SPHERICAL ROLLER BEARING has two rows of rollers, one shared spherical raceway in the outer ring and two raceways in the inner ring and is inclined to an Angle relative to the bearing axis. This clever structure makes it with automatic aligning performance, so it is not easy to be affected by the Angle of shaft and bearing box seat on the error or shaft bending, suitable for installation error or shaft deflection caused by Angle error occasions. In addition to bearing radial load, the bearing can also bear two-way axial load.
SPHERICAL ROLLER BEARING are divided into SPHERICAL ROLLER BEARING can be divided into symmetrical spherical roller bearings and asymmetric spherical roller bearings according to the shape of the roller section. The asymmetric SPHERICAL ROLLER BEARING are early products, mainly for the maintenance of the main engine. The symmetrical self-aligning roller bearings are rarely used in the new design of the main engine. Can withstand greater axial load, the running temperature of this bearing is low, so it can adapt to the requirements of higher speed, According to the inner ring with or without guard and the cage used, it can be divided into C type and CA type. The characteristics of C type bearing are that the inner ring has no guard and adopts steel plate stamping cage, while the characteristics of CA type Trayon bearing are that both sides of the inner ring have guard and adopts automobile solid cage.
SPHERICAL ROLLER BEARING has two rows of rollers, which mainly bear radial load, but also can bear axial load in any direction. High radial load capacity, especially suitable for heavy loads or vibration loads, but can not withstand pure axial load. The raceway of the outer ring of this kind of bearing is spherical, so it has good aligning performance and can compensate the coaxiality error.
SPHERICAL ROLLER BEARING has two rows of rollers, which mainly bear radial load, but also can bear axial load in any direction. High radial load capacity, especially suitable for heavy loads or vibration loads, but can not withstand pure axial load. The raceway of the outer ring of this kind of bearing is spherical, so it has good aligning performance and can compensate the coaxiality error.
SPHERICAL ROLLER BEARING has two rows of rollers, which mainly bear radial load, but also can bear axial load in any direction. High radial load capacity, especially suitable for heavy loads or vibration loads, but can not withstand pure axial load. The raceway of the outer ring of this kind of bearing is spherical, so it has good aligning performance and can compensate the coaxiality error.
SPHERICAL ROLLER BEARING has two rows of rollers, which mainly bear radial load, but also can bear axial load in any direction. High radial load capacity, especially suitable for heavy loads or vibration loads, but can not withstand pure axial load. The raceway of the outer ring of this kind of bearing is spherical, so it has good aligning performance and can compensate the coaxiality error.
SPHERICAL ROLLER BEARING has two rows of rollers, which mainly bear radial load, but also can bear axial load in any direction. High radial load capacity, especially suitable for heavy loads or vibration loads, but can not withstand pure axial load. The raceway of the outer ring of this kind of bearing is spherical, so it has good aligning performance and can compensate the coaxiality error.
The function of linear guide is to support and guide the moving parts, reciprocating linear motion according to the given direction. According to the friction properties, linear motion guide can be divided into sliding friction guide, rolling friction guide, elastic friction guide, fluid friction guide and so on.
Application Scenario
Description
Industrial Automation
Used in robotic arms, conveyors, and assembly lines for precise linear motion.
CNC Machines
Ensures high-precision movement in milling, cutting, and engraving equipment.
3D Printers
Provides smooth and accurate motion control for print heads and build platforms.
Medical Equipment
Enables precise positioning in MRI machines, surgical robots, and imaging systems.
Semiconductor Manufacturing
Critical for wafer handling, lit...
Application Scenario
Description
Industrial Automation
Used in robotic arms, conveyors, and assembly lines for precise linear motion.
CNC Machines
Ensures high-precision movement in milling, cutting, and engraving equipment.
3D Printers
Provides smooth and accurate motion control for print heads and build platforms.
Medical Equipment
Enables precise positioning in MRI machines, surgical robots, and imaging systems.
Semiconductor Manufacturing
Critical for wafer handling, lit...
Application Scenario
Description
Industrial Automation
Used in robotic arms, conveyors, and assembly lines for precise linear motion.
CNC Machines
Ensures high-precision movement in milling, cutting, and engraving equipment.
3D Printers
Provides smooth and accurate motion control for print heads and build platforms.
Medical Equipment
Enables precise positioning in MRI machines, surgical robots, and imaging systems.
Semiconductor Manufacturing
Critical for wafer handling, lit...
Application Scenario
Description
Industrial Automation
Used in robotic arms, conveyors, and assembly lines for precise linear motion.
CNC Machines
Ensures high-precision movement in milling, cutting, and engraving equipment.
3D Printers
Provides smooth and accurate motion control for print heads and build platforms.
Medical Equipment
Enables precise positioning in MRI machines, surgical robots, and imaging systems.
Semiconductor Manufacturing
Critical for wafer handling, lit...