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High speed pulsed laser cutting of LiCoO2 Li-ion battery electrodes

Semantic Scholar extracted view of "High speed pulsed laser cutting of LiCoO2 Li-ion battery electrodes" by A. Lutey et al. DOI: 10.1016/J.OPTLASTEC.2017.03.022 Corpus ID: 126270426 High speed pulsed laser cutting of LiCoO2 Li-ion battery electrodes @article ...

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Current and future lithium-ion battery manufacturing

Investigation of physical phenomena and cutting efficiency for laser cutting on anode for Li-ion batteries Appl. Sci., 8 (2018), p. 266 Crossref View in Scopus Google Scholar Lee and Ahn, 2017 D. Lee, S. Ahn Investigation of laser cutting width of LiCoO2 coated, 7 ...

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Laser cutting of lithium iron phosphate battery electrodes: Characterization of process efficiency …

Laser cutting of Li-ion battery electrodes represents an alternative to mechanical blanking that avoids complications associated with tool wear and allows assembly of different cell geometries with a single device. In this study, laser cutting of LiCoO 2 Li-ion5 m / s ...

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Analysis of laser cutting of lithium-ion power battery pole piece

In this work we report a lithium ion battery characterized by very high rate capability, environmental compatibility, and potentially low cost. The battery is based on a lithium alloying, Sn–C ...

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SNU Open Repository and Archive: Laser Cutting of Cathode Electrode(LiFePO4) of Li-Ion Battery …

The purpose of this study was to find suitable laser sources for the electrode cutting process using laser that had been studied for a long time, and to compare and prove the results after testing with two types of laser. The positive electrode of a lithium-ion battery

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Revolutionizing Lithium Battery Production: The Power of Laser …

The meticulousness of electrode cleaning is paramount in lithium battery production. The process demands clean edges, minimal heat-affected zones (≤100μm), no residual materials, and precise cleaning dimensions, all achieved within specific time frames for …

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Quality and Productivity Considerations for Laser Cutting of LiFePO4 and LiNiMnCoO2 Battery …

Laser cutting of lithium-ion battery electrodes has been shown to be a viable alternative to mechanical blanking for some specific electrode types, yielding similar cut quality and throughput but ...

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Energies | Free Full-Text | Laser Cutting …

Lithium-ion batteries are actively used for many applications due to many advantages. Although electrodes are important during laser cutting, most laser cutting studies use commercially available …

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Laser cutting of lithium iron phosphate battery electrodes: …

Laser cutting of lithium-ion battery electrodes has been shown to be a viable alternative to mechanical blanking for some specific electrode types, yielding similar cut quality and throughput but ...

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Processing of Advanced Battery Materials—Laser …

However, remote laser cutting is not state of the art in a conventional lithium ion battery production line, even though it is a highly reproducible, wear-free and flexible cutting method.

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High speed remote laser cutting of electrodes for lithium-ion …

Laser cutting allows an improved quality of cut surface and cutting speed during lithium-ion battery manufacturing processes. The advantages of laser …

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Laser Processing | Laser Cutting Machine | Manz AG

Manz offers fast, high-precision laser cutting hard, brittle, flexible and plate -shaped materials. Laser Cutting of Flexible Materials Flexible materials include flexible printed circuit boards (FPC), textiles, leather, FRP fabrics, and electrode foils and separators used in the production of lithium-ion batteries. ...

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Analysis of laser cutting of lithium-ion power battery pole piece

DENG Yong-li, LI Qing, HUANG Xue-jie. Analysis of laser cutting of lithium-ion power battery pole piece[J]. Chinese Optics, 2018, 11(6): 974-982. doi: 10.3788/CO.20181106.0974 DENG Yong-li, LI Qing, HUANG Xue-jie. Analysis of laser cutting of lithium-ion power ...

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Overview of Laser Welding Lithium Ion Batteries

Features of Lithium Ion Battery Laser Welding Laser welding lithium ion batteries is a highly advanced and efficient welding method. It not only improves production efficiency but also ensures product quality and stability. 1. Efficiency: Compared to traditional welding methods, laser welding of lithium-ion batteries offers higher efficiency.

