Concealed Fastener Wall Panels

Designer™ Series 16″ Fluted

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Designer™ Series 16″ Fluted

The Designer™ Series 16″ Fluted concealed fastener metal siding panel combines the toughness of metal with a clean yet elegant design. Our 16” wide modules offer 4” wide flutes per panel and can be utilized for both new and retrofit construction.

The panel also features a continuous rib design with a hidden sidelap where the panels join together. Given the panel legs are 1¾” deep, ample space is allowed for rigid board, blanket, or batt insulation in the cavity.

 

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Metl-Span-Insulated Metal Panels-Designer-Fluted-16-Illustration.jpeg

Design Features and Benefits

  • The panel features a continuous rib design with a hidden sidelap where the panels join together
  • The ribs create interesting shadow lines along the length of the wall
  • The panel legs are 1¾” deep, allowing ample space for rigid board, blanket or batt insulation in the cavity

Colors

ICI Color Chart

1.  Metallic paint finishes will exhibit color shift, shade variances, striations and longitudinal patterning that are inherent characteristics and are not a product defect or cause for rejection.

2.  All Metl-Span colors are formulated to provide maximum energy-efficiency and solar reflectivity.  All standard available Premium I and Premium II colors have been formulated for maximum solar reflectance.

3.  Prices vary by color, gauge and quantity of metal.  Please contact your Metl-Span representative for complete information.

4.  All colors shown are approximate actual finish colors displayed as accurately as possible.

5. Light Stone – Tuff Cote® does not match the Light Stone – Standard SP color offering.

Metl-Span® Concealed Fastener Series Single-Skin Wall Panel

2012 Master Format™ Section 07 42 13.19

All specifications and designs are subject to change without notice.

Load Span Tables

The Load Span Tables below are based on Allowable Stress Design (ASD). For loads calculated based on ASCE 7-10 (LRFD), please refer to section 2.4.1 of ASCE 7-10 for the applicable load combinations using Allowable Stress Design.

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