Imidazole Modified Latent Curing Agent BN-PM-CA-A14
Appearance Opalescent viscous liquid
Odor Trace
Density 1.51 g/cm³
Assay ≥ 99%
Viscosity 184,587 mPa·s
Appearance Opalescent viscous liquid
Odor Trace
Density 1.51 g/cm³
Assay ≥ 99%
Viscosity 184,587 mPa·s
Imidazole Modified Latent Curing Agent BN-PM-CA-A14 is a chemically modified latent curing agent designed to form a one-component system with epoxy resins and related materials. The product remains stable at room temperature and can be rapidly cured under specific activation conditions, making it highly suitable for applications requiring storage stability, controlled curing, and high final performance.
| Performance | Value or State |
|---|---|
| Appearance | Opalescent viscous liquid |
| Odor | Trace |
| Density | 1.51 g/cm³ |
| Assay | ≥ 99% |
| Viscosity | 184,587 mPa·s |
Imidazole Modified Latent Curing Agent BN-PM-CA-A14 is a high-reactivity, chemically modified imidazole curing agent. It enables epoxy resin systems to remain stable during storage while allowing fast curing when triggered by heat or specific conditions. This balance between latency and curing efficiency makes it especially suitable for high-performance industrial applications.
(1) Electronic Packaging
Used for encapsulating chips, integrated circuits, and electronic components
Protects devices from moisture, dust, and chemical exposure
Supports low-temperature and fast curing, meeting the demands of high production efficiency and thermal sensitivity in electronics
(2) Printed Circuit Boards (PCB)
Applied in solder masks, circuit insulation layers, and protective coatings
Provides excellent electrical insulation, prevents short circuits, and improves PCB reliability and service life
(3) Electrical Insulating Materials
Used in insulating paints and potting compounds for motors, transformers, and other electrical equipment
Enhances heat resistance, corona resistance, and chemical resistance
(1) Powder Coatings
Serves as a curing agent for epoxy powder coatings
Enables low-temperature or rapid curing, improving production efficiency
Provides coatings with excellent wear resistance, corrosion resistance, and weather resistance
Widely used for household appliances, automotive parts, and metal furniture
(2) Anti-Corrosion Coatings
Applied in marine engineering, petrochemical plants, and bridge construction
Protects metal substrates from seawater, acidic and alkaline media, and salt spray, extending service life
(3) Floor Coatings
Used in epoxy resin floor coatings
Offers strong abrasion resistance, impact resistance, chemical resistance, and aesthetic appearance
Suitable for industrial plants, parking garages, and commercial facilities
(1) Structural Adhesives
Used for bonding metals, composite materials, and plastics
Applied in aerospace, automotive, and mechanical manufacturing
Provides high strength, toughness, and fatigue resistance, ensuring structural reliability
(2) One-Component Epoxy Adhesives
Enables room-temperature stability with curing activated by heating
Easy to handle and store
Suitable for electronic assembly and precision component bonding
(1) Fiber-Reinforced Composites
Used in carbon fiber (CFRP) and glass fiber reinforced composites (GFRP)
Applied in aerospace structures, lightweight automotive components, and sporting goods
Imparts excellent mechanical properties, heat resistance, and chemical resistance
(2) Resin Matrix Composite Molding Processes
Suitable for prepreg, filament winding, and pultrusion processes
Ensures controlled curing of the resin matrix and optimized composite performance
Packaging: 25 kg plastic drums or user-specified packaging
Storage conditions:
Store in a dry, cool, and tightly closed environment
Avoid contact with acids and oxidizing agents
Shelf life: 12 months from the date of production under original packaging conditions
Safety classification: Non-flammable and non-explosive; classified as general dangerous goods
This information is provided true and accurate to the best of our knowledge. However, no responsibility is assumed for any suggestions or statements herein, as conditions and methods of use are beyond our control.
The user is solely responsible for evaluating the product’s suitability, application, and performance for their specific requirements.