ISO 9001 Certified · FRP/GRP Grating Manufacturer · Since 2004 · Exporting to 45+ Countries

FRP Grating Case Study | Telecom Tower Platforms & Ladder System — ZeAllgrate

Non-conductive UV-stabilized FRP platforms and caged ladders on a 45 m telecom tower

Project Overview

Telecom & Utilities — Project Background

A 45 m lattice telecommunications tower on a hilltop in Southern China required replacement of its equipment platforms and access ladders. The previous steel platforms and ladders had corroded badly in the hill's salt-laden, high-rainfall atmosphere, and — more seriously — steel on a tall tower creates a step-voltage hazard during lightning strikes. Telecom safety rules required a non-conductive walking surface around radio equipment, and the tower's dead-load budget limited how heavy the replacement could be. The platforms also had to support technicians carrying test equipment and climbing gear in wet weather.

Engineering specified UV-stabilized isophthalic molded grating for the platforms and a fully pultruded FRP caged ladder, with all fasteners in stainless steel but no conductive bridge across the platform surface. Client identity is kept confidential; the project is described as Confidential Client, a regional telecom infrastructure operator.

Design Parameters

Engineering Specification

Working values agreed with the client's engineering team during design review.

ParameterSelected ValueStandard / Reference
Live load2.5 kN/m² (technician + equipment)Telecom tower access design / EN 1991-1-1
Clear span0.8 m between tower leg anglesZeAllgrate molded grating design guide
Deflection limitL/150 at design loadZeAllgrate standard
Resin system — platformsZeAll ISO (UV-stabilized isophthalic)Outdoor / UV / rain resistance
Resin system — ladderZeAll FR (fire-retardant)ASTM E84 flame spread < 25
Platform panel38 mm molded, grit-topZeAllgrate standard molded grating
LadderPultruded FRP caged ladder, 400 mm widthEN 131 / OSHA fixed ladder standard
DielectricNon-conductive walking surfaceLightning step-voltage requirement
FixingsSS316 brackets to tower steelASTM A276 316
Weight~70% lighter than equivalent steelTower dead-load envelope
Solution & Installation

What Was Supplied and How It Went In

ZeAllgrate supplied 95 m² of 38 mm UV-stabilized ZeAll ISO molded grating for three equipment platforms at 12 m, 28 m and 41 m, plus a fully pultruded FRP caged ladder from ground to the top platform. All panels were pre-cut to the tower leg geometry with factory-drilled holes for the SS316 brackets, so installation crews could work on the tower without cutting FRP on the structure. The grit-top platform surface gives technicians safe footing when the hilltop is wet or foggy.

Because FRP is roughly 70% lighter than the equivalent steel grating, the whole platform replacement added well under the tower's remaining dead-load budget, avoiding the need for structural reinforcement of the tower legs. The non-conductive walking surface means technicians cannot be exposed to step voltage during a lightning strike, and the FRP ladder will not corrode like the old steel one did.

Pultruded FRP caged ladder on telecom tower

Pultruded FRP caged ladder on telecom tower

FRP fixed ladder with safety cage

FRP fixed ladder with safety cage

FRP grating access platform and stairs around industrial and telecom equipment

FRP access platform and stair system on industrial structures

Results & Performance

Outcomes and Inspection Findings

At 2-year inspection, the tower operator reported zero corrosion on platform panels, zero ladder rattle or loose brackets, and no UV chalking on the resin surface. The platforms have been used for routine radio maintenance in all weather with no safety incidents.

  • Electrical safety: non-conductive surface eliminates step-voltage hazard; no lightning-related equipment damage attributed to the new platforms.
  • Corrosion: zero rust on FRP panels and SS316 brackets after 2 years in salt-laden hilltop atmosphere.
  • Weight: ~70% lighter than steel; no tower reinforcement required.
  • UV stability: no chalking or fading on the UV-stabilized isophthalic surface.
  • Service life: expected 25 years outdoor vs. 6–8 years for the previous steel platforms in this environment.

Engineering Notes

Tower platforms are specified for non-conductivity and light weight: FRP grating and handrail near antennas carry no RF interaction and no earthing burden, and the UV-stabilised construction survives decades on towers and rooftops. Panels are light enough for hoisting and field fitting, and SS316 hardware matches the outdoor service. The span is set to the tower support grid from the load table, and the fire class is confirmed where the platform sits in a rated rooftop area.

What to Specify

  • Non-conductive grating and handrail; UV-stabilised resin.
  • Lightweight panels sized for hoisting and field fit.
  • SS316 hardware for outdoor service.
  • Span from the load table; fire class confirmed for rated areas.
  • Non-conductive grating and handrail; UV-stabilised resin.
  • Lightweight panels sized for hoisting and field fit.
  • SS316 hardware for outdoor service.
  • Span from the load table; fire class confirmed for rated areas.

Planning a Similar FRP Grating Project?

Send us your layout drawings, service chemicals and span requirements — ZeAllgrate will return a design proposal, load calculation and reference pricing within 48 hours.

Sources & References
  • ZeAllgrate molded grating design guide, load and deflection tables.
  • ASTM E84 — Standard Test Method for Surface Burning Characteristics of Building Materials.
  • EN 131 / OSHA 29 CFR 1910 — fixed ladder design and safety cage requirements.
  • ITU-T / telecom tower engineering guidance on step voltage and lightning protection.
  • Project inspection records supplied by Confidential Client; values quoted as-reported.