Cryogenic Systems can be fitted under compression so traditional open-cell, fibrous in-fill pieces for contraction and expansion joints are unnecessary.
The distinctive color of ULT insulation facilitates installation and inspection.
Inner layers of ULT insulation provide optimum mechanical properties at cryogenic temperatures, while outer layers of NBR-based insulation provide excellent thermal efficiency.
With its benchmark product features and flexibility, our thermal insulation systems are the ideal choice for use in the oil and gas industry.
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Frequently Asked Questions
Q
How do ULT insulation systems perform in cryogenic environments?
The inner layers of ULT insulation provide optimum mechanical properties specifically suited for cryogenic temperatures, while the outer layers (NBR-based) ensure excellent overall thermal efficiency.
Q
Is it necessary to use traditional fibrous in-fill pieces for contraction joints?
No. Because these cryogenic systems can be fitted under compression, the traditional open-cell, fibrous in-fill pieces usually required for contraction and expansion joints are unnecessary.
Q
What advantages does this thermal insulation offer the oil & gas industry?
Our thermal insulation systems save energy, minimize the risk of Corrosion Under Insulation (CUI), reduce total installation time, lower shipping costs, and achieve high thermal performance within a lightweight, reduced thickness configuration.
Q
What is the moisture resistance capability of the 40-60kg/m³ density insulation?
This specification class features a highly closed-cell structure (percentage of close area >95%), a wet resistance factor (μ) greater than 10,000, and a water vapor permeability coefficient of 0.0039/h.m² (at 25mm thickness), ensuring superb protection against moisture ingress.
Q
What is the operating temperature range for the insulation materials?
The recommended operating temperature ranges down to -196℃ for cryogenic applications (using ULT specifications) and between -50℃ to +105℃ for the standard 40-60kg/m³ density elastomeric configuration.