China Custom CZPT Paver RM 80743198 RM80743198 Planetary Gear for 8820 423 worm gear winch

Product Description

  • Gear reducers for hydraulic motors – GB1314C  GB1314c GB1315

    This gear reducer is employed for example in road construction for applying asphalt. A conventional hydraulic motor serves as the drive. The type of chain wheel used makes it suitable for increased radial loads. The housing is specifically optimised for tensioning the chain.

    SPECIFICATIONS GB1314C
    Motor connection suitable for CHINAMFG motor OMT315
    Gear ratio i = 5,71
    Drive torque M1 = 740 Nm (at 150 bar;
    Gear design for 6/8822 0571
    R988/8822 0571
    R98857133 GFT60W3B86~/8822 0571
    R GFT7T2B51-01
    R98857156 GFT7T2B63-01
    R9880 0571 9 GFT80T3-185-03
    R9880 0571 6 GFT80T3B127-01 W/O MOTOR
    R988056701 GFT80T3B127-09
    R988064513 GFT80T3B127-09 W/O MOTOR
    R988006366 GFT80T3B150-01
    R988006367 GFT80T3B150-02
    R988006370 GFT80T3B185-06
    R98857127 GFT80T3B185-10
    R988049613 GFT80T3B185-10 W/O MOTOR
    R988062758 GFT80T3B185-11
    R988006374 GFT80T3B204
    R988006375 GFT80T3B77-01
    R988006551 GFT80W3B127-07
    R988006866 GFT80W3B127-14
    R988018309 GFT80W3B127-17
    R98857113 GFT80W3B127-19
    R98857163 GFT60A3B65-03
    R988006277 GFT60T3B106-03
    R9880 0571 6 GFT60T3B106-05 W/O MOTOR
    R988006284 GFT60T3B106-13
    R988006286 GFT60T3B120-06
    R GFT60T3B140-19
    R988 0571 1 GFT60T3B140-20
    R988006307 GFT60T3B170-06
    R988006308 GFT60T3B170-08
    R9880 0571 5 GFT60T3B170-12 W/O MOTOR
    R GFT60T3B64-01
    R9880 0571 4 GFT60T3B86-02
    R9880 0571 2 GFT60W3B106-06
    R9880 0571 3 GFT60W3B106-11
    R988054345 GFT60W3B106-20
    R988018532 GFT60W3B170-11
    R988007035 GFT60W3B400 W/O MOTOR
    R988006589 GFT60W3B64-01
    R988006591 GFT60W3B64-02
    R988006526 GFT60W3B64-03
    R9885711 GFT60W3B64-09
    R988054749 GFT60W3B64-10
    R988064141 GFT60W3B64-12
    R988006136 GFT24T2B19-01
    R988006137 GFT24T2B19-03
    R988006143 GFT24T3B103-07
    R988049105 GFT26T2B43-08
    R988006159 GFT26T2B51-02
    R988006160 GFT26T2B62-06
    R988006173 GFT26W2B62-06
    R988006177 GFT26W2B62-10
    R988006178 GFT26W2B62-15
    R988018533 GFT26W2B62-20
    R GFT34T2B43-01
    R988006187 GFT36T2B28-02
    R988006189 GFT36T3-131-04
    R9885719 GFT36T3-131-04 W/O MOTOR
    R988006199 GFT36T3B100-12
    R988006216 GFT36T3B139-01
    R9885712 GFT36T3B139-02 W/O MOTOR
    R988046030 GFT36T3B139-07
    R GFT36T3B67-15
    R988006228 GFT36T3B79-09
    R988006966 GFT36T3B79-09 W/O MOTOR
    R988065729 GFT36W3B100-06
    R988006244 GFT36W3B67-03
    R988017691 GFT36W3B67-16
    R988006255 GFT36W3B79-25
    R988040808 GFT36W3B79-30
    R98857110 GFT36W3B79-32
    R9885718 GFT40T2B41-04
    R98804 0571 GFT40T2B41-05
    R988006266 GFT40W2B49-01
    R988006267 GFT40W2B49-02
    R988046595 GFT40W2B59-15
    R98857123 GFT40W2B59-16
    R GFT40W2B59-17
    R GFT50T3B100-01
    R98857162 GFT50T3B177-04
    R988006274 GFT60A2B40-01
    R98805711 GFT110W3B96-09
    R988018531 GFT110W3B96-21
    R988044467 GFT110W3B96-28
    R GFT110W3B96-30
    R GFT110W3B96-34
    R98857173 GFT110W3B96-36
    R98857175 GFT110W3B96-38
    R988065817 GFT110W3B96-40
    R988017539 GFT13T2B32-01
    R988006082 GFT17T2B45-21
    R988006086 GFT17T2B45-25
    R988017334 GFT17T2B45-33
    R988006089 GFT17T2B54-04
    R988006090 GFT17T2B54-05
    R988006093 GFT17T2B54-09
    R988006886 GFT17T2B54-12 W/O MOTOR
    R98857112 GFT17T2B54-22
    R988006105 GFT17T3B78-07
    R98857124 GFT17T3B88-05
    R988006118 GFT17W2B45-15
    R988006119 GFT17W2B45-16
    R988058732 GFT17W3B78-06 W/O MOTOR
    R91605715 GFT2160E/30-AAAA0045M1-HA1/0170AS0-0CJ
    R916008231 GFT2160E/30-AAAA0045M1-HA1/0170AS0-0CJ
    R988056777 GFB26T2B52-02
    R988005877 GFB26T2B63-12
    R988005879 GFB36T2B24-04
    R988005881 GFB36T2B24-06
    R988056999 GFB36T3B101-12
    R988005909 GFB36T3B101-29
    R9885710 GFB36T3B101-30
    R9885711 GFB36T3B101-31
    R9885713 GFB36T3B101-33
    R9885717 GFB36T3B101-37
    R988006816 GFB36T3B101-38
    R98805712 GFB36T3B118-06
    R98805714 GFB36T3B118-10
    R98857185 GFB36T3B118-11
    R988048093 GFB36T3B118-12
    R98857195 GFB36T3B132-10
    R988054750 GFB36T3B132-11
    R9885711 GFB36T3B68-03
    R9885713 GFB36T3B68-05
    R988046591 GFB36T3B68-11
    R98805713 GFB36T3B80-15
    R98805715 GFB36T3B80-17
    R9880571 GFB36T3B80-17 W/O MOTOR
    R98805717 GFB40T2B49-01 /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

