Riduttore di rotazione epicicloidale per sollevatori telescopici

A planetary slewing drive gearbox for telehandlers is a sophisticated, compact transmission system engineered to deliver high torque and precise rotational control in heavy-duty mobile equipment. Specifically tailored for rotating telehandlers, this slewing gearbox employs a multi-stage planetary gear configuration typically involving a central sun gear, multiple planet gears, and an outer ring gear to achieve efficient power transmission and speed reduction while handling substantial radial and axial loads.

A planetary slewing drive gearbox for telehandlers is a sophisticated, compact transmission system engineered to deliver high torque and precise rotational control in heavy-duty mobile equipment. Specifically tailored for rotating telehandlers, this slewing gearbox employs a multi-stage planetary gear configuration typically involving a central sun gear, multiple planet gears, and an outer ring gear to achieve efficient power transmission and speed reduction while handling substantial radial and axial loads. Integrated with a slewing ring bearing, it enables seamless 360-degree rotation of the telehandler's upper superstructure relative to the chassis, enhancing operational flexibility in construction, agricultural, and industrial applications.

Trasmissione planetaria per sollevatori telescopici

Dimensioni della trasmissione di rotazione planetaria

RE 240

Supporto: DBS

Dimensioni della trasmissione di rotazione planetaria

Supporto: Tecc

Dimensioni della trasmissione di rotazione planetaria

Albero scanalato:

Dimensioni della trasmissione di rotazione planetaria

Supporto
Supporto
ØD1ØD2SLsLL1L2TØDtTenente
[ mm ]
DBS50 ore e 7 minuti60 ore e 6 minutiDIN5482 B58x533768.3508M10 (n° 3)3221
Tecc50 ore e 7 minuti60 ore e 6 minutiDIN5482 B58x533768.3508M10 (n° 3)3221

Pignoni:

Dimensioni della trasmissione di rotazione planetaria

SupportoMzXODEBUUNSTTmax
[mm]Statico
[Nm]
Dinamico
[Nm]
DBS6150.5108882--60005400
890.595.2960.5--50004500
10110.5137682--63005670
14130.5224702DIN5482 B58x53M10 (n° 3)63005670
Tecc61801207013.5DIN5482 B58x53M10 (n° 3)60005400
8100.51048013.5--50004500
8140.51368023.5DIN5482 B58x53M10 (n° 3)63005670
10130150803.5DIN5482 B58x53M10 (n° 3)63005670
14130,5224702DIN5482 B58x53M10 (n° 3)65005670

RE 310/510

Supporto: DBS

Dimensioni della trasmissione di rotazione planetaria

Supporto: Tecc

Dimensioni della trasmissione di rotazione planetaria

Supporto: T6

Dimensioni della trasmissione di rotazione planetaria

Supporto: T8

Dimensioni della trasmissione di rotazione planetaria

Supporto: T18

Dimensioni della trasmissione di rotazione planetaria

Supporto: NR

Dimensioni della trasmissione di rotazione planetaria

Supporto: NR3

Dimensioni della trasmissione di rotazione planetaria

Lancia:

Dimensioni della trasmissione di rotazione planetaria

SupportoØD1ØD2SLsLL1L2TØDtTenente
[ mm ]
DBS50 ore e 7 minuti60 ore e 6 minutiDIN5482 B58x534678608M10 (n° 3)3220
Tecc50 ore e 7 minuti60 ore e 6 minutiDIN5482 B58x534678608M10 (n° 3)3220
T650 ore e 7 minuti60 ore e 6 minutiDIN5482 B58x534678608M10 (n° 3)3220
T850 ore e 7 minuti60 ore e 6 minutiDIN5482 B58x534678608M10 (n° 3)3220
T1862 F772 F7DIN5482 B70x6451907010M10 (n° 3)4022
NR50 ore e 7 minuti60 ore e 6 minutiDIN5482 B58x533768.5508M10 (n° 3)3220
NR350 ore e 7 minuti60 ore e 6 minutiDIN5482 B58x533768.5508M10 (n° 3)3220

Pignoni:

Dimensioni della trasmissione di rotazione planetaria

SupportoMzXODEBUUNSTTmax
[mm]Statico
[Nm]
Dinamico
[Nm]
DBS8110.5112.2787--105009450
9130.5144757--105009450
10110.5137787--105009450
101501709010--105009450
12100.5155957--105009450
12110.5166.8807--105009450
Tecc6130.6597.26527--69006210
8110.5111.2884--83007470
81501367511DIN5482
B58x53
M10
(n° 3)
104009360
10100.5130903--95008550
14140.5236.61001DIN5482
B58x53
M10
(n° 3)
105009450
T6 T810130.61618617--105009450
10140.5168802.5--105009450
10120.55150.5933--105009450
12100.51551085.5--105009450
T18814012879.516DIN5482 B70x64M10 (n° 3)105009450
10140.32166.490151320011880
12130.519280211320011880
14150.5250.610561320011880
NR NR352201205027.5DIN5482
B58x53
M10
(n° 3)
92508325
8110.5110.87910.5--92508325
8160.5149.57320.5--92508325
10110.513910012--92508325
10120.51499019.5--92508325

