Use of a composite material as a barrier under cryogenic conditions
View Patent ↗The present invention relates to use of a composite material as a fluid barrier under cryogenic conditions, the composite material having: (a) a tensile Young's modulus of less than 50 GPa; and (b) a tensile strain at break of at least 5% at ambient conditions. The present invention further relates to a sandwich and a containment system for a cryogenic fluid comprising the composite material.
1. A composite material for use as a fluid barrier under cryogenic conditions, the composite material having: (a) a tensile Young's modulus of less than 50 GPa at ambient conditions; and (b) a tensile strain at break of at least 5% at ambient conditions; wherein the composite material comprises a mono-material composite or a plastic matrix material reinforced by a reinforcer.
2. A composite material as claimed in claim 1 having a coefficient of thermal expansion less than 250*10 −6 m/m/° C. at 40° C.
3. A composite material as claimed in claim 1 having a tensile strain at break of at least 3% at −196° C.
4. A composite material as claimed in claim 1 having a coefficient of thermal expansion less than 100*10 −6 m/m/° C. at −60° C.
5. A composite material as claimed in claim 1 wherein the mono-material composite is a thermoplastic material, in which both an oriented thermoplastic material and a matrix between the oriented thermoplastic material comprises the same thermoplastic polymer.
6. A composite material according to claim 1 comprising a plastic matrix material reinforced by a reinforcer, and the reinforcer has a tensile strain at break of at least 5%.
7. A composite material according to claim 1 for use in the containment, storage, processing, transport or transfer of a cryogenic fluid.
8. A sandwich for use as a barrier under cryogenic conditions comprising a composite material and a structural support layer, the composite material having (a) a tensile, Young's modulus of less than 50 GPa at ambient conditions; and (b) a tensile strain at break of at least 5% at ambient conditions, wherein the composite material comprises a mono-material composite or a plastic matrix material reinforced by a reinforcer.
9. A sandwich for use as a barrier under cryogenic conditions comprising a layer of an insulating material and a barrier comprising a composite material having (a) a tensile Young's modulus of less than 50 GPa at ambient conditions; and (b) a tensile strain at break of at least 5% at ambient conditions, Wherein the composite material comprises a mono-material composite or a plastic matrix material reinforced by a reinforcer.
10. A containment system for a cryogenic fluid comprising at least one layer of a composite material as a fluid barrier under cryogenic conditions, the composite material having: (a) a tensile Young's modulus of less than 50 GPa at ambient conditions; and (b) a tensile strain at break of at least 5% at ambient conditions; wherein the composite material comprises a mono-material composite or a plastic matrix material reinforced by a reinforcer.
11. A containment system as claimed in claim 10 being a container for storing a cryogenic fluid, the container at least comprising:
a load bearing structural outer shell;
on the inside of the outer shell, one or more fluid barriers comprising the composite material.
12. A containment system as claimed in claim 10 being a pipe for transporting a cryogenic fluid at least comprising:
an outer concentric layer; and
one or more concentric inner fluid barriers around a central fluid conduit, the or each inner fluid barrier comprising the composite material.
13. A containment system according to claim 12 comprising two, three or four inner fluid barriers, with an annulus between at least one neighboring set of two inner fluid barriers and/or between the outermost inner fluid barrier and the outer concentric layer.
14. A containment system according to claim 13 comprising two, three or four inner fluid barriers, with an annulus between each neighboring set of two inner fluid barriers and between the outermost inner fluid barrier and the outer concentric layer.
15. A composite material as claimed in claim 2 having a tensile strain at break of at least 3% at −196° C.
16. A containment system according to claim 12 comprising at least one annulus between at least one inner fluid barrier and the outer concentric layer, said at least one annulus being filled with one or more thermal insulants.
17. A containment system as claimed in claim 10 wherein the composite material has a coefficient of thermal expansion less than 250*10 −6 m/m/° C. at 40° C.
18. A containment system as claimed in claim 10 wherein the composite material has a tensile strain at break of at least 3% at −196° C.
19. A containment system as claimed in claim 1 . 1 wherein the composite material has a coefficient of thermal expansion less than 100*10 −6 m/m/° C. at −60° C.
20. A containment system as claimed in claim 10 wherein the mono-material composite is a thermoplastic material, in which both an oriented thermoplastic material and a matrix between the oriented thermoplastic material comprises the same thermoplastic polymer.
21. A containment system according to claim 10 wherein the composite material comprises a plastic matrix material reinforced by a reinforcer, and the reinforcer has a tensile strain at break of at least 5%.