    Application: Motor, Machinery, Marine, Agricultural Machinery
    Function: Distribution Power, Speed Changing, Speed Increase
    Layout: Planetary
    Hardness: Hardened Tooth Surface
    Installation: Torque Arm Type
    Step: Three-Step
    Customization:
    Available

    |

    Customized Request

    epicylic gear

    Can planetary gears be used in high-torque applications?

    Yes, planetary gears are well-suited for high-torque applications due to their design characteristics and capabilities. Let’s explore why planetary gears can be used in high-torque applications:

    • Torque Distribution:

    Planetary gears are designed to distribute torque across multiple gear teeth, allowing them to handle higher torque loads. The arrangement of planet gears around the sun gear and meshing with the ring gear enables torque to be transmitted through multiple contact points simultaneously. This distributed torque distribution helps in reducing stress on individual gear teeth and enhances the overall torque-carrying capacity of the gear system. As a result, planetary gears can effectively handle high torque loads without compromising performance or durability.

    • High Torque Density:

    Planetary gears offer high torque density, meaning they can transmit a significant amount of torque relative to their size and weight. The design of planetary gears allows for multiple gear teeth to engage simultaneously, distributing the load and increasing torque-carrying capacity. This high torque density makes planetary gears suitable for applications that require substantial torque output in compact spaces. They can handle the demands of high-torque requirements without the need for larger gear systems.

    • Torque Amplification:

    Planetary gears can also provide torque amplification, allowing for increased torque output compared to the input torque. By fixing the ring gear and inputting power to the sun gear, the planet gears rotate and contribute to multiplying the torque. This torque amplification feature is advantageous in high-torque applications where a higher output torque is desired while maintaining a smaller physical size. It enables planetary gears to deliver the necessary torque for demanding tasks.

    • Load Sharing:

    Another advantage of planetary gears in high-torque applications is load sharing. The planet gears distribute the load across multiple gear teeth, preventing concentrated stress on individual teeth. This load sharing capability minimizes the risk of gear failure and ensures the durability and longevity of the gear system. It allows planetary gears to handle high torque loads while maintaining reliable and efficient operation.

    • Robust Construction:

    Planetary gears are typically constructed using high-strength materials and precise manufacturing techniques to withstand high torque applications. The gear components are engineered to have sufficient strength and durability to handle the demanding conditions associated with high torque. This robust construction ensures that the planetary gears can reliably transmit and sustain high torque without experiencing premature wear or failure.

    In summary, planetary gears can be effectively used in high-torque applications due to their torque distribution capabilities, high torque density, torque amplification, load sharing characteristics, and robust construction. These features make planetary gears a reliable choice for various industries, including heavy machinery, automotive drivetrains, industrial equipment, and more.

    epicylic gear

    How do planetary gears contribute to speed reduction and torque amplification?

