Electrolytic capacitor and method for manufacturing same
US-2019304704-A1 · Oct 3, 2019 · US
US12340954B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12340954-B2 |
| Application number | US-202318224389-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 20, 2023 |
| Priority date | Jun 11, 2018 |
| Publication date | Jun 24, 2025 |
| Grant date | Jun 24, 2025 |
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Provided is an electrode body that exhibits a good cathode side capacitance, and an electrolytic capacitor provided with this electrode body. The electrode body used for a cathode of the electrolytic capacitor has a cathode foil and a carbon layer. The cathode foil is made of a valve acting metal, and an enlarged surface layer is formed on the surface thereof. The carbon layer is formed on the enlarged surface layer. The interface between the enlarged surface layer and the carbon layer has an uneven shape.
Opening claim text (preview).
The invention claimed is: 1. An electrode body used for a cathode of an electrolytic capacitor, comprising: a cathode foil made of aluminum material with a temper sign of H, and having an enlarged surface layer formed on a surface; and a carbon layer including fibrous carbon and/or carbon powder, and formed on the enlarged surface layer, wherein: an interface between the enlarged surface layer and the carbon layer has an uneven shape which is compressed and deformed, the enlarged surface layer is formed by digging a plurality of etching pits, and the carbon layer further enters into the etching pits from the interface of the uneven shape, wherein unevenness depth of the compressed and deformed uneven shape is 0.5 μm or more. 2. The electrode body according to claim 1 , wherein the carbon layer penetrates the etching pit by an average of 0.5 μm or more in a depth direction. 3. The electrode body according to claim 2 , wherein the carbon layer penetrates the etching pit by an average of 0.7 μm or more in a depth direction. 4. The electrolytic capacitor according to claim 3 , comprising: the cathode including the electrode body according to claim 3 ; an anode including a foil and a dielectric oxide film layer formed on the surface of the foil; and an electrolyte interposed between the cathode and the anode. 5. The electrolytic capacitor according to claim 2 , comprising: the cathode including the electrode body according to claim 2 ; an anode including a foil and a dielectric oxide film layer formed on the surface of the foil; and an electrolyte interposed between the cathode and the anode. 6. The electrode body according to claim 1 , wherein the carbon layer penetrates the etching pit by an average of 0.7 μm or more in a depth direction. 7. The electrolytic capacitor according to claim 1 , comprising: the cathode including the electrode body according to claim 1 ; an anode including a foil and a dielectric oxide film layer formed on the surface of the foil; and an electrolyte interposed between the cathode and the anode. 8. A method for manufacturing an electrode body used for a cathode of an electrolytic capacitor, comprising: a process of forming an enlarged surface layer on a surface of cathode foil made of aluminum material with a temper sign of H, wherein a plurality of etching pits other than the uneven shape is dug in the enlarged surface layer; a process of forming a carbon layer including fibrous carbon and/or carbon powder on the enlarged surface layer, and a process of forming an uneven shape, which is compressed and deformed, on an interface between the enlarged surface layer and the carbon layer while making the carbon layer to further enter into the etching pits from the interface of the uneven shape by pressing the cathode foil on which the carbon layer was formed, wherein unevenness depth of the compressed and deformed uneven shape is 0.5 μm or more.
Etched foil electrodes · CPC title
Processes of manufacture · CPC title
characterised by the material (H01G11/22 takes precedence) · CPC title
using a secondary device in the form of a single substantially straight conductive element · CPC title
Energy storage using capacitors · CPC title
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