Dant Clayton provides a wide variety of choices when it comes to the core component of any stadium — the decking and riser system.

Combined with our Hybrid Stadium System and Alum-A-Stand products, the decking and riser options available with our steel and aluminum system provide a solution for every need.

  • Low cost
  • Water control
  • Strength and rigidity
  • Color
  • Slip resistance
  • Glare
  • Ease of maintenance
  • Durability
  • Quick installation

Premium Welded Decking

The gold standard of aluminum decking products, a welded system ensures maximum water control, strength, and durability while minimizing maintenance costs. Our factory-controlled robotic process delivers consistent welds that connect individual aluminum extrusions into one-piece tread panels.

The only effective design that addresses rainwater in a stadium system is providing top-side runoff and directed collection. Secured to the steel frame with our standard double lock design, the full system includes a structural connection of the seating to the steel frame and smooth vertical face to keep your stadium clean and easy to maintain.

This system is installed in the NFL, MLB, MLS, D1 College Football, and hundreds of high school stadiums across the country.

Interlocking

Providing maximum flexibility, any stadium layout can be configured with our interlocking decking system.

Our interlocking planks can be designed to meet any necessary geometry, including angled seating sections, variable riser heights and tread depths, custom stair structures, and even large platforms and walkways.

With a full height of 1-3/4", our extrusions provide a rigid deck using the largest and strongest components available in the industry, and are available in three finish options.

Basic Low Cost

When your budget demands building code compliance at the lowest cost possible, our basic system is the answer.

Provided as either fully closed or only semi-closed, this option provides no effective water control, but can limit the amount of trash and debris that falls to the ground below.