IP Library Granted Patent US 12712091
Granted Patent B2
US 12712091 · App. 18/551,747 · Granted Aug 18, 2026

Assembly for transporting uranium hexafluoride, comprising shock absorber caps

Inventors: Didier Vuillermoz (Bretigny-sur-Orge, FR); Alexandre Biguet (Neuilly-Plaisance, FR); Stéphane Brut (Bois d'Arcy, FR); Charles-Edouard Hamy (Courbevoie, FR); Marcel Tardy (Chatillon, FR)
Assignee: Orano Nuclear Packages and Services
G21F5/12G21F5/005G21F5/08G21F5/14
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Quick Facts
Patent No.
US 12712091
App. No.
18/551,747
Granted
Aug 18, 2026
Kind
B2
Abstract

An assembly for transporting uranium hexafluoride, includes: a sealed inner container, defining a first containment shell intended to be loaded with uranium hexafluoride and having a general cylindrical shape of circular cross-section, the first containment shell being delimited by a lateral wall extending about a longitudinal central axis of the inner container, as well as by two opposite axial end walls crossed by the longitudinal central axis, at least one of the two opposite axial end walls of the sealed inner container being equipped with a uranium hexafluoride filling valve; a sealed outer container delimiting a second containment shell in which the inner container is housed in an extractable manner; and two shock absorber caps removably fastened on respectively two opposite axial ends of the outer container.

Claims (39)

1 . An assembly for transporting uranium hexafluoride, comprising:

a sealed inner container, defining a first containment shell intended to be loaded with uranium hexafluoride, the sealed inner container having a general cylindrical shape of circular cross-section, the first containment shell being delimited by a lateral wall extending about a longitudinal central axis of the inner container, and by two opposite axial end walls crossed by the longitudinal central axis, at least one of the two opposite axial end walls of the sealed inner container being equipped with a uranium hexafluoride filling valve and with a protective annular axial extension of the uranium hexafluoride filling valve, the extension extending axially beyond the filling valve;

a sealed outer container delimiting a second containment shell wherein the sealed inner container is housed in an extractable manner; and

two shock absorber caps removably fastened on respectively two opposite axial ends of the sealed outer container,

wherein the assembly has a length less than or equal to the length of a 20-foot ISO container along a direction of the longitudinal central axis of the sealed inner container.

2 . The assembly according to claim 1 , wherein the sealed outer container includes a case and a cover removably fastened onto the case, the cover delimiting an axial introduction opening of the sealed inner container in the second containment shell.

3 . The assembly according to claim 2 , wherein the inner container is arranged in the outer container such that the filling valve of the inner container faces the cover of the outer container.

4 . The assembly according to claim 1 , wherein a layer of neutron insulating material, made of a material comprising boron and/or which is hydrogenated, is provided:

on an outer lateral surface of the sealed outer container; and/or

on an inner lateral surface of the sealed outer container; and/or

when the sealed outer container has a lateral double wall, between the two walls of the lateral double wall.

5 . The assembly according to claim 1 , wherein the lateral wall of the sealed outer container is made of steel.

6 . The assembly according to claim 1 , wherein the lateral walls of the sealed outer container and the sealed inner container are made of steel and have a cumulative thickness greater than or equal to 13 mm.

7 . The assembly according to claim 1 , wherein one of the two shock absorber caps includes a shock absorber element axially facing the uranium hexafluoride filling valve provided on the sealed inner container.

8 . The assembly according to claim 1 , wherein each shock absorber cap includes a recess wherein the associated axial end of the sealed outer container is housed.

9 . An assembly for transporting uranium hexafluoride, comprising:

a sealed inner container, defining a first containment shell intended to be loaded with uranium hexafluoride, the sealed inner container having a general cylindrical shape of circular cross-section, the first containment shell being delimited by a lateral wall extending about a longitudinal central axis of the inner container, and by two opposite axial end walls crossed by the longitudinal central axis, at least one of the two opposite axial end walls of the sealed inner container being equipped with a uranium hexafluoride filling valve and with a protective annular axial extension of the uranium hexafluoride filling valve, the extension extending axially beyond the filling valve;

a sealed outer container delimiting a second containment shell wherein the sealed inner container is housed in an extractable manner; and

two shock absorber caps removably fastened on respectively two opposite axial ends of the sealed outer container,

wherein the sealed inner container is designed to meet the standard ISO 7195 relating to the transport of uranium hexafluoride.

10 . A system comprising:

a vehicle for transporting uranium hexafluoride; and

an assembly comprising:

a sealed inner container, defining a first containment shell intended to be loaded with the uranium hexafluoride, the sealed inner container having a general cylindrical shape of circular cross-section, the first containment shell being delimited by a lateral wall extending about a longitudinal central axis of the inner container, and by two opposite axial end walls crossed by the longitudinal central axis, at least one of the two opposite axial end walls of the sealed inner container being equipped with a uranium hexafluoride filling valve and with a protective annular axial extension of the uranium hexafluoride filling valve, the extension extending axially beyond the filling valve;

a sealed outer container delimiting a second containment shell wherein the sealed inner container is housed in an extractable manner; and

two shock absorber caps removably fastened on respectively two opposite axial ends of the sealed outer container,

wherein the assembly is mounted on a loading platform of the vehicle, which is a road, rail or sea transport vehicle.

11 . The system according to claim 10 , wherein the assembly is oriented so that the longitudinal central axis of the sealed inner container is arranged parallel to a direction of travel of the vehicle.

12 . The system according to claim 10 , wherein several assemblies are mounted on the loading platform of the vehicle, by being at least one of stacked on top of each other, arranged one behind another according to a direction of travel of the transport vehicle, and arranged side by side.

13 . The assembly according to claim 9 , wherein the sealed outer container includes a case and a cover removably fastened onto the case, the cover delimiting an axial introduction opening of the sealed inner container in the second containment shell.

14 . The assembly according to claim 13 , wherein the inner container is arranged in the outer container such that the filling valve of the inner container faces the cover of the outer container.

15 . The assembly according to claim 9 , wherein a layer of neutron insulating material, made of a material comprising boron and/or which is hydrogenated, is provided:

on an outer lateral surface of the sealed outer container; and/or

on an inner lateral surface of the sealed outer container; and/or

when the sealed outer container has a lateral double wall, between the two walls of the lateral double wall.

16 . The assembly according to claim 9 , wherein the lateral wall of the sealed outer container is made of steel.

17 . The assembly according to claim 9 , wherein the lateral walls of the sealed outer container and the sealed inner container are made of steel and have a cumulative thickness greater than or equal to 13 mm.

18 . The assembly according to claim 9 , wherein one of the two shock absorber caps includes a shock absorber element axially facing the uranium hexafluoride filling valve provided on the sealed inner container.

19 . The assembly according to claim 9 , wherein each shock absorber cap includes a recess wherein the associated axial end of the sealed outer container is housed.