Method for joining wire
US-2015343548-A1 · Dec 3, 2015 · US
US10773341B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10773341-B2 |
| Application number | US-201715611020-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 1, 2017 |
| Priority date | Jun 1, 2016 |
| Publication date | Sep 15, 2020 |
| Grant date | Sep 15, 2020 |
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A welding system for welding a first elongated element and a second elongated element together by a laser beam that is emitted from a laser welding head after the ideal welding center point of the aligned first and second elongated elements has been positioned at a focal point of the laser beam that is emitted from the laser welding head.
Opening claim text (preview).
What is claimed is: 1. A welding system comprising: a laser welding head; a first fixture adapted to fix a first elongated element; a first moving mechanism upon which the first fixture is mounted and the first elongated element is moved into alignment with a second elongated element, the first moving mechanism comprising: a first moving platform that moves in a first horizontal direction; and a second moving platform mounted on the first moving platform that moves in a second horizontal direction, perpendicular to the first horizontal direction, wherein the first fixture is mounted on the second moving platform of the first moving mechanism; a second fixture adapted to fix the second elongated element; and a second moving mechanism upon which the first moving mechanism and the second fixture are mounted and the first moving mechanism and the second fixture are moved to a location at which the ideal welding center point of the aligned first elongated element and the second elongated elements is positioned at the focal point of a laser beam emitted from the laser welding head, the second moving mechanism comprising: a first moving platform that moves in the first horizontal direction; and a second moving platform that moves in the second horizontal direction, wherein the second moving platform of the second moving mechanism is mounted on a base and the first moving platform of the second moving mechanism is mounted on the second moving platform of the second moving mechanism, and wherein the first moving mechanism and the second fixture are mounted on the first moving platform of the second moving mechanism. 2. The welding system according to claim 1 : (a) further comprising a vision device, and (b) wherein the first moving mechanism moves the first elongated element fixed on the first fixture in response to the vision device until the first elongated element is aligned with the second elongated element. 3. The welding system according to claim 2 , wherein the second moving mechanism moves the aligned first and second elongated elements in response to the vision device until the ideal welding center point of the aligned first and second elongated elements is located at the focal point of the laser beam from the laser welding head. 4. The welding system according to claim 2 , further comprising a protective gas injection device that sprays a protective gas to a welding area of the first elongated element and the second elongated element, thereby protecting the first elongated element and the second elongated element from being oxidized during welding the first elongated element and the second elongated element with the laser beam. 5. The welding system according to claim 4 , wherein the protective gas injection device is turned on before turning on the laser welding head and is turned off after turning off the laser welding head. 6. The welding system according to claim 4 , further comprising a controller controlling the power of the laser beam emitted from the laser welding head and the flow of the protective gas sprayed from the protective gas injection device. 7. The welding system according to claim 6 , wherein: (a) the vision device identifies the position of the ideal welding center point of the aligned first and second elongated elements, and (b) the controller performs a closed-loop feedback control on the second moving mechanism based on the identified position of the ideal welding center point until a position error between the ideal welding center point and the focal point of the laser beam becomes zero. 8. The welding system according to claim 1 , wherein, after being aligned with each other, the first elongated element and the second elongated element have a common center axis and end faces of the first elongated element and the second elongated element abut against each other. 9. The welding system according to claim 1 , wherein the first fixture and the second fixture are adapted to fix different types of elongated elements. 10. The welding system according to claim 1 , wherein the first fixture is adapted to fix a plurality of first elongated elements at the same time and the second fixture is adapted to fix a plurality of second elongated elements at the same time. 11. The welding system according to claim 1 , wherein the first elongated element and the second elongated element each is a wire. 12. The welding system according to claim 1 , wherein at least one of the first moving mechanism and the second moving mechanism is a robot having at least two freedoms. 13. A method for welding a first elongated element to a second elongated element comprising steps of: providing a welding system comprising: (a) a laser welding head, (b) a first fixture adapted to fix a first elongated element, (c) a first moving mechanism upon which the first fixture is mounted and the first elongated element is moved into alignment with a second elongated element, the first moving mechanism comprising: a first moving platform that moves in a first horizontal direction; and a second moving platform mounted on the first moving platform that moves in a second horizontal direction, perpendicular to the first horizontal direction, wherein the first fixture is mounted on the second moving platform of the first moving mechanism, (d) a second fixture adapted to fix the second elongated element, and (e) a second moving mechanism upon which the first moving mechanism and the second fixture are mounted and the first moving mechanism and the second fixture are moved to a location at which the ideal welding center point of the aligned first elongated element and the second elongated elements is positioned at the focal point of a laser beam emitted from the laser welding head, the second moving mechanism comprising: a first moving platform that moves in the first horizontal direction; and a second moving platform that moves in the second horizontal direction, wherein the second moving platform of the second moving mechanism is mounted on a base and the first moving platform of the second moving mechanism is mounted on the second moving platform of the second moving mechanism, and wherein the first moving mechanism and the second fixture are mounted on the first moving platform of the second moving mechanism; fixing the first elongated element and the second elongated element on the first fixture and the second fixture, respectively; moving the first fixture by the first moving mechanism until the first elongated element fixed on the first fixture is aligned with the second elongated element fixed on the second fixture; moving the first moving mechanism and the second fixture by the second moving mechanism until an ideal welding center point of the aligned first and second elongated elements is accurately located at a focal point of the laser beam emitted from the laser welding head; and turning on the laser welding head to weld the first elongated element and the second elongated element together. 14. The method according to claim 13 , further comprising a step of spraying a protective gas to a welding area of the first elongated element and the second elongated element before turning on the laser welding head to protect the first elongated element and the second elongated element from being oxidized during welding.
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