CRL B5S20F Mill Aluminum 240" Fascia Mount Square Base Shoe for 1/2" Glass

Item #: B5S20F by CR Laurence

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In Stock $2,283.38 /each

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CRL B5S20F Mill Aluminum 240" Fascia Mount Square Base Shoe for 1/2" Glass

Item #: B5S20F by CR Laurence

See reviews See reviews

In Stock $2,283.38 /each

SAVE UP TO 228.34

Buying in bulk

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  • For 1/2" (12 mm) Monolithic Tempered Glass
  • Typically Used as the Base Channel for Glass Railing Systems or Windscreens
  • Drilled and Counter Bored 12" (305 mm) Center-to-Center, or We Will Custom Drill to Your Specifications
  • Custom Cutting and Mitering Service
  • Test Reports Available

Center-to-Center Holes

12 in (305 mm)

Counter Bore X Depth

7/8" (22 mm) x 1/2" (12.7 mm)

Minimum Order

1 Each

Stock Length

240" (6.10 m)

Hole Size

9/16" (14.3 mm)

Holes Drilled C.T.C.

12" (305 mm)

The CRL B5S Series Standard Square Base Shoe is used as the base channel for glass railing systems. It can be clad in six choices of architectural finishes. The most critical component in a railing system is the proper attachment of the Base Shoe to the substrate. CRL has engineered and tested a variety of attachment methods, and has developed an acceptable combination of drilling patterns and fasteners. A printed brochure with instructions, installation hints, cleaning, and refinishing techniques is available.
SPECIFICATIONS:
Material: 6063 Aluminum Alloy T52 Temper
Typical Use: Heavy-Duty Square Base Shoe used with 1/2" (12 mm) glass as the base channel for glass railing systems. Also available counter bored and drilled. Important Notes: CRL does not recommend direct powder coating of this base shoe extrusion. Powder coated cladding applied over the base shoe is the recommended method. All pre-drilled CRL Base Shoes have a +1/8 (3mm) / -1/16 (1.5mm) tolerance between each hole drilled in the base. Before drilling installation holes in the concrete or steel substrate it is recommended that the installer place the base shoe into the planned final position, then mark the position of the holes to be drilled into the substrate.