Looking for high-performance Hegrecat LA141? As leading China suppliers and factory, we provide this colorless to pale yellow trimerisation catalyst to enhance heat resistance and fire retardancy in PU products. Ideal for rigid foams and PIR with superior foaming ability.
Hegrecat LA141, scientifically known as 1,3,5-Tris[3-(dimethylamino)propyl]hexahydro-1,3,5-triazine, is a high-performance tertiary amine catalyst engineered specifically for the polyurethane industry. This versatile additive is critical for optimizing the reaction kinetics in the production of rigid foams, polyisocyanurates, and specialized coatings, ensuring superior structural integrity and thermal efficiency.
Designed for manufacturers seeking precision and consistency, LA141 excels in water-co-blown systems and full water foaming processes. By promoting an optimal closed-cell structure and enhancing cross-linking density, it empowers producers to create energy-efficient insulation materials and high-durability adhesives that meet stringent industrial standards for thermal conductivity and chemical resistance.
| Chemical Name | 1,3,5-Tris[3-(dimethylamino)propyl]hexahydro-1,3,5-triazine | Product Code | Hegrecat LA141 |
|---|---|---|---|
| Primary Function | Polyurethane Catalyst | Application Scope | Rigid Foam, PIR, Coatings, Adhesives |
| Foam Structure | Closed-cell Optimization | Thermal Property | Low Thermal Conductivity |
| Compatibility | Water-co-blown / Full Water systems | Performance Key | High Compressive Strength |
| Quality Standard | Strict Purity Control | Packaging | Industrial Drum |
Promotes a closed-cell structure in rigid foams, significantly reducing thermal conductivity for maximum energy efficiency.
Optimizes reaction speeds in coatings and adhesives, reducing production cycle times and increasing throughput.
Enhances trimerization in polyisocyanurate foams, ensuring stability under extreme industrial temperature conditions.
Increases the compressive strength of building insulation panels, providing durable and reliable structural support.
Seamlessly transitions from rigid foam production to high-performance non-foam applications like adhesives.
Produced under rigorous quality control to ensure batch-to-batch consistency and high chemical purity.
Real-time monitoring of drum stocks to ensure uninterrupted production schedules.
Strict purity verification protocols for every batch of LA141 produced.
Automated notifications for lead times and delivery milestones.
Ensuring all chemical shipments adhere to international safety and transport regulations.
Efficient drum handling and shipping routes to minimize transit costs.
Technical guidance on catalyst dosage for different polyurethane systems.
| Performance Metric | Standard Catalyst | Hegrecat LA141 |
|---|---|---|
| Thermal Resistance | Moderate | Superior / Low K-Value |
| Curing Speed | Standard | High Acceleration |
| Cell Uniformity | Variable | High Closed-Cell Rate |
| Heat Stability | Average | Enhanced (PIR Grade) |
| Production Yield | Baseline | Increased Efficiency |
It is primarily used as a catalyst to promote the creation of closed-cell structures in rigid polyurethane foams, enhancing insulation properties and compressive strength.
LA141 promotes the trimerization process, which increases cross-linking density, granting PIR foams superior heat resistance for use in industrial furnaces.
Yes, it is highly effective in non-foam polyurethane products such as coatings and adhesives, where it accelerates curing and improves chemical resistance.
Absolutely. It performs exceptionally well in water-co-blown rigid systems and is fully compatible with full water foaming processes.
To ensure purity and safety during transport, LA141 is supplied in industrial-grade drums.
By creating foams with low thermal conductivity, it helps maintain indoor temperatures more effectively, thereby reducing overall energy consumption.
Complete Control Over Products Allows Us To Ensure Our Customers Receive The Best Quality Prices And Service.
If you are interested in our products, you can choose to leave your information here, and we will be in touch with you shortly.