The present application relates to the technical field of battery packs, and more particularly, to a battery liquid injection structure, a battery, and a battery pack.
A top of the square battery is provided with a liquid injection device, and a top cover of the square battery is provided with a liquid injection hole. The liquid injection hole is vertically arranged in an upper surface of the square battery, that is, the liquid injection hole is vertically arranged. When the liquid injection is not required, a sealing nail is installed in the liquid injection hole, so that the sealing of the liquid injection hole is realized.
Because a wall thickness of the top cover is relatively thin, a length of the liquid injection hole is relatively short, and a contact area between the sealing nail and an inner wall of the liquid injection hole is relatively small, that is, the effective sealing area is relatively small. So, the sealing effect is relatively poor, and thus there is a risk of liquid leakage.
Based on the above, the present application provides a battery liquid injection structure, a battery, and a battery pack, which improves the sealing performance of the battery, solve the risk of the liquid leakage at the sealing position of the battery, prevent the sealing nail from inserting invertedly into the core, and improve the yield of the product.
In a first aspect, the present application provides a battery injection structure includes:
In a second aspect, the present application provides a battery including a body and a battery liquid injection structure located at a top end of the body, in which the battery liquid injection structure includes:
In a third aspect, the present application the present application provides a battery pack including the battery described above.
The present application provides a battery liquid injection structure, a battery, and a battery pack. Since a liquid injection hole of a liquid injection portion is obliquely disposed, a length of the liquid injection hole is increased. When the sealing member is sealingly inserted into the liquid injection hole, the contact area between the sealing member and the liquid injection hole is increased. This battery liquid injection structure increases the effective sealing area between the liquid injection portion and the sealing member with respect to the liquid injection portion vertically arranged in the related art, thereby improving the sealing performance and solving the risk of liquid leakage at the sealing position. Further, while ensuring the length of the sealing member, after the sealing member is inserted, the sealing member is farther away from the core, thereby preventing the sealing member from invertedly inserting into the core, and increasing the yield of the product. Finally, the liquid injection hole is obliquely arranged so as to provide a buffer for the liquid at the time of liquid injection, thereby improving the processing quality of the battery.
In the figure:
In the related art, because the wall thickness of the top cover is relatively thin, the length of the liquid injection hole is relatively short, and the contact area between the sealing nail and the inner wall of the liquid injection hole is relatively small, that is, the effective sealing area is relatively small. So, the sealing effect is relatively poor, and there is a risk of liquid leakage. Secondly, because the sealing nail is longer, the sealing nail is easy to insertedly insert into the core below the liquid injection hole, thereby resulting in poor product. Further, the liquid injection hole is vertically provided, and the liquid injection hole is not favorable for buffering the liquid because the pressure applied by the liquid injection device is higher.
As shown in
Specifically, the top cover piece 1 is provided with a liquid injection portion 11. The core of the battery is located below the liquid injection portion 11. The liquid injection portion 11 is provided with a liquid injection hole 111. The liquid injection hole 111 is obliquely arranged. The sealing member 2 is sealingly inserted into the liquid injection hole 111. Since the liquid injection hole 111 of the liquid injection section 11 is obliquely arranged, the length of the liquid injection hole 111 is increased. When the sealing member 2 is sealingly inserted into the liquid injection hole 111, the contact area between the sealing member 2 and the liquid injection hole 111 is increased. This battery liquid injection structure increases the effective sealing area between the liquid injection portion 11 and the sealing member 2 with respect to the liquid injection portion 11 vertically provided in the related art, thereby improving the sealing performance and solving the risk of liquid leakage at the sealing position. Further, while the length of the sealing member 2 is ensured, after the sealing member 2 is inserted, the sealing member 2 is further away from the core, thereby preventing the sealing member 2 from invertedly inserting into the core, and thus increasing the yield of the product. Finally, the liquid injection hole 111 is provided obliquely so as to provide a buffer for the liquid at the time of liquid injection, thereby improving the processing quality of the battery.
