SSR15XSB1UU+280LY

SSR15XSB1UU+280LY Low Profile Ball Type Linear Guideway
$126.75 /Each    info

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Overview

Part Number SSR15XSB1UU+280LY
Brand: LILY Brand: LILY Interchangeable With: THK

Characteristics

System of Measurement Metric
Series LM Rolling Guide with Ball Retainer
Assembly Type Low Assembly
Block Model SSR15XSB1UU(GK)BLOCK
Block Type Flange Type
Load Type Medium Load
Rail Mounting Type Locking
Number of blocks 1
Standard Lubrication Nipple PB1021B
Rail Model SSR15-280LY
Number of Rail Holes 5

Dimensions

Size 15 mm
Assembly Height (H) 24 mm
Distance from Block Bottom to Rail Bottom (H1) 4.5 mm
Distance from Both Sides of Rail to Both Sides of Block (N) 18.5 mm
Block Width (W) 52 mm
Block Mounting hole Width (B) 41 mm
Grease Nipple Length (G) 5.5 mm
Block Length (L) 40.3 mm
Rail Length 280 mm
Rail Width (WR) 15 mm
Rail Height (HR) 12.5 mm
Outer Diameter (D) 7.5 mm
Hole Depth (h) 5.3 mm
Inner Diameter (d) 4.5 mm
Pitch (P) 60 mm
End Distance (E) 20/20 mm

Performance

Accuracy Classs Normal C
Preload Code ★Unmarked, Radial clearance with Preload -4~+2μm
★C1 Light Preload,Radial clearance with Preload -10~-4μm
Basic Dynamic Rated Load (C) 9.1 kN
Basic Static Rated Load (C0) 9.7 kN
Static Rated Moment (MR) 0.0562 kN-m
Static Rated Moment (MP) 0.0303 kN-m
Static Rated Moment (MY) 0.0189 kN-m

Properties

Block weight 0.11 kg
Rail weight 1.2 kg/m

The Heavy Low Profile Ball Type Linear Guideway features a Flange Type block, characterized by its extended flange base that provides a wider mounting surface, delivering enhanced stability and superior resistance to overturning moments. Despite its low-profile design that offers a reduced overall height for space-constrained installations, the Flange Type block maintains outstanding structural stability and precision linear motion, making it the ideal choice for heavy-duty industrial applications such as CNC machining centers and gantry systems where a compact footprint, secure mounting, and high performance are all required.

 

The Heavy Low Profile Ball Type Linear Guideway is designed for Medium Load applications, capable of withstanding moderate radial, lateral, and reverse loads with consistent precision and reliability. Despite its low-profile design that offers a reduced overall height for space-constrained installations, its robust construction and precision ball recirculation system ensure smooth, reliable linear motion under balanced load conditions, making it the ideal choice for industrial environments such as CNC machining centers, large gantry systems, and press machines where both a compact form factor and dependable medium load performance are required.

 

How does the Flange Type block resist overturning moments in a Low Profile guideway system?

The Flange Type block excels at resisting overturning moments in a Low Profile guideway system precisely because its wide flange base effectively compensates for the reduced vertical height of the overall system. In a low-profile configuration, the decreased block height naturally reduces the vertical moment arm available to resist tipping forces, which could potentially make the system more susceptible to overturning under offset or cantilevered loading. The extended flange base directly addresses this limitation by significantly increasing the horizontal contact area between the block and the mounting surface, distributing overturning forces across a much wider footprint. This results in greatly reduced stress concentration at the mounting interface, preventing structural deformation and maintaining motion accuracy even when persistent overturning loads are applied, making the Flange Type block the most effective choice for low-profile guideways subjected to asymmetric or offset loading conditions.

 

How does the Medium Load Low Profile guideway achieve smooth and precise motion under operating conditions?

Smooth and precise motion is achieved through a precision ball recirculation system that ensures continuous, uniform redistribution of load-bearing balls within the block. Under medium load conditions, contact stresses allow the lubricant film to maintain full separation between metal surfaces throughout the operating cycle, resulting in exceptionally smooth, low-friction motion with minimal heat generation. Combined with a precision-ground rail surface and a light to medium preload setting, the system delivers consistent positional accuracy across the full stroke length.

 

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