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5mm Thick 1600 Fireproof Ceramic Fiber Paper with High Temperature Stability for Industrial Insulation
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5mm Thick 1600 Fireproof Ceramic Fiber Paper with High Temperature Stability for Industrial Insulation

ขั้นต่ำ: 1 ม้วน
ราคา: negotiable
บรรจุภัณฑ์มาตรฐาน: ถุงหรือกล่องกระดาษหรือพาเลท
ระยะเวลาการจัดส่ง: 10-20 วัน
วิธีการชำระเงิน: L/C, D/P, T/T ตะวันตกสหภาพ
ความสามารถในการจัดหา: 10,000 ม้วน/เดือน
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สถานที่กำเนิด
จีน
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SUNWOOL
ได้รับการรับรอง
ISO CE
หมายเลขรุ่น
1-10มม
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Ceramic Fiber Insulation Paper Refractory Ceramic Fiber Insulation Kaowool Paper 5mm Thick 1600 Fireproof Ceramic Fiber Paper
Product Overview

Ceramic Fiber Paper is a lightweight, high-temperature resistant refractory material manufactured from high-purity alumina-silica ceramic fibers. Through a wet-forming process similar to papermaking, these fibers are blended with organic binders and then formed into uniform, flexible sheets. The organic binders burn off during initial heating, leaving a pure, inorganic fiber structure.

Key Properties
  • High Temperature Stability: Continuous service temperature typically ranges from 2300°F to 2732°F (1260°C to 1500°C), depending on the grade (standard, high-purity, or zirconia-reinforced).
  • Low Thermal Conductivity: Exceptional insulating capability reduces heat loss and saves energy.
  • Low Thermal Mass & Heat Storage: Its thin, low-density structure heats and cools rapidly, enabling faster thermal cycles.
  • Excellent Thermal Shock Resistance: Resists spalling and cracking even under sudden, extreme temperature changes.
  • Chemical Stability: Resistant to most corrosive agents (except hydrofluoric acid, phosphoric acid, and strong alkalis). Does not wet with molten aluminum.
  • Mechanical Flexibility: Easy to cut, wrap, fold, or die-cut into complex shapes.
  • Low Shrinkage: Maintains dimensional stability under high heat.
  • Electrical Insulation: Provides good dielectric strength at elevated temperatures.
  • Non-Wetting to Molten Metals: Particularly suitable for aluminum casting applications.
Manufacturing Process
  1. Fiber Production: Alumina and silica are melted in an electric furnace at over 2000°C and spun into fibers.
  2. Slurry Formation: Fibers are dispersed in water with organic binders and additives.
  3. Sheet Forming: The slurry is deposited on a moving screen to drain water and form a wet mat.
  4. Pressing and Drying: The mat is pressed to control density and thickness, then dried to remove remaining moisture.
  5. Slitting and Packaging: The finished paper is slit into rolls or sheets.
Main Applications
  • Gaskets and Seals: Used in furnaces, ovens, boilers, and kilns to seal joints and doors.
  • Backup Insulation: Placed behind refractory linings (brick or castable) in high-temperature equipment.
  • Heat Shields: Protects sensitive components from radiant heat in appliances and industrial equipment.
  • Expansion Joints: Acts as a compressible filler in refractory constructions.
  • Casting Filters: For non-ferrous metals (aluminum and magnesium).
  • Fireplace Inserts & Stoves: Improves efficiency and safety.
  • Crisper and Lining in Glass and Ceramic Kilns
  • Automotive Components: Insulation in catalytic converters, diesel particulate filters, and exhaust systems.
  • Laboratory Furnaces: As a removable lining or sample cushion.
Technical Specifications
Grade Standard High Pure High Aluminium Zirconium
Max. Temperature (°C) 1050 1150 1260 1430
Shrinkage on Heating (%) 800°C×24h≤-3 1000°C×24h≤-3 1280°C×24h≤-3 1400°C×24h≤-3
Organic Content (%) ≤5 ≤5 ≤5 ≤5
Thermal Conductivity (W/m·K) 200°C: 0.055-0.065
400°C: 0.110-0.120
600°C: 0.160-0.170
200°C: 0.060-0.070
400°C: 0.105-0.125
600°C: 0.170-0.180
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Chemical Composition (%) Al₂O₃: 43
SiO₂: 53
Fe₂O₃+Ti₂O₃: ≤1.2
CaO+MgO: ≤0.3
NaO+KO₂: ≤0.5
Al₂O₃: 47
SiO₂: 51
Fe₂O₃+Ti₂O₃: ≤0.3
CaO+MgO: ≤0.3
NaO+KO₂: ≤0.3
Al₂O₃: 55
SiO₂: 44
Fe₂O₃+Ti₂O₃: ≤0.3
CaO+MgO: ≤0.3
NaO+KO₂: ≤0.3
Al₂O₃: 38
SiO₂: 44
Fe₂O₃+Ti₂O₃: ≤0.2
CaO+MgO: ≤0.2
NaO+KO₂: ≤0.2

Density: 170-230 kg/m³

Product Images
Ceramic fiber insulation paper sample showing texture and flexibility Ceramic fiber paper application in high-temperature equipment Close-up view of ceramic fiber paper structure and thickness
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