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Milled Glass Fibers

Micro-Reinforcement for Crack Bridging, Tear Resistance & Long-Term Roof Durability

Milled Glass Fibers are precision-engineered, short-length inorganic fibers used as micro-reinforcement additives in roof coatings and waterproofing membranes. 

They are produced by controlled milling of glass filaments into uniform fiber lengths with a high aspect ratio, allowing them to form a reinforcing network inside the cured film. In roofing systems exposed to UV radiation, thermal cycling, ponding water, wind uplift, and mechanical wear, milled glass fibers significantly improve the coating’s resistance to cracking, tearing, and premature failure.

Unlike irregular mineral fillers, milled fibers provide structural reinforcement rather than just bulk. They help distribute stresses across the film, improve toughness, and support coating continuity over joints, micro-cracks, and surface texture—making them ideal for durable waterproofing and long-life roof protection systems.

General Characteristics

Synonyms

Zeolite Silver Antimicrobial Powder/ Ag-Zeolite Powder

CAS No.

1318-02-1

EC/EINECS

215-283-8

HS Code

3824.99.00

UN/Transport

not classified as dangerous goods

True density

2.1–2.3 g/cm³

Mohs hardness

4–5

Dosage

0.1%

Roofing & Waterproofing Applications

Elastomeric Roof Coatings (Acrylic / Hybrid)

Milled glass fibers strengthen elastomeric roof coatings by increasing resistance to cracking during roof movement.
Use cases:
Cool roof coatings (white reflective acrylic systems)
Elastomeric waterproof roof coatings
Roof restoration and refurbishment coatings

Waterproofing Membranes (PU / Epoxy / Bituminous)

Milled fibers reinforce membranes where toughness and puncture resistance are required.
Use cases:
Liquid-applied PU waterproofing membranes
Epoxy protective waterproof layers
Bituminous waterproofing coatings and modified asphalt systems

Cementitious Waterproofing (Polymer-Modified Slurries)

In cementitious waterproofing, fibers help resist micro-crack formation and improve integrity over time.
Use cases:
Terrace waterproofing slurries
Bathroom and wet-area waterproofing
Podium decks and parapet walls

Crack-Fillers, Joint Treatments & Detailing Compounds

Milled glass fibers improve strength and stability in crack fillers and joint sealing layers used before top coating.

Properties

Property Typical Value
Composition Soda-lime borosilicate glass
Particle morphology Hollow spheres
True density ~0.15 g/cc
Bulk density ~0.09 g/cc
Crush strength (90% survival) ~250 psi
Average particle size ~50 microns
Thermal conductivity Very low (air-filled structure)
Combustibility Non-combustible
Color White

Benefits in Roofing Systems

Crack bridging & micro-crack control

Fibers form a reinforcing network that helps bridge micro-cracks caused by thermal cycling and substrate movement.

Improved tear & tensile resistance

Enhances membrane toughness and reduces tearing under stress, wind uplift, and foot traffic.

Higher durability in weathering

Supports long-term film integrity under UV exposure, heat, rain, and ponding water.

Better dimensional stability

Reduces shrinkage stress and helps maintain coating continuity at thickness build.

Improved puncture & abrasion resistance

Reinforcement improves resistance to mechanical damage during maintenance or rooftop activity.

Compatible reinforcement with low loading

Provides significant mechanical improvement at relatively low dosage compared to mineral fillers.

Typical Dosage Guidelines

Actual dosage depends on resin system, viscosity, coating thickness, and required reinforcement level. Optimize by trials.

Water-Borne Elastomeric Roof Coatings

0.5 – 2.0% by weight on total formulation

Typical: 1.0% for crack resistance and durability improvement PU / Epoxy Waterproofing Membranes

0.5 – 3.0% by weight on total formulation

Higher levels for heavy-duty membranes and traffic exposure Cementitious Waterproofing Slurries

0.2 – 1.0% by weight of dry mix

Optimize for workability and crack control Crack Fillers / Detailing Compounds

1.0 – 5.0% by weight depending on desired thixotropy and bridging strength

Processing & Incorporation Notes

Add fibers during the filler incorporation stage under moderate mixing.

Avoid excessive shear that can break fibers and reduce reinforcement efficiency.

In water-borne coatings, pre-wetting fibers with a compatible wetting agent can improve dispersion.

Control viscosity using rheology modifiers; fiber addition may increase thixotropy.

Validate performance in terms of crack bridging, tensile strength, elongation, and waterproofing integrity.

Safety & Handling

Milled glass fibers are inorganic and non-flammable, but dust and fine fibers should be handled responsibly.

Recommended PPE:

Safety goggles
Gloves
Dust mask/respirator during powder handling

Avoid generating airborne dust; use local exhaust ventilation where necessary.

Storage

Store in a dry, covered area away from moisture.

Keep bags sealed after opening to maintain flowability.

Avoid crushing or mechanical damage to packaging.

Packaging Information

25 kg bags

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