MAGNETIC STIRRER WITH LIFTING TABLE
20240131520 · 2024-04-25
Assignee
Inventors
Cpc classification
F16M11/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01L7/02
PERFORMING OPERATIONS; TRANSPORTING
B01F35/92
PERFORMING OPERATIONS; TRANSPORTING
B01F35/43
PERFORMING OPERATIONS; TRANSPORTING
F16M11/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01L2200/025
PERFORMING OPERATIONS; TRANSPORTING
B01L7/00
PERFORMING OPERATIONS; TRANSPORTING
B01L9/00
PERFORMING OPERATIONS; TRANSPORTING
B01L2200/147
PERFORMING OPERATIONS; TRANSPORTING
B01L7/52
PERFORMING OPERATIONS; TRANSPORTING
F16M2200/061
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47B2200/006
HUMAN NECESSITIES
B01L2300/1805
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/023
PERFORMING OPERATIONS; TRANSPORTING
B01F2101/23
PERFORMING OPERATIONS; TRANSPORTING
A47B9/16
HUMAN NECESSITIES
International classification
B01L9/00
PERFORMING OPERATIONS; TRANSPORTING
B01L7/00
PERFORMING OPERATIONS; TRANSPORTING
F16M11/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47B9/16
HUMAN NECESSITIES
B01F33/452
PERFORMING OPERATIONS; TRANSPORTING
B01F35/43
PERFORMING OPERATIONS; TRANSPORTING
B01F35/92
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to an arrangement comprising a magnetic stirrer, having a heating plate and a control unit for controlling the magnetic stirrer, and a lifting table having a platform on which the magnetic stirrer can be placed, characterized in that the lifting table has an electric motor to raise and lower the platform, and in that a wireless or wired interface is provided between the magnetic stirrer and the lifting table and the control unit is configured to control the electric motor, in particular the power supply of the electric motor, via the interface.
Claims
1. An arrangement comprising a magnetic stirrer, having a heating plate and a control unit for controlling the magnetic stirrer, and a lifting table-having a platform on which the magnetic stirrer can be placed, wherein the lifting table has an electric motor to raise and lower the platform, and wherein a wireless or wired interface is provided between the magnetic stirrer and the lifting table and the control unit is configured to control the electric motor, via the interface.
2. The arrangement in accordance with claim 1, wherein the control unit of the magnetic stirrer is configured to automatically lower the platform of the lifting table when a predefined time elapses and/or when a predefined reference value is exceeded or fallen below by a measurement value acquired by a measuring sensor.
3. The arrangement in accordance with claim 2, wherein the measuring sensor is part of the arrangement.
4. The arrangement in accordance with claim 1, wherein the interface becomes functional by placing the magnetic stirrer onto the platform of the lifting table.
5. The arrangement in accordance with claim 1, wherein the wired interface-comprises an electrical plug-in connection.
6. The arrangement in accordance with claim 1, wherein the wireless interface comprises two inductively cooperating coils, of which a first coil is provided at the magnetic stirrer side and a second coil is provided at the lifting table side.
7. The arrangement in accordance with claim 1, wherein only the magnetic stirrer has a power supply, and the electric motor of the lifting table is supplied with power via the interface.
8. The arrangement in accordance with claim 1, wherein the control unit is configured to transmit data to the lifting table via the interface.
9. The arrangement in accordance with claim 1, wherein the magnetic stirrer comprises, at its lower side, a plurality of support feet that, when the magnetic stirrer is placed onto the platform of the lifting table, engage into counter-shaped recesses formed at the upper side of the platform.
10. The arrangement in accordance with claim 9, wherein the platform of the lifting table comprises an adapter plate and the recesses are formed in the adapter plate.
11. The arrangement in accordance with claim 1, wherein the lifting table has a base which is not moved when the platform is raised and lowered and to which a holding apparatus of the arrangement for a glass structure is fastened.
