The present disclosure relates to the field of batteries, and in particular, to a battery and a battery pack having same.
In the related art, a plurality of tabs of a pole core are converged and then soldered together. The position of the solder joint affects the length of the tab free region. When the pole core is parallel to the cover plate before convergence or after the pole core is unfolded, if the spacing between the pole core and the mid-point position of the solder joint is designed too small, the tab is easily pulled after bending, which causes the tab to be torn, resulting in that some electrode plates cannot output electricity, leading to capacity loss of the cell.
If the spacing between the pole core and the mid-point position of the solder joint is designed too large, the movable length of the tab is increased, and a larger bending space is required in order to accommodate the tab. However, the larger bending space leads to capacity loss of the cell. If the bending space is not increased, the tab will be compressed, which is likely to cause the positive and negative electrodes to come into contact with each other, endangering the safety of the battery.
The present disclosure aims to resolve at least one of the technical problems existing in the prior art. In view of this, an objective of the present disclosure is to propose a battery, which can prevent the tab from being pulled after bending, can avoid the capacity loss of the cell, and can also prevent the tab from being compressed, thereby improving the safety of the battery.
The present disclosure further proposes a battery pack including the above-mentioned battery.
The battery according to the present disclosure includes a cell, where the cell has at least one pole core, each pole core has a plurality of tabs, the plurality of tabs are converged and then soldered to a cover plate of the battery to form a solder j oint, and when the pole core is parallel to the cover plate before convergence or after the pole core is unfolded, a spacing between the pole core and the solder joint is determined by a thickness of the pole core, a tab bending angle of the tab, and a width of a tab protection plate at the solder joint.
The battery according to the present disclosure offers a more desirable spacing between the pole core and the solder joint, which can prevent the tab from being pulled after bending, and can prevent the tab from being torn, so as to avoid capacity loss of the cell; and also offers a desirable movable length of the tab and a desirable bending space, so as to avoid capacity loss of the cell, and prevent the tab from being compressed, thereby improving the safety of the battery in use.
In some examples of the present disclosure, the spacing between the pole core and the solder joint is L1, the thickness of the pole core is D, the width of the tab protection plate is d1, the tab bending angle of the tab is A, and the following relational expression is satisfied:
In some examples of the present disclosure, 45°≤A≤135°.
In some examples of the present disclosure, when the pole core is parallel to the cover plate before convergence or after the pole core is unfolded, a tab free region is formed between the pole core and the solder joint, and a length of the tab free region is determined by a tab lead-out manner of the pole core.
In some examples of the present disclosure, the pole core is constructed as a wound pole core, and when the tab extends out from the pole core in a tab semi-lead-out manner, the thickness of the pole core is D, a length by which the tab extends out from the pole core in an extension direction of the tab is L2, the length of the tab free region is L3, and the following relational expression is satisfied: 0.25D<L3<L2.
In some examples of the present disclosure, when the tab extends out from the pole core in a tab fully-lead-out manner, the thickness of the pole core is D, a length by which the tab extends out from the pole core in an extension direction of the tab is L2, the length of the tab free region is L3, and the following relational expression is satisfied: 0.5D<L3<L2.
In some examples of the present disclosure, the plurality of tabs converge and form a tab converging and lead-out position, and in a thickness direction of the pole core, the tab converging and lead-out position includes a zero lead-out position, an intermediate lead-out position, and a biased lead-out position; and the tab converging and lead-out position is located at the zero lead-out position or the biased lead-out position.
In some examples of the present disclosure, the plurality of tabs converge and form a tab converging and lead-out position, and in a thickness direction of the pole core, the tab converging and lead-out position includes a zero lead-out position, an intermediate lead-out position, and a biased lead-out position; and the tab converging and lead-out position is located at the intermediate lead-out position.
In some examples of the present disclosure, the width of the tab protection plate is 8-12 mm.
In some examples of the present disclosure, the solder joint is disposed in a solder joint region of the tab, the solder joint region includes an ultrasonic soldering region and a laser soldering region, and the laser soldering region is located inside the ultrasonic soldering region.
