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Thermal Expansion & Movement

CTE of FRP, comparison with steel, gap allowance and installation-joint design

Why It Matters

FRP Moves More Than Steel — Plan for It

Glass fibers suppress expansion along their length, but the resin-rich directions expand more than mild steel. If panels are rigidly clamped tight, thermal movement buckles or cracks the panel; if they are left free, they rattle. The fix is controlled gaps plus sliding hold-down clips.

Coefficients

Coefficient of Thermal Expansion (Typical)

Material / DirectionCTE (×10⁻⁶ /°C)Note
Molded grating — longitudinal / transverse~15–30Quasi-isotropic; roughly balanced in both directions
Pultruded — along bearing bars (longitudinal)~5–9Glass-dominated, close to steel
Pultruded — transverse to bars~20–35Resin-dominated, moves the most
Mild steel (reference)~11.7Design baseline
Aluminium (reference)~23Useful for mixed-material frames

Indicative values; actual CTE depends on resin, glass content and direction. Use panel test data for final design.

Gap Calculation

Calculating the Required Gap

Thermal movement ΔL = α × L × ΔT. Leave an installation gap that absorbs the maximum seasonal movement between extremes of installation and service temperature.

StepFormula / Rule
1 · MovementΔL (mm) = CTE (mm/mm·°C) × panel length L (mm) × ΔT (°C)
2 · Temperature rangeUse installation-to-summer / installation-to-winter extremes, e.g. ΔT ≈ 50–60 °C
3 · End gapsReserve ΔL at each end; leave 6–10 mm minimum nominal gap at panel ends
4 · Around obstructionsAdd clearance around fixed columns, walls and penetrations
5 · FastenersUse oversized holes / slotted holes and sliding clips — do not rigidly fix every corner
Design Rules

Installation-Joint Best Practice

Slip-Clamp One End

Anchor one end of a panel rigidly; let the other end slide under clips. This absorbs movement without stress.

Never Over-Tighten

Hold-down clips are locators, not clamps. Over-torquing defeats sliding and invites cracking at holes.

Long Runs

On long continuous runs, plan expansion joints every few metres; do not butt panels tightly end-to-end.

Worked Expansion Calculation

For a 3.66 m pultruded panel in isophthalic polyester, longitudinal CTE ≈ 15 × 10⁻⁶/°C, seasonal range 50 °C: movement = 3.66 m × 15 × 10⁻⁶ × 50 ≈ 2.7 mm. Across a 20 m continuous run of adjoining panels this accumulates to roughly 15 mm — enough to push clips or buckle edges if no gap is allowed. The design rule is to provide ~10 mm nominal gaps at panel ends and around fixed members, drill fastener clearance rather than forcing clips, and slip-clamp one end of each run while fixing the other, so movement goes into the gaps instead of into the structure.

Installation-Joint Practice

  • Allow a nominal 10 mm gap between panels and at abutments; do not butt panels hard.
  • Slip-clamp one end of a run; fix the other end — never rigidly fix both ends of a long deck.
  • Use clips with clearance that permit sliding; never over-tighten to the point of crushing the bar.
  • For long runs, plan a deliberate expansion joint at a chosen location and detail it on the drawing.
  • Allow a nominal 10 mm gap between panels and at abutments; do not butt panels hard.
  • Slip-clamp one end of a run; fix the other end — never rigidly fix both ends of a long deck.
  • Use clips with clearance that permit sliding; never over-tighten to the point of crushing the bar.
  • For long runs, plan a deliberate expansion joint at a chosen location and detail it on the drawing.

Calculating Expansion for Your Site?

Tell us panel length, resin system and your min/max service temperature — we return gap recommendations.

Source: ZeAllgrate (Fiberglass Grating Manufacturers Council / ACMA) design guidelines; ASTM International; ISO 14122; OSHA 29 CFR 1910. Indicative data for specification guidance only — final design verified by ZeAllgrate engineering against certified load/span charts.