The present disclosure claims priority to Chinese Patent Application No. 202323604849. 3, filed on Dec. 27, 2023, the entire disclosure of which is hereby incorporated by reference in its entirety.
The present disclosure relates to the technology field of batteries, and in particular, to a cylindrical battery.
With rapid development of new energy vehicles, the industry has higher and higher requirements on the energy density, safety and low cost of the battery.
In related technologies, a cylindrical battery is formed by stacking positive electrode sheets, negative electrode sheets and diaphragms together, and then wounding them into a roll core by means of a winding device, and then assembling the roll core into a cylindrical housing.
In related technologies, due to the requirement of starting space of the roll core, a lot of space in the center of the roll core is wasted, resulting in a low volume utilization rate of the battery.
The present disclosure provides a cylindrical battery including a plurality of positive electrode sheets and a plurality of negative electrode sheets. The plurality of positive electrode sheets and the plurality of negative electrode sheets are alternately stacked along a height direction of the cylindrical battery, with a diaphragm provided between every two adjacent positive electrode sheet and negative electrode sheet. The cylindrical battery further includes a positive electrode current collecting column. The positive electrode current collecting column penetrates the plurality of positive electrode sheets, the plurality of negative electrode sheets and the plurality of diaphragms along an axial direction of the cylindrical battery. The positive electrode sheets are electrically coupled to the positive electrode current collecting column. The positive electrode current collecting column is electrically coupled to a top cover. The negative electrode sheets are electrically coupled to a housing.
In related technologies, a cylindrical battery is formed by stacking positive electrode sheets, negative electrode sheets and diaphragms together, and then wounding them into a roll core by means of a winding device, and then assembling the roll core into a cylindrical housing. Due to the requirement of starting space of the roll core, a lot of space in the central of the roll core is wasted, resulting in a low volume utilization rate of the battery. At the same time, the positive electrode tabs are welded to a collecting column, and the negative electrode tabs are welded to another collecting column, resulting in low assembly efficiency. At the same time, there are welding debris and dust, leading to a large self-discharge and even safety accidents such as an internal short circuit.
Therefore, as shown in
It should be noted that the receiving groove 101 in this embodiment is similar to the wasted central space in the roll core in related technologies.
In some embodiments, in order to make reasonable use of the space of the receiving groove 101 and reduce the space waste, the cylindrical battery 100 further includes negative electrode tab portions 120, a positive electrode current collecting column 3, and positive electrode tab portions 110. The negative electrode tab portion 120 is provided on an outer peripheral edge of the negative electrode sheet 12 and is in contact with an inner wall of the housing 2. The positive electrode current collecting column 3 is provided in the receiving groove 101. The positive electrode tab portion 110 is provided on an inner circumferential wall of the through hole 10 on the positive electrode sheet 11 and is in contact with an outer circumferential wall of the positive electrode current collecting column 3. The top cover 4 is provided at an open end of the housing 2 and is connected to the positive electrode current collecting column 3.
During a process of forming the cylindrical battery 100, firstly, forming the negative electrode tab portion 120 on the outer peripheral edge of the negative electrode sheet 12, and forming the positive electrode tab portion 110 on an inner circumferential wall of the through hole 10 on the positive electrode sheet 11; then, replacing the method of winding and forming a roll core in related technology, with the method of stacking and forming the battery cell 1 in the present disclosure; then, making the negative electrode tab portion 120 be in contact with the inner wall of the housing 2, thereby forming a negative electrode of a battery via the housing 2; adding the positive electrode current collecting column 3 into the receiving groove 101 of the battery cell 1 formed by stacking the through holes 10 of the positive electrode sheets 11, the through holes 10 of the negative electrode sheets 12 and the through holes 10 of the diaphragms 13; making the positive electrode tab portion 110 be in contact with the positive electrode current collecting column 3, and making the positive electrode current collecting column 3 be connected to the top cover 4, thereby forming a positive electrode of the battery. In this way, the space of the receiving groove 101 is reasonably and fully utilized, so that the waste of the inner space of the housing 2 is avoided, and the energy density of the battery is improved. During assembly, the negative electrode tab portion 120 is kept in contact with the housing 2, and the positive electrode tab portion 110 is kept in contact with the positive electrode current collecting column 3, so that assembly efficiency is higher, without welding connection, and the safety of the cylindrical battery 100 is greatly improved.
Specifically, as shown in
As shown in
In order to facilitate the stacking of the positive electrode sheets 11, the diaphragms 13 and the negative electrode sheets 12, a diameter of the through hole 10 on the positive electrode sheet 11 is smaller than that of the through hole 10 on the negative electrode sheet 12, a diameter of the through hole 10 on the positive electrode sheet 11 is also smaller than that of the through hole 10 on the diaphragm 13, so as to ensure that the bent positive electrode tab 111 can smoothly pass through the through hole 10 on the negative electrode sheet 12 and the through hole 10 on the diaphragm 13 during a stacking process, so as to facilitate assembly. At the same time, a gap exists between the through hole 10 on the negative electrode sheet 12 and the positive electrode current collecting column 3, thereby avoiding interference between the two, and ensuring the stability of the cylindrical battery 100.
In this embodiment, as shown in
In the cylinder battery provided in the present disclosure, the battery cell is formed by stacking the positive electrode sheet, the diaphragm, the negative electrode sheet, and the diaphragm in sequence. The positive electrode current collecting column passes through the battery cell along the axis of the battery cell and is electrically coupled to the positive electrode sheets. The positive electrode current collecting column is further electrically coupled to the top cover. The negative electrode sheets are electrically coupled to the housing, so that a wasted central space in the battery cell in related technologies is filled with the positive electrode current collecting column. Furthermore, all the stacked positive electrode sheets are connected to the positive electrode current collecting column, and are led out by means of the connection between the positive electrode current collecting column and the top cover, so as to form a positive electrode of a battery; all the stacked negative electrode sheets are led out through the housing, so as to form a negative electrode of the battery, thereby avoiding wasting the central space of the battery cell, and greatly improving the utilization rate of the internal space of the battery.
| Number | Date | Country | Kind |
|---|---|---|---|
| 202323604849.3 | Dec 2023 | CN | national |