High Temperature Metal Fiber Alloy Fabric China Factory and Suppliers
Our High Temperature Resistant Metal Fibre Alloy Fabric is engineered for the most demanding industrial environments, offering unparalleled stability and performance in extreme thermal conditions. Utilizing advanced metallurgy and precise fabrication techniques, these fabrics provide a robust solution for high-temperature oxidation resistance, thermal shock endurance, and tempering stability, ensuring operational reliability in critical heat-exchange and filtration applications.
Available in multiple configurations—including the patented F-ULT knitted long fiber, K-ULT knitted staple fiber for infrared radiation efficiency, and W-ST woven staple fabric for economical high-efficiency processing—our metal fiber solutions are tailored to meet specific industrial requirements. From industrial furnaces to steam boilers, these fabrics guarantee low pollutant emissions and long-term service life under rigorous thermal stress.
Detailed Parameters
| Material Quality | FeCrAl Alloy | Service Temperature | 1100°C (Limiting 1250°C) |
|---|---|---|---|
| Fabric Thickness | 1.9 ± 0.15 mm | Weight (kg/m²) | 1.4 - 1.5 kg/m² |
| Mean Permeability | 2400 - 2900 L/m²S | Max Width | 1200 mm |
| Measurement Standard | YG (B)141D Digital Gauge | Structure Type | Knitted / Woven |
| Customization | Adjustable per demand | Oxidation Resistance | Excellent |
Key Advantages
Extreme Heat Resistance
Engineered to withstand temperatures up to 1250°C with superior oxidation and tempering resistance.
Extended Service Life
Highly durable structure that resists wear and thermal fatigue for lower replacement costs.
Anti-Clogging Design
Optimized permeability and structure prevent particle buildup, maintaining constant airflow.
Infrared Radiation Ability
The K-ULT short fiber type is specifically designed for enhanced infrared radiation capabilities.
Thermal Shock Stability
Maintains a stable and uniform structure even during rapid and extreme temperature fluctuations.
Eco-Friendly Operation
Facilitates low pollutant emissions and low combustion noise for greener industrial operations.
Product Gallery
Management Platforms
Material Sourcing
Strict control over FeCrAl alloy purity to ensure maximum temperature stability.
Precision Knitting
Utilizing patented long-fiber technology for uniform structural integrity.
Quality Inspection
Digital thickness and permeability testing using YG (B)141D standards.
Application Testing
Simulated thermal shock testing to verify performance in real-world furnace conditions.
Custom Fabrication
Tailoring width and thickness according to specific customer technical documents.
Logistics Control
Specialized packaging to prevent deformation of sintered metal fibers during transit.
Investment Return Comparison
| Performance Metric | Standard Fiber Fabric | Premium Metal Fiber Alloy |
|---|---|---|
| Temperature Limit | Moderate | Up to 1250°C |
| Service Life | Short-term | Long-term / High Durability |
| Maintenance Cycle | Frequent Replacement | Extended Interval |
| Emission Control | Basic | Low Pollutant Emission |
| Thermal Shock | Low Resistance | High Adaptability |
Frequently Asked Questions
They are primarily used in steam boilers, industrial furnaces, wall-mounted water heaters, drying equipment, and engineering heating systems where high heat resistance and low noise are required.
F-ULT is a patented knitted long fiber fabric with excellent oxidation and thermal shock resistance. K-ULT is a knitted short fiber type offering superior infrared radiation ability and anti-resonance properties.
The material is designed for low pollutant emissions and reduced combustion noise, making it ideal for pollution prevention and environmental protection equipment.
Yes, the width can be adjusted according to customer demand, with a maximum width limit of 1200 mm.
The fabrics are manufactured using high-grade FeCrAl alloy, known for its exceptional stability at extreme temperatures.
Anti-clogging ensures that the flow of air or steam remains consistent over time, reducing pressure drops and preventing system failure in filtration environments.





