This flexible, high density and mechanically robust, closed cell cryogenic thermal insulation material is based on extruded elastomeric foam. The product has been specially developed for use on the import/export pipelines and process areas of liquefied natural gas (LNG) facilities. It is part of a cryogenic multi-layer configuration, providing low temperature flexibility to the system.
Designed for cryogenic thermal insulation and protection of pipes, vessels, and equipment (including elbows, fittings, flanges, etc.) in production plants for petrochemicals, industrial gases, LNG, agricultural chemicals, and other process equipment facilities.
We have a professional, sound and strict Quality Control System. The product of every order will be checked from the raw material to the final product. To keep stable quality, we make out our own testing standard, which is a higher requirement than testing standard in domestic or abroad.
It is a flexible, high-density, closed-cell insulation material based on extruded elastomeric foam. It is engineered to stay flexible at extremely low temperatures, preventing cracking and providing strong mechanical shock absorption.
It is highly suitable for cryogenic thermal insulation and protection of pipelines, vessels, fittings, elbows, and flanges in LNG facilities, petrochemical plants, industrial gas installations, and chemical process facilities.
Its high-density closed-cell structure blocks moisture ingress, which is the primary driver of CUI, thereby protecting underlying steel components from corrosive degradation.
Yes. Because of its elastomeric composition, it easily conforms to complex geometries like elbows, valves, and T-pieces, reducing installation time and cutting down on material wastage compared to pre-fabricated rigid segments.
Every batch goes through a strict quality control process, spanning raw material selection to final dispatch. Testing standards are established to exceed typical domestic and international specifications, ensuring robust performance in the field.