在保持纳米孔绝热性能的同时,实现更加经济的综合应用成本,为工业设备及管道提供长期稳定的节能解决方案。
Achieving superior nanoporous insulation performance with optimized total cost, delivering long-term energy efficiency for industrial equipment and piping.
CAS-YN450采用纳米孔绝热技术,在保证低导热系数、长期稳定性和柔性施工性能的基础上,实现更加经济的综合成本,为工业用户提供兼顾性能与投资回报的绝热解决方案。
CAS-YN450 utilizes nanoporous insulation technology to deliver low thermal conductivity, long-term stability, and flexible installation with a more economical total cost. It offers industrial users an insulation solution that balances performance with return on investment.
纳米孔颗粒与连续铝镁纤维深度复合,构建高效、稳定的绝热体系。
Nano-porous particles deeply composited with continuous Al-Mg fibers to build a highly efficient and stable insulation system.
通过优化材料微观结构,有效降低固体热传导,提高绝热效率。
Optimized micro-structure effectively reduces solid thermal conduction, improving insulation efficiency.
纳米级孔径限制空气流动,显著降低孔隙内热对流传递。
Nanoscale pore size restricts air movement, significantly reducing convective heat transfer within pores.
抗辐射组分有效降低高温热辐射传递,提升高温工况绝热性能。
Radiation-resistant components effectively reduce high-temperature radiative heat transfer, enhancing insulation performance under elevated temperatures.
适用于石油化工、煤化工、电力、冶金等行业
Suitable for petrochemical, coal chemical, power, and metallurgy industries
| 导热系数(25℃) | Thermal Conductivity (25℃) | 0.031 W/(m·K) |
| 导热系数(300℃) | Thermal Conductivity (300℃) | 0.064 W/(m·K) |
| 导热系数(500℃) | Thermal Conductivity (500℃) | 0.105 W/(m·K) |
| 最高使用温度 | Max Temperature | 650℃ |
| 憎水率 | Hydrophobicity | / |
| 燃烧性能 | Fire Performance | A1级 |
| 抗拉强度 | Tensile Strength | ≥80 kPa |
| 容重 | Bulk Density | 120 ± 20 kg/m³ |
| 导热系数(25℃) | Thermal Conductivity (25℃) | 0.031 W/(m·K) |
| 导热系数(300℃) | Thermal Conductivity (300℃) | 0.064 W/(m·K) |
| 导热系数(500℃) | Thermal Conductivity (500℃) | 0.105 W/(m·K) |
| 最高使用温度 | Max Temperature | 650℃ |
| 憎水率 | Hydrophobicity | 表面憎水(荷叶效应)Surface hydrophobic (lotus effect) |
| 燃烧性能 | Fire Performance | A1级 |
| 抗拉强度 | Tensile Strength | ≥80 kPa |
| 容重 | Bulk Density | 120 ± 20 kg/m³ |
根据您的工况温度和性能需求,选择最适合的产品型号
Select the model that best fits your temperature and performance requirements