Reliably insulates LNG storage tanks, fuel tanks and pipe systems and thus, contributes towards the efficiency, durability and reliability of these applications.
The flexible ultra-low temperature adiabatic system has the inherent characteristics of impact resistance, and its cryogenic elastomer material can absorb the impact and vibration energy caused by the external machine to protect the system structure.
Global demand for liquefied natural gas (LNG) is rising. High-performance technology is required for reliable transport and storage. Engineers have to develop plants that are safe and efficient. The extremely low temperature, at which natural gas is in a liquid state, places high demands on the technical infrastructure throughout the entire value chain of LNG. All the plant components and systems coming into contact with the liquefied gas have to be extremely well insulated.
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Liquefied natural gas (LNG) must be kept at extremely low temperatures to remain in a liquid state. This extreme cold requires high-performance technical insulation throughout the entire transport and storage infrastructure to maintain thermal efficiency, plant safety, and operational reliability.
The flexible ultra-low temperature adiabatic system possesses inherent impact resistance. The cryogenic elastomer material effectively absorbs mechanical impact and vibration energy generated by external machinery, shielding and protecting the underlying system structures.
This adiabatic system is designed to reliably insulate LNG storage tanks, fuel tanks, and associated pipe systems, ensuring high system durability and preventing thermal leaks.
The recommended operating temperature for this system ranges from -50℃ up to +105℃, making it highly versatile for cryogenic and moderate thermal applications.
It has a low thermal conductivity of 0.033 at 0℃ and 0.028 at -50℃, a dense composition of 40-60kg/m³, and a high closed-cell ratio exceeding 95%, which prevents moisture ingress and thermal bridging.