Product Description

Type Part No. A B E F H Capacity Weight Related To
mm mm mm mm mm ton kg

UA01
 

UT300-55UA01 295 295 220 200 55 0.5 8 U.300.12
UT400-55UA01 400 400 310 292 55 0.75 12.5 U.400.12
UT500-55UA01 500 500 410 392 55 1 16 U.500.12
UT600-65UA01 600 600 510 485 65 1.5 23 U.600.14
UT650-65UA01 650 650 560 535 65 1.75 25 U.650.14
UT700-65UA01 700 700 610 585 65 2 27.5 U.700.14
UT750-65UA01 750 750 660 635 65 2.3 30 U.750.14
UT800-65UA01 800 800 710 685 65 2.5 32 U.800.14
UT850-65UA01 850 850 760 735 65 2.75 34 U.850.14
UT900-65UA01 900 900 810 785 65 3 36 U.900.14
UT950-65UA01 950 950 860 835 65 3.25 37 U.950.14
UT1015-80UA01 1571 1015 900 882 80 4 60 U.1015.16
UT1050-65UA01 1050 1050 960 935 65 4.5 43 U.1050.14
UT1100-90UA01 1095 1108 985 949 90 5 45 U.1100.14
UT1105-80UA01 1100 1105 990 972 80 5 64 U.1105.16

 

Type Part No. A B E F H Capacity Weight Related To
mm mm mm mm mm ton kg

UB01

UT1000-80UB01 1000 1000 874 840 80 15 82  
UT1000-80UB01 1000 1000 874 840 90 15 85  
UT1100-78UB01 1100 1100 988 952 78 12 82  
UT1100-85UB01 1100 1100 976 943 85 18 97  
UT1600-92UB01 1600 1600 1400 1400 92 30 214  

 

Type Part No. A B E F H Capacity Weight Related To
mm mm mm mm mm ton kg
UA02 UT1000-70UA02 1000 1000 846 879 70 8 77 1000X70
UT1000-90UA02 1000 1000 846 879 90 8 68 1000X90

Type Part No. A B E F H Capacity Weight Related To
mm mm mm mm mm ton kg

UA03

UT1008-90UA03 1000 1008 886 849 90 10 78 SB1000-22LW
UT1100-90UA03 1095 1108 986 949 90 12 86 1100-22
UT1200-90UA03 1195 1208 1086 1050 90 13 95 1200-22
UT1211-90UA03 1200 1211 1083 1050 90 13 95 1211-22
UT1315-90UA03 1300 1315 1180 1146 90 14 107  

 

Type Part No. A B E F H Capacity Weight Related To
mm mm mm mm mm ton kg

UB02

UT1000-90UB02 987 1000 864 834 90 10 79 DB90-12LW
UT1066-90UB02 1058 1066 930 900 90 11 88  
UT1108-90UB02A 1095 1108 980 943 90 18 95  
UT1108-90UB02B 1095 1108 974 942 90 19 97 DK90/16 Frue
UT1208-92UB02 1208 1195 1076 1040 92 22 108  

 

Type Part No. A B E F H Capacity Weight Related To
mm mm mm mm mm ton kg

Z

UT400-52Z 400 334 281 215 52 1 12 Z.400.14
UT500-52Z 500 434 381 315 52 1.5 16 Z.500.14
UT650-52Z 650 584 531 465 52 2 22 Z.650.14
UT750-52Z 750 687 623 565 52 2.5 31 Z.750.16
UT850-52Z 850 787 723 665 52 3 35 Z.850.16
UT950-52Z 950 887 823 765 52 3.5 40 Z.950.16
UT1050-52Z 1050 987 923 854 52 4 45 Z.1050.16
UT1102-52Z 1102 1571 993 965 52 7 57 Z.1100.16
UT1120-52Z 1120 1052 989 925 52 6 49 Z.1120.16

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After-sales Service: 1 Year
Warranty: 6 Months
Type: Turntable
Loading Weight: 0.5-30
ABS: Without ABS
Tent Type: 0

Can you explain the primary functions and roles of slewing rings in various applications?

