IP Library Granted Patent US 10,702,838
Granted Patent B2
US 10,702,838 · App. 16/504,612 · Granted Jul 7, 2020

Mixer-container and method for assembling a mixer-container including a telescopic shaft

Inventors: Sebastien Chaussin (Aubagne, FR); Jeremy Gibelin (Signes, FR); Stefan Zeuch (Gottingen, DE); Michael Bates (Gloucestershire, GB)
Assignee: SARTORIUS STEDIM FTM SAS
B01F13/0836B01F3/04248B01F3/04531B01F7/00633B01F7/00716B01F7/00725B01F7/1695B01F7/22B01F15/0085B65D77/06C12M23/26B01F2003/04326B01F2003/04673B01F2215/0032B01F2215/0073
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Quick Facts
Patent No.
US 10,702,838
App. No.
16/504,612
Granted
Jul 7, 2020
Kind
B2
Abstract

A method for assembling a mixer-container intended for receiving a biopharmaceutical fluid includes providing a container with a mixing device including at least one shaft having an adjustable length, and at least one first bearing attached to a wall of the container, the shaft extending at least into the inner space from the first bearing; a rigid outer device that compresses the container; and a drive motor located outside the container, the first bearing of the container is placed so as to be spaced apart from the motor, and the length of the shaft is adjusted along the main axis by arranging the shaft opposite the motor to enable the motor to rotate the shaft.

Claims (36)

1. A mixer-container intended to be assembled, the mixer-container comprising:

a container having a wall defining an inner space suitable for filling with biopharmaceutical fluid, the wall being a flexible wall, the container further comprising a mixing device comprising a shaft having an adjustable length along a main axis;

a drive motor located outside the container, the drive motor being suitable for rotating the shaft of the mixing device; and

a rigid outer containment device comprising a bottom wall and a peripheral wall defining a housing adapted to receive the container,

wherein the container extends in the rigid outer containment device with the flexible wall of the container being arranged on the bottom wall of the rigid outer containment device,

wherein the container further comprises a first bearing attached to the wall, the shaft extending at least into the inner space from the first bearing, the first bearing comprising a flange provided with an outer annular collar that forms an annular external groove outside the container, the outer annular collar inwardly delimiting a cavity provided outside the container,

wherein the shaft comprises a first part away from the first bearing and a second part that is a hollow upper part in contact with the flange, the shaft being adapted to rotate at least one mixing member attached to the first part,

wherein the drive motor is adapted to enable magnetically driving the shaft and comprising a rotary driving disc located outside the container, the rotary driving disc operatively engaging with a rotary driven disc attached to the shaft, the drive motor being connected with the outer annular collar of the flange so that, in a connected state between the drive motor and the outer annular collar, the rotary driving disc of the drive motor is inserted inside the flange to fill the cavity,

wherein the drive motor is connected with the outer annular collar of the flange outside the rigid outer containment device, and

wherein the length of the shaft along the main axis being adjusted to be increased by selective upward displacement of the second part toward an extended configuration without displacing the first part, in order to position the shaft facing the drive motor to enable the drive motor to rotate the shaft, the extended configuration of the second part being maintained by a clamp, the flange being clamped by the clamp extending in the annular external groove for maintaining the connected state and the extended configuration.

2. The mixer-container according to claim 1 , wherein the outer annular collar extends outside the rigid outer containment device and is provided with a terminal radial bead that extends axially away from the container to delimit the annular external groove.

3. The mixer-container according to claim 1 , wherein the drive motor is fixed relative to the rigid outer containment device.

4. The mixer-container according to claim 1 , wherein a bioreaction is carried out, the mixer-container being a bioreactor.

