Method of resistance spot welding
US-2019240768-A1 · Aug 8, 2019 · US
US10646950B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10646950-B2 |
| Application number | US-201615739207-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 22, 2016 |
| Priority date | Jun 26, 2015 |
| Publication date | May 12, 2020 |
| Grant date | May 12, 2020 |
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In the present invention, while a welding current is applied with respect to a laminate body comprising thick metal plates and thin metal plates, a first welding pressure (F 1 ) with respect to the laminate body from an upper tip contacting the metal plate and a second welding pressure (F 2 ) with respect to the laminate body from a lower tip contacting the metal plate are changed relative to each other. Specifically, F 1 <F 2 in a first step which is an initial period of welding, F 1 =F 2 in a second step which is an intermediate period of welding, and F 1 >F 2 in a third step which is a final period of welding.
Opening claim text (preview).
What is claimed is: 1. A spot welding method for spot welding by welding current flowing between a first welding tip and a second welding tip, wherein a laminated body is formed of at least three workpieces stacked and including two outermost workpieces, the two outermost workpieces being a thin-walled workpiece and a thick-walled workpiece which are different in thickness from each other, and the laminated body is sandwiched between a first welding tip and a second welding tip, the spot welding method comprising, while the welding current flows through the laminated body positioned and fixed, the steps of: a first step of making a first pressing force to be applied to the laminated body from the first welding tip brought into contact with the thin-walled workpiece smaller than a second pressing force to be applied to the laminated body from the second welding tip brought into contact with the thick-walled workpiece, while forming a nugget between two of the workpieces forming the laminated body for integration of the two workpieces; a second step of making the first pressing force and the second pressing force equal, while growing the nugget toward the thick-walled workpiece; and a third step of making the first pressing force greater than the second pressing force, while growing the nugget until the thick-walled workpiece becomes integral with an adjacent one of the workpieces. 2. The spot welding method according to claim 1 , wherein a welding gun having the first welding tip and the second welding tip is displaced with respect to the laminated body to relatively change the first pressing force and the second pressing force. 3. The spot welding method according to claim 1 , wherein the second welding tip is displaced in a direction toward or away from the thick-walled workpiece to relatively change the first pressing force and the second pressing force. 4. A spot welding device for spot welding comprising: a positioning and fixing unit configured to position and fix a laminated body formed of at least three workpieces stacked wherein two outermost workpieces are a thin-walled workpiece and a thick-walled workpiece that are different in thickness from each other; a welding gun including a first welding tip and a second welding tip to grip and hold the laminated body for passing a welding current; a pressing force detection unit configured to detect a first pressing force applied to the laminated body by the first welding tip brought into contact with the thin-walled workpiece and a second pressing force applied to the laminated body by the second welding tip brought into contact with the thick-walled workpiece; and a control unit configured to control the first pressing force and the second pressing force based on a detection value detected by the pressing force detecting unit, wherein the control unit makes the first pressing force smaller than the second pressing force, while a nugget is formed between two of the workpieces constituting the laminated body to integrate the two workpieces, makes the first pressing force and the second pressing force equal, while the nugget is grown toward the thick-walled workpiece, and makes the first pressing force greater than the second pressing force, while the nugget is grown until the thick-walled workpiece becomes integral with adjacent one of the workpieces. 5. The spot welding device according to claim 4 , wherein the welding gun is displaced with respect to the laminated body under control of the control unit to change the first pressing force and the second pressing force relatively. 6. The spot welding device according to claim 5 , further comprising a robot supporting the welding gun, wherein the welding gun is displaced with respect to the laminated body by an operation of the robot under the control of the control unit. 7. The spot welding device according to claim 4 , wherein the second welding tip is displaced toward or away from the thick-walled workpiece to change the first pressing force and the second pressing force relatively under the control of the control unit.
by means of two electrodes placed opposite one another on both sides of the welded parts · CPC title
taking account of the properties of the material to be welded · CPC title
the measured parameter being a force (B23K11/253 takes precedence) · CPC title
Steel {or steel} alloys · CPC title
Electric supply or control circuits therefor · CPC title
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