The flexible ultra-low temperature adiabatic system possesses inherent impact resistance. Its advanced cryogenic elastomer material absorbs external mechanical impact and vibration energy effectively to safeguard the structural integrity of your system.
Equipped with an integrated vapor barrier, this system significantly extends the operating lifespan of the entire cold insulation configuration while substantially minimizing the risks of under-insulation corrosion on pipework.
The flexible ULT insulation design features built-in expansion joints, eliminating the need to install external fiber materials as expansion or compression fillers.
Liquefied Natural Gas (LNG); Large-scale cryogenic storage tanks; PetroChina & SINOPEC ethylene projects; Nitrogen plants; Coal chemical industries, and related industrial infrastructures.
| ULT Technical Data | ||
|---|---|---|
| Property | Unit | Value |
| Temperature range | °C | (-200 to +110) |
| Density range | Kg/m³ | 60 - 80 Kg/m³ |
| Thermal Conductivity | W/(m.k) | ≤ 0.028 (-100°C) |
| ≤ 0.021 (-165°C) | ||
| Fungi resistance | - | Good |
| Ozone resistance | - | Good |
| Resistance to U.V. and weather | - | Good |
The system features excellent impact and vibration resistance due to its cryogenic elastomer materials. It also has a built-in vapor barrier to extend lifespan and reduce corrosion under insulation (CUI), along with built-in expansion joints that eliminate the need for traditional fiber fillers.
The material is certified to operate reliably within an ultra-low temperature window spanning from -200°C up to +110°C, making it ideal for deep cryogenic services.
A built-in vapor barrier prevents moisture ingress, which can lead to ice formation and subsequent loss of insulation performance. This protection substantially extends the system's operational life and minimizes pipe corrosion beneath the insulation layer.
The system demonstrates low thermal conductivity values: ≤0.028 W/(m.k) at -100°C and ≤0.021 W/(m.k) at -165°C, ensuring optimal thermal efficiency at extreme temperatures.
The technical data shows that this ULT insulation material offers good resistance to fungi, ozone, ultraviolet (U.V.) light, and severe weather exposure, making it highly durable for diverse environmental conditions.