81% Melamine Urea Formaldehyde Wear Resistance Thermoplastic Aqueous Polymer

Brand Name:Haminol
Model Number:385
Minimum Order Quantity:1T
Delivery Time:5-8 work day
Payment Terms:L/C, D/A, D/P, T/T
Place of Origin:China
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Location: Chongqing Chongqing China
Address: BAITAO CHEMICAL INDUSTRY ZONE, FULING DISTRICT, CHONGQING CITY, CHINA
Supplier`s last login times: within 43 hours
Product Details Company Profile
Product Details

Haminol 385 can be used to increase the hardness and wear resistance of thermoplastic aqueous polymers

FACTORY

Jianfeng Haokang is an energy-saving and environmentally-friendly high-tech company that has a good understanding of the circular economy industrial chain and can achieve self-sufficiency in steam and complete recycling of production effluent and waste. The company has successfully completed four major research and development projects in Chongqing. High formaldehyde concentration process technology by silver method, hexahydroxymethyl methylamine treatment process technology and high temperature secondary esterification process technology of esterified honeyamine resin were independently developed by the company and are at the forefront of the world.


PRODUCT

Haminol 85 is a new high-imine partial methyl ester fully water-soluble melamine resin with low alkylation, using demineralised water as a solvent and curing rapidly without strong acid catalysts. It can react with polymers with hydroxyl, amide and carboxyl groups. These resins have good water solubility and a strong tendency to self-cure. Can be used to improve the hardness and abrasion resistance of thermoplastic water-based polymers and is generally recommended for emulsions and water dispersion systems.

AdvantagesVery fast cure response
Water soluble
Low formaldehyde release
 
 
 
Application areasEmulsion topcoat systems
Textile coatings
Non-woven binders
Microencapsulati
 
 
 

China 81% Melamine Urea Formaldehyde Wear Resistance Thermoplastic Aqueous Polymer supplier

81% Melamine Urea Formaldehyde Wear Resistance Thermoplastic Aqueous Polymer

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