> Surface Applied (SA) TGSIs - Overview
Surface Applied (SA) TGSIs
Product Range Overview
What are ESP Surface Applied (SA) TGSIs?
Each ESP Warning & Directional TGSIs are chemically and mechanically applied to the finished surface. Nylon composite, corrosion resistant anchors and 304 stainless steel fasteners, provide mechanical connection to the finished substrate or existing finished surface, that possesses suitable structural integrity.
Image: ESP Surface Applied TGSI Access Tile installation on a existing concrete Pedestrian Crossing at Grade.
Why do ESP Surface Applied (SA) TGSIs perform so well?
Each ESP Surface Applied TGSI Access Tile is manufactured through the method of high-pressure compression process of a Sheet Moulding Compound (SMC). Produced with our unique Herculite material, we construct every ESP Access Tile from the highest quality polymer components and, with additional UV stabilisers for the harsh Australian Sun, the ESP Access Tiles will maintain their individual Luminance Contrast Values over the long term.
Image: Product Material Testing for the ESP Surface Applied Access Tile in Accordance with the American Standard Testing Methods (ASTM) - ASTM D638 -08 Test: Tensile Properties
How Versatile are ESP Surface Applied (SA) TGSIs?
The ESP Surface Applied (SA) TGSI Access Tiles are a series of compliance products that will renew your confidence in specifying and applying Tactile Ground Surface Indicators (TGSIs).
Made from durable, fibre-reinforced Herculite polymer, the ESP SA TGSI Access Tiles are fast to install, simple to retrofit and withstand the toughest pedestrian use.
All ESP SA TGSI Warning & Directional Access Tiles have been independently tested for their Slip Resistance Value to be used in conjunction with SA HB 198:2014 - Guide to the Specification and Testing of Slip Resistance of Pedestrian Surfaces. These tests have been conducted in compliance with AS/NZS 1428.4.1:2009 Amdt No.s 1 & 2 - Clause 2.3.1 and tested in Accordance with AS4586:2013 (Amdt 1:2017) Appendices A, C & D.