A Dummy Electric Battery Cell, Usable As A Gauge To Verify The Correct Operation Of A Measuring Apparatus In An Electric Battery Assembly Plant, And A Method Using This Dummy Battery Cell
20230094898 · 2023-03-30
Inventors
Cpc classification
G01R31/389
PHYSICS
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
G01R31/396
PHYSICS
International classification
G01R31/385
PHYSICS
G01R31/389
PHYSICS
G01R31/396
PHYSICS
Abstract
In an electric battery assembly plant, including a battery assembly line having a station that receives battery cells or modules to be assembled together, a measuring apparatus is configured for measuring the electrical resistance and the electrical voltage of a single battery cell or a battery module. The correct operation of the measuring apparatus is verified by arranging at least one dummy battery cell configured and sized to emulate a real battery cell, and having an electrical resistance of a predetermined value and/or including a voltage generator to generate a voltage of a strictly predetermined value at the terminals of the dummy battery cell. The dummy battery cell may then be used as a gauge to check in a simple and rapid way whether the measuring apparatus is operating correctly and reliably.
Claims
1. A method for the quality control of electric battery cells or modules for use in a plant for assembling electric batteries, the method comprising: providing a battery assembly line including a station for receiving a battery cell or a battery module to be assembled together; for measuring by a measuring apparatus associated with the station at least one of an electrical resistance of the battery cell or the battery module or an electrical voltage supplied by the battery cell or the battery module, wherein said measuring apparatus is configured and sized to receive the battery cell or the battery module, and is provided with electrical terminals configured and arranged to enter into electrical connection with terminals of the battery cell or the battery module when the battery cell or the battery module is received on said measuring device; and verifying a correct functionality of said measuring apparatus by positioning a dummy battery cell in the measuring apparatus, the dummy battery cell having a structure configured and sized to be received within the measuring apparatus and having electrical terminals configured and sized to enter into electrical connection with the electrical terminals of the measuring apparatus when the dummy battery cell is received in the measuring apparatus, wherein said dummy battery cell has at least one of an electrical resistance between its electrical terminals having a strictly predetermined value or includes a voltage generator configured to produce a voltage of strictly predetermined value at the electrical terminals of said dummy battery cell, and wherein the correct functionality of the measuring apparatus is verified by checking that the at least one of the electrical resistance or the voltage measured by the measuring apparatus, when said dummy battery cell is received in the measuring apparatus, corresponds to said respective strictly predetermined value, within a predetermined tolerance margin.
2. The method according to claim 1, wherein the dummy battery cell comprises a first dummy battery cell and a second dummy battery cell, the method further comprising: providing the first dummy battery cell having the electrical resistance between the electrical terminals of the strictly predetermined value, and providing the second dummy battery cell having the voltage generator configured to produce the voltage of the strictly predetermined value at the electrical terminals of said second dummy battery cell, wherein a correct functionality of the measuring apparatus is verified by respectively checking that the electrical resistance and the voltage measured by the measuring apparatus, when said first and second dummy battery cells (50,60) are respectively positioned in the measuring apparatus, correspond to said respective strictly predetermined value, within the predetermined tolerance margin.
3. The method according to claim 1, wherein the dummy battery cell comprises a first electric circuit and a second electric circuit each having respective electrical terminals separated from each other, wherein said first electric circuit includes the electric resistance between the electrical terminals of the strictly predetermined value, and wherein said second electric circuit includes the voltage generator configured to produce the voltage of the strictly predetermined value at the electrical terminals of said second electric circuit, wherein the correct functionality of the measuring apparatus is verified by checking that the electrical resistance and the voltage measured by the measuring apparatus, when the measuring apparatus is connected, respectively, to said first electric circuit and to said second electric circuit of said dummy battery cell, correspond to said respective strictly predetermined values, within the predetermined tolerance margin.
4. The method according to claim 2, wherein the first dummy battery cell further comprises a first dummy resistance battery cell having a first electrical resistance and a second dummy resistance battery cell having a second electrical resistance different than the first electrical resistance, wherein the first electrical resistance is within a predetermined range of acceptability for the electrical resistance of each battery cell or the battery module, and the second electrical resistance is above said predetermined range of acceptability, said measuring apparatus is verified by respectively positioning each of the first dummy resistance battery cell and the second dummy resistance battery cell in the measuring apparatus, in successive steps.
