18469416. ELECTRODE PLATE FOR RECHARGEABLE BATTERY, MANUFACTURING METHOD THEREOF, AND RECHARGEABLE BATTERY USING THE SAME simplified abstract (SAMSUNG SDI CO., LTD.)

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ELECTRODE PLATE FOR RECHARGEABLE BATTERY, MANUFACTURING METHOD THEREOF, AND RECHARGEABLE BATTERY USING THE SAME

Organization Name

SAMSUNG SDI CO., LTD.

Inventor(s)

Taeil Lee of Yongin-si (KR)

Won-Gi Ahn of Yongin-si (KR)

Juhye Bae of Yongin-si (KR)

Gwangwon Park of Yongin-si (KR)

Min-young Jeong of Yongin-si (KR)

ELECTRODE PLATE FOR RECHARGEABLE BATTERY, MANUFACTURING METHOD THEREOF, AND RECHARGEABLE BATTERY USING THE SAME - A simplified explanation of the abstract

This abstract first appeared for US patent application 18469416 titled 'ELECTRODE PLATE FOR RECHARGEABLE BATTERY, MANUFACTURING METHOD THEREOF, AND RECHARGEABLE BATTERY USING THE SAME

The abstract describes an electrode plate for a rechargeable battery that includes a first active material layer in a pattern on an electrode current collector, and a second active material layer covering the first layer and a portion of the current collector. This design improves the impregnation characteristic of the electrolyte by inducing bending in the width direction of the electrode plate, enhancing rate capability.

  • Electrode plate design for a rechargeable battery
  • First active material layer in a pattern on electrode current collector
  • Second active material layer covering first layer and part of current collector
  • Improves impregnation characteristic of electrolyte
  • Induces bending in width direction to enhance rate capability

Potential Applications: - Rechargeable batteries - Energy storage systems - Electric vehicles

Problems Solved: - Improved impregnation of electrolyte - Enhanced rate capability

Benefits: - Increased efficiency of rechargeable batteries - Better performance in high-rate applications

Commercial Applications: Title: Advanced Electrode Plate Design for Rechargeable Batteries This technology can be utilized in various industries such as electric vehicles, renewable energy storage systems, and portable electronic devices. The improved impregnation characteristic and rate capability make it a valuable innovation for companies looking to enhance battery performance.

Questions about Electrode Plate Design for Rechargeable Batteries: 1. How does the electrode plate design impact the impregnation of the electrolyte? The electrode plate design induces bending in the width direction, improving the impregnation characteristic of the electrolyte. 2. What are the potential applications of this technology beyond rechargeable batteries? This technology can also be applied in energy storage systems and electric vehicles, among other industries.


Original Abstract Submitted

An electrode plate includes an electrode current collector; a first active material layer in a pattern at the electrode current collector; and a second active material layer covering first active material layer and a portion of the electrode current collector. The electrode plate for a rechargeable battery may improve an impregnation characteristic of an electrolyte by inducing bending in a width direction of the electrode plate to improve rate capability.