Slewing rings play crucial functions and serve different roles in various applications across industries. These specialized bearings enable controlled rotational movement and support heavy loads. Here’s a detailed explanation of the primary functions and roles of slewing rings in different applications:

  • Construction and Cranes: In construction machinery and cranes, slewing rings are used to support the boom or jib, enabling 360-degree rotation. They provide a stable and low-friction interface that allows for efficient material handling and precise positioning of heavy loads. Slewing rings in these applications must withstand high axial, radial, and moment loads.
  • Wind Turbines: Slewing rings play a critical role in wind turbine systems. They support the rotor and allow it to rotate according to wind direction, facilitating efficient power generation. Slewing rings in wind turbines must handle significant loads while ensuring smooth rotation and precise alignment between the rotor and the nacelle.
  • Industrial Equipment: Slewing rings find applications in various industrial equipment, including indexing tables, turntables, robotic arms, and packaging machinery. In these applications, slewing rings enable controlled and precise rotation, allowing for accurate positioning, indexing, and automation. They contribute to the overall efficiency and functionality of industrial machinery.
  • Transportation and Automotive: Slewing rings are utilized in transportation and automotive applications, such as vehicle cranes, aerial platforms, and rotating platforms for heavy-duty vehicles. They provide a stable and reliable connection that enables safe and controlled rotation. In these applications, slewing rings must withstand dynamic loads and harsh operating conditions while ensuring the safety and stability of the equipment.
  • Medical and Rehabilitation Equipment: Slewing rings are important components in medical and rehabilitation equipment, including patient lifts and adjustable beds. They enable smooth and controlled movement, allowing for easy and safe patient transfers and positioning. Slewing rings in these applications must provide precise and quiet operation, ensuring patient comfort and care.
  • Aerospace and Defense: Slewing rings are utilized in aerospace and defense applications, such as radar systems, missile launchers, and satellite antennas. They enable precise and controlled movement in critical systems, contributing to accurate tracking, targeting, and communication. Slewing rings in aerospace and defense applications must meet stringent requirements for reliability, precision, and durability.
  • Marine and Offshore: Slewing rings are employed in marine and offshore equipment, including cranes, davits, and rotating platforms on ships and offshore rigs. They enable heavy lifting and controlled rotation in challenging marine environments. Slewing rings in marine applications must be corrosion-resistant and capable of withstanding harsh weather conditions and high loads.

Overall, slewing rings serve as essential components in a wide range of applications, enabling controlled rotation, supporting heavy loads, and ensuring precise positioning. Their versatility and ability to withstand varying loads and operating conditions make them invaluable in industries such as construction, wind energy, industrial automation, transportation, healthcare, aerospace, and marine sectors.

How do slewing rings contribute to the adaptability and versatility of rotating systems in various settings?

Slewing rings play a crucial role in enhancing the adaptability and versatility of rotating systems across various settings. Here’s a detailed explanation of how slewing rings contribute to the adaptability and versatility of rotating systems:

  • 360-Degree Rotation: Slewing rings enable 360-degree continuous rotation, allowing rotating systems to operate in any direction. This flexibility is especially valuable in applications such as cranes, excavators, and wind turbines, where unrestricted rotation is necessary to perform tasks efficiently and access multiple work zones without repositioning the entire system.
  • Load-Bearing Capacity: Slewing rings are designed to handle significant radial, axial, and moment loads. Their robust construction and large diameter enable them to support heavy equipment and loads, making them suitable for a wide range of applications, including construction machinery, material handling systems, and offshore platforms. The high load-bearing capacity of slewing rings contributes to the adaptability of rotating systems in demanding settings.
  • Compact Design: Slewing rings have a compact and space-saving design compared to alternative mechanisms for rotational movement. This compactness allows for the integration of slewing rings into systems where space is limited, such as compact construction machinery, industrial robots, and medical equipment. The compact design of slewing rings enhances the adaptability of rotating systems in confined or restricted environments.
  • Versatile Mounting Options: Slewing rings offer versatile mounting options, allowing them to be easily integrated into different types of rotating systems. They can be mounted using various methods, including bolted connections, gear or pinion arrangements, or hydraulic or electric drives. This versatility in mounting options enables slewing rings to adapt to the specific requirements and constraints of different applications and settings.
  • Support for Multiple Components: Slewing rings provide support for various components that are essential for rotating systems. For example, they can support booms, arms, or jibs in construction machinery, or act as a base for rotating platforms or turntables in manufacturing or entertainment industries. By providing a stable and reliable foundation, slewing rings enable the integration of multiple components, enhancing the versatility and adaptability of the overall system.
  • Customization and Specialized Designs: Slewing rings can be customized and designed to meet specific application requirements. Manufacturers can tailor slewing rings to accommodate specific load capacities, dimensions, mounting arrangements, sealing systems, or environmental conditions. This customization allows for the adaptation of slewing rings to diverse settings, ensuring optimal performance and functionality.
  • Integration with Control Systems: Slewing rings can be integrated with electronic or computer-controlled components, such as sensors, actuators, and control systems. This integration enables precise control, automation, and synchronization of rotating systems. By incorporating advanced control features, slewing rings can adapt to dynamic operating conditions, optimize performance, and support advanced functionalities, such as coordinated motion, precision positioning, or remote monitoring.