5. A container set intended suitable for assembly to a drive motor according to an assembly method for assembling a mixer-container intended for receiving a biopharmaceutical fluid for mixing, the container set comprising:

a container having a flexible wall defining an inner space suitable for filling with biopharmaceutical fluid, the container comprising:

a mixing device comprising a shaft having an adjustable length along a main axis, and

a first bearing attached to the wall, the shaft extending at least into the inner space from the first bearing, and

a rigid outer containment device for the container, the rigid outer containment device comprising a bottom wall and a peripheral wall defining a housing adapted to receive the container,

wherein the drive motor located outside the container, the drive motor being suitable for rotating the shaft of the mixing device, and

wherein the container set is assembled by

i) the container being placed in the rigid outer containment device with the flexible wall of the container being arranged on the bottom wall of the rigid outer containment device, and

ii) the length of the shaft along the main axis being adjusted to position the shaft facing the drive motor to enable the drive motor to rotate the shaft,

wherein the first bearing comprises a flange provided with an outer annular collar that forms an annular external groove outside the container, a terminal radial bead of the outer annular collar extending axially away from the container to delimit the annular external groove, the outer annular collar inwardly delimiting a cavity provided outside the container, the drive motor being connected with the outer annular collar of the flange outside the rigid outer containment device, and

wherein the drive motor is adapted to enable magnetically driving the shaft and comprising a rotary driving disc located outside the container, the rotary driving disc operatively engaging with a rotary driven disc attached to the shaft, the drive motor being connected with the outer annular collar of the flange so that, in a connected state between the drive motor and the outer annular collar, the rotary driving disc of the drive motor is inserted inside the flange to fill the cavity, the flange being clamped by a clamp extending in the annular external groove for maintaining the connected state.

6. The container set according to claim 5 , wherein the shaft is located entirely within the inner space.

7. The container set according to claim 5 , wherein the shaft sealingly traverses the first bearing.

8. The container set according to claim 5 , wherein the at least one mixing member, rotatably driven by the shaft, is adapted to mix the biopharmaceutical fluid located in the inner space.

9. The container set according to claim 5 , wherein the shaft supports and drives multiple mixing members located at a plurality of axial locations on the shaft.

10. The container set according to claim 5 , wherein the container has a capacity of between 50 liters and 200 liters.

11. The container set according to claim 5 , wherein the container is disposable.

12. The container set according to claim 5 , further comprising a second bearing attached to the wall of the container, wherein the shaft extends of adjustable length extending at least between the first bearing and the second bearing.

13. The container set according to claim 5 , wherein the shaft comprises a first part and a second part which are movable in translation relative to one another along the main axis.

14. The container set according to claim 13 , wherein the first part comprises a member adapted to slide in a rectilinear slot of the second part of the shaft.

15. The container set according to claim 13 , wherein the second part is provided with a rectilinear slot that traverses the second part of the shaft from one side to the other, the second part being a hollow upper part of the shaft in contact with the flange, wherein, in upstanding position of the container placed in the rigid outer containment device, the second part is configured to be selectively displaced upwardly toward an extended configuration without displacing the first part, in order to position the shaft facing the drive motor to enable the drive motor to rotate the shaft, the extended configuration of the second part being maintained by the clamp in a clamped configuration of the flange.

16. The container set according to claim 14 , wherein the container has a capacity of between 50 liters and 200 liters, the slot having a length between 1 and 10 centimeters so that the second part can freely move parallel to the main axis without the first bearing being moved away more than 10 centimeters from the uppermost position of the first bearing.

17. The container set according to claim 13 , wherein the first part and the second part of the shaft are integral in rotation.

Assignments (3)
CHANGE OF NAME Recorded Oct 1, 2024
From: SARTORIUS STEDIM FMT SAS
To: SARTORIUS STEDIM FMT
Reel/Frame 069084/0133 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME PREVIOUSLY RECORDED ON REEL 049687 FRAME 0329. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF ASSIGNOR'S INTEREST. Recorded Oct 15, 2019
From: CHAUSSIN, SÉBASTIEN; GIBELIN, JÉRÉMY; ZEUCH, STEFAN; BATES, MICHAEL
To: SARTORIUS STEDIM FMT SAS
Reel/Frame 050726/0324 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2019
From: CHAUSSIN, SÉBASTIEN; GIBELIN, JÉRÉMY; ZEUCH, STEFAN; BATES, MICHAEL
To: SARTORIUS STEDIM FTM SAS
Reel/Frame 049687/0329 →
Priority Claims (1)
FR 15 57500 · Aug 3, 2015 · national
Continuity (2)
Continuation 15750048
Related Publication 20190329197A1 · Oct 31, 2019
Cited By (9)
US 1,091,308 US 1,092,208 US 12,213,617 US 12,410,048 US 12,533,643 US 12,539,500 US 12,557,934 US 12,616,945 US 12,691,425