IP Library › Granted Patent US 11,338,388
Granted Patent B2
US 11,338,388 · App. 16/497,154 · Granted May 24, 2022

Laser keyhole welding structure of aluminum material and laser keyhole welding method

Inventors: Kazuhide Hayakawa (Tokyo, JP); Fumito Odashima (Tokyo, JP); Tatsuo Kubouchi (Tokyo, JP)
Assignee: NIPPON CHEMI-CON CORPORATION
B23K26/067B23K26/24B23K26/32
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Quick Facts
Patent No.
US 11,338,388
App. No.
16/497,154
Granted
May 24, 2022
Kind
B2
Abstract

Disclosed is a laser keyhole welding structure and a keyhole welding method of an aluminum material which stably suppress the generation of sputtering to ensure a reliable electrical connection and obtain a mechanically strong connection. To achieve this, a laser keyhole welding structure of an aluminum material is formed by welding an aluminum material element constituting an electronic component by irradiating a laser beam to the electronic component, in which a tapered portion spread angle (θ) of an upper portion of a welding nugget to be formed is 45° or less. Also disclosed is a laser keyhole welding structure of an aluminum material.

Claims (21)

1. A laser keyhole welding structure of an aluminum material for welding an aluminum material element constituting an electronic component by irradiating a laser beam to the electronic component, wherein,

an angle of divergence (θ) of a tapered portion of an upper portion of a weld nugget to be formed is 45° or less,

a ratio (I/H) between i) a difference (I) between a half value (ES) of a width of an upper surface of the welding nugget in a cross-sectional shape and a half value (H/2) of a width (H) of the welding nugget in half (G/2) at a total depth (G) of the welding nugget, and ii) the width (H) of the welding nugget is 0.27 or more,

a laser light has a beam profile composed of a center output light and a satellite output light formed around the center output light, and

the satellite output light is axially symmetrically formed about the center output light with respect to a center of the center output light.

2. The laser keyhole welding structure of the aluminum material according to claim 1 , wherein the aluminum material is a A1000 system mainly composed of A1000 alloy.

3. A laser keyhole welding method of an aluminum material for welding an aluminum material element constituting an electronic component by irradiating a laser beam to the electronic component, wherein,

a laser light has a beam profile composed of a center output light and a satellite output light formed around the center output light, and

an angle of divergence (θ) of a tapered portion of an upper portion of a weld nugget to be formed is 45° or less,

a ratio (I/H) between i) a difference (I) between a half value (ES) of a width of an upper surface of the welding nugget in a cross-sectional shape and a half value (H/2) of a width (H) of the welding nugget in half (G/2) at a total depth (G) of the welding nugget, and ii) the width (H) of the welding nugget is 0.27 or more,

the satellite output light is axially symmetrically formed about the center output light with respect to a center of the center output light, and

the satellite output light is formed in a plurality of dot shapes around the center output light.

4. The method of laser keyhole welding of aluminum material according to claim 3 , wherein,

the satellite output light is formed in a plurality of rectangular shapes around the center output light.

5. The method of laser keyhole welding of aluminum material according to claim 3 , wherein the center output light and the satellite output light are formed by an aspherical lens or a diffractive element (DOE).

6. The method of laser keyhole welding of aluminum material according to claim 3 , wherein during laser welding, a surface of a molten pool is always at least partially open so that a generated aluminum vapor is not blocked in the welding nugget.

7. A laser keyhole welding method of an aluminum material for welding an aluminum material element constituting an electronic component by irradiating a laser beam to the electronic component, wherein,

a laser light has a beam profile composed of a center output light and a satellite output light formed around the center output light,

an angle of divergence (θ) of a tapered portion of an upper portion of a weld nugget to be formed is 45° or less,

a ratio (I/H) between i) a difference (I) between a half value (ES) of a width of an upper surface of the welding nugget in a cross-sectional shape and a half value (H/2) of a width (H) of the welding nugget in half (G/2) of a total depth (G) of the welding nugget, and ii) the width (H) of the welding nugget is 0.27 or more, and

the satellite output light is radially formed around the center output light.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2019
From: HAYAKAWA, KAZUHIDE; ODASHIMA, FUMITO; KUBOUCHI, TATSUO
To: NIPPON CHEMI-CON CORPORATION
Reel/Frame 050626/0332 →
Priority Claims (1)
JP JP2017-073033 · Mar 31, 2017 · national
Continuity (1)
Related Publication 20200047282A1 · Feb 13, 2020