Ceramic Fiber Aerogel Blanket (AG80)
Product Description
High Temperature Flexible Ceramic Fiber Aerogel Insulation Blanket-AG80 is a high-temperature insulation aerogel blanket with a ceramic fiber needle-punched felt as its base material. It has a long-term operating temperature of up to 800°C, making it an excellent insulation material for various high-temperature industrial pipelines and tanks.
Typical Applications
- Insulation for various smelting and refining equipment.
- Insulation for high-temperature equipment in various kilns and furnaces.
- Insulation for tanks, vessels, and other equipment.
- Insulation for high-pressure and high-temperature pipelines.
Product Advantages
- High operating temperature: High Temperature Flexible Ceramic Fiber Aerogel Insulation Blanket-AG80 has a maximum long-term operating temperature of 850°C.
- Outstanding insulation performance: With an ultra-low thermal conductivity, High Temperature Flexible Ceramic Fiber Aerogel Insulation Blanket-AG80 achieves equivalent insulation results while being only one-fourth the thickness of traditional materials.
- Excellent fire resistance: The unique raw materials and production processes of this product provide it with excellent resistance to flame impact.
- Excellent physical strength: High Temperature Flexible Ceramic Fiber Aerogel Insulation Blanket-AG80 possesses strong structural integrity and exhibits excellent tensile and compressive strength.
- Bendable: Suitable for insulation in equipment that requires bending.
Thermal Conductivity
Temperature(℃) | Thermal Conductivity W/(m*k) |
100 | 0.024 |
200 | 0.027 |
300 | 0.033 |
400 | 0.041 |
500 | 0.06 |
600 | 0.08 |
700 | 0.11 |
800 | 0.137 |
Product Specifications
Thickness | 10mm or customized |
Width | 600、1200mm |
Waterproofness | Hydrophobic/hydrophilic |
Applicable temperature | 200~800℃ |
Density | 200kg/m³ |
Chloride ion content | 0.001% |
Thermal conductivity at 25 ℃ | 0.020~0.023W/(m·K) |
Manufacturer & Engineering Notes
Manufacturing & Project Experience
Anchor Aerogel manufactures AG80 on a ceramic fiber needle-punched felt base, pairing high-temperature fiber technology with aerogel to achieve the published low-conductivity curve. We work with furnace builders, refinery maintenance contractors, and tank fabricators on project supply: standard 600/1200 mm widths, customized thicknesses, qualification samples, and review of wrapping layouts against equipment drawings. Documentation can reference the test methods cited in your specification. Values not published on this page, including dimensional tolerances, roll packaging, and mechanical test data, are confirmed in the current TDS before order acceptance.
Engineering Boundaries & Custom Options
Standard AG80 is a 10 mm flexible blanket at 200 kg/m3 density, with customized thickness available and hydrophobic or hydrophilic versions to be specified at order stage. The performance boundary is the 800°C long-term operating temperature; conductivity rises steeply above 400°C, so thickness must be calculated at the service mean temperature, not the 25°C value. The blanket is bendable but not load-bearing, requires outer jacketing in exposed service, and its 0.001% chloride content supports use on stainless steel; corrosion-under-insulation design remains the system engineer's responsibility.
Frequently Asked Questions about Ceramic Fiber Aerogel Blanket (AG80)
Technical answers for overseas buyers, engineers, and project specifiers. For project-critical values, request the current TDS before final design.
AG80 is a flexible, high-temperature insulation blanket for smelting and refining equipment, high-temperature equipment in kilns and furnaces, tanks and vessels, and high-pressure, high-temperature pipelines. Built on a ceramic fiber needle-punched felt, it combines a long-term operating temperature of up to 800°C with the bendability needed to wrap curved shells, large-diameter piping, and irregular equipment. The published advantages note equivalent insulation at roughly one-fourth the thickness of traditional materials, which helps where annular space or weight is constrained.
The product description states a long-term operating temperature of up to 800°C, and the specification table gives an applicable temperature range of 200-800°C. Thermal conductivity at 25°C is 0.020-0.023 W/(m·K), rising with temperature per the published curve: 0.024 at 100°C, 0.027 at 200°C, 0.033 at 300°C, 0.041 at 400°C, 0.06 at 500°C, 0.08 at 600°C, 0.11 at 700°C, and 0.137 W/(m·K) at 800°C. Design thickness should be calculated at the actual mean layer temperature using these elevated-temperature values.
AG80 is supplied in widths of 600 mm and 1200 mm, with a standard thickness of 10 mm or customized thickness on request. Published density is 200 kg/m3, and chloride ion content is 0.001%, a relevant figure for austenitic stainless steel equipment where chloride stress corrosion cracking must be avoided. The blanket is listed as available in hydrophobic or hydrophilic versions; hydrophobic material is generally preferred where water ingress and corrosion under insulation are concerns. Confirm version selection, tolerances, and roll lengths in the current TDS before ordering.
AG80 is described as having strong structural integrity with excellent tensile and compressive strength, and its needle-punched ceramic fiber base makes it bendable for equipment that requires curved insulation. This construction tolerates handling, wrapping, and the moderate vibration typical of industrial piping and rotating-adjacent equipment better than rigid boards. For severe vibration, abrasion, or high-velocity gas exposure, an outer jacket or protective facing should be designed by the project engineer. Detailed mechanical test values are not published on this page; request them in the current TDS for critical designs.
AG80’s raw materials and production process give it excellent resistance to flame impact, and the flexible format installs by wrapping and securing to the equipment, followed by the specified outer jacketing. As with all aerogel felts, cut edges should be made with sharp tools and the material kept clean during fitting. The blanket is an insulation layer, not a hot-face lining: direct flame impingement, chemical attack, and mechanical abrasion must be assessed against actual service conditions. For services approaching 800°C, verify layer count and surface temperature by calculation using the published conductivity curve.