5. A quality control system for electric battery cells or electric battery modules in a plant for assembling electric batteries, comprising: a battery assembly line including a station configured to receive a selected one of the battery cells or the battery modules to be assembled together; a measuring apparatus is associated with the station and configured to measure an electrical resistance of and an electrical voltage supplied by the respective battery cell or the battery module, wherein said measuring apparatus is configured and sized to receive the respective battery cell or the battery module, and is provided with electrical terminals configured and arranged to enter into electrical connection with respective electrical terminals of the battery cell or the battery module when the battery cell or the battery module is received within the measuring device; and at least one dummy battery cell having a structure configured and sized to be received within said measuring apparatus and electrical terminals configured and sized for entering into electrical connection with the electrical terminals of the measuring apparatus when the dummy battery cell is received within the measuring apparatus, wherein said dummy battery cell has at least one of an electrical resistance between the electrical terminals of said dummy battery cell having a strictly predetermined value or includes a voltage generator configured to produce a voltage of strictly predetermined value at the electrical terminals of said dummy battery cell, and wherein a correct functionality of the measuring apparatus is verified by checking that the at least one of the electrical resistance or the voltage measured by the measuring apparatus, when said dummy battery cell is received in the measuring apparatus, corresponds to said respective predetermined value, within a predetermined tolerance margin.
6. The system according to claim 5, wherein the at least one dummy battery cell further comprises: a first dummy battery cell having the electrical resistance between the electrical terminals of the strictly predetermined value, and a second dummy battery cell having the voltage generator configured to produce the voltage of the strictly predetermined value at the electrical terminals of said second dummy battery cell, wherein the correct functionality of the measuring apparatus can be verified by respectively checking that the electrical resistance and the voltage measured by the measuring apparatus, when said first and second dummy battery cells are respectively positioned in the measuring apparatus, correspond to said respective strictly predetermined values, within the predetermined tolerance margin.
7. A system according to claim 5, wherein the at least one dummy battery cell comprises a single dummy battery cell including a first electric circuit and a second electric circuit each having respective electrical terminals separated from each other, wherein said first electric circuit includes the electric resistance between the electrical terminals of the strictly predetermined value, and wherein said second electric circuit includes the voltage generator configured to produce the voltage of the strictly predetermined value at the electrical terminals of said second electric circuit, wherein the correct functionality of the measuring apparatus can be verified by checking that the electrical resistance and the voltage measured by the measuring apparatus, when the measuring apparatus is connected, respectively, to said first electric circuit and to said second electric circuit of said single dummy battery cell, correspond to said respective strictly predetermined values, within the predetermined tolerance margin.
8. The system according to claim 6, wherein the first dummy battery cell further comprises a first dummy resistance battery cell having a first electrical resistance and a second dummy resistance battery cell having a second electrical resistance different than the first electrical resistance wherein the first electrical resistance is within a predetermined range of acceptability for the electrical resistance of each of the selected one of the battery cell or the battery module, and the second electrical resistance is above said predetermined range of acceptability, said measuring apparatus may be verified by respectively positioning each of the first dummy resistance battery cell and the second dummy resistance battery cell in the measuring apparatus, in successive steps.
9. A dummy battery cell for use in the method according to claim 1, the dummy battery cell comprising: the support structure configured and sized so as to emulate a configuration and dimensions of the battery cell; two of the electrical terminals mounted on said support structure and configured, sized and arranged to emulate the electrical terminals of the battery cell; and an electrical circuit configured to electrically connect together said two electrical terminals, the electrical circuit including the at least one of the electrical resistance of the strictly predetermined value, or the voltage generator, which can be activated to apply the voltage of the strictly predetermined value to said two electrical terminals of the dummy battery cell.
10. The dummy battery cell according to claim 9, wherein the electrical circuit further comprises: a first electric circuit and a second electric circuit each having respective electrical terminals separated from each other, wherein said first electric circuit includes the electric resistance between the two electrical terminals of the first electric circuit of the strictly predetermined value, and wherein said second electric circuit includes the voltage generator configured to produce the voltage of the strictly predetermined value at the two electrical terminals of said second electric circuit.
