TEMPERATURE CONTROL APPARATUS FOR TEMPERATURE-CONTROLLED MATERIAL IN A CYLINDRICAL CONTAINER
20220379314 · 2022-12-01
Inventors
Cpc classification
B01L7/02
PERFORMING OPERATIONS; TRANSPORTING
H05B3/20
ELECTRICITY
B01L2300/1811
PERFORMING OPERATIONS; TRANSPORTING
B01L2200/025
PERFORMING OPERATIONS; TRANSPORTING
B01L7/00
PERFORMING OPERATIONS; TRANSPORTING
B01L9/06
PERFORMING OPERATIONS; TRANSPORTING
A61M1/0281
HUMAN NECESSITIES
International classification
Abstract
An apparatus for temperature-controlling and thawing a temperature-controlled material which is arranged in at least one rigid container, including an openable housing containing a storage chamber for receiving the at least one container, and including a heating device containing a flat heating element which is operatively connected to the at least one container. A storage mat for receiving the at least one container is arranged between the flat heating element and the at least one container.
Claims
1. An apparatus for temperature-controlling and thawing a temperature-controlled material (2), which is arranged in at least one rigid container (1), comprising an openable housing (3) containing a storage chamber (5) for receiving the at least one container (1), comprising a heating device (14) containing a flat heating element (15, 15′) which is operatively connected to the at least one container (1), wherein a storage mat (9, 9′, 9″) for receiving the at least one container (1) is arranged between the flat heating element (15, 15′) and the at least one container (1).
2. The apparatus according to claim 1, wherein the storage mat (9, 9′, 9″) consists of a flexible material.
3. The apparatus according to claim 1, wherein the at least one container (1) is cylindrical and wherein that the storage mat (9, 9′, 9″) has a plurality of elongate receptacles (10, 10′, 10″) for respectively receiving a plurality of the at least one containers (1).
4. The apparatus according to claim 3, wherein the elongate receptacles (10, 10′, 10″) are each formed as elongate recesses.
5. The apparatus according to claim 1, wherein the flat heating element (15, 15′) is a plastic bag containing a temperature-controlled medium
6. The apparatus according to claim 5, wherein the plastic bag is operatively connected to a pump (18) arranged outside the storage chamber (5) and to a heat source (19) in order to temperature-control the temperature-controlled medium to a predetermined temperature.
7. The apparatus according to claim 5, wherein the temperature-controlled medium is in a liquid physical state.
8. The apparatus according to claim 3, wherein the storage mat (9) and the plurality of containers (1) stored thereon are arranged between two flat heating elements (15, 15′).
9. The apparatus according to claim 3, wherein the elongate recesses (10, 10′, 10″) in the storage mat (9) have at least one opening (12).
10. The apparatus according to claim 3, wherein the recesses (10, 10′, 10″) in the storage mat (9, 9′, 9″) have a width (a) in the range of 10 mm to 50 mm.
11. The apparatus according to claim 1, wherein the storage mat (9, 9′, 9″) has a number of retaining tabs (24) which can be pivoted out of a plane (E) of extension of said storage mat and which are for partially covering the container (1) and/or an accessory (26).
12. The apparatus according to claim 3, wherein the storage mat (9, 9′, 9″) has a number of retaining tabs (24) which can be pivoted out of a plane (E) of extension of said storage mat and which are for partially covering the container (1) and/or an accessory (26), wherein the storage mat (9, 9′, 9″) has a peripheral flat frame (23) which surrounds the plurality of recesses (10″) and on the outside of which the plurality of retaining tabs (24) are arranged.
13. The apparatus according to claim 12, wherein a free end (25) of the retaining tab (24) adjoins perpendicularly from the flat frame (23) of the storage mat (9″).
14. The apparatus according to claim 1, wherein the storage mat (9, 9′) and/or the heating element (15, 15′) is associated with a mechanically movable actuating element (22) in such a way that, by periodic and/or aperiodic movement of the actuating element (22), the storage mat (9, 9′) can be made to move back and forth transversely to a plane (E) of extension of said storage mat.
15. The apparatus according to claim 14, wherein the mechanically movable actuating element (22) is rigid and comprises a plurality of interconnected straight and/or curved struts (27) to form a rigid frame (28) having smaller dimensions than the flat frame (23) of the storage mat (9″).
16. The apparatus according to claim 14, wherein the actuating element (22) is arranged between an upper heating element (15) and an upper side (11″) of the storage mat (9, 9′, 9″) or on a side of the upper heating element (15) facing away from the storage mat (9, 9′, 9″) and/or between a lower heating element (15′) and a lower side (13′) of the storage mat (9″) or on a side of the lower heating element (15′) facing away from the storage mat (9″), the actuating element (22) being controllable about a pivot axis (A) which extends in parallel with the plane (E) of extension of the storage mat (9″).
17. The apparatus according to claim 1, wherein the storage mat (9, 9′, 9″) consists of a one-piece silicone material.
Description
[0015] The drawings show:
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022] An apparatus according to the invention for temperature-controlling and/or thawing a temperature-controlled material 2 arranged in elongate rigid containers 1 has a housing 3 which has a base chamber 4 in a lower region and a storage chamber 5 in an upper region. The containers can be designed, for example, as vials (small bottles) for samples or the like.
[0023] The storage chamber 5 is delimited at the bottom, and the base chamber 4 at the top, by a rigid partition 6. The storage chamber 5 is pot-shaped and has upright side walls 7 which define an upper opening. The upper opening in the storage chamber 5 can be opened and closed by means of a hinged cover 8.
