Description
Linear Rail SBR16, 4.5 Meter Length (SPECIAL configuration)


Specification: Linear Rail SBR
Linear Rail SBR10 model sizes available: 10 / 12 / 16 / 20 / 25 / 30 / 35 / 40 / 50 mm
Features: Linear Rail SBR
- Linear bearing is a low-cost production of linear motion system for unlimited travel in conjunction with the cylinder axis. Because of point contact between ball and straight axis, so the load is small.
- The ball is spinning with the smallest friction, it can run a high precision and smooth motion.
- Flange linear bearings can be divided into: round flange type, oval flange, guide wheel flange, guide the oval flange type, plus long round flange type.
- This is the sliding unit with the aluminium case, shafts and aluminium rail for preventing deflexion.
- This is the complete sliding unit systems and can be clamped simply tightening by bolt with high accuracy.
- The support rail unit provides maximum rigidity and stiffness to the shaft throughout the whole stroke, and ensure the performance of the unit.



Linear Rail SBR Assembly with Sliding Block


Rear View of Linear Rail SBR
HGH and SBR Linear Slide Blocks: Key Differences for Application Selection
HGH Slide Blocks (Linear Guideway)
- Structure: HGH type linear guideways feature a rail with recirculating ball bearings, providing smooth operation and durability.
- Precision: Offers high precision, making it suitable for applications requiring fine accuracy, such as CNC machines and measuring equipment.
- Load Capacity: Capable of handling high loads and resistant to impact forces.
- Applications: Utilized in heavy-duty industrial settings, including machine manufacturing, component production, and electronic assembly.
SBR Slide Blocks (Support Rail Guide)
- Structure: SBR type linear guideways utilize a cylindrical rail with ball bearings running along its path, offering flexibility in application.
- Precision: Provides moderate precision, not ideal for applications demanding extremely high accuracy.
- Load Capacity: Lower load capacity compared to HGH, but offers higher flexibility.
- Applications: Suited for tasks not requiring high precision, such as 3D printers, small laser cutters, and general motion systems.
Summary of Differences
- HGH: Optimal for applications demanding high precision and load capacity.
- SBR: Best suited for applications requiring flexibility and general use.
The selection between HGH and SBR should be based on the specific requirements and intended use of the application.
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