In embodiments of the present application, an axis of the liquid injection hole 111 is disposed obliquely with respect to an upper surface of the top cover piece 1. Since the axis of the liquid injection hole 111 of the liquid injection portion 11 is disposed obliquely with respect to the upper surface of the top cover piece 1, the length of the liquid injection hole 111 is increased. When the sealing member 2 is sealingly inserted into the liquid injection hole 111, the contact area between the sealing member 2 and the liquid injection hole 111 is increased, and the sealing performance at the liquid injection hole 111 is improved.
In embodiments of the present application, the sealing member 2 includes a sealing nail provided with a sealing portion 21. The sealing portion 21 is sealingly inserted into the liquid injection hole 111. When the sealing portion 21 of the sealing nail is sealingly inserted into the liquid injection hole 111, the contact area between the sealing portion 21 and the liquid injection hole 111 is increased. This battery liquid injection structure increases the effective sealing area between the liquid injection portion 11 and the sealing nail with respect to the liquid injection portion 11 vertically provided in the related art, thereby improving the sealing performance and solving the risk of liquid leakage at the sealing position. Further, when the length of the sealing nail is ensured, the sealing portion 21 is further away from the core after the sealing nail is inserted, thereby preventing the sealing nail from invertedly inserting into the core, and improving the yield of the product. Finally, the liquid injection hole 111 is provided obliquely so as to provide a buffer for the liquid at the time of liquid injection, thereby improving the processing quality of the battery.
In embodiments of the present application, as shown in
In embodiments of the present application, as shown in
The battery liquid injection structure further includes a fixing piece 3 mounted in the liquid injection portion 11. The fixing piece 3 is press-fitted to the sealing nail. In this way, the sealing nail is connected to the liquid injection portion 11, thereby preventing the sealing nail from falling off.
In embodiments of the present application, the liquid injection section 11 is further provided with a second sinking platform 113 located on a side of the first sinking platform 112 away from the liquid injection hole 111. An inner diameter of the second sinking platform 113 is larger than the inner diameter of the first sinking platform 112. The fixing piece 3 is embedded in the second sinking platform 113. In this embodiment, the fixing piece 3 is an aluminum piece, and the fixing piece 3 is welded to the inner wall of the second sinking platform 113. The fixing piece 3 has an area larger than an area of the connecting portion 22 of the sealing nail. When the fixing piece 3 is welded to the second sinking platform 113, the inner diameter of the second sinking platform 113 is larger than the inner diameter of the first sinking platform 112, so that the sealing nail is kept at a certain interval from the side wall of the second sinking platform 113, thereby preventing the influence on the sealing nail during the welding. In addition, at the time of liquid injection, the liquid injection port of the liquid injection device abuts against the first sinking platform 112 to prevent the liquid from falling onto the second sinking platform 113, thereby ensuring that the welding quality of the fixing piece 3 and the second sinking platform 113 meets the requirements. The top cover piece 1 of this embodiment is also made of aluminum, so that the top cover piece 1 and the fixing piece 3 are welded with each other.
In this embodiment, a height of the first sinking platform 112 is 0.5 millimeter (mm), and a height of the second sinking platform 113 is 0.5 mm.
In embodiments of the present application, an inner side of the top cover piece 1 is provided with a boss 12 through which the liquid injection hole 111 penetrates. The boss 12 increases the structural strength of the liquid injection hole 111 and the length of the liquid injection hole 111, thereby improving the sealing performance.
| Number | Date | Country | Kind |
|---|---|---|---|
| 202321468477.3 | Jun 2023 | CN | national |
| PCT/CN2024/098079 | Jun 2024 | WO | international |
This application is a Bypass Continuation Application of PCT/CN2024/098079, filed on Jun. 7, 2024, which claims priorities to International Application No. PCT/CN2024/098079 filed on Jun. 7, 2024, and Chinese Patent Application No. 202321468477.3, filed on Jun. 9, 2023, the disclosures of which are incorporated herein by reference in their entirety.
| Number | Date | Country | |
|---|---|---|---|
| Parent | PCT/CN2024/098079 | Jun 2024 | WO |
| Child | 18963753 | US |