RE 610

Supporto: DBS

Dimensioni della trasmissione di rotazione planetaria

Supporto: DBS2

Dimensioni della trasmissione di rotazione planetaria

Supporto: T18

Dimensioni della trasmissione di rotazione planetaria

Lancia:

Dimensioni della trasmissione di rotazione planetaria

SupportoØD1ØD2SLsLL1L2TØDtTenente
[ mm ]
DBS62 ore 772 ore e 6 minutiDIN5482 B70x6451907010M10 (n° 3)4022
DBS262 ore 772 ore e 6 minutiDIN5482 B70x6451907010M10 (n° 3)4022
T1862 f772 f7DIN5482 B70x6451907010M10 (n° 3)4022

Pignoni:

Dimensioni della trasmissione di rotazione planetaria

SupportoMzXODEBUUNSTTmax
[mm]Statico
[Nm]
Dinamico
[Nm]
DBS DBS2814012879.515DIN 5482
B70x64
M10
(n° 3)
1750015750
10120.5150785--2150019350
10130.51608519DIN 5482
B70x64
M10
(n° 3)
2100018900
10140.5170905--2400021600
121001441005--1850016650
12120.51801005DIN 5482
B70x64
M10
(n° 3)
2400021600
12140.52041055--2400021600
14110.5194.61054--2400021600
T18820017611515DIN 5482
B70x64
M10
(n° 3)
1450013050
10110.681141856--1200010800
12100.51561206--1200010800
12110.525168.611106--1350012150

RE 810

Supporto: Tecc

Dimensioni della trasmissione di rotazione planetaria

Supporto: TRecc

Dimensioni della trasmissione di rotazione planetaria

Lancia:

Dimensioni della trasmissione di rotazione planetaria

SupportoØD1ØD2SLsLL1L2TØDtTenente
[ mm ]
Tecc62 f772 f7DIN5482 B70x6451907010M10 (n° 3)4022
TRecc

Pignoni:

Dimensioni della trasmissione di rotazione planetaria

SupportoMzXODEBUUNSTTmax
[mm]Statico
[Nm]
Dinamico
[Nm]
Tecc814012879.511.5DIN 5482
B70x64
M10
(n° 3)
105009450
9150152.641016.5--1250011250
10140.5169901.5DIN 5482 B70x64M10 (n° 3)1450013050
12130.51929532.51350012150
14150.5250.61051.52100018900
TRecc8150.31408013.5DIN 5482
B70x64
M10
(n° 3)
1520013680
10130.5160905.5--1780016020
10180198805.5--2380021420
12120.51801003.5DIN 5482 B70x64M10 (n° 3)1900017100
12140.519910033.51600014400

Advantages of Planetary Slewing Drive Gearbox for Telehandlers

  • Elevata coppia in uscita
    Planetary slewing drive gearboxes are designed to deliver exceptional torque, making them ideal for handling heavy loads in telehandlers. With their multi-stage planetary gear system, they evenly distribute load across multiple gears, ensuring reliable power transmission while reducing wear and tear on individual components, thus prolonging lifespan.
  • Design compatto e leggero
    Despite their high-performance capabilities, these slewing gearboxes feature a compact and lightweight design, allowing for easy integration into telehandlers. Their space-saving architecture optimizes the overall equipment size without compromising functionality, making telehandlers more efficient and easier to maneuver in confined construction, agricultural, or industrial environments.
  • 360-Degree Rotation Capability
    Integrated with a slewing ring bearing, these planetary slewing drives enable seamless 360-degree rotation of the telehandler’s upper structure relative to its chassis. This feature enhances operational flexibility, allowing telehandlers to perform tasks requiring precise positioning, such as lifting and rotating heavy loads, with greater efficiency and ease.
  • Durable and Reliable Performance
    Built to withstand extreme working conditions, slewing drive planetary gearboxes are highly durable. Their robust construction, combined with high-quality materials, ensures resistance to heavy radial and axial loads, vibrations, and harsh environments. This durability guarantees consistent performance in demanding applications, reducing downtime and maintenance costs.
  • Trasmissione di potenza efficiente
    The multi-stage planetary gear design ensures efficient power transfer by optimizing torque and reducing energy loss. This efficiency translates to smoother operation, reduced fuel or energy consumption, and improved overall performance of telehandlers, making them more cost-effective and environmentally friendly over their operational life.
  • Versatilità nelle applicazioni
    Slewing planetary gearboxes are versatile and suitable for a wide range of telehandler applications. Whether in construction, agriculture, or industrial settings, these gearboxes provide the precision, control, and strength needed to handle diverse tasks, such as lifting, rotating, or stabilizing loads, ensuring maximum productivity and adaptability.

