Min Order | 3000 Meters |
Trade Term | FOB,C&F,CIF,EXW |
Payment Terms | T/T |
Place of Origin | Wuhan |
Means of Tranport | Ocean |
Production Capacity | 50,000 Meters/Month |
Packing | Customized |
Availability: | |
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Delivery Date | 7-15Days | Brand Name | Yuanfa |
Product Name | Thermal break Polyamide Strips, | Material | PA66GF25 |
Color | Black | Width | 34.0mm |
Density | 1.30±0.05 g/cm3 | Standard Length | 6 Meters/Piece |
Certificate | Certificate of ISO 9001:2015,CN09/20301 | Processing | High Precision Polyamide Extrusion |
Standard Carried | New National Standard:GB/T 23615.1-2017 | Applications | Aluminium Profiles,Thermally Broken |
Product Description:
The YF-34.0-CT2 thermal break strip is a 34.0 mm wide structural insulation profile made from PA66 GF25 (polyamide with 25% glass fiber reinforcement), engineered to provide exceptional thermal insulation and mechanical strength in modern aluminum window, door, and curtain wall systems.
Featuring the CT2 profile, this model includes a deep-tooth knurling design, optimized for maximum bonding strength between the insulating strip and aluminum during the crimping process. The enhanced interlock performance improves long-term stability and helps resist displacement due to temperature fluctuations or structural movement.
Key Features:
Material: High-quality PA66 GF25 – excellent heat resistance, strength, and durability
Profile: CT2 – enhanced deep-tooth knurling for secure, anti-slip mechanical engagement
Width: 34.0 mm – suitable for wide-section aluminum profile systems
Thermal Efficiency: Effectively minimizes heat transfer and thermal bridging
Weather-Resistant: UV-stable, corrosion-resistant, and maintains performance in harsh climates
Sustainable: RoHS compliant and recyclable – suitable for green building applications
Applications:
Wide-frame aluminum windows and doors
High-performance curtain wall systems
Passive houses and low-energy buildings
Commercial and public architecture requiring thermal compliance
YF-34.0-CT2 offers the perfect balance of thermal efficiency, mechanical reliability, and structural adaptability, making it a preferred choice for demanding architectural aluminum systems seeking long-lasting performance and energy savings.