In summary, slewing rings contribute to the adaptability and versatility of rotating systems by enabling 360-degree rotation, providing high load-bearing capacity, offering a compact design, supporting versatile mounting options, accommodating multiple components, allowing customization, and facilitating integration with control systems. These characteristics make slewing rings suitable for a wide range of applications and settings, enhancing the versatility and adaptability of rotating systems in industries such as construction, manufacturing, transportation, renewable energy, and many others.

Can you provide insights into the importance of proper installation and alignment of slewing rings?

Proper installation and alignment of slewing rings are of utmost importance for ensuring optimal performance, longevity, and safety of rotating systems. Here’s a detailed explanation of the importance of proper installation and alignment of slewing rings:

  • Load Distribution: Correct installation and alignment of slewing rings ensure proper load distribution across the rolling elements and raceways. When a slewing ring is improperly installed or misaligned, excessive loads may be concentrated on specific areas, leading to accelerated wear, premature failure, and reduced load-bearing capacity. Proper alignment helps distribute loads evenly, maximizing the life expectancy of the slewing ring.
  • Smooth Operation: Accurate installation and alignment contribute to the smooth operation of rotating systems. Misalignment can result in increased friction, uneven motion, vibrations, and noise. These issues not only reduce efficiency but also impact the overall performance and reliability of the system. Proper alignment minimizes friction and ensures smooth and precise rotational movement, enhancing the system’s efficiency and productivity.
  • Reduced Wear and Tear: Improper installation or misalignment can cause excessive wear and tear on the slewing ring and associated components. Misalignment can lead to increased rolling element and raceway stresses, resulting in accelerated fatigue and surface damage. By achieving proper alignment, the slewing ring operates within its designed parameters, reducing wear and extending its operational life.
  • Optimized Performance: Proper installation and alignment directly impact the performance of rotating systems. Accurate alignment ensures that components such as gears, motors, and drive systems mesh correctly with the slewing ring. This alignment facilitates efficient power transmission, reduces energy losses, and improves the overall performance and responsiveness of the system.
  • Prevention of Structural Damage: Misalignment of slewing rings can exert excessive forces on the supporting structure or adjacent components. Over time, these forces can cause structural damage, misalignment in other parts of the system, or even equipment failure. Proper installation and alignment help prevent such structural damage, ensuring the integrity and longevity of the entire system.
  • Safety Considerations: Correct installation and alignment of slewing rings are crucial for safety in rotating systems. Misalignment can lead to unexpected movements, uncontrolled motion, or component failure, posing a risk to personnel, equipment, and the surrounding environment. Proper alignment reduces the likelihood of accidents, improves operational safety, and ensures compliance with safety regulations.
  • Ease of Maintenance: Properly aligned slewing rings are easier to maintain and service. Routine maintenance tasks such as lubrication, inspection, and replacement of components can be performed more efficiently when the slewing ring is correctly installed and aligned. This reduces downtime, extends maintenance intervals, and improves the overall operational efficiency of the system.

In summary, proper installation and alignment of slewing rings are critical for achieving optimal performance, reliability, and safety in rotating systems. Accurate alignment ensures load distribution, smooth operation, reduced wear, optimized performance, prevention of structural damage, enhanced safety, and ease of maintenance. It is essential to follow manufacturer guidelines, industry standards, and best practices to ensure the correct installation and alignment of slewing rings, maximizing their operational lifespan and the efficiency of the entire system.

China Best Sales Turntable for Farm Machine Trailer Turntable for Heavy Truck  China Best Sales Turntable for Farm Machine Trailer Turntable for Heavy Truck
editor by Dream 2024-04-19