China OEM CZPT ED Em Et Ec EQ SL Planetary Reduction Gearbox with Good quality

Product Description

CZPT ED EM ET EC EQ SL  Planetary Reduction Gearbox Brevini ED2090 Planetary Gearboxes/Swing Driving 
DINAMIC RE2522 Planetary Gearbox Reducer Used For ROTARY DRILLING RIG
Bonfiglioli 7N. M, Reduction ratios from3.3 to 5N. M, Reduction ratios from3.3 to 5000. Replace Bonfiglioli, Brevini, RR, O&K, Tejin, NACHI, KYB, CZPT or Sauer, according to specially demands and design

 

The installation and overall dimension of planetary gearboxes are strictly designed in accordance with Italy and American manufacturers, so they can be completely interchangeable with CZPT ED, ET, EQ, EM, EC and EL series, CZPT 300 series and Dinamicoil RE, RA series on performance and connection dimensions. They are the ideal product to replace those Italian products. 

Advantage:

Products Advantage:
Compact,space-saving planetary gearbox design
Planet wheel carried in full-complement bearings
Robust bearing system absorbing the forces exerted by the cable pull
Simple mounting
Integrated multiplate parking device
GFT-T reducer are used in all kinds of travel driving,final drive of construction machinery

 

Two light-duty tandem vibratory rollers 
Dual Drum Vibratory Roller 

Cummins engine 

Type XD111 XD121 XD131
Working mass(kg) 11230 12300 13080
Mass distributed on front drum(kg) 5670 6210 6540
Mass distributed on rear drum(kg) 5560 6090 6540
Static linear load on front drum(N/cm) 292 286 301
Static linear load on rear drum(N/cm) 287 280 301
Speed range(km/h) 0-10 0-10 0-10
Theoretical gradeability(%) 30 30 30
Min. inner/outer turning radius(mm) 4000/5900 3870/6000 3870/6000
Crab-walking distance (mm) 200 200 200
Min. ground clearance(mm) 420 420 420
Wheel base (mm) 4000 4000 4000
Steering angle(±) 46 46 46
Swinging angle(±) 12 12 12
Vibrating frequency(HZ) 30-48 30-45 30-45
Nominal amplitude(mm) 0.41/0.8 0.41/0.8 0.4/0.72
Centrifugal force(kn) 66/133 70/140 82/150
Model and manufacturer COMMINS 483.9
Rated rotating speed(t/min) 2200 2200 2200
Rated Power(KW)93 93 93 93
Rated oil wear (g. kw/h)229 229 229 229
Water tank capacity(L) 2*450 2*450 2*450
Fuel tank capacity(L) 200 220 220

  

Bonfiglioli 310L Series Planetary Gearbox Reducer Used For Swing Driving Device

 
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14 Tons Double Drum Vibratory Roller Xd142
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3 Ton CZPT Popular Vibratory Mini Road Roller (Ltc203)
11 Ton Hydraulic Double Drum Road Roller Xd111e
12 Ton Hydraulic Double Drum Road Roller Xd121e
11300kg Double Drum Roller CZPT Xd111e
11 Tons Hydraulic Vibratory Double Drum Compactor Xd111e
Liugong Vibration Road Roller Capacity Clg614
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Xs202j 20 Ton Single Drum Vibratory Road Roller
11 Ton Vibratory Double Drum Road Roller Xd111e
Product Groups
Wheel Loader
Truck Crane
Excavator
Bulldozer
Motor Grader
Road Roller
Backhoe Loader
Heavy Truck
Crawler Crane
Tower crane
 

Application: Motor
Function: Distribution Power
Layout: Three-Ring
Hardness: Hardened Tooth Surface
Installation: Torque Arm Type
Step: Three-Step
Customization:
Available

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Customized Request

planetary gearbox

Concept of Coaxial and Parallel Shaft Arrangements in Planetary Gearboxes

In planetary gearboxes, the arrangement of shafts plays a crucial role in determining the gearbox’s overall structure and functionality. The two common shaft arrangements are coaxial and parallel configurations:

Coaxial Shaft Arrangement: In a coaxial arrangement, the input shaft and output shaft are positioned along the same axis, resulting in a compact and streamlined design. The planetary gears and other components are aligned concentrically around the central axis, allowing for efficient power transmission and reduced space requirements. Coaxial planetary gearboxes are commonly used in applications where space is limited, and a compact form factor is essential. They are often employed in robotics, automotive systems, and aerospace mechanisms.

