Español

Defects and solutions that are prone to occur when laser welding square shell battery explosion-proof valves for power batteries

219
2023-09-15 14:27:20
Ver traducción

For example, the commonly used square shell battery cells for power batteries include laser welding of cover explosion-proof valves, laser welding of pole columns, and laser welding of cover plates and shells. During the process of laser welding of aluminum alloy, it is easy to generate unqualified phenomena such as explosion points, pores, welding cracks, excessive depth and width of fusion. 

Therefore, it is necessary to define the impact of unqualified items, analyze the consequences (degree of harm) of the impact, understand the mechanism of laser welding unqualified, and take effective measures to improve the quality and consistency of laser welding in the mass production stage, improve the output of the production line, and reduce welding unqualified, Reduce the cost of waste materials.

Common failures in sealing welding of battery explosion-proof valves
Explosion proof valve is a circular thin sheet of pure aluminum (1060 or 3003) with a thickness between 0.08 and 0.1 mm. When using infrared fiber laser welding, due to the high reflectivity of solid aluminum material towards infrared laser and its thin material, if the welding process is not appropriate, the explosion-proof valve is prone to overheating, perforation or explosion during the laser welding process, causing it to lose its pressure relief and explosion-proof function.

Potential failure 1: Over burning/melting through
Reason: When using infrared laser welding, due to the high reflectivity of the solid aluminum alloy surface to infrared laser, higher laser power is often used. However, the thickness of the explosion-proof valve from 0.08 to 0.1 mm is too small, making it easy to melt through.
Solution suggestion: Select appropriate welding process parameters to achieve a steep increase and slow decrease in laser power and control heat input. Adopting a waveform with a pre peak and exponential attenuation can improve the absorption rate of aluminum material to laser, while the subsequent exponential attenuation wave can prevent perforation caused by high power density.

Potential Failure 2: Burst Hole
Cause: Gas escape from the molten pool during laser welding.
Source of gas:
1. The power battery cover plate and explosion-proof valve are thin stamping parts that are prone to residual lubricating oil and cleaning fluid after processing. Under the action of high-power density laser, these liquids are easily vaporized and float up to the surface of the molten pool, causing a large amount of splashing and leaving pits on the surface of the weld, forming explosive holes.

2. The width to thickness ratio of explosion-proof valves can generally reach around 30, and during welding, it is easy to cause thermal deformation and warping due to heating, resulting in a large amount of air in the assembly gap between the explosion-proof valve and the top cover. During welding, these residual air expands and sprays out the molten pool, forming explosive holes.

Suggested solution: 
1. Thoroughly clean the cover plate and explosion-proof valve before welding; 
2) Optimize the welding process by using pre spot welding and seam welding, and prevent warping and deformation through spot welding fixation to reduce blast hole defects.

In the laser welding of power square shell batteries, welding process technicians will select appropriate laser and welding process parameters based on the customer's battery material, shape, thickness, tensile requirements, etc., including welding speed, waveform, peak value, welding head tilt angle, etc. to set reasonable welding process parameters to ensure that the final welding effect meets the requirements of the power battery manufacturer.

Source: Shangtuo Laser

Recomendaciones relacionadas
  • XTool enables pre-sale of F1 superfiber and diode laser cutting machines

    Tool has started pre-sales for the F1 Ultra, a 20 watt fiber and diode dual laser engraving machine. OEMs have stated that it is a win-win product and its so-called "flagship" model.Fiber lasers are mainly used for metal materials and usually work faster than diode lasers, but other materials have better performance when using diode lasers. F1 Ultra aims to bridge this gap by using a power of 20W ...

    2024-05-09
    Ver traducción
  • Lumiotive Launches New LiDAR Sensor LM10

    Recently, optical semiconductor developer Lumiotive, headquartered in Seattle, USA, launched a new LiDAR sensor LM10, which is its first fully produced product of light controlled metasurface (LCM) technology designed for digital beam steering.The developers stated that compared to mechanical systems, their digital beam steering method overcomes the limitations of traditional LiDAR sensors in term...

    2023-09-02
    Ver traducción
  • The LANL Laboratory in the United States has achieved a light source that generates a circularly polarized single photon stream using a quantum light emitter

    Los Alamos National Laboratory (LANL) has developed a method for a quantum light emitter that stacks two different atomically thin materials together to achieve a light source that produces a stream of circularly polarized single photons. These light sources can in turn be used for a variety of quantum information and communication applications.According to Los Alamos researcher Han Htoon, the wor...

    2023-09-02
    Ver traducción
  • Researchers at the Technion-Israel Institute of Technology have developed coherently controlled spin optical lasers based on single atomic layers

    Researchers at the Technion-Israel Institute of Technology have developed a coherently controlled spin optical laser based on a single atomic layer.This discovery was made possible by coherent spin-dependent interactions between a single atomic layer and a laterally constrained photonic spin lattice, which supports a high-Q spin valley through Rashaba-type spin splitting of photons of bound states...

    2023-09-12
    Ver traducción
  • Vast's Haven-1 program has become the world's first commercial space station equipped with SpaceX Starlink lasers

    Vast's Haven-1 program will become the world's first commercial space station, equipped with SpaceX's Starlink laser terminal, providing connections to its crew users, internal payload racks, external cameras, and instruments at speeds of gigabits per second and low latency.Max Haot, CEO of Vast, said: "If you need to provide high-speed, low latency, and continuous Internet connection on the orbit...

    2024-04-10
    Ver traducción