IP Library Granted Patent US 8,091,505
Granted Patent B2
US 8,091,505 · App. 12/024,708 · Granted Jan 10, 2012

Secondary battery, method and device for testing the negative electrode, and method and device for producing negative electrode thereof

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Quick Facts
Patent No.
US 8,091,505
App. No.
12/024,708
Granted
Jan 10, 2012
Kind
B2
Abstract

In a method for testing a negative electrode of a secondary battery, light is irradiate to an active material layer formed on a current collector having a plurality of projections at least on one side thereof, the active material layer including first columnar bodies of active material grown obliquely from the projections. The angle is measured between the reflected light from the active material layer and a normal line parallel to the thickness direction of the current collector.

Claims (16)

1. A device for producing a negative electrode of a secondary battery, the device comprising:

an irradiation part configured to irradiate light to an active material layer formed on a current collector having a plurality of projections at least on one side thereof, the active material layer including first columnar bodies of active material grown obliquely from the projections;

a light receiving part configured to receive reflected light from the active material layer;

an operation part configured to calculate an angle between the reflected light and a normal line parallel to a thickness direction of the current collector;

a first forming part configured to form the active material layer on the current collector; and

a controller configured to feedback the angle calculated by the operation part to the first forming part, thereby adjusting an angle of growth of the first columnar bodies of the active material layer within a predetermined range, wherein:

the reflected light has a spatial distribution, and

the light receiving part is configured to detect a highest intensity of the reflected light and a position thereof.

2. A device for producing a negative electrode of a secondary battery, the device comprising:

a forming part configured to form an active material layer on a current collector;

a light irradiator configured to irradiate the active material layer formed on the current collector with light;

a light receiver configured to receive reflected light from the active material layer;

a calculator configured to calculate an angle between the reflected light and a normal line parallel to a thickness direction of the current collector; and

a controller configured to feedback-control a forming condition at the forming part based on the angle calculated by the calculator, wherein:

the reflected light has a spatial distribution, and

the angle is an angle at which the reflected light shows a highest intensity.