Kingflex
Kingflex Cryogenic Systems are suitable for temperatures as low as -200°C.
Inner layers of Kingflex ULT provide optimum mechanical properties at cryogenic temperatures, while outer layers of NBR-based Kingflex provide excellent thermal efficiency.
Kingflex ULT is a purpose-built, low-temperature Diene Terpolymer, providing low-temperature flexibility to minimize thermal stress.
The distinctive color of Kingflex ULT facilitates installation and inspection.
An integral feature of the Kingflex system is the closed-cell foam technology which offers a high water vapor resistance. This may eliminate or reduce the need for additional vapor barriers.
Kingflex Cryogenic Systems can be fitted under compression so traditional open-cell, fibrous in-fill pieces for contraction and expansion joints are unnecessary.
Kingflex Cryogenic Systems are designed and certified to be suitable for extreme low-temperature applications, performing effectively at temperatures as low as -200°C.
The system utilizes a dual-action structure: the inner layers of Kingflex ULT provide optimum mechanical properties under cryogenic environments, while the outer layers of NBR-based Kingflex deliver outstanding overall thermal efficiency.
Kingflex ULT is engineered from a purpose-built, low-temperature Diene Terpolymer. This specific compound provides high low-temperature flexibility, which works to minimize thermal stress across the system.
Generally, no. An integral feature of the Kingflex system is its advanced closed-cell foam technology which offers excellent water vapor resistance. This inherent resistance may completely eliminate or significantly reduce the need for extra vapor barriers.
No, Kingflex Cryogenic Systems can be fitted directly under compression. This makes traditional open-cell, fibrous in-fill pieces for contraction and expansion joints completely unnecessary.
Products are regularly and independently tested against major global standards, including BS476, DIN5510, CE, REACH, ROHS, and UL94 at certified testing laboratories.