Intermittently coated battery electrode manufacturing method
10236497 ยท 2019-03-19
Assignee
Inventors
Cpc classification
H01M10/48
ELECTRICITY
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
B05D1/26
PERFORMING OPERATIONS; TRANSPORTING
B05D5/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An intermittently coated battery electrode manufacturing method capable of preventing a positional displacement from occurring between a first surface of a collector and a second surface opposed to the first surface. The intermittently coated battery electrode manufacturing method includes: forming, at a part of a strip-shaped collector where an active material is not coated, a front end indicator indicating a front end of the active material to be intermittently coated on the collector; performing coating of the active material on a first surface of the collector based on a detection signal of the front end indicator to form an intermittent coating layer; and starting coating of the intermittent coating layer on a second surface opposite to the first surface based on the detection signal of the same front end indicator as that used for forming the active material coating layer on the first surface.
Claims
1. An intermittently coated battery electrode manufacturing method comprising: forming, on a part of a first surface of a strip-shaped collector where an active material is not coated, a front end indicator indicating a front end of the active material to be intermittently coated on the collector, based on an operation signal; coating intermittent layers of the active material on the first surface of the strip-shaped collector with a coating die which is responsive to the operation signal used to form the front end indicator; and coating intermittent layers of the active material on a second surface of the strip-shaped collector, the second surface opposite to the first surface, based on a detection signal of the front end indicator.
2. The intermittently coated battery electrode manufacturing method according to claim 1, wherein the front end indicator is positioned inside of a battery outer case, and is not eluted to an electrolyte.
3. The intermittently coated battery electrode manufacturing method according to claim 1, wherein the front end indicator comprises identification information.
4. The intermittently coated battery electrode manufacturing method according to claim 3, wherein the identification information is linked to coating layer inspection result information so as to sort a defective product.
5. The intermittently coated battery electrode manufacturing method according to claim 1, wherein the coating of the intermittent layers of the active material on the first surface of the strip-shaped collector and the coating of the intermittent layers on the second surface opposite to the first surface are performed such that a position of the intermittent layers of the active material on the first surface and a position of the intermittent layers of the active material on the second surface coincide.
6. A battery management method wherein a battery that uses a battery electrode manufactured by a method as claimed in claim 1 is linked to battery use information so as to manage the battery.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
BEST MODE FOR CARRYING OUT THE INVENTION
(6) An intermittently coated battery electrode manufacturing method according to the present invention will be described below with reference to the drawings.
(7)
(8) A front end indicator forming means 120, such as a laser marking machine or an inkjet print means, that can form a front end indicator on a metal surface is used to forma front end indicator 125 illustrated in a plan view of
(9) An interval between adjacent front end indicators 125 can be set inconsideration of a length of an intermittent coating layer in a length direction of the collector, a length of a part that is used as a positive electrode tab or a negative electrode tab, and a length required for handling during manufacturing.
(10) Further, a battery electrode according to the present invention is formed such that active material coating layers to be formed on front and back surfaces of the collector are formed at positions symmetrical to each other with respect to a center surface parallel to a collector surface with each front end indicator 125 as a reference position in the length direction of the collector. Therefore, the front end indicators may be arbitrarily disposed regardless of the interval between the adjacent ones; however, they are preferably disposed at equal pitches in consideration of workability in an assembly work.
(11) The collector 101 on which the front end indicators 125 have been formed is wound by a winding roll 100b and is then coated with the electrode active material on both surfaces of the collector in an intermittent coating process.
(12)
(13) As illustrated in
(14) An interval between adjacent front end indicators 125 can be set inconsideration of a length of an intermittent coating layer in a length direction of the collector, a length of a part that is used as a positive electrode tab or a negative electrode tab, and a length required for handling during manufacturing.
(15) In the method illustrated in
(16) As described above, in the active material coating on one surface side, the front end position detecting means need not be used, but the operation signal of the front end indicator forming means may be used as the operation signal for the coating die when the intermittent coating layer is coated.
(17) Further, when the front end detecting means is used, it is necessary to provide the front end position detecting means on the front end indicator forming means side. However, by using the operation signal of the front end indicator forming means, the following advantage can be obtained.
(18) That is, the front end position detecting means may be provided only on one side surface of the collector foil as illustrated in
(19) The collector 101 on which the intermittent coating layers are formed is dried in a dry furnace 200 and then wound by the winding roll 100b, whereby a winding roll having the intermittent coating layers of the active material formed on one surface thereof can be obtained.
(20) Subsequently, as illustrated in
(21) The resultant collector is then dried in the dry furnace 200 and then wound by a winding roll 100c, whereby a winding roll having the intermittent coating layers of the active material formed on both surfaces thereof can be obtained.
(22) Further, a battery electrode according to the present invention is formed such that active material coating layers to be formed on front and back surfaces of the collector are formed at positions symmetrical to each other with respect to a center surface parallel to a collector surface with each front end indicator 125 as a reference position in the length direction of the collector. Therefore, the front end indicators may be arbitrarily disposed regardless of the interval between the adjacent ones; however, they are preferably disposed at equal pitches in consideration of workability in an assembly work.
(23) In the above example, simultaneously with formation of the front end indicators 125, the intermittent coating layers 103a of the active material are each formed by the coating die 102a from a position corresponding to the front end position. However, in this configuration, the front end detecting means may be provided on both surfaces of the coating device.
(24) The front end indicator forming means and the front end position detecting means are preferably disposed as close as possible to the coating die so as not to cause a variation in operation thereof due to influence of a minute change in tension to be applied to the collector foil or flexure of the collector foil.