In some examples of the present disclosure, a width of the ultrasonic soldering region in the extension direction of the tab is 4-8 mm.
The battery pack according to the present disclosure includes the above-mentioned battery.
The battery pack according to the present disclosure is provided with the battery in the above embodiments. Because the battery pack according to the present disclosure is provided with the battery in the above embodiments, the battery pack has safety.
The additional aspects and advantages of the present disclosure will be set forth in part in the description below, parts of which will become apparent from the description below, or will be understood by the practice of the present disclosure.
Detail description of the embodiments of present disclosure will be made in the following, and examples thereof are illustrated in the drawings, throughout which identical or similar elements or elements of identical or similar functions are represented with identical or similar reference numerals. The embodiments that are described with reference to the accompanying drawings are exemplary, and are only used to interpret the present disclosure, instead limiting the present disclosure.
A battery 100 according to the embodiments of the present disclosure will be described below with reference to
As shown in
The tab protection plate is provided at the solder joint 40. Each pole core 20 has a plurality of separators 202. A spacing between an end portion of the separator 202 opposite to the solder joint 40 and the solder joint 40 is determined by the thickness of the pole core 20, the tab bending angle of the tab 201, and the width of the tab protection plate in the extension direction of the tab 201. It should be noted that the thickness direction of the pole core 20 refers to a thickness direction of the pole core 20 in
By determining the spacing between the pole core 20 and the solder joint 40 according to the thickness of the pole core 20, the tab bending angle of the tab 201, and the width of the tab protection plate at the solder joint 40 in the extension direction of the tab 201, the present disclosure offers a more desirable spacing between the pole core 20 and the solder joint 40, which can prevent the tab 201 from being pulled after bending, and can prevent the tab 201 from being torn, so as to avoid the problem that some electrode plates cannot output electricity, and avoid capacity loss of the cell 10. The present disclosure also offers a desirable movable length of the tab 201 and a desirable bending space for accommodating the tab 201, so as to avoid capacity loss of the cell 10, and prevent the tab 201 from being compressed to cause the positive and negative electrodes of the cell 10 to come into contact with each other, prevent a short circuit of the cell 10, thereby improving the safety of the battery 100 in use.
In some embodiments of the present disclosure, the spacing between the pole core 20 and the solder joint 40 is L1, the thickness of the pole core 20 is D, the width of the tab protection plate is d1, the tab bending angle of the tab 201 is A, and the following relational expression is satisfied: L1=D/2*tanA+d1/2. The tab bending angle A of the tab 201 satisfies the following relational expression: 45°≤A≤135°. The spacing between an end portion of the separator 202 of the pole core 20 opposite to the solder joint 40 and the solder joint 40 is L1. By such a setting, the present disclosure can further prevent the tab 201 from being pulled after bending, and can prevent the tab 201 from being torn, so as to further avoid the problem that some electrode plates cannot output electricity, and further avoid capacity loss of the cell 10. The present disclosure also offers a more desirable movable length of the tab 201 and a more desirable bending space for accommodating the tab 201, so as to further avoid capacity loss of the cell 10, further prevent the tab 201 from being compressed to cause the positive and negative electrodes of the cell 10 to come into contact with each other, and better prevent a short circuit of the cell 10, thereby improving the safety of the battery 100 in use.
In some embodiments of the present disclosure, the width of the tab protection plate may be set to 8-12 mm. By such a setting, the present disclosure offers a desirable width of the tab protection plate, which can protect the tab 201 better, can further prevent the tab 201 from being pulled after bending, and can further prevent the tab 201 from being torn, so as to further avoid the problem that some electrode plates cannot output electricity, and further avoid capacity loss of the cell 10. The present disclosure also offers a more desirable movable length of the tab 201 and a more desirable bending space for accommodating the tab 201, so as to further avoid capacity loss of the cell 10, further prevent the tab 201 from being compressed to cause the positive and negative electrodes of the cell 10 to come into contact with each other, and better prevent a short circuit of the cell 10, thereby improving the safety of the battery 100 in use.
