This application is a U.S. national stage application of the PCT International Application No. PCT/JP2018/035063 filed on Sep. 21, 2018, which claims the benefit of foreign priority of Japanese patent application 2018-028065 filed on Feb. 20, 2018, the contents all of which are incorporated herein by reference.
The present invention relates to a cylindrical battery including a bottomed (=closed-end) cylindrical battery case and a lid, the battery case having an opening doubly wound and tightened to be sealed by an outer peripheral portion of the lid.
In general, a cylindrical battery is manufactured by housing a power generation element in a bottomed (=closed-end) cylindrical case, and then sealing an opening of the battery case with a lid.
The opening of the battery case is sealed by, for example, crimping an opening-side end portion of the battery case through a gasket.
Furthermore, PTL1 discloses a cylindrical battery in which an opening of a battery case is sealed by doubly winding and tightening an outer peripheral portion of a lid.
An outer peripheral surface of a battery case is covered with an insulating outer packaging label in order to prevent a short circuit between a positive electrode and a negative electrode.
In a cylindrical battery in which an opening of a battery case is doubly wound and tightened to be sealed by an outer peripheral portion of a lid, a space portion (gap) is generated between the outer peripheral surface of the battery case and the outer packaging label in a vicinity of the wound and tightened position. Therefore, the outer packaging label in a place having the space portion is subjected to an impact by a sharp product and the like from the outside, the outer packaging label may be broken. Breakage of the outer packaging label causes not only damage of the appearance but also short circuit between the positive electrode and the negative electrode.
The present disclosure has been made in view of the above-mentioned problems, and an object of the present disclosure is to provide a cylindrical battery including a cylindrical battery case and a lid, the battery case having an opening doubly wound and tightened to be sealed by an outer peripheral portion of the lid, wherein even if an outer packaging label covering the outer peripheral surface of the battery case is subjected to an impact from the outside, breakage and the like does not occur.
The cylindrical battery of the present disclosure is a cylindrical battery including a bottomed cylindrical battery case and a lid, the battery case having an opening doubly wound and tightened to be sealed by an outer peripheral portion of the lid, wherein an opening-side outer peripheral portion of the battery case has a diameter reduced inward in the radial direction, an outer peripheral surface of the battery case is covered with an insulating outer packaging label, the opening-side outer peripheral portion of the battery case is provided with a space portion surrounded by the outer peripheral surface of the battery case, the outer peripheral portion of the lid, and the outer packaging label, and the following formula (1) is satisfied in a range of 0.1 mm≤T1≤0.5 mm, where D is a diameter of an inscribed circle that is tangent to the outer peripheral surface of the battery case, the outer peripheral portion of the lid, and the outer packaging label, in a cross section perpendicular to the radial direction of the space portion, and T1 is a thickness of the battery case.
1.2×T1≤D≤2.7×T1 (1)
According to the present disclosure, in the cylindrical battery in which the opening of the battery case is doubly wound and tightened to be sealed by the outer peripheral portion of the lid, even if the outer packaging label covering the outer peripheral surface of the battery case is subjected to an impact from the outside, occurrence of breakage and the like can be prevented.
Hereinafter, an exemplary embodiment of the present invention will be described with reference to the drawings. Note here that the present invention is not limited to the following exemplary embodiment. Any appropriate modifications can be carried out in a range of the scope in which the advantageous effect of the present invention is exhibited.
As shown in
In this exemplary embodiment, the opening of battery case 10 is doubly wound and tightened to be sealed by an outer peripheral portion of lid 11, and has a so-called doubly wound and tightened structure. Such a doubly winding and tightening can be formed, for example, by winding a curled portion provided to the outer peripheral portion of lid 11 and a flange portion provided to the opening of battery case 10 together in a state in which the curled portion covers the flange portion in advance. Insulation is made by applying a sealing agent between the flange portion and the curled portion.
As shown in
As shown in
When space portion 30 is narrow, the tip end portion of coil spring 22 does not break through outer packaging label 12, but when space portion 30 is wide, the tip end portion of coil spring 22 may break through outer packaging label 12.
As described above, space portion 30 is formed by reducing the diameter of the outer peripheral portion on the opening side of battery case 10 inward in the radial direction, and by doubly winding and tightening the opening of battery case 10 with the outer peripheral portion of lid 11. Therefore, the size of space portion 30 can be controlled to some extent by devising the processing. However, since the processing includes bending, there is limitation to the size of controllable space portion 30 depending on a thickness of battery case 10.
Thus, cylindrical batteries 1 whose thickness of battery case 10 and size of space portion 30 are changed are produced to examine the relation with respect to breakage of outer packaging label 12. Note here that the size of space portion 30 is evaluated based on diameter D of inscribed circle 40 that is tangent to the outer peripheral surface of battery case 10, the outer peripheral portion of lid 11, and outer packaging label 12 in a cross section perpendicular to the radial direction of space portion 30 as shown in
Note here that thickness T1 of battery case 10 of thinner than 0.1 mm makes the product strength of the battery weak, and therefore is excluded from the evaluation. Similarly, thickness T1 of battery case 10 of larger than 0.5 mm increases the processing strength of double winding and tightening, and therefore is excluded from the evaluation.
Table 1 shows results of evaluation of the degree of breakage of outer packaging label 12 when each of the thus produced batteries 1 is mounted on battery mounting part 21 by the method shown in
Ten batteries of each battery shown in Table 1 are produced, and evaluation of whether outer packaging label 12 is broken is carried out as follows. Each battery 1 is mounted by the method shown in
Table 1 shows the evaluation results thereof, and
As shown in
That is to say, outer packaging label 12 can be prevented from being broken, in the range of 0.1 mm≤T1≤0.5 mm when T1 and D are set to satisfy the following formula (1) wherein T1 is a thickness of battery case 10 and D is a diameter of inscribed circle 40.
1.2×T1≤D≤2.7×T1 (1)
Note here that when outer packaging label 12 is broken, the positive terminal (battery case 10) and the negative electrode terminal (lid 11) are not immediately short-circuited. However, as shown in Table 1, when diameter D of inscribed circle 40 is further increased, short-circuit may occur. Therefore, in order to prevent short-circuit, it is preferable that T1 and D are set to satisfy the above formula (1).
Furthermore, thickness T2 of lid 11 has little influence on control of the size of space portion 30. Therefore, in this exemplary embodiment, thickness T2 of lid 11 is not particularly limited, but thickness T2 preferably satisfies the following formula in relation to the thickness T1 of battery case 10.
0.8T1≤T2≤1.2T1 (2)
When thickness T1 of battery case 10 and thickness T2 of lid 11 satisfy the above formula (2), a difference in the processing strength between battery case 10 and lid 11 becomes small, both components are likely to be doubly wound and tightened uniformly with high balance.
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Next, as shown in
The present invention has been described above, by way of the preferable exemplary embodiment, but such description is not limiting and, of course, various modifications are possible.
Number | Date | Country | Kind |
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JP2018-028065 | Feb 2018 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2018/035063 | 9/21/2018 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2019/163180 | 8/29/2019 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
6265096 | Tucholski | Jul 2001 | B1 |
20020032959 | Malay | Mar 2002 | A1 |
Number | Date | Country |
---|---|---|
2002-523875 | Jul 2002 | JP |
2000011733 | Mar 2000 | WO |
Entry |
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International Search Report of PCT application No. PCT/JP2018/035063 dated Dec. 25, 2018. |
Number | Date | Country | |
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20200350521 A1 | Nov 2020 | US |