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Anti-Slip Coefficient Engineering Data

COF test methods, surface comparison, acceptance thresholds and grit wear data

How COF Is Measured

Static vs. Dynamic Coefficient of Friction

Coefficient of friction (COF, or mu) is the ratio of friction force to the normal force pressing two surfaces together. Static COF describes the force to start a shoe sliding; dynamic COF describes the force to keep it sliding. In practice the static value governs slip - the moment a foot starts to move is where falls happen. Different test apparatuses measure different footwear and surface conditions, so a COF number is meaningless without the test method and the contamination state.

Test Methods

ASTM and ISO Slip-Resistance Test Methods

StandardApparatus / PrincipleMeasures
ASTM D2047James Machine (horizontal pull of a standard shoe sole)Static COF of polished/walked surfaces; common for floor polish
ASTM D1677Inclined plane (articulated leg on a tilting board)Static COF under wet and dry conditions for safety surfaces
ASTM F1677Mark II / English XL (articulated foot, portable)Field-use static COF on installed surfaces; widely cited by safety officers
ASTM F2913BOT-3000 (floor friction tester)Dynamic COF; modern lab and portable reference for walkway safety
ISO 13287Human-footwalk method with a specified bootSlip resistance of safety footwear on contaminated surfaces (ISO 20345 family)

A ZeAllgrate COA or test report states the standard, the contaminant (dry, wet, oily) and the footwear/shoe material - compare like with like only.

COF Data

COF by Surface and Contamination (Indicative)

SurfaceDry COFWet COFOily COF
Grit-top (silica / carbide)0.8 - 1.00.6 - 0.80.4 - 0.5
Concave (dished meniscus)0.6 - 0.70.5 - 0.60.3 - 0.4
Convex (raised crown)0.6 - 0.70.5 - 0.60.3 - 0.4
Smooth (cleanable)0.5 - 0.60.3 - 0.40.2 - 0.3
Covered grit-top (integral cover)0.8 - 1.00.6 - 0.80.4 - 0.5

Indicative ranges from ZeAllgrate in-house testing against ASTM F1677-style articulation; actual values depend on grit grade, shoe material and contamination. The wet and oily columns are the design drivers.

Acceptance Thresholds

What the Codes Expect

ReferenceThresholdApplies To
OSHA (29 CFR 1910 walkways)Static COF at least 0.5 recommendedGeneral industry walking-working surfaces
ADA / accessible routesCOF at least 0.6 on accessible walking surfacesPublic accessible routes in the USA
UK HSE / BSWet ramp / pendulum value at least 0.36UK industrial and public wet environments
ISO 13287 / footwearPer safety footwear standard on wet contaminated surfacesEurope / footwear-and-surface pairing

Design to the wet value, not the dry one. A grit-top surface holds its wet COF above the OSHA and HSE thresholds; a smooth surface drops below them as soon as it is wet.

Grit Types & Wear

Grit Material, Grade and Wear Life

Grit TypeHardnessBest Used For
Silicon carbideVery hard (Mohs 9+)Maximum wet/oily traction; the premium grit for offshore and wash-down
Aluminum oxideHard (Mohs 9)Good general grit, slightly cheaper; fine for industrial walkways
Silica / natural gritMediumEconomical standard grit-top; adequate for moderate wet service

Grit Grade

Coarse grit (16-24 mesh) gives the highest wet traction but a rougher feel; finer grit (30-46) is more comfortable underfoot and still meets wet thresholds. Specify by environment, not by feel.

Wear Life

In heavy foot traffic a bonded grit-top lasts 5-10 years before the grit wears flush. Wheel traffic (forklifts) abrades grit faster; re-coat or replace when wet COF drops below the design threshold.

Contamination & Maintenance

Contamination Effects and COF Maintenance

ContaminantEffect on COFDesign Response
Water / wash-downThin film reduces all surfaces; grit-top retains mostSpecify grit-top; keep drainage open
Oil / greaseSevere reduction; smooth surfaces become hazardousGrit-top with regular degreasing; avoid smooth in oily zones
Process chemicalsDepends on chemistry; check resin compatibilityMatch resin (ZeAll VE for strong chemicals) and grit-top
Ice / frostNear-zero COF on any surfaceNo surface solves ice; provide drainage and de-icing management
Dust / powderCan build a slippery layer on textured surfacesSmooth for dust-trap risk; clean regularly

Cleaning Schedule

Pressure-wash grit-top quarterly in wash-down service; more often in oily areas. A clean grit surface keeps its COF; a clogged one behaves like smooth.

Grit Re-Coating

When grit wears flush, a fresh bonded grit coating restores the wet COF without replacing the panel - check with ZeAllgrate for the correct resin-compatible grit system.

Selection Guide

Choose the Surface by Environment

EnvironmentRecommended SurfaceWhy
Permanent wet / wash-down / foodGrit-topHolds wet COF above OSHA 0.5 and HSE 0.36
Marine / offshore / chloridesGrit-top, SS316 clipsWet salt service plus corrosion-resistant hardware
General industrial dryConcave / convexGood dry traction, lower cost than grit
Oily / chemical processGrit-top, vinyl ester resinWet/oily traction plus chemical resistance
Cleanroom / food contact / barefootSmoothCleanability beats traction where contamination is controlled

Need a COF Test Report for Your Environment?

Tell us the contamination and footwear standard - ZeAllgrate supplies COF data by ASTM F1677 / F2913.

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.