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Battery production

Modern laser technology using beam deflection units is again proving to be the best solution for efficient production, especially for cutting foil rolls in battery production. THE LITHIUM-ION BATTERY IS A COMPLEX CREATION There are currently three cell

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Laser cutting of lithium iron phosphate battery electrodes: …

DOI: 10.1016/J.OPTLASTEC.2014.07.023 Corpus ID: 121953780 Laser cutting of lithium iron phosphate battery electrodes: Characterization of process efficiency and quality @article{Lutey2015LaserCO, title={Laser cutting of lithium iron phosphate battery electrodes: Characterization of process efficiency and quality}, author={Adrian Hugh …

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Lithium iron phosphate battery electrode integrity following high speed pulsed laser cutting

Laser exposures are performed on lithium iron phosphate battery electrodes at $$1,hbox {m}/hbox {s}$$1m/s with process parameters based on those leading to the smallest heat affected zone for low power laser exposure at $$100,hbox {mm}/hbox {s}$$100mm/s. Scanning electron microscopy and Raman analysis are …

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Process strategies for laser cutting of electrodes in lithium-ion battery …

The growing competition in electric mobility is leading to an increased demand for inexpensive, high-performance lithium-ion batteries. In order to meet both objectives, optimization of the entire production chain is indispensable. In …

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High speed pulsed laser cutting of anode material for a Li-ion battery …

The bursts of picosecond laser pulses have nanosecond-level short interval delay. These bursts contain a variable number of sub-pulses, which are used for laser cutting of copper current collector and graphite anode material for Li-ion battery anode. The influences of 2–10 sub-pulses on kerf edges were studied and were compared with …

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High speed pulsed laser cutting of LiCoO2 Li-ion battery electrodes

Laser cutting of Li-ion battery electrodes represents an alternative to mechanical blanking that avoids complications associated with tool wear and allows assembly of different cell geometries with a single device. In this study, laser cutting of LiCoO 2 Li-ion battery electrodes is performed at up to 5 m / s with a 1064 nm …

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Wilhelm Pfleging* A review of laser electrode processing for development and manufacturing of lithium-ion batteries …

W. Pfleging: Laser electrode processing for lithium-ion batteries 3 processing of battery materials will be presented, and their impact on battery performance will be discussed.

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Applied Sciences | Free Full-Text | Investigation of Laser Cutting Width of LiCoO2 Coated Aluminum for Lithium-Ion Batteries …

Lithium-ion batteries are widely used for many applications such as portable electronic devices and Electric Vehicles, because they have lighter weight, higher energy density, higher power density, and a higher energy-to-weight ratio than other types of batteries. Conventional contact-based cutting technology may be inefficient whenever …

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High speed laser cutting of ultrathin metal foils for battery cell production | Journal of Laser …

Laser-based manufacturing has become a key enabling technology in the production of batteries and battery cells for the e-mobility field. Several applications, in fact, have already been industrialized, such as laser …

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Process strategies for laser cutting of electrodes in lithium-ion …

In this work, the laser cutting of electrodes as one of the core processes in large-format battery production is addressed. A comprehensive literature review on the …

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Process strategies for laser cutting of electrodes in lithium-ion battery …

The growing competition in electric mobility is leading to an increased demand for inexpensive, high-performance lithium-ion batteries. In order to meet both objectives, optimization of the entire production chain is indispensable. In this work, the laser cutting of electrodes as one of the core processes in large-format battery …

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Laser cutting of pure lithium metal anodes

Laser cutting in lithium ion battery production Remote Laser cutting of conventional lithium-ion battery foil (NMC, NCA, LFP cathodes or graphite anodes) is a method widely discussed in the scientific landscape for separation of electrodes [Lee et al., However, to ...

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[논문]Laser Cutting in the Production of Lithium Ion Cells

Due to the current limiting factor of the energy storage alternative electrical drive (e-drive) concepts are still under development and improved battery production techniques are needed. Different research groups are investigating the influence of several production processes on the quality of the produced lithium ion battery cell. One investigated …

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