In some embodiments of the present disclosure, when the pole core 20 is parallel to the cover plate 30 before convergence or after the pole core 20 is unfolded, which may be understood as that when the pole core 20 is parallel to the cover plate 30 before convergence or when the pole core 20 is parallel to the cover plate 30 after being unfolded, as shown in
According to an embodiment of the present disclosure, as shown in
In some embodiments of the present disclosure, the plurality of tabs 201 converge and form a tab converging and lead-out position, and in a thickness direction of the pole core 20, the tab converging and lead-out position may include a zero lead-out position 50, an intermediate lead-out position 60, and a biased lead-out position 70. As shown in
According to another embodiment of the present disclosure, as shown in
Further, the plurality of tabs 201 converge and form a tab converging and lead-out position, and in a thickness direction of the pole core 20, the tab converging and lead-out position includes a zero lead-out position 50, an intermediate lead-out position 60, and a biased lead-out position 70. As shown in
In some embodiments of the present disclosure, the solder joint 40 may be disposed in a solder joint region of the tab 201, the solder joint region may include an ultrasonic soldering region and a laser soldering region, and the laser soldering region is located inside the ultrasonic soldering region. That is, the laser soldering region overlaps with the ultrasonic soldering region. The plurality of tabs 201 are first soldered together in the ultrasonic soldering region by ultrasonic soldering, and the plurality of tabs 201 are converged. Then the converged tabs 201 are soldered on the cover plate 30 in the laser soldering region by laser soldering. By means of such a setting, the plurality of tabs 201 can be reliably soldered to the cover plate 30, and can prevent the plurality of tabs 201 from being separated from the cover plate 30, thereby ensuring the working reliability of the battery 100.
Further, a width of the ultrasonic soldering region in the extension direction of the tab 201 is 4-8 mm. Preferably, the width of the ultrasonic soldering region is set to 6 mm. Such a setting offers a desirable width of the ultrasonic soldering region can reliably solder together the plurality of tabs 201, and can also ensure the soldering quality. It should be noted that the spacing between the pole core 20 and the solder joint refers to a spacing from the pole core 20 to the center of the laser soldering joint.
The battery pack according to the embodiments of the present disclosure includes the battery 100 of the above embodiments, and disposing the battery 100 in the battery pack offers a more desirable spacing between the pole core 20 and the solder joint 40, which can prevent the tab 201 from being pulled after bending, and can prevent the tab 201 from being torn, so as to avoid capacity loss of the cell 10; and also offers a desirable movable length of the tab 201 and a desirable bending space, so as to avoid capacity loss of the cell 10, and prevent the tab 201 from being compressed, thereby improving the safety of the battery 100 in use.
In the description of this specification, the description of the reference terms such as “an embodiment”, “some embodiments”, “exemplary embodiments”, “example”, “specific example”, or “some examples” means that the specific features, structures, materials or characteristics described with reference to the embodiment or example are included in at least one embodiment or example of the present disclosure. In this specification, exemplary descriptions of the foregoing terms do not necessarily refer to the same embodiment or example. In addition, the described specific features, structures, materials, or characteristics may be combined in a proper manner in any one or more of the embodiments or examples.
Although the embodiments of the present disclosure have been shown and described, a person skilled in the art can understand that changes, alternatives, and modifications can be made in the embodiments without departing from the principle and the purpose of the present disclosure, and the scope of the present disclosure is as defined by the claims and their equivalents.
Number | Date | Country | Kind |
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202010900497.8 | Aug 2020 | CN | national |
The present disclosure is a bypass continuation application of PCT International Application No. PCT/CN2021/114101, filed on Aug. 23, 2021, which claims priority to and benefits of Chinese Patent Application No. 202010900497.8, entitled “BATTERY AND BATTERY PACK” and filed by BYD Co., Ltd. on Aug. 31, 2020, which are incorporated herein by reference in their entireties.
Number | Date | Country | |
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Parent | PCT/CN2021/114101 | Aug 2021 | WO |
Child | 18176145 | US |