Ceramic Fiber Vacuum Shape

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Insulation and Refractory Materials

Ceramic Fiber Vacuum Shape
ceramic fiber vacuum shape suppliers
Wholesale ceramic fiber vacuum shape
China ceramic fiber vacuum shape supplier
buy ceramic fiber vacuum shape
ceramic fiber vacuum formed shapes
Laurel ceramic fiber vacuum shape
Ceramic Fiber Vacuum Shape
ceramic fiber vacuum shape suppliers
Wholesale ceramic fiber vacuum shape
China ceramic fiber vacuum shape supplier
buy ceramic fiber vacuum shape
ceramic fiber vacuum formed shapes
Laurel ceramic fiber vacuum shape
Ceramic Fiber Vacuum Shape

Laurel Ceramic Fiber Vacuum Shape, Engineered for extreme heat environments, Ceramic Fiber Vacuum Shape combines refractory ceramic fibers with vacuum molding technology to create rigid, lightweight shapes for industrial applications. Withstanding temperatures up to 1230-1430°C, this solution offers superior thermal stability, low thermal conductivity, and resistance to thermal shock. Ideal for furnaces, kilns, and petrochemical reactors, its custom-engineered designs ensure precise fitment, reducing installation time and heat loss. Environmentally friendly and halogen-free, it meets global safety standards while delivering reliable insulation in aerospace, energy, and metallurgy sectors.

Product Details



It has low shrinkage within its operating temperature ranges and maintains highinsulation, lightweight, and impact-resistant characteristics.

 

  • Density:280-400 kg/m³

  • Thickness: 6-50mm

  • Excellent Insulation

  • Lightweight and Flexible

  • Low Thermal Conductivity

  • Chemical Stability

  • Non-Combustible

  • Function: Refractory & Insulation & Fireproo


1. Superior High-Temperature Performance

Ceramic Fiber Vacuum Shape withstands continuous temperatures up to 1230-1430°C, offering exceptional thermal stability for industrial furnaces, kilns, and petrochemical reactors. Its dense, rigid structure resists thermal shock and maintains integrity in extreme heat.

2. Precision-Molded for Easy Installation

Engineered with vacuum technology, it creates custom shapes (e.g., curves, complex linings) for seamless fitment. Lightweight yet durable, it reduces installation time and labor costs while minimizing heat loss.

3. Energy Efficiency & Environmental Sustainability

Low thermal conductivity cuts energy consumption, lowering operational costs. Halogen-free and recyclable, it aligns with green initiatives, making it ideal for eco-conscious industries like aerospace, energy, and construction.

Table parameters

ItemSTDHPHAHZ
ColorWhiteWhiteWhiteWhite
Density(kg/m3)280-400280-400280-400280-400
Linear Shrinkage Rate(%)≤1.5≤1.5≤1.5≤1.5
-1000-1000-1100-1200
Flexural strength(Mpa)>=0.6>=0.6>=0.6>=0.6
Thermal Conductivity Rate(W/m.k)400ºC0.090.09--
600ºC0.160.160.140.12
800ºC0.210.210.180.16
1000ºC--0.210.19
Chemical Composition (%)Al2O343-4546-4952-5538-43
ZrO2---15-17


Features

★ High tensile strength
★ Low thermal conductivity
★ Low heat storage
★ Excellent thermal stability
★ Thermal shock resistance
★ Excellent insulating performance
★ Sound absorption
★ Fire protective


Ceramic Fiber Vacuum Shape products have carved out a wide range of applications across diverse industries. In the high-temperature manufacturing realm, they are extensively utilized in metallurgical processes like steelmaking and non-ferrous metal smelting. Their excellent heat resistance and insulation properties make them ideal for lining furnaces and crucibles, effectively containing the extreme heat and reducing energy consumption. In the energy sector, these products play a crucial role in power generation plants, being applied to boiler components and turbine housings to maintain optimal operating temperatures and enhance efficiency. The chemical and petrochemical industries also rely on them for reactors, distillation columns, and pipelines insulation, safeguarding against heat transfer and chemical corrosion. Moreover, in the building and construction field, vacuum-formed ceramic fiber products are emerging as a promising option for exterior wall insulation and fireproofing applications, providing enhanced thermal performance and fire safety, which is especially beneficial for energy-efficient and sustainable building designs.


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