increasing torque (speed reduction) or increase speed while decreasing torque (speed increase).
2. Mechanical Advantage: Gear reducers leverage gear ratios to provide mechanical advantage. In speed reduction configurations, a higher gear ratio results in a greater mechanical advantage, allowing the output shaft to deliver higher torque at a lower speed. This is beneficial for applications requiring increased force or torque, such as heavy machinery or conveyor systems.
3. Effizienz: Optimal gear ratios contribute to higher efficiency in gear reducers. By distributing the load across multiple gear teeth, gear reducers with suitable gear ratios minimize stress and wear on individual gear teeth, leading to improved overall efficiency and prolonged lifespan.
4. Speed Matching: Gear ratios enable gear reducers to match the rotational speeds of input and output shafts. This is crucial in applications where precise speed synchronization is required, such as in conveyors, robotics, and manufacturing processes.
When selecting gear ratios for a gear reducer, it’s important to consider the specific requirements of the application, including desired speed, torque, efficiency, and mechanical advantage. Properly chosen gear ratios enhance the overall performance and reliability of gear reducers in a wide range of industrial and mechanical systems.

Gibt es bei den Getriebeuntersetzungsgetrieben Varianten für spezifische Aufgaben und Anwendungen?
Ja, Getriebe gibt es in vielen verschiedenen Ausführungen, um spezifischen Aufgaben und Anwendungen in unterschiedlichen Branchen gerecht zu werden. Hersteller bieten eine Reihe von Getriebetypen und -konfigurationen an, um verschiedenen Anforderungen gerecht zu werden, darunter:
- Stirnradgetriebe: Diese vielseitigen Bauteile gewährleisten eine gleichmäßige und effiziente Drehmomentübertragung. Sie werden häufig in Anwendungen eingesetzt, die hohe Präzision und moderate Drehzahlreduzierung erfordern, wie beispielsweise Förderbänder, Mischer und Rührwerke.
- Kegelradgetriebe: Sie eignen sich ideal zur Kraftübertragung zwischen sich kreuzenden Wellen. Sie werden häufig in schweren Maschinen, Druckmaschinen und Automobilanwendungen eingesetzt.
- Schneckengetriebe: Diese bieten kompakte Lösungen und eignen sich für Anwendungen mit höheren Anforderungen an die Geschwindigkeitsreduzierung, wie z. B. Förderanlagen, Winden und Aufzüge.
- Planetengetriebe: Diese bieten eine hohe Drehmomentdichte und werden in Anwendungen eingesetzt, die eine präzise Steuerung erfordern, wie z. B. Robotik, Luft- und Raumfahrt sowie Schwermaschinenbau.
- Parallelwellen-Getriebe: Diese in Industriemaschinen häufig verwendeten Getriebe sind auf hohes Drehmoment und Zuverlässigkeit ausgelegt.
- rechtwinklige Untersetzungsgetriebe: Sie kommen zum Einsatz, wenn aufgrund von Platzmangel eine Änderung der Wellenrichtung erforderlich ist, wie es häufig bei Verpackungsmaschinen und Förderbändern der Fall ist.
Jeder Getriebetyp besitzt einzigartige Merkmale und Vorteile, die ihn für bestimmte Aufgaben geeignet machen. Hersteller bieten häufig Anpassungsmöglichkeiten an, um Getriebe exakt an die Anforderungen einer Anwendung anzupassen, darunter Übersetzungsverhältnisse, Montageoptionen und Eingangs-/Ausgangskonfigurationen.
Die Vielfalt der Getriebekonstruktionen ermöglicht es der Industrie daher, den am besten geeigneten Typ anhand von Faktoren wie Drehmoment, Drehzahl, Platzverhältnissen, Präzision und Umgebungsbedingungen auszuwählen.


editor by CX 2023-10-27