12. The arrangement in accordance with claim 11, wherein the glass structure is part of the arrangement.
13. The arrangement in accordance with claim 1, wherein the lifting table is configured as a scissor lifting table comprising the platform, a base that is not moved when the platform is raised and lowered, and a scissor unit arranged between the platform and the base.
14. The arrangement in accordance with claim 13, wherein the lifting table comprises, as a drive, a screw gear having an axially fixed threaded spindle and a threaded nut, with the threaded spindle being driven by the electric motor and the threaded nut being displaceably guided in the two floating bearings.
15. The arrangement in accordance with claim 14, wherein the electric motor and the screw gear are provided at the platform of the lifting table, and/or the threaded spindle is additionally provided with a hand crank.
16. The arrangement in accordance with claim 1, wherein the control unit is configured to control a power supply of the electric motor.
17. The arrangement in accordance with claim 2, wherein the measuring sensor is a temperature sensor.
18. The arrangement in accordance with claim 3, wherein a further measuring sensor is provided that is part of the arrangement.
19. The arrangement in accordance with claim 18, wherein the further measuring sensor is a temperature sensor.
20. The arrangement in accordance with claim 18, wherein one of the two measuring sensors is attached to a holding apparatus of the arrangement that is fastened to the platform of the lifting table or to the magnetic stirrer.
21. The arrangement in accordance with claim 5, wherein the electrical plug-in connection has a plug and a socket.
22. The arrangement in accordance with claim 21, wherein the plug is provided at the lifting table side and the socket is provided at the magnetic stirrer side, or vice versa.
23. The arrangement in accordance with claim 11, wherein the glass structure has a reaction glass flask for a liquid to be heated.
24. The arrangement in accordance with claim 13, wherein the scissor unit having two scissor arms that are arranged in a crossed manner and that are connected to one another in an articulated manner at their centers.
25. The arrangement in accordance with claim 15, wherein the electric motor and the screw gear are provided at a lower side of the platform of the lifting table.
Description
[0020] Non-restricting embodiments of the invention are shown in the drawing and will be described in the following. There are shown
[0021]
[0022]
[0023]
[0024]
[0025]
[0026] In
[0027] The magnetic stirrer 11 comprises a heating plate 15 which is heated by a heating device integrated therein and onto which a heating bath, not shown, can be placed, said heating bath being filled with a liquid heat transfer medium such as water. A reaction glass flask, not shown, in which a liquid is present in which a chemical reaction is to take place at an elevated temperature, as is the case in reflux, distillation or sublimation processes, can be immersed in the heating bath. The reaction glass flask, together with a laboratory cooler adjoining the reaction glass vessel, is part of a glass structure, fixedly fastened to a holding apparatus, for carrying out the processes mentioned. Below the heating plate 15, a drive in the form of an electric motor is provided in the magnetic stirrer 11, said drive rotating a magnet at a controllable speed so that a changing magnetic field is generated that is suitable for setting a magnetic stir bar, which is located in the reaction glass flask and which is also designated as a stirring flea, into a stirring movement. Furthermore, the magnetic stirrer 11 comprises a user interface 19 to sot the desired heating temperature and the desired stirring speed. The inputs at the user interface 19 are forwarded to a control unit of the magnetic stirrer 11 that is arranged within the magnetic stirrer 11 and that controls the magnetic stirrer 11.
