Product Center
Description
1. Core Fire-Prevention Technologies
Employing a composite flame-retardant structural process:
Substrate treatment:
Cold-rolled steel sheets (thickness ≥ 1.2 mm) undergo degreasing and phosphating pretreatment.
Intumescent fire-resistant coating with inner and outer layers (expands over 500% upon exposure to fire)
Structural Design:
Double-layered hollow insulation layer (filled with ceramicized silicate)
Install fire-resistant partitions at the junctions (to prevent flame spread).
II. Core Performance Metrics
Key Parameters, Standard Values, Testing Standards
Fire-resistance rating: 90/120/180 minutes (optional grading available), per GB 9978
Fire Performance: Flame Retardant Class A1 (Non-combustible Material) – GB 8624-2012
Smoke Toxicity Class AQ1 (No Toxic Smoke Emission), GB/T 20285
Insulation strength ≥3kV (breakdown voltage of the flame-retardant layer), IEC 60695
3. Structural Design Standards
Fire compartment design:
mermaid
Copy Code
graph LR
A [Fire-Resistant Cable Tray] --> B (Install fire barriers every 30 meters)
B --> C [Firewall panel thickness ≥ 6mm]
C --> D [Fill with fire-rated sealant]
Load rating (according to GA/T 537):
Class 1 Fire Protection: Supports ≥200 kg/m (fire resistance of 120 minutes)
Class 2 Fire Resistance: Supports ≥150 kg/m (Fire-rated for 90 minutes)
Connecting system:
Fire-resistant bolts (temperature resistance ≥1000°C)
Grounding copper strip (cross-sectional area ≥ 16 mm²)
4. Scenario-Based Application Solutions
High-Risk Scenarios: Fire Prevention Solutions
180-Minute Fire-Resistant + Vibration-Resistant Structure for Metro Tunnels
Data center: Halogen-free flame retardant (prevents equipment corrosion)
Explosion-Proof Zone in Chemical Plant: Fireproof + Antistatic Coating (Surface Resistance ≤ 10⁸ Ω)
Commercial Complex: Concealed Installation + Decorative Topcoat (Custom RAL Color Codes)
5. Comparison with Standard Galvanized Cable Trays
Features: Fireproof Cable Trays vs. Galvanized Cable Trays (Comparison)
Core features: Fire-resistant, heat-insulating—but only corrosion-proof.
Fire Response: The expanding char layer isolates oxygen, while the zinc coating melts (melting point: 419°C).
Smoke control: Smoke density ≤15% (significantly lower than the national standard of 75%), with no smoke control capability.
Life-cycle cost, maintenance-free (no coating degradation issues), but requires regular anti-corrosion maintenance.
6. Key Points for Project Implementation
Certification requirements:
A type test report must be provided (including the GB 9978 fire-resistance test).
Mandatory CCC Certification (for wire and cable conduit products)
Installation guidelines:
Install fire-stopping systems at wall/ceiling penetrations (in conjunction with fireproofing bags or sealants).
Thermal expansion compensators are provided every 20 meters along straight sections.
Enhanced for Special Scenarios:
Nuclear Power Engineering: Adding Stainless Steel Wire Mesh Reinforcement Layer (Impact-Resistant)
Moisture-prone environments: Apply epoxy moisture-resistant primer (adhesion ≥ 5 MPa)
Extreme test data:
After a 30-minute exposure to a 1200℃ flame, the internal temperature of the bridge structure remained ≤140℃ (measured).
After the water gun impact test, the fire-resistant coating showed no delamination (compliant with UL 1709).
