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Methylated Melamine Resin

IntroductionThis category of products mainly consists of methanol and hydroxymethyl melamine re

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İçeri

This category of products mainly consists of methanol and hydroxymethyl melamine reacting in different molar ratios to form highly methylated, partially methylated, and highly imido methylated melamine resin products. This series of products can react with functional polymers with hydroxyl, carboxyl, and amide groups to produce flexible, scratch resistant, and adhesive products, which are widely used in coating systems based on acrylic acid, polyester, alkyd, epoxy resin, and polyurethane.

High solid methyl etherified melamine resin products

MT 300White waxy solid≥98≤0.1Fully methylated hexahydroxymethyl melamine resin
MT 303Colorless viscous liquid≥982000-6000≤0.3Highly methylated hexahydroxymethyl melamine resin
MT 303lfColorless viscous liquid≥982000-6000≤0.1low free formaldehyde303
MT 303wColorless viscous liquid≥962000-6000≤0.5 303

High iminomethylated dense amine resin

MT 325Colorless viscous liquid78-822500-4500≤0.75
Fast curing, no need for strong acid catalysis, low formaldehyde emission
MT 327Colorless viscous liquid88-925100-16000≤0.8
Fast curing, no need for strong acid catalysis, low formaldehyde emission
MT 385Colorless viscous liquid76-811000-1600≤0.4
Fast curing, no need for strong acid catalysis, low formaldehyde emission

Part of the methylated melamine resin

MT 370Colorless viscous liquid86-905100-10200≤3.5
No need for curing, no need for strong acid catalysis
MT 380Colorless viscous liquid76-821200-3500≤2.5
No need for curing, no need for strong acid catalysis

Methylated Melamine Resins: Technical Overview

CategorySpecifications
DefinitionThermosetting amino resins formed by reacting melamine with formaldehyde and methanol, used as crosslinkers in coatings and adhesives
Chemical StructurePolymeric methylol melamine ethers

Types of Methylated Melamine Resins

TypeMethylation DegreeÇözünürlükCuring Conditions
Partially Methylated50-70% methyl groupsWater-solubleAcid catalyst, 120-150°C
Fully Methylated>90% methyl groupsOrganic solvent-solubleSelf-crosslinking, 140-180°C
High-IminoLow methylation, high NH groupsWater/organic solubleLow-temperature cure (100-130°C)

Key Properties & Performance

PropertyTypical ValueTest Method
Non-Volatile Content80-100%ISO 3251
Viscosity (25°C)500-3000 mPa·sISO 3219
Free Formaldehyde<1%DIN EN ISO 9397
Gel Time (150°C)3-10 minutesASTM D2471

Comparison with Other Amino Resins

ParameterMethylated MelamineUrea-FormaldehydeBenzoguanamine
Weather ResistanceExcellentPoorGood
Chemical ResistanceHigh (acids, alkalis)ModerateModerate
FlexibilityModerateBrittleGood
CostHighLowVery High

Formulation Guidelines

ComponentRoleTypical Loading (wt%)
Melamine ResinCrosslinker10-30% (on resin solids)
Hydroxyl Polymer (e.g., polyester, acrylic)Main resin70-90%
Acid Catalyst (e.g., p-TSA)Cure accelerator0.1-1.0%
Flow AdditivesSurface leveling0.5-2.0%

Industrial Applications

IndustryUse CaseResin Type Preferred
AutomotiveClearcoats, basecoatsFully methylated, high-gloss
Coil CoatingsPre-painted metalPartially methylated, flexible
Wood CoatingsFurniture lacquersHigh-imino, fast-cure
Can CoatingsFood-contact liningsFully methylated, FDA-compliant

Curing Mechanism & Conditions

StageProcessTemperature/Time
Methylol CondensationEther crosslinking100-140°C, 10-30 min
Self-CrosslinkingResidual –CH₂OH groups react>150°C, 5-15 min
Post-CureFull network formation24h at ambient

Advantages & Limitations

AdvantageTechnical BenefitLimitationChallenge
High hardnessScratch-resistant filmsBrittlenessRequires plasticizers
Excellent glossAutomotive-grade finishHigh costLimited to premium applications
Low-VOCWater-based options availableSlow cureNeeds acid catalysts


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