[0028] The magnetic stirrer 11 and the heating bath can be raised and lowered by the lifting table 13 to immerse the reaction glass vessel in the heating bath or to remove it from the heating bath. The lifting table 13 is configured as a scissor lifting table that, in addition to the platform 21 and a base 23 that is not moved when the platform is raised and lowered, comprises a scissor unit 25 arranged between the platform 21 and the base 23. The scissor unit 25 has two scissor arms 27, 27 that are arranged in a crossed manner and that are connected in an articulated manner at their centers. The one scissor arm 27 is connected in an articulated manner at one end to the base 23 via a fixed bearing 29 and at the other end to the platform 21 via a floating bearing 31, and the other scissor arm 27 is connected in an articulated manner at one end to the platform 21 via a fixed bearing 29 and at the other end to the base 23 via a floating bearing 31. The two fixed bearings 29 each comprise two fixed bearing points which are opposite one another with respect to the scissor plane and al which the respective scissor arm 27, 27 is connected in an articulated manner to the base 23 or the platform 21. The two floating bearings 31 each comprise two slotted controls that are disposed opposite one another with respect to the scissor plane and that have longitudinal slots in which the respective scissor arm 27, 27 is displaceably guided at the base 23 or the platform 21 (cf also
[0029] The driving of the lifting table 13 or the raising and lowering of the platform 21 takes place via a screw gear 33 (cf.
[0030] The electric motor 39 of the lifting table 13 is controlled by the control unit of the magnetic stirrer 11. For this purpose, a wireless interface 43 is provided between the magnetic stirrer 11 or the control unit of the magnetic stirrer 11 and the lifting table 13 or the electric motor 39 of the lifting table 13, said wireless interface 43 becoming functional by placing the magnetic stirrer 11 onto the platform 21 of the lifting table 13. The wireless interface 43 comprises two inductively cooperating coils 45, 45, namely a first coil 45 and a second coil 45. The first coil 45 is fastened to the lower side of the magnetic stirrer 11 and is electrically connected to the power supply of the magnetic stirrer 11, and the second coil 45 is fastened to the platform 21 of the lifting table 13 and is electrically connected to the electric motor 39. A small air gap, preferably of a few tenths of a millimeter to a few millimeters, is formed between the first coil 45 and the second coil 45.
[0031] The electric motor 39 of the lifting table 13 can therefore be supplied with power by the magnetic stirrer 11 via the wireless interface 43, wherein the power supply for the electric motor 39 is controlled by the control unit of the magnetic stirrer 11, i.e. can be switched on and off and reversed in polarity, to raise or lower the platform 21 as required. In the arrangement, only the magnetic stirrer 11 therefore has a power supply, in particular a power supply unit. The lifting table 13 or the electric motor 39 of the lifting table 13 does not have its ow power supply, but uses the power supply of the magnetic stirrer 11, Via the wireless interface 43, data can also be transmitted, such as an upper and a lower end position which the platform 21 can assume. In
[0032] The user interface 19 of the magnetic stirrer 11 has two buttons, not shown, by which, when actuated, the platform 21 of the lifting table 13 can be raised or lowered. Furthermore, the control unit of the magnetic stirrer 11 is configured to automatically lower the platform 21 of the lifting table 13. This is in particular the case if a predefined time has elapsed during the operation of the arrangement or if the liquid present in the reaction flask or the heating bath becomes too hot, i.e. if the temperature of the liquid present in the reaction flask or of the heating bath exceeds a respective predefined reference value. The temperature of the liquid present in the reaction flask or of the heating bath can be detected by a respective temperature sensor.
[0033] As can in particular be seen from
[0034] In
[0035] In the arrangement in accordance with
REFERENCE NUMERAL LIST
[0036] 11 magnetic stirrer [0037] 13 lifting table [0038] 15 heating plate [0039] 17 support foot [0040] 19 user interface [0041] 21 platform [0042] 23 base [0043] 25 scissor unit [0044] 27 scissor arm [0045] 27 scissor arm [0046] 29 fixed bearing [0047] 31 floating bearing [0048] 33 screw gear [0049] threaded spindle [0050] 37 threaded nut [0051] 39 electric motor [0052] 41 hand crank [0053] 43 wireless interface [0054] 43 wired interface [0055] 45 first coil [0056] 45 second coil [0057] 47 cable [0058] 49 adapter plate [0059] 51 sheet metal base [0060] 53 recess [0061] 55 built-in plug [0062] 57 first holding rod [0063] 59 second holding rod