[0024] A storage mat 9 for the positionally precise storage or holding of a plurality of elongate containers 1, preferably cylindrical containers, in particular test tubes, is provided in the storage chamber 5. For this purpose, the storage mat 9 has elongate receptacles 10 such that the cylindrical containers 1 can be placed on the storage mat 9 from an upper side thereof. The elongate receptacles 10 are preferably designed as elongate recesses such that the containers 1 are arranged recessed at least in regions in relation to an upper side 11 of the storage mat 9. According to a first embodiment of the storage mat 9 according to
[0025] The apparatus has a heating device 14 which comprises two flat heating elements 15, 15′. An upper heating element 15 is arranged above the storage mat 9 provided with the containers 1, and a lower heating element 15′ is arranged below the storage mat 9 provided with the containers 1. The two heating elements 15, 15′ are each designed as a plastic bag having an inlet 16 and an outlet 17 such that a temperature-controlled medium, preferably a medium in a liquid physical state, can flow through the heating elements 15, 15′. For this purpose, the heating device 14 has a pump 18 and a heat source 19, which are preferably arranged in the base chamber 4. The pump 18 and the heat source 19 are connected to the heating elements 15, 15′ via hose lines. Preferably, the heating elements 15, 15′ are connected in series in the direction of flow.
[0026] As can be seen from
[0027] In the first exemplary embodiment according to
[0028] In the present exemplary embodiment, the storage mat 9 consists of a flexible material, preferably a silicone material, in particular a silicone rubber material.
[0029] In addition, a mechanically movable actuating element 22 can be arranged in the storage chamber 5, by means of which the upper heating element 15 and/or the lower heating element 15′ can be set in motion. The mechanical actuating element 22 can be designed, for example, as a paddle element which can be moved back and forth periodically and/or aperiodically about an axis A, specifically in a predetermined acute or obtuse angle range. The axis A of rotation extends in parallel with the plane E of extension of the storage mat 9 or with a plane of extension of the heating elements 15, 15′.
[0030] A control device (not shown) for the actuating element 22 is arranged in the base chamber 4. This control device can also be used to control the pump 18 and the heat source 19 if the heat source 19 is designed as an electrically operated heat source, for example a resistance heater.
[0031] In the present exemplary embodiment, the heating elements 15, 15′ are each associated with an actuating element 22, the actuating element 22 being arranged on a side of the heating elements 15, 15′ facing away from the storage mat 9.
[0032] According to an alternative embodiment of the invention (not shown), just a single actuating element 22 can also be arranged in the storage chamber 5, said actuating element acting on the heating elements 15, 15′ on a side thereof facing away from the storage mat 9 or on a side thereof facing the storage mat 9.
[0033] According to an alternative embodiment, the actuating element 22 can be arranged directly at one end of the upper heating element 15 and/or the lower heating element 15′, with the back-and-forth movement being upward and downward. This allows the end of the heating element 15, 15′ to be moved up and down periodically and/or aperiodically such that a wave motion continues from this point to an opposite end of the heating element 15, 15′. The actuating element 22 can be rigidly connected to the heating element 15 or 15′.
[0034] According to an alternative embodiment of the invention according to
[0035] Identical components or component functions are provided with the same reference numbers. Between the elongate recesses 10′, the storage mat 9′ has intermediate regions 20 in which the upper side 11′ and the lower side 13′ of the storage mat 9, in a flat position, extend in parallel with one another.
[0036] In this embodiment, the lower side 13′ of the storage mat 9′ is in full contact with the lower heating element 15′. Since the storage mat 9′ consists of a flexible and heat-conducting material, the heat emitted by the lower heating element 15′ can be transferred to the containers 1.
[0037] According to an alternative embodiment of the invention (not shown), the distance b between adjacent elongate receptacles 10, 10′ can be made smaller than a width a of the recess 10, 10′. To increase the packing density of the containers 1 on the storage mat 9, 9′, the width b of the intermediate region 20 can be selected to be relatively small, for example in the millimeter range.
[0038] For example, the temperature-controlled material 2 can be in the form of a liquid or solid gene or stem cell material.
[0039] According to an alternative embodiment of the invention, the heating elements 15, 15′ can be designed as temperature control pads or gel pads that are heated electrically in both cases.
[0040] According to a further embodiment of a storage mat 9″ according to
[0041] In the present embodiment, two rows of six recesses 10″ each are arranged offset from one another. The containers 1 to be stored are placed on an upper side 11″ of the storage mat 9″. A number of retaining tabs 24 are distributed on an outer side of the closed peripheral flat frame 23, the free end 25 of said retaining tabs projecting substantially perpendicularly outwardly from the flat frame 23. The retaining tabs 24 can be used to support the storage mat 9″ or the containers 1 on an edge of the housing 3 and/or on the lower heating element 15. Alternatively or additionally, the retaining tabs 24 can also be used to partially cover an accessory 26 placed at the edge of the storage chamber 5.
[0042] The storage mat 9″ is made of a flexible material, preferably a silicone material.
[0043] A wall thickness w of the storage mat 9″ is in a range from 1 mm to 5 mm, preferably 2 mm. The recesses 10″ have dimensions of 125 mm×25 mm.
[0044]
[0045] The struts 27 form a rigid frame 28, which preferably has smaller dimensions than the flat frame 23 of the storage mat 9″. Alternatively or additionally, the struts 27 can also be curved such that the frame 28 is circular or elliptical in the plane of extension thereof.
[0046] The rigid frame 28 or the struts 27 are moved back and forth periodically and/or aperiodically through a pivot angle 30 by means of an actuating element 29, which can be designed, for example, as an electric servomotor, with a pivot axis or axis A of rotation forming an axis of symmetry of the rigid frame 28. The axis A of rotation extends in parallel with or in the plane E of extension of the storage mat 9″.
[0047] The actuating element 22 can be arranged—as shown in