    Planetary gears offer the capability of both speed reduction and torque amplification, making them versatile components in various mechanical systems. Let’s explore how planetary gears achieve these functions:

    • Speed Reduction:

    Planetary gears can reduce rotational speed by utilizing their gear arrangement. The key elements involved in speed reduction are the sun gear, planet gears, and ring gear. Consider the following scenarios:

    • Epicyclic Gear Set:

    In a basic planetary gear arrangement, when the sun gear is used as the input and the ring gear is fixed, the planet gears rotate on their own axes while also revolving around the sun gear. This configuration causes the output speed to be lower than the input speed. The reduction in speed is determined by the gear ratios between the sun gear, planet gears, and ring gear.

    • Multiple Stages:

    Planetary gears can be combined into multiple stages, with each stage having its own set of sun gears, planet gears, and ring gears. By connecting the output of one stage to the input of another, the rotational speed can be further reduced. This allows for greater flexibility in achieving the desired speed reduction in complex mechanical systems.

    • Torque Amplification:

    Planetary gears are also capable of amplifying torque, enabling them to handle higher loads and provide increased output torque. The torque amplification occurs in the following scenarios:

    • Epicyclic Gear Set:

    When the sun gear is used as the input and the ring gear is the output, the planet gears rotate on their own axes while also revolving around the sun gear. This arrangement allows for torque amplification, meaning the output torque can be higher than the input torque. The specific torque amplification factor depends on the gear ratios and the number of planet gears in the system.

    • Combination of Gear Stages:

    By combining multiple stages of planetary gears, torque amplification can be further increased. Each stage contributes to the overall torque amplification, allowing the system to handle even higher loads and transmit greater torque.

    In summary, planetary gears contribute to speed reduction by utilizing the gear ratios between the sun gear, planet gears, and ring gear. They achieve torque amplification by utilizing the arrangement of the gears in an epicyclic gear set, as well as through the combination of multiple gear stages. These capabilities make planetary gears valuable in various applications where speed reduction and torque amplification are required, such as automotive transmissions, industrial machinery, and power transmission systems.

    epicylic gear

    How do planetary gears differ from other types of gear arrangements?

    Planetary gears, also known as epicyclic gears, possess unique characteristics and differ from other types of gear arrangements in several ways. Let’s explore the distinguishing features of planetary gears:

    • Internal Gear Meshing:

    Unlike other gear arrangements where the gears typically mesh externally, planetary gears have internal gear meshing. This means that the gear teeth of the sun gear, planet gears, and ring gear are located on the inside surfaces, allowing for compact and space-efficient designs.

    • Multiple Gear Sets:

    Planetary gear systems consist of multiple gear sets working in parallel or series. These gear sets include the sun gear, planet gears, and ring gear. By combining and configuring these gear sets, different gear ratios and torque distributions can be achieved, providing versatility and flexibility in various applications.

    • Central Sun Gear:

    A distinctive feature of planetary gears is the presence of a central sun gear. The sun gear is typically driven by an input source, such as a motor or engine. It is located at the center of the gear arrangement and serves as the primary driver for overall gear operation.

    • Orbiting Planet Gears:

    In planetary gears, the planet gears rotate on their own axes while simultaneously orbiting around the sun gear. This combination of rotational and orbital movement allows for efficient torque transmission and enables the gear arrangement to achieve different gear ratios based on the relative sizes and positions of the gears.

    • Compact Size:

    One of the key advantages of planetary gears is their compact size. The internal gear meshing and the arrangement of multiple gear sets within a single gear system contribute to their space-saving design. This makes planetary gears suitable for applications where size and weight restrictions are important considerations.

    • Wide Range of Applications:

    Planetary gears find applications in various industries and mechanical systems. They are commonly used in automotive transmissions, industrial machinery, robotics, aerospace systems, and more. Their ability to achieve different gear ratios, transmit torque efficiently, and operate in compact spaces makes them versatile solutions in diverse engineering applications.

    In summary, planetary gears differ from other types of gear arrangements due to their internal gear meshing, multiple gear sets, central sun gear, orbiting planet gears, compact size, and wide range of applications. These characteristics make planetary gears suitable for achieving various gear ratios, transmitting torque efficiently, and meeting the space requirements of different mechanical systems.

    China Custom CZPT Paver RM 80743198 RM80743198 Planetary Gear for 8820 423 worm gear winchChina Custom CZPT Paver RM 80743198 RM80743198 Planetary Gear for 8820 423 worm gear winch
    editor by CX 2023-12-21