Durable natural-cork bulletin bar with aluminum frame creates a tackable display surface for securing documents, presentations and displays with push pins. Delivers effective performance in robust display environments. Self-healing surface.
Durable natural-cork bulletin bar creates a tackable display surface for securing documents, presentations and displays with push pins. Delivers effective performance when communication is needed in robust display environments. Self-healing surface eliminates unsightly pin holes. Connect multiple bars together to create a customized display area of any length. Includes easy-to-use mounting hardware and pushpins. Smooth, anodized aluminum surrounds the cork to enhance modern interiors. Available in several lengths.
ESS-QRT2006
Data sheet
Material(s)
Cork
Material(s)
Aluminum
Package Includes
Double-Sided Tape
Package Includes
Push Pins
Package Includes
Includes easy-to-use mounting hardware and pushpins
Package Includes
Easy-to-Use Mounting Hardware
Width
48"
Color(s)
Brown/Silver
Mounting Details
Double Sided Tape
Mounting Details
Double-Sided Tape (Included)
Surface Color
Brown
Global Product Type
Boards-Bulletin
Global Product Type
Tack-Style Display Rails
Global Product Type
Bulletin Boards
Color Family
Brown
Pre-Consumer Recycled Content Percent
0%
Post-Consumer Recycled Content Percent
0%
Total Recycled Content Percent
0%
Unit Of Measure
EA
Frame Material
Aluminum
Frame Color
Silver
Board Type
Bulletin
Board Width
48"
Board Height
1"
Surface Material
Cork
Height (Max)
1"
Mounting Method
Bolt/Screw
Mounting Method
Adhesive
Stand-Alone Product
Yes
Optional Accessory
No
Integral Component
No
Additional Mounting Details
Mounting Screws
Additional Mounting Details
Double-Sided Tape
Board-Like Surface Type
Bulletin
Board-Like Surface Material(s)
Cork
Durable natural-cork bulletin bar with aluminum frame creates a tackable display surface for securing documents, presentations and displays with push pins. Delivers effective performance in robust display environments. Self-healing surface.