11. The method according to claim 1, wherein measuring by the measuring apparatus of at least one of the electrical resistance or the electrical voltage comprises measuring the electrical resistance and the electrical voltage, the correct functionality of the measuring apparatus is verified by checking that the electrical resistance and the electrical voltage of the dummy battery cell measured by the measuring apparatus corresponds to the respective strictly predetermined value within the predetermined tolerance margin.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Further characteristics and advantages of the present invention will become apparent from the description that follows with reference to the attached drawings, provided purely by way of non-limiting example, wherein:
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
DETAILED DESCRIPTION
[0037]
[0038] Again,
[0039]
[0040] It should also be noted that although the attached drawings show an example of application of the invention with reference to battery cells of the “pouch” type, the disclosures of the present invention are immediately applicable to battery cells or modules of any known type, for example, also to battery cells having a cylindrical configuration.
[0041]
[0042]
[0043] What is important to note is that the measuring apparatus 7 is arranged with a seat 7A intended to receive a battery cell 2 for checking its electrical resistance and electrical voltage characteristics.
[0044] As has already been illustrated above, the measuring apparatus 7 allows quality control of the battery cells that arrive at the station 5 to be assembled in the plant 4, but there is the problem of periodically checking the correct operation of the measuring apparatus.
[0045] In order to be able to carry out this check in a simple and rapid way, without removing the measuring apparatus 7 from the assembly plant, the invention proposes providing one or more dummy battery cells, to be used as gauges to check the correct operation of the measuring equipment 7.
[0046] In a first embodiment, at least two different types of dummy cells are provided, of which
[0047] The aforesaid dummy battery cells are configured and sized to emulate the shape and dimensions of a real battery cell 2, so that they can be received in the seat 7A of the measuring apparatus 7. A first type of dummy cell, illustrated in
[0048] Therefore, verifying the correct operation of the measuring apparatus can be carried out very quickly and in a very simple way, without the need to remove the measuring apparatus from the assembly plant and without causing any interruption or slowing-down compared to the normal productive cycle.
[0049] With reference to
[0050] In the case of the aforesaid first embodiment of the invention, which provides a first dummy cell for checking the resistance measurement, and a second dummy cell for checking the voltage measurement, two types of first dummy cells 50 are preferably arranged of the type illustrated in
[0051] Therefore, when it is necessary to verify the correct operation of the measuring apparatus 7 with reference to the measurement of the electrical resistance of the battery cells, the two dummy cells 50 having the two different strictly predetermined values of the electrical resistance are arranged, in successive steps within the seat 7A of the measuring apparatus 7. This procedure is chosen to make the verification of the correct operation of the measuring apparatus more reliable, taking into account the fact that the order of magnitude of the electrical resistance of a battery cell is very small, in the order of a few milli-ohm (for example 6 mΩ).
[0052] With reference to
[0053] The opposite ends of a voltage generator 67 (schematically illustrated in
[0054] The construction details of the voltage generator 67 are not described or illustrated here, since this generator can be of any known type available on the market, and since it does not fall, taken alone, within the scope of the present invention.
[0055] When it is necessary to verify the correct operation of the measuring apparatus 7 with reference to the measurement of the open circuit voltage (OCV) of the battery cells, the dummy battery cell 60 is placed in the seat 7A of the measuring apparatus 7, and the generator 67 is activated to generate a voltage of a strictly predetermined value at the terminals of the dummy cell. It is thus possible to check whether the value measured by the apparatus 7 corresponds to the actual value of the voltage associated with the dummy cell 60.
[0056] A second embodiment of the invention envisages the provision of a single dummy cell (of which
[0057] As is evident from the above description, the idea underlying the present invention is that of providing at least one dummy battery cell, having configuration and dimensions that emulate the configuration and dimensions of a real battery cell, and which can be used as a gauge to check the correct operation of a device for measuring the resistance and/or voltage of the battery cells, since a rigorously predetermined and known resistance value and/or voltage value is associated with this dummy cell.
[0058] Of course, without prejudice to the principle of the invention, the details of construction and the embodiments may vary widely with respect to those described and illustrated purely by way of example, without departing from the scope of the present invention, as defined by the attached claims.