YC22091302 Self-Adhesive Rubber Foam Composite Insulation Board: Ultimate Thermal & Acoustic Solution
In the realm of advanced building insulation materials, finding a product that combines efficiency, ease of installation, and durability is key. The YC22091302 Self-Adhesive Rubber Foam Composite Embossed Aluminum Foil Insulation Board, manufactured by Xinzhi Xingyuan in Dacheng County, Hebei Province, stands out as a premium solution for professionals and DIY enthusiasts alike. Designed as a versatile fireproof and thermal insulation board, it addresses core needs in modern construction and industrial applications.
Superior Material Composition and Core Benefits
At its core, this product is made from high-quality rubber foam (bubble-shaped), known for its exceptional closed-cell structure. This morphology is crucial as it traps air, minimizing heat transfer and providing outstanding thermal resistance. The material boasts an impressive thermal conductivity coefficient of 0.035 W/(m·K) at room temperature, ensuring maximum energy efficiency by significantly reducing heat loss in winter and heat gain in summer.
The board is expertly laminated with a reinforced embossed aluminum foil on one side. This layer is not just for aesthetics; it serves multiple critical functions. It acts as a radiant barrier, reflecting up to 97% of radiant heat, enhances vapor impermeability, and adds significant tensile strength to the composite. The self-adhesive backing simplifies installation, saving time and labor costs by eliminating the need for additional adhesives.
Technical Specifications and Performance Metrics
The YC22091302 is engineered for resilience and long-term performance under demanding conditions. Key technical data underscores its reliability:
- Material: Rubber Foam (Bubble-shaped)
- Thickness/Format: 20mm, supplied in rolls/sheets for flexible application.
- Flame Retardant Class: B2 Flame Retardant Type, offering a vital layer of safety.
- Temperature Resistance: Can withstand temperatures up to ≤110°C, making it suitable for hot pipe insulation and roofing.
- Mechanical Strength: Features a compressive strength of 56, bending strength of 62, and an elongation at break of 45%, indicating excellent flexibility and resistance to deformation.
- Low-Temperature Flexibility: Maintains integrity with a low-temperature bend ≤-35°C, preventing cracking in cold climates.
Wide-Ranging Applications
This insulation board's primary functions are thermal insulation, condensation control, and acoustic dampening. Its application scope is broad, making it an ideal choice for:
- Roofing Systems: The aluminum foil layer provides excellent UV and weather resistance for roof insulation.
- HVAC Ducting: Perfect for insulating air conditioning and ventilation ducts to improve system efficiency.
- Industrial Piping: Protects hot and cold water pipes in commercial and industrial settings.
- Walls and Floors: Enhances thermal comfort and reduces noise transmission in residential and commercial buildings.
The combination of the rubber foam core and the durable aluminum foil facing creates a moisture-resistant barrier, effectively preventing mold growth and corrosion on underlying surfaces.
Why Choose Xinzhi Xingyuan's YC22091302 Insulation Board?
Choosing this product means investing in quality, safety, and performance. The B2 flame retardant rating ensures compliance with stringent safety standards. The self-adhesive feature streamlines projects, while the robust physical properties guarantee a long service life without degradation. Sourced from a reputable manufacturer in China's specialized insulation production hub, this board represents a cost-effective, high-return solution for any insulation project aiming for energy savings and environmental control.
For contractors, architects, and facility managers seeking a reliable, all-in-one insulation material that delivers on its promises, the YC22091302 Self-Adhesive Rubber Foam Composite Embossed Aluminum Foil Insulation Board is a definitive answer. Explore its potential to transform your next project into a model of efficiency and comfort.