Riduttore di rotazione epicicloidale per sollevatori telescopici Planetary Slewing Gearbox for Telehandlers

Applicazioni comuni delle trasmissioni planetarie

  • Telehandlers and Cranes
    Planetary slewing drives are widely used in telehandlers and cranes to enable 360-degree rotation of their upper structures. This functionality allows precise positioning and movement of heavy loads, ensuring efficient operation in construction, logistics, and industrial sectors where lifting and rotating materials are critical for productivity.
  • Aerial Work Platforms (AWPs)
    Aerial work platforms, such as cherry pickers and boom lifts, rely on planetary slewing drives for smooth and controlled rotation. This ensures workers can safely and accurately position the platform at various angles and heights, making these drives indispensable for maintenance, inspections, and construction tasks at elevated work sites.
  • Excavators and Earthmoving Equipment
    In excavators and other earthmoving machines, slewing gearboxes provide rotational motion for digging arms or buckets. Their ability to handle significant torque and loads ensures efficient excavation, trenching, and material handling, even in harsh environments like mining operations or heavy-duty construction projects.
  • turbine eoliche
    Planetary slewing drive gearboxes are used in wind turbines to adjust the orientation of the blades (yaw systems) and optimize energy capture. These drives handle high loads while delivering precise rotational control, ensuring the turbine operates efficiently under varying wind conditions, contributing to renewable energy production.
  • Attrezzature marine e offshore
    Slewing drives are essential for marine cranes, offshore drilling rigs, and other maritime equipment. Their robust design ensures reliable performance in harsh marine environments, providing the rotational power needed for lifting, anchoring, and other operations while resisting corrosion and heavy-load stresses.
  • Sistemi di inseguimento solare
    In solar photovoltaic and concentrated solar power systems, planetary slewing gearboxes are used to adjust the angle of solar panels or mirrors. By enabling precise rotation and tracking the sun’s movement, these drives maximize energy efficiency and output, making them vital for modern renewable energy solutions.
Riduttore di rotazione epicicloidale per gru a torreTrasmissione a rotazione epicicloidale per gru da pesca
Riduttore di rotazione epicicloidale per gru a torreTrasmissione a rotazione epicicloidale per gru da pesca
Trasmissione a rotazione planetaria per impianti di perforazione cingolatiTrasmissione di rotazione planetaria per sistemi di inseguimento solare
Trasmissione a rotazione planetaria per impianti di perforazione cingolatiTrasmissione di rotazione planetaria per sistemi di inseguimento solare

Choose the Right Planetary Slewing Gearbox for Telehandlers

  • Assess Load Capacity
    When selecting a planetary slewing gearbox for telehandlers, prioritize evaluating the axial, radial, and moment loads it must withstand, as these determine the unit's ability to support heavy payloads during lifting and extension operations without failure. Consider the telehandler's maximum lift capacity and boom extension to ensure the gearbox can handle dynamic stresses in construction or material handling scenarios.
  • Evaluate Torque Requirements
    Determine the torque demand based on the telehandler's operational needs, including peak and continuous torque levels required for smooth rotation under varying loads. This factor ensures reliable performance in tasks such as positioning heavy materials, preventing overload and extending the slew drive's service life in demanding applications.
  • Consider Rotation Speed
    Analyze the required rotational speed for the slewing mechanism, ensuring the planetary slewing drive provides appropriate gear ratios for controlled, efficient movement without excessive wear. In telehandlers, optimal speed facilitates precise maneuvering in confined spaces, balancing productivity with safety during aerial work or site navigation.
  • Analyze Operating Environment
    Account for environmental conditions such as temperature extremes, dust, moisture, and corrosive elements that the planetary gearbox will encounter in outdoor or industrial settings. Selecting sealed, robust designs enhances durability and minimizes maintenance for telehandlers used in harsh construction or agricultural environments.
  • Review Gear Ratio and Efficiency
    Examine the gear ratio to match the telehandler's power input and output needs, prioritizing high-efficiency models to reduce energy consumption and heat generation during prolonged use. This ensures seamless integration with hydraulic or electric drives, optimizing overall machine performance and operational costs.
  • Ensure Compatibility and Mounting
    Verify the gearbox's dimensions, mounting interfaces, and integration with the telehandler's chassis and drive system to guarantee a secure fit and minimal modifications. Proper compatibility prevents alignment issues, enhances stability, and supports easy installation in diverse telehandler models.

Slewing Drive Planetary Gearbox for Telehandlers

Informazioni aggiuntive

A cura di

Yjx