High reactivity with epoxy resins, enabling rapid cure at ambient or moderate elevated temperatures.
Excellent chemical resistance—particularly to solvents, alkalis, and corrosion-inducing environments.
Low viscosity and low volatility, supporting easy handling, precise metering, and reduced VOC emissions.
Superior UV stability and yellowing resistance due to the alicyclic structure of isophorone diamine.
Enhanced flexibility and impact resistance in cured epoxy networks without compromising hardness.
High-performance industrial coatings for steel structures, pipelines, and offshore platforms.
Electrical encapsulation and potting compounds requiring thermal stability and dielectric integrity.
Advanced composite matrices in aerospace and wind energy components.
Adhesives and structural bonding systems demanding toughness and environmental durability.
Concrete repair mortars and high-build flooring systems exposed to aggressive service conditions.
| Chemical Type | Alicyclic diamine (Isophorone diamine derivative) |
| Product Form | Liquid |
| Appearance | Clear, pale yellow to amber liquid |
| Primary Applications | Epoxy curing agent for coatings, adhesives, composites, and electrical encapsulants |
| Key Features | Fast cure, low viscosity, UV-stable, low volatility, high chemical resistance |
| Benefits | Improved productivity, extended pot life control, enhanced durability, reduced emission profile |
| Storage Stability | Stable under dry, cool, and dark conditions (≤25°C, sealed container) |
| Compatibility | Compatible with standard diglycidyl ether of bisphenol-A (DGEBA) and aliphatic epoxy resins |
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E-mail: wangxingqiang@ericwchem.com
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Building A1, Jiete Industrial Park, Huangpu District, Guangzhou City, Guangdong Province, China