Microporous insulation paper
Nano-insulation paper is a new material manufactured using advanced high-tech techniques. It contains special inorganic refractory powders that create tiny, ultrafine pores, resulting in a thermal conductivity lower than that of still air. At high temperatures, its insulation performance is 2 to 3 times better than that of conventional fiber-based thermal insulation materials, making it a highly effective thermal insulator.
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Microporous insulation paper
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Microporous insulation paper
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Microporous insulation paper is a new material manufactured by high-tech technology, with tiny superporosiies fored by special inorganic refrctory powder, its thermal conductivity is lower than still air. At hightemperatures, the themmal insulation perfomnance is 2 to 3 times better than the traditional fiber insulationmaterials, and it is a good thermal insulation material with good thermal insulation performance.
Microporous insulation paper uses high temperature heat insulation raw materials, the product has betterhigh temperature resistance, as it is soft and can be bent, the product is suitable for curved surface andpipeline applications.
Product Use
·Engine heat insulating shield
·In-car data heat insulating box
·Three way catalytic tube insulation
·Hydrogen-powered engine insulation
New energy lithium battery fireproof
Specifications
· Length × Width: 30–50 × 1.2 m
· Thickness: 0.5, 1, 1.5, 2, 2.5, 3, 3.5, 4, 4.5, 5 mm
According to usage requirements, specific specifications can be customized based on customer requests.
Product Performance
Color | Class A white Class B gray Class C gray |
Melting point | > 1200 ℃ |
Maximum operating temperature | Class A 1100 ℃ Class B 1000 ℃ Class C 1000 ℃ |
Density | 25 0–400 ±10% kg/m 3 |
Specific heat 800℃ | 0.8 kJ/kg·K |
Tensile strength | ≥0.3 MPa |
Linear shrinkage rate 1000℃ × 24 hours | Grade A ≤ 2.0% Grade B ≤ 3.5% Grade C ≤ 3.5% |
Chemical composition SiO 2 SiC ZrO 2 Al 2 O 3 | Silicon oxide Silicon carbide Zirconium oxide Aluminum oxide |
Thermal conductivity Hot surface temperature: 400℃ Hot surface temperature: 600℃ Hot surface temperature: 800℃ | W/m · K Class A 0.025 0.030 0.035 Class B 0.020 0.025 0.038 Class C 0.030 0.038 0.045 |
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