Spot welding method
Abstract
The spot welding method of the present invention has steps of preliminary conduction, first conduction, second conduction, and third conduction: Preliminary conduction: Conduction method aimed at improving closeness of contact surfaces of steel sheets and reducing sheet gaps by gradually increasing the welding current (for example, upslope conduction). If rapidly applying current, current would be locally carried and that part would melt resulting in expulsion, so this is a conduction method gradually running current (for example upslope conduction) to avoid local heating. First conduction: Conduction method running a constant welding current and using the heat generated by the electrical contact resistance between steel sheets to cause the formation of a nugget when preliminary conduction results in close contact surfaces between the steel sheets. Second conduction: Conduction method making the current lower than the first conduction to suppress inside expulsion while making the nugget grow in the diametrical direction. Third conduction: Conduction method making the current higher than the second conduction and making the nugget grow not only in the diametrical direction, but also mainly in the sheet thickness direction when the nugget size becomes a certain extent of size at the second conduction step.
Claims
exact text as granted — not AI-modified1 . A spot welding method joining a plurality of superposed steel sheets, the spot welding method comprising a preliminary conduction step of gradually applying current,
a first conduction step of running a constant current at a current value I1, a second conduction step of next running current at a current value I2, and further a third conduction step of running current at a current I3, wherein I1>I2 and I2<I3, where the units of I1, I2, and I3 are kA, and a pressing force by spot welding electrodes decreases in the third conduction step.
2 . The spot welding method according to claim 1 wherein a sheet thickness ratio comprised of a ratio of a total of the sheet thicknesses of said plurality of steel sheets and a sheet thickness of the steel sheet with the thinnest sheet thickness among said plurality of steel sheets is 4.5 or more.
3 . The spot welding method according to claim 1 wherein said plurality of steel sheets are superposed so that the steel sheet with the thinnest sheet thickness becomes the outermost side.
4 . The spot welding method according to claim 1 wherein said preliminary conduction step makes a welding current increase by upslope conduction.
5 . The spot welding method according to claim 1 wherein said preliminary conduction step is pulsation conduction.
6 . The spot welding method according to claim 4 wherein a conduction time of the upslope conduction of said preliminary conduction step is 1 to 30 cycles.
7 . The spot welding method according to claim 5 wherein a conduction time of the pulsation conduction of said preliminary conduction step is 1 to 10 cycles and an idling time is 1 to 5 cycles.
8 . The spot welding method according to claim 1 wherein said third conduction step includes increasing a weld current by upslope conduction.
9 . The spot welding method according to claim 1 wherein when designating a pressing force after said decrease as P2 and designating a pressing force before said decrease as P1,
0.5× P 1≤ P 2< P 1.
10 . The spot welding method according to claim 1 further comprising a cooling step where no welding current is run at least at one period between said first conduction step and said second conduction step and between said second conduction step and said third conduction step.
11 . The spot welding method according to claim 10 wherein the cooling time of said cooling step is 10 cycles or less.
12 . The spot welding method according to claim 2 wherein said plurality of steel sheets are superposed so that the steel sheet with the thinnest sheet thickness becomes the outermost side.
13 . The spot welding method according to claim 2 wherein said preliminary conduction step is a welding current increase by upslope conduction.
14 . The spot welding method according to claim 3 wherein said preliminary conduction step is a welding current increase by upslope conduction.
15 . The spot welding method according to claim 12 wherein said preliminary conduction step is a welding current increase by upslope conduction.
16 . The spot welding method according to claim 2 wherein said preliminary conduction step is pulsation conduction.
17 . The spot welding method according to claim 3 wherein said preliminary conduction step is pulsation conduction.
18 . The spot welding method according to claim 12 wherein said preliminary conduction step is pulsation conduction.
19 . The spot welding method according to claim 13 wherein a conduction time of the upslope conduction of said preliminary conduction step is 1 to 30 cycles.Join the waitlist — get patent alerts
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