Assembling method of square winding type lithium ion battery and lithium ion battery

A lithium-ion battery and assembly method technology, which is applied to secondary batteries, secondary battery manufacturing, battery pack components, etc., can solve the problems of high proportion of blank space, low production efficiency, and high process loss, etc., and achieve improved battery performance. Increased energy density, effective use of space, and improved battery energy

Inactive Publication Date: 2019-05-28
SHANDONG FOREVER NEW ENERGY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The traditional full tab solution: no need to die-cut the uncoated current collector, and the welding process is simple, but because the positive or negative electrode is welded to the bus bar through ultrasonic welding, the welding area is large, and when welding, The misalignment between layers results in a high ratio of positive and negative coating blanks, so the effective volume of the core in the single casing is less. The energy density of the full-tab solution of the same size is 5% lower than that of the multi-tab solution. ~15%; when the capacity of a single cell is increased, multiple winding cores need to be connected in parallel, and the parallel assembly process of multiple cells is difficult to realize, and the effective volume of the winding core is less
Traditional multi-tab solution: Due to the die-cutting of the uncoated current collector part of the pole piece, one more process is required; and the pole piece after die-cutting is in the winding process, which requires high requirements on the winding machine and low production efficiency ; There are many blank design of the current collector, resulting in a lot of process loss, which has a certain impact on improving the compaction of the pole piece
[0004] Therefore, it is desired to provide an assembly method of a square winding lithium-ion battery, which can alleviate the problems of low energy density of the battery in the existing all-tab design scheme and difficult assembly when designing multi-winding cores in parallel.

Method used

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  • Assembling method of square winding type lithium ion battery and lithium ion battery
  • Assembling method of square winding type lithium ion battery and lithium ion battery
  • Assembling method of square winding type lithium ion battery and lithium ion battery

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0120] Embodiment 1 (single winding core lithium-ion battery assembly process)

[0121] A method for assembling a square wound lithium-ion battery, comprising the following steps:

[0122] (1) Core shaping: The rolled core is first heat-pressed by a hot press, the temperature is controlled at 80°C, the time is controlled at 60s, and the pressure of the core is 5MPa; then it is cold-pressed with a cold press, and the temperature is controlled at 20°C, the time is controlled at 60s, and the core pressure is 0.5MPa; the core after shaping is as follows figure 1 shown;

[0123] (2) Knead flat: Use a super-smooth kneading machine to knead the positive and negative blank areas of the winding core flat, kneading is to knead all the blank areas flat, and the kneading depth is 2mm; the effect after kneading like figure 2 shown;

[0124] (3) Welding: Weld the positive bus bar and the positive cover plate together, weld the negative bus bar and the negative cover plate together, and...

Embodiment 2

[0127] Embodiment 2 (assembly process of single winding core lithium ion battery)

[0128] A method for assembling a square wound lithium-ion battery, the difference from Example 1 is:

[0129] (1) Core shaping: The rolled core is first heat-pressed by a hot press, the temperature is controlled at 100°C, the time is controlled at 120s, and the pressure of the core is 10MPa; then it is cold-pressed with a cold press, and the temperature is controlled at 30°C, the time is controlled at 100s, and the winding core pressure is 1MPa;

[0130](2) Flattening: use mechanical vibration and flattening equipment to flatten the positive and negative blank areas of the winding core. Kneading is to flatten part of the blank area. The white area, the kneading depth is 4mm; the effect after kneading is as follows Figure 4 shown;

[0131] (3) Welding: Weld the positive bus bar and the positive cover plate together, weld the negative bus bar and the negative cover plate together, and then la...

Embodiment 3

[0132] Embodiment 3 (single winding core lithium-ion battery assembly process)

[0133] A method for assembling a square wound lithium-ion battery, the difference from Example 1 is:

[0134] (1) Core shaping: The rolled core is first heat-pressed by a hot press, the temperature is controlled at 70°C, the time is controlled at 30s, and the pressure of the core is 0.2MPa; then it is cold-pressed with a cold press and the temperature is controlled. At 25°C, the time is controlled at 30s, and the winding core pressure is 0.1MPa;

[0135] (2) Kneading: use an ultrasonic kneading machine to knead the positive and negative blank areas of the winding core. Kneading is to knead part of the blank area, and the kneading area and the blank area are set alternately. The kneading depth is 1mm; the effect after kneading is as follows Image 6 shown;

[0136] (3) Welding: Weld the positive bus bar and the positive cover plate together, weld the negative bus bar and the negative cover plate...

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Abstract

The invention belongs to the technical field of battery assembly, and relates to an assembling method of a square winding type lithium ion battery and the lithium ion battery. The assembling method ofthe lithium ion battery comprises the following steps of: shaping a roll core in at least one hot pressing and / or cold pressing manner; making a positive electrode blank area and a negative electrodeblank area at the two ends of the roll core respectively; flattening at least one part of the positive electrode blank area and the negative electrode blank area of the shaped roll core to respectively form a positive electrode flattening area and a negative electrode flattening area; respectively welding the positive electrode flattening region and the negative electrode flattening region with the positive electrode busbar and the negative electrode busbar in a laser welding manner; and putting into a shell to obtain the square winding type lithium ion battery. The battery energy density ofthe square winding full-tab design is improved, the problems of small effective volume proportion of the winding cores, low battery energy density, difficulty in parallel assembly of multiple windingcores and the like in the traditional assembly process are solved, and the process is simple, feasible, efficient, controllable and low in process loss.

Description

technical field [0001] The invention belongs to the technical field of battery assembly, and in particular relates to an assembly method of a square wound lithium-ion battery and the lithium-ion battery. Background technique [0002] Lithium batteries have been widely used in new energy vehicles, energy storage and other fields due to their advantages such as high voltage, large specific energy, long charge and discharge life, stable discharge performance, low self-discharge rate and no pollution. With the development of the market, especially the rapid development of new energy vehicles, the needs of the industry, and the guidance of national policies, the requirements for the rate performance and energy density of power lithium-ion batteries are getting higher and higher. According to "Made in China 2025", the development plan of power batteries is clarified: in 2020, the battery energy density will reach 300Wh / kg; in 2025, the battery energy density will reach 400Wh / kg; i...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01M10/0587H01M10/04H01M2/26H01M50/538
CPCY02E60/10Y02P70/50
Inventor 王化胜鲁剑
Owner SHANDONG FOREVER NEW ENERGY
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