Parallel Shaft Arrangement: In a parallel arrangement, the input and output shafts are positioned parallel to each other but on different axes. The planetary gears are aligned in a way that allows the power to be transmitted from the input shaft to the output shaft via a combination of meshing gears. This arrangement allows for a larger gear diameter and higher torque transmission capabilities. Parallel planetary gearboxes are often used in applications requiring high torque and heavy-duty performance, such as industrial machinery, construction equipment, and material handling systems.

The choice between coaxial and parallel shaft arrangements depends on the specific requirements of the application. Coaxial configurations are favored for compactness and efficient power transmission, while parallel configurations excel in handling higher torque and heavy loads. Both arrangements offer distinct advantages and are chosen based on factors like available space, torque demands, load characteristics, and overall system design.

planetary gearbox

Differences Between Inline and Right-Angle Planetary Gearbox Configurations

Inline and right-angle planetary gearbox configurations are two common designs with distinct characteristics suited for various applications. Here’s a comparison of these configurations:

Inline Planetary Gearbox:

  • Configuration: In an inline configuration, the input and output shafts are aligned along the same axis. The sun gear, planetary gears, and ring gear are typically arranged in a straight line.
  • Compactness: Inline gearboxes are more compact and have a smaller footprint, making them suitable for applications with limited space.
  • Efficiency: Inline configurations tend to have slightly higher efficiency due to the direct alignment of components.
  • Output Speed and Torque: Inline gearboxes are better suited for applications that require higher output speeds and lower torque.
  • Applications: They are commonly used in robotics, conveyors, printing machines, and other applications where space is a consideration.

Right-Angle Planetary Gearbox:

  • Configuration: In a right-angle configuration, the input and output shafts are oriented at a 90-degree angle to each other. This allows for a change in direction of power transmission.
  • Space Flexibility: Right-angle gearboxes offer flexibility in arranging components, making them suitable for applications that require changes in direction or where space constraints prevent a straight-line configuration.
  • Torque Capacity: Right-angle configurations can handle higher torque loads due to the increased surface area of gear engagement.
  • Applications: They are often used in cranes, elevators, conveyor systems, and applications requiring a change in direction.
  • Efficiency: Right-angle configurations may have slightly lower efficiency due to increased gear meshing complexity and potential for additional losses.

Choosing between inline and right-angle configurations depends on factors such as available space, required torque and speed, and the need for changes in power transmission direction. Each configuration offers distinct advantages based on the specific needs of the application.

planetary gearbox

Factors to Consider When Selecting a Planetary Gearbox

Choosing the right planetary gearbox for a specific application involves considering various factors to ensure optimal performance and compatibility. Here are the key factors to keep in mind:

  • Load Requirements: Determine the torque and speed requirements of your application. Planetary gearboxes offer different torque and speed ratios, so selecting the appropriate gearbox with the right load capacity is crucial.
  • Ratio: Evaluate the gear reduction ratio needed to achieve the desired output speed and torque. Planetary gearboxes come in various gear ratios, allowing you to customize the output characteristics.
  • Efficiency: Consider the gearbox’s efficiency, as it affects energy consumption and heat generation. Higher efficiency gearboxes minimize power losses during transmission.
  • Size and Compactness: Planetary gearboxes are known for their compact size, but it’s essential to choose a size that fits within the available space while meeting performance requirements.
  • Mounting Configuration: Determine how the gearbox will be mounted in your application. Planetary gearboxes can have different mounting options, including flange, shaft, or foot mountings.
  • Input and Output Types: Select the appropriate input and output shaft configurations, such as male, female, keyed, splined, or hollow shafts, to ensure compatibility with your equipment.
  • Environment: Consider the operating environment, including temperature, humidity, dust, and potential exposure to chemicals. Choose a gearbox with appropriate seals and materials to withstand the conditions.
  • Accuracy: Some applications require precise motion control. If accuracy is essential, choose a gearbox with minimal backlash and high gear mesh quality.
  • Service Life and Reliability: Evaluate the gearbox’s expected service life and reliability based on the manufacturer’s specifications. Choose a reputable manufacturer known for producing reliable products.
  • Backlash: Backlash is the play between gears that can affect positioning accuracy. Depending on your application, you might need a gearbox with low backlash or a method to compensate for it.
  • Budget: Consider your budget constraints while balancing performance requirements. Sometimes, investing in a higher-quality gearbox upfront can lead to long-term cost savings through reduced maintenance and downtime.

By carefully considering these factors and consulting with gearbox manufacturers or experts, you can select a planetary gearbox that best meets the unique demands of your application.

China OEM CZPT ED Em Et Ec EQ SL Planetary Reduction Gearbox   with Good quality China OEM CZPT ED Em Et Ec EQ SL Planetary Reduction Gearbox   with Good quality
editor by CX 2023-10-10