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Methylated Urinary Aldehyde Resin

IntroductionMethylated Urinary Aldehyde Resin: Properties and ApplicationsTable 1: Key Characte

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Introduction

Methylated Urinary Aldehyde Resin: Properties and Applications

Table 1: Key Characteristics of Methylated Urinary Aldehyde Resin

PropertyEspecificacionesImportance
Chemical StructureModified urea-formaldehyde polymerDetermines reactivity and stability
Methylation Degree20-40%Affects solubility and curing properties
Solid Content60-70%Impacts formulation viscosity
pH Value7.5-9.0Influences storage stability
Viscosity (25°C)200-800 cpsCritical for application methods
Shelf Life6-9 monthsRequires cool, dry storage

Table 2: Industrial Applications and Performance

AplicaciónFunctionBenefits
Wood AdhesivesPlywood/particleboard binderFast curing, improved water resistance
Foundry CoatingsSand binderExcellent thermal stability
Textile FinishingWrinkle-resistant agentEnhanced fabric durability
Paper StrengtheningWet-end additiveIncreased wet tear strength
Abrasive MaterialsBonding agentImproved grit retention

Table 3: Comparison with Conventional Urea Resins

ParameterMethylated ResinStandard UF Resin
Formaldehyde Emission30-50% lowerHigher emission
Water Resistance20% improvementModerate resistance
Cure Speed15-20% fasterStandard curing
Alkali ResistanceExcellentPoor
Storage Stability6-9 months3-6 months

Table 4: Recommended Formulation Guidelines

ComponentWood Adhesive (%)Foundry Binder (%)Textile Finish (%)
Resin55-6560-7040-50
Catalyst0.5-1.51-20.3-0.8
Filler15-2510-20
Additives2-53-75-10
WaterBalanceBalanceBalance

Table 5: Safety and Environmental Profile

ParameterValueCompliance
Formaldehyde Content<0.5% freeMeets E1 standards
VOC Emission<50 g/LCARB compliant
Punto Flash>100°CNon-flammable
Biodegradability40-60%OECD 301B
Toxicity (LD50)>2000 mg/kgLow hazard

Methylated urinary aldehyde resin offers superior performance compared to conventional urea-formaldehyde resins, particularly in reduced formaldehyde emission and enhanced water resistance. The methylation process improves resin stability and broadens application possibilities while maintaining cost-effectiveness. Proper catalyst selection and curing conditions remain crucial for optimal performance across different applications.

Methyl etherified urea formaldehyde resin, specially designed for indoor and UV resistant formulation systems, exhibits many unique characteristics. Its molecular structure is rich in polar oxygen atoms, which endows it with excellent substrate adhesion, making it suitable for both primer and intermediate coating applications. At room temperature, the resin can be cured through acid catalysis, making it very suitable for the application of two-component wood coatings. In addition, it can also improve the color retention of the coating, provide high hardness and good flexibility. Although it has a certain impact on the gloss retention, the pattern of the hammer pattern paint becomes clearer as a result. Methanol etherified urea formaldehyde resin retains its water solubility and has the characteristic of rapid curing. It can be used as a crosslinking agent for water-based coatings alone or in combination with solvent based alkyd resins.

Methylated urea formaldehyde resin, as a polymerized partially alkylated amino resin, has both alcohol solubility and water solubility. Its fast solidification greatly enhances metal adhesion, making it an ideal choice for high solid coatings and solvent-free coating crosslinking agents. This resin has two specifications: one has a relatively low molecular weight and good compatibility with various alkyd resins, epoxy resins, and polyester resins; The other type has a higher relative molecular weight and is particularly suitable for use in combination with dry or non dry short oil alkyd resins. When a mixture of aromatic hydrocarbons and alcohols is used as a solvent, the coating will exhibit excellent gloss and impact resistance.

In low-temperature curing systems such as wood coatings, two-component formulation systems are particularly important. In such formulations, acidic catalysts need to be added before use. If the baking temperature is about 70 ℃, it is recommended to use a strong or weak acid catalyst in an amount of 1-2% of the total solid content of the resin. It is worth noting that this series of products can react with functional polymers containing hydroxyl, carboxyl, and amide groups, but caution should be taken against their tendency towards self condensation.

The product specifications of this methyl etherified urea formaldehyde resin are as follows: solid content of, solvent of water, pH value of 8. viscosity of 1000. It has a wide range of application scenarios, suitable for water-based primers, intermediate coatings, as well as indoor applications and water-based films.

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