Goodrich De-Icer Tape Edge Sealer Accelerator – Enhanced Adhesion for De-Icing Systems (Part Number: 74-451-221)
The Goodrich De-Icer Tape Edge Sealer Accelerator (Part Number: 74-451-221) is an essential component for maintaining the effectiveness of aircraft de-icing systems. Designed to work with de-icer tape, this accelerator enhances the adhesive properties of the edge sealer, ensuring a durable and long-lasting bond even in extreme weather conditions.
Key Features and Benefits:
- Enhanced adhesion: Boosts the bonding strength of de-icer tape edge sealer for maximum durability.
- Critical for de-icing systems: Ensures secure attachment of de-icer tape to aircraft surfaces, reducing the risk of peeling.
- Long-lasting protection: Prevents damage to de-icing systems from exposure to harsh environmental elements.
- Simple application: Easy-to-use accelerator that optimizes the performance of de-icing tape systems.
- Trusted Goodrich quality: Developed by Goodrich De-Icing Systems, a leader in aircraft de-icing technology.
Detailed Product Description:
The Goodrich De-Icer Tape Edge Sealer Accelerator (Part Number: 74-451-221) is a specialized solution designed to improve the adhesion and performance of de-icer tape used on aircraft surfaces. This accelerator works in conjunction with the edge sealer to provide a strong, secure bond that withstands harsh operating environments, including extreme cold and moisture. By preventing tape peeling and ensuring consistent protection, the accelerator helps to maintain the efficiency of your de-icing system, protecting critical surfaces like wings and control surfaces. Produced by Goodrich De-Icing Systems, this product is trusted by aviation professionals worldwide to enhance de-icer tape reliability and longevity.
Technical Specifications:
- Part Number: 74-451-221
- Superceeds Part Number: 74-451-150
- Manufacturer: Goodrich De-Icing Systems
- Application: Used to enhance adhesion for de-icer tape edge sealer
- Purpose: Prevents de-icer tape peeling and increases bond durability in extreme conditions