Friction stir welding using a pcbn-based tool
US-2024116131-A1 · Apr 11, 2024 · US
US10350702B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10350702-B2 |
| Application number | US-201414903027-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 9, 2014 |
| Priority date | Jul 9, 2013 |
| Publication date | Jul 16, 2019 |
| Grant date | Jul 16, 2019 |
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Disclosed is a method of welding dissimilar metals, including: preparing a dissimilar metal bus bar composed of a plate-shaped first member made of a first metal and a plate-shaped second member made of a second metal disposed under the first member; folding one side of the dissimilar metal bus bar so that a portion of the second member is located on a portion of the first member; welding a lead made of the first metal on the first member; and welding a lead made of the second metal to the second member located on the portion of the first member, thus solving cracking or corrosion problems of a conventional welding process and also welding an over-lay clad metal with leads, thereby generating economic benefits and increasing the convenience of the welding process.
Opening claim text (preview).
The invention claimed is: 1. A method of welding dissimilar metals, comprising: preparing a dissimilar metal bus bar comprising a plate-shaped first member made of a first metal and a plate-shaped second member made of a second metal disposed under the first member; folding one side of the dissimilar metal bus bar so that a portion of the second member is located on a portion of the first member; welding a lead made of the first metal on the first member; and welding a lead made of the second metal to the second member located on the portion of the first member, wherein the first metal is copper, and the second metal is aluminum, and wherein the welding is performed using laser welding, and the laser welding is performed at a welding rate of 80˜120 mm/s using a continuous wave (CW) laser having a laser energy density of 300˜500 kJ/cm 2 and an optical system. 2. The method of claim 1 , wherein the dissimilar metal bus bar comprises a clad metal. 3. The method of claim 2 , wherein the clad metal is an over-lay clad metal. 4. The method of claim 1 , wherein the CW laser has a modulation frequency of 8 Hz˜5 kHz, and is oscillated at 30˜90% of the modulation frequency. 5. A dissimilar metal bus bar comprising a plate-shaped first member made of a first metal and a plate-shaped second member made of a second metal disposed under the first member, wherein the dissimilar metal bus bar includes a folded portion formed by folding one side of the dissimilar metal bus bar so that a portion of the second member is located on a portion of the first member, wherein a lead made of the first metal is welded on the first member, and a lead made of the second metal is welded to the second member, wherein the first metal is copper, and the second metal is aluminum, and wherein the welding is performed using laser welding, and the laser welding is performed at a welding rate of 80˜120 mm/s using a continuous wave (CW) laser having a laser energy density of 300˜500 kJ/cm 2 and an optical system. 6. The dissimilar metal bus bar of claim 5 , wherein the CW laser has a modulation frequency of 8 Hz˜5 kHz, and is oscillated at 30˜90% of the modulation frequency. 7. The dissimilar metal bus bar of claim 5 , wherein the dissimilar metal bus bar comprises a clad metal. 8. The dissimilar metal bus bar of claim 7 , wherein the clad metal is an over-lay clad metal. 9. A lithium secondary battery, comprising the bus bar of claim 5 .
taking account of the properties of the material involved · CPC title
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