(25)
(26) As illustrated in
(27) At this time, the front end position detecting means is not used, but the operation signal of the front end indicator forming means may be used as the operation signal for the coating die when the intermittent coating layer is coated. Alternatively, the front end position detecting means may be provided (not illustrated) between the front end indicator forming means 120 and the first surface coating die; in this case, the operation signal of the front end indicator forming means may be generated based on the detection signal from the thus provided front end position detecting means. In the configuration illustrated in
(28) By repeating the above operation, the intermittent electrode layers 103a are each formed on the first surface of the collector 101 on which the front end indicators 125 have been formed with the position indicated by the indicator 125 as the front end. This is illustrated in
(29) The collector on which the first surface intermittent coating layers 103a are formed is dried in a dry furnace 200a, whereby the first surface intermittent coating layers are completed.
(30) When each of the front end indicators 125 formed on the first surface reaches a second front end detecting means 104b provided in front of a second surface coating die 102b for coating the active material on a second surface opposite to the first surface, the second front end indicator detecting means 104b detects the front end indicator 125.
(31) As a result, a shutter of the second surface coating die 102b is opened at a time point when the front end position reaches the second surface coating die 102b, which is calculated from a moving speed of the collector 101, to start coating the active material on the second surface.
(32) Then, at a time point when the coating layer reaches a predetermined coating length, the shutter of the second surface coating die 102b is closed. As a result, as illustrated in
(33) The resultant collector is then dried in a dry furnace 200b, whereby the coating layers are completed.
(34) As described above, by detecting the front end indicator that has been used in the coating of the active material layer on the first surface of the collector, coating of the active material on the opposing second surface can be started. As a result, it is possible to produce an intermittently coated battery electrode web in which the active material layers symmetrical to the intermittent coating layers on the first surface of the collector have been formed without displacement.
(35) Thus, the intermittent coating layers can be formed without being displaced from the intermittent coating layers on the opposing first surface, whereby positional accuracy of the intermittently coated electrode becomes high.
(36) The first surface coating die and the second surface coating die can operate independently of or in conjunction with each other. Further, not illustrated dancer rolls are provided in front of the first surface coating die 102a and the second surface coating die 102b, respectively. The dancer rolls are provided to prevent the collector foil from being cut due to a sudden change in tension.
(37) Further, the second front end position detecting means 104b is preferably disposed closer to the second surface coating die 102b than to the dancer roll (not illustrated) provided immediately before the second surface coating die. In addition, the second front end position detecting means 104b is preferably disposed as close as possible to the second surface coating die. The reason that the intermittent coating of the active material on the second surface is not performed based on the operation signal of the front end indicator forming means 120 is that a distance between the front end indicator forming means and the second surface coating die is not fixed by the presence of the dancer roll.
(38) Subsequently, as illustrated in
(39)
(40) In the present embodiment, in place of the front end indicator described in
(41) By the front end indicator 129 with identification information, both the detection of the front end position and identification of each intermittent coating layer 103 can be made.
(42) For example, it is possible to obtain the following function by using the identification information 127.
(43) When an abnormality in, e.g., thickness is found in an inspection after the production of the intermittent coating layer, A, B, C, D, and E indicating width direction positions of the collector and a portion at which the abnormality can be recorded in association with the identification information 127. As a result, after the unit electrodes are cut from the intermittent coating layer, a unit electrode in which the abnormality has been detected in the inspection can be selected for elimination.
(44)
(45) In the embodiment illustrated in
(46) By forming the front end indicators with identification information at the electrode tab formation portions of the respective unit electrodes to be cut from the collector as described above, it is possible to manage each produced unit electrode by the identification information thereof. Thus, traceability in the battery produced using the unit electrode of the present embodiment can be enhanced.
(47) In a configuration where the front end indicator with identification information is positioned inside a battery exterior material after battery assembly, the indicator needs to be formed onto a metal surface by means of a laser marking machine so as not be eluted in electrolyte. On the other hand, in a configuration where the front end indicator with identification information is positioned outside the battery exterior material, the indicator may be formed by an inkjet print means.
(48) The front end indicator 129 with identification information 127 described using
(49) In the present invention, the displacement of the active material refers not only to a state where the coating ends of the adhesive materials on the front and back sides of the collector do not completely coincide with each other, but also to a state where the electrode is displaced from an intended position. For example, when the electrode is produced such that the coating ends of the active materials on the front and back sides of the collector are not intentionally made to coincide, the displacement means a displacement from this state.
INDUSTRIAL APPLICABILITY
(50) According to the intermittently coated battery electrode manufacturing method of the present invention, coating of the intermittent coating layers formed on the first surface of the collector and its opposing second surface is performed based on detection of the front end indicators formed at a portion where the active material is not coated. Thus, the intermittent coating layers can be formed on the second surface without being displaced from those on the first surface and, thus, a battery electrode with no positional displacement of the active material layer can be provided. Further, by adding the identification information to the front end indicator, it is possible to enhance traceability of the battery electrode.
REFERENCE SIGNS LIST
(51) 100: Collector roll 100b, 100c: Winding roll 101: Collector 103: Intermittent coating layer 120: Indicator forming means 125: Front end indicator 104a: First front end detecting means 125: Front end indicator 105a: First surface coating die controller 102a: First surface coating die 102b: Second surface coating die 103, 103a, 103b: Intermittent electrode layer 104a: First front end indicator detecting means 104b: Second front end detecting means 125: Front end indicator 127: Identification information 129: Front end indicator with identification information