IntroductionFully Methylated Melamine-Formaldehyde Resin (FMMF): Overview and Key PropertiesCat
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Fully Methylated Melamine-Formaldehyde Resin (FMMF): Overview and Key Properties
Category | Details |
---|---|
Chemical Type | Hexamethoxymethylmelamine (HMMM) |
CAS Number | 3089-11-0 |
Utseende | Colorless to pale yellow viscous liquid |
Solubility | Soluble in water, alcohols, and most organic solvents |
Chemical Structure & Properties
Property | Value | Significance |
---|---|---|
Methylation Degree | >95% | Ensures complete reactivity |
Viscosity (25°C) | 300–800 mPa·s | Impacts application flow |
pH | 8.5–10.5 | Stabilizes resin in storage |
Reactive Sites | 6 methoxy groups per molecule | High crosslinking density |
Curing Performance
Parameter | Range | Notes |
---|---|---|
Self-Cure Temp. | 150–180°C | Requires strong acid catalyst |
Co-Cure Temp. | 120–150°C | With hydroxyl/acid functional resins |
Gel Time | 5–15 min @ 150°C | Catalyst-dependent |
Industry | Ansökan | Key Benefit |
---|---|---|
Coatings | Automotive clearcoats | High gloss, chemical resistance |
Textiles | Wrinkle-resistant finishes | Durable crosslinks |
Paper | Wet-strength additives | Improves fiber bonding |
Adhesives | Wood composites | Low formaldehyde emission |
Component | Typical % | Purpose |
---|---|---|
FMMF Resin | 15–30% | Primary crosslinker |
Acid Catalyst | 0.5–2% (e.g., p-TSA) | Cure acceleration |
Co-Resin | 50–70% (e.g., acrylic/polyester) | Flexibility adjustment |
Additives | 1–5% | Flow/leveling control |
Feature | FMMF | Partially Methylated MF | Urea-Formaldehyde |
---|---|---|---|
Reactivity | High | Moderate | Low |
Formaldehyde Emission | Very Low | Moderate | High |
Water Resistance | Excellent | Good | Fair |
Cost | $$ | $ | $ |
Parameter | Status |
---|---|
VOC Content | <250 g/L (compliant) |
Food Contact | FDA 21 CFR 175.300 |
Storage | 12 months @ 25°C (inert atmosphere) |
Fully methylated melamine-formaldehyde resins deliver superior crosslinking efficiency with minimal formaldehyde release, making them ideal for high-performance coatings and industrial applications. Their high reactivity requires precise catalyst selection but enables energy-efficient curing processes.
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