Transfer device
10722892 ยท 2020-07-28
Assignee
Inventors
Cpc classification
B01L2300/046
PERFORMING OPERATIONS; TRANSPORTING
B01L2200/026
PERFORMING OPERATIONS; TRANSPORTING
B01L2200/141
PERFORMING OPERATIONS; TRANSPORTING
B01L1/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An assembly (10) (FIG. 1) having a passive beta port (12) and an active alpha port (14), the passive and the active are complementarily shaped such that they can engage with one another. The passive beta port (12) has an annular flange (16) defining an annular opening to which is releasably securable a passive port door (18). Disposed at the distal end of the passive (12), at the opposite end to the annular flange 16 is an annular clamp (22) having two handles (24). Disposed between the annular ring (16) and the annular clamp (22) is the gaiter (26) of the protective member (28). The protective member has a cylindrical body (30) forming a funnel through which material may pass. The free end (32) is sized so as to be capable of passing through the port formed between the alpha and beta ports (12, 14).
Claims
1. A device for sealingly connecting two enclosed volumes, comprising an alpha flange and a beta flange sealingly engageable with one another, said alpha flange fixable to a first enclosure, defining an alpha port to a first enclosed volume, and connectable to an alpha door, said alpha port having a closed configuration wherein the alpha flange is sealingly engaged with the alpha door when connected thereto and an open configuration wherein the alpha flange is separated from the alpha door and thereby permits material to pass through the alpha port; said beta flange fixable to an second enclosure, defining a beta port to a second enclosed volume, and connectable to a beta door, said beta port having a closed configuration wherein the beta flange is sealingly engaged with the beta door and an open configuration wherein the beta flange is separated from the beta door and thereby permits material to pass through the beta port; and a protective member capable of moving from a stowed configuration to an extended configuration overlaying a junction between the alpha and beta flanges when sealingly engaged with one another.
2. The device as claimed in claim 1, wherein the alpha and beta doors are retracted behind a shield when the alpha and beta doors are open.
3. The device as claimed in claim 1, wherein the alpha flange comprises a protective member actuator operatively connected to the protective member, said protective member actuator capable of moving the protective member to and from the extended and stowed configurations and being operated externally to the first and second enclosed volumes.
4. An alpha/beta port system, comprising the device according to claim 1, wherein the alpha flange, the alpha port, and the alpha door form an alpha port assembly, and the beta flange, the beta port, and the beta door form a beta port assembly, and wherein when the beta door is in the open configuration it is connected to the alpha door and is movable therewith.
5. The system as claimed in claim 4, wherein the alpha and beta port assemblies are engageable with one another and secured via mating members.
6. The system as claimed in claim 4, wherein the alpha and beta port assemblies comprise a plurality of mating members.
7. The system as claimed in claim 6, wherein the mating members are disposed on the alpha and beta doors.
8. The system as claimed in claim 4, wherein the beta port comprises the protective member.
9. The system as claimed in claim 4, wherein the protective member further comprises a gaiter.
10. The system as claimed in claim 4, wherein the opening and closing of the alpha door is controlled by a door actuator.
11. The system as claimed in claim 10, wherein the door actuator is operatively connected to a curved arm to which the alpha door is mounted at one end and to which the other end is mounted on a shoulder, wherein the shoulder is capable of translational movement to move the alpha door rearwardly from the alpha port and capable of rotational movement to pivot the alpha door away from the alpha port such the alpha door does not obstruct the alpha port.
12. The system as claimed in claim 4, wherein the alpha port assembly further comprises a chute extending away from the alpha and beta ports.
13. The system as claimed in claim 4, wherein the beta port assembly comprises a protective member actuator operatively connected to the protective member.
14. The system as claimed in claim 4, further comprising a sterilizing module capable of overlying the door of the alpha port or the beta port and forming a chamber therebetween into which a sterilizing fluid may pass.
15. The system as claimed in claim 4, wherein the system comprises an intermediate configuration wherein the alpha and beta ports are sealingly connected with the alpha and beta doors thereby forming a chamber therebetween, said chamber having a sterilizer capable of decontaminating the outer surfaces of the alpha and beta doors and/or the junction between the alpha and beta assemblies.
16. The system as claimed in claim 15, wherein the sterilizer comprises any one or more of UV, ozone, steam, vaporous hydrogen peroxide, chlorine dioxide, and formaldehyde.
17. A method for transferring a material between a first enclosed volume and a second enclosed volume using the device as claimed in claim 1, which comprises 1) sealingly engaging the alpha and beta flanges while the alpha and beta ports are in the closed configurations; 2) placing the alpha and beta ports in the open configurations by moving the alpha and beta doors away from the alpha and beta flanges to permit passage through the alpha and beta ports; 3) from a position external to the first and second enclosed volumes, moving the protective member from the stowed configuration to the extended configuration to overlay the junction between the first and second flanges, and then passing the material through the alpha and beta ports.
18. The method as claimed in claim 17, wherein the protective member is moved by a protective member actuator.
19. The method as claimed in claim 17, further comprising sealingly engaging the beta door with the beta flange.
20. The method as claimed in claim 19, further comprising locking the beta door to the beta flange such that the beta door cannot be disengaged from the beta flange.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention will now be described, by way of example only, with reference to the accompanying figures, in which:
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DETAILED DESCRIPTION OF THE INVENTION
(16) The figures show an assembly 10 (
(17) The passive beta port 12 has an annular flange 16 defining an annular opening to which is releasably securable a passive port door 18. Disposed at the distal end of the passive 12, at the opposite end to the annular flange 16 is an annular clamp 22 having two handles 24.
(18) Disposed between the annular ring 16 and the annular clamp 22 is the gaiter 26 of the protective member 28 (
(19) The other end 34 of the protective member 28 comprises a circular clamp flange 36 for co-operating with annular clamp 22 to secure a flexible walled container therebetween (not shown). Extending between clamp flange 36 and port flange 16 flexible gaiter 26 which enables the protective member 28 to move from a stowed configuration in which the cylindrical body 30 extends near to, or preferably slightly beyond the flange 16 (
(20) The gaiter 26 has a flexible wall 38 which when lengthened, in the stowed configuration of the protective member, has a narrow section 40 proximal to the flange 36 and a wider section 42 proximal to the flange 16. The flexible wall has a waist 44 at which the gaiter 26 widens from the flange 36 towards the flange 16.
(21) The gaiter 26 is formed in such a manner so as to have a number of discrete configurations. The flexible wall 38 of the gaiter 26 has annular thickenings to provide the means for determining the discrete configurations such that the movement of the protective member 28 from its stowed configuration to its extended configuration, and vice versa, is pre-determined so that the cylindrical body will extend a predetermined distance beyond the flange 36 and provides positive feedback to a user so that they can be certain that the protective member has been successfully deployed in the correct position. This consists of two convolutes or segments giving a defined position when stowed and a defined position when deployed. There is an absence of a stable intermediate position provided for by the flexible nature of the wall 38 and the thickenings such that the protective member is biased into the stowed or deployed position and will resist an intermediate position so that a user can be certain of the one of two configurations during use. This enable a user to determine when to transfer material and when to attach the port door 18 of the beta port after use.
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(24) The annular flange 52 has four recessed slots 56 disposed equidistantly around its circumference. The slots are complementarily shaped to that of the bayonet locating tabs 58 disposed equidistantly about the circumference of annular ring 16 of the beta port.
(25) In use the locating tabs 58 assist in positioning the beta port in the correct alignment with the alpha port.
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(30) Once material has been transferred, the process is reversed to close the doors of the ports and disengage the beta from the alpha.
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