About Laser welding new energy storage box
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About Laser welding new energy storage box video introduction
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6 FAQs about [Laser welding new energy storage box]
What is battery laser welding?
Battery Laser Welding for Battery Pack Manufacturing Laser welding is one of the most promising joining technologies for EV batteries and energy storage systems. It provides the speed and precision needed to make the thousands of welds that connect tabs and busbars in battery packs, modules, and cells.
What types of battery cells can be laser welded?
All types of battery cells can be laser welded, including cylindrical cells, prismatic cells, and pouch cells. Laser welding is being implemented for a wide range of electric battery applications: With more than 6kW of laser power, the welding speed can be scaled to meet short cycle time requirements.
How does laser welding work?
Laser welding is a suitable joining technique for such applications. The parts are joined through localized heating using a focused laser beam. Newly developed high brilliance infrared fiber laser sources allow small cross sections (< 30 μm) with high energy concentration so narrow and deep welds can be made with a high welding speed.
Can a laser weld a battery?
Laser welding can be optimized for minimal heat input. As a result, batteries do not suffer from excessive heating and maintain better mechanical properties. Lasers can weld dissimilar materials with varying fusion temperatures without the need for filler material. Examples include steel-copper, steel-aluminum, aluminum-copper, and steel-nickel.
Do you offer a laser welding service?
We offer a laser welding service to weld complete battery packs. This is ideal if you need to start welding while are waiting for a machine order, if you need a batch of parts welded for prototyping or preproduction, or if you need to validate laser welding in your manufacturing process.
What is laser beam welding?
Fig. 2. Paper methodolodgy. Laser beam welding is a fusion welding process, which depends on the interaction of the work piece with the laser beam and the intensity of the radiation. It can be divided into two categories determined by the outcome: conduction mode welding and deep penetration welding.