Resistance spot welding method and weld member production method

US11904404B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11904404-B2
Application numberUS-201916973766-A
CountryUS
Kind codeB2
Filing dateJun 17, 2019
Priority dateJun 29, 2018
Publication dateFeb 20, 2024
Grant dateFeb 20, 2024

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Abstract

Official abstract text for this publication.

A resistance spot welding method comprises: performing test welding; and performing actual welding after the test welding, wherein in the test welding, 0.2≤Vtp/Vtm≤1.5 is satisfied where Vtm is an average value of a voltage between the electrodes in main current passage in the test welding and Vtp is an average value of a voltage between the electrodes in subsequent current passage in the test welding, and in each of main current passage and subsequent current passage in the actual welding, a time variation curve of an instantaneous amount of heat generated per unit volume and a cumulative amount of heat generated per unit volume that are stored in a corresponding one of the main current passage and the subsequent current passage in the test welding are set as a target, and adaptive control welding is performed to control a current passage amount according to the target.

First claim

Opening claim text (preview).

The invention claimed is: 1. A resistance spot welding method of squeezing, by a pair of electrodes, parts to be welded which are a plurality of overlapping metal sheets, and passing a current while applying an electrode force to join the parts to be welded, the resistance spot welding method comprising: performing test welding; and performing actual welding after the test welding, wherein (a) in the test welding, main current passage for nugget formation and subsequent current passage for subsequent heat treatment are performed, in the main current passage in the test welding, a time variation curve of an instantaneous amount of heat generated per unit volume and a cumulative amount of heat generated per unit volume that are calculated from an electrical property between the electrodes in forming an appropriate nugget by performing current passage by constant current control are stored, and in the subsequent current passage in the test welding, current passage is performed by constant current control under a condition: 0.2≤Vtp/Vtm≤1.5, where Vtm is an average value of a voltage between the electrodes in the main current passage in the test welding and Vtp is an average value of a voltage between the electrodes in the subsequent current passage in the test welding, and a time variation curve of an instantaneous amount of heat generated per unit volume and a cumulative amount of heat generated per unit volume that are calculated from an electrical property between the electrodes in the current passage performed under the condition are stored, and (b) thereafter, in the actual welding, main current passage for nugget formation and subsequent current passage for subsequent heat treatment are performed, and in the main current passage and the subsequent current passage in the actual welding, the time variation curve of the instantaneous amount of heat generated per unit volume and the cumulative amount of heat generated per unit volume that are stored in the main current passage in the test welding and the time variation curve of the instantaneous amount of heat generated per unit volume and the cumulative amount of heat generated per unit volume that are stored in the subsequent current passage in the test welding are respectively set as a target, and adaptive control welding is performed to control a current passage amount according to the target. 2. The resistance spot welding method according to claim 1 , wherein in the adaptive control welding in the main current passage in the actual welding, in the case where an amount of time variation of an instantaneous amount of heat generated per unit volume differs from the time variation curve of the instantaneous amount of heat generated per unit volume set as the target, the current passage amount is controlled in order to compensate for the difference from the time variation curve within a remaining welding time in the main current passage in the actual welding so that a cumulative amount of heat generated per unit volume in the main current passage in the actual welding matches the cumulative amount of heat generated per unit volume set as the target. 3. The resistance spot welding method according to claim 2 , wherein in the adaptive control welding in the subsequent current passage in the actual welding, in the case where an amount of time variation of an instantaneous amount of heat generated per unit volume differs from the time variation curve of the instantaneous amount of heat generated per unit volume set as the target, the current passage amount is controlled in order to compensate for the difference from the time variation curve within a remaining welding time in the subsequent current passage in the actual welding so that a cumulative amount of heat generated per unit volume in the subsequent current passage in the actual welding matches the cumulative amount of heat generated per unit volume set as the target. 4. The resistance spot welding method according to claim 3 , wherein a cooling time is set between the main current passage and the subsequent current passage in the test welding, and the number of repetitions of a welding interval for the cooling time and the subsequent current passage after the main current passage in the test welding is two or more times. 5. The resistance spot welding method according to claim 2 , wherein a cooling time is set between the main current passage and the subsequent current passage in the test welding, and the number of repetitions of a welding interval for the cooling time and the subsequent current passage after the main current passage in the test welding is two or more times. 6. The resistance spot welding method according to claim 1 , wherein in the adaptive control welding in the subsequent current passage in the actual welding, in the case where an amount of time variation of an instantaneous amount of heat generated per unit volume differs from the time variation curve of the instantaneous amount of heat generated per unit volume set as the target, the current passage amount is controlled in order to compensate for the difference from the time variation curve within a remaining welding time in the subsequent current passage in the actual welding so that a cumulative amount of heat generated per unit volume in the subsequent current passage in the actual welding matches the cumulative amount of heat generated per unit volume set as the target. 7. The resistance spot welding method according to claim 6 , wherein a cooling time is set between the main current passage and the subsequent current passage in the test welding, and the number of repetitions of a welding interval for the cooling time and the subsequent current passage after the main current passage in the test welding is two or more times. 8. The resistance spot welding method according to claim 1 , wherein a cooling time is set between the main current passage and the subsequent current passage in the test welding, and the number of repetitions of a welding interval for the cooling time and the subsequent current passage after the main current passage in the test welding is two or more times. 9. A weld member production method comprising joining a plurality of overlapping metal sheets by the resistance spot welding method according to claim 1 . 10. A weld member production method comprising joining a plurality of overlapping metal sheets by the resistance spot welding method according to claim 2 . 11. A weld member production method comprising joining a plurality of overlapping metal sheets by the resistance spot welding method according to claim 3 . 12. A weld member production method comprising joining a plurality of overlapping metal sheets by the resistance spot welding method according to claim 8 . 13. A weld member production method comprising joining a plurality of overlapping metal sheets by the resistance spot welding method according to claim 3 . 14. A weld member production method comprising joining a plurality of overlapping metal sheets by the resistance spot welding method according to claim 5 . 15. A weld member production method comprising joining a plurality of overlapping metal sheets by the resistance spot welding method according to claim 7 . 16. A weld member production method comprising joining a plurality of overlapping metal sheets by the resistance spot welding method according to claim 4 .

Assignees

Inventors

Classifications

  • B23K11/257Primary

    the measured parameter being an electrical current · CPC title

  • 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

  • B23K31/125Primary

    Weld quality monitoring · CPC title

  • B23K11/11Primary

    Spot welding · CPC title

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What does patent US11904404B2 cover?
A resistance spot welding method comprises: performing test welding; and performing actual welding after the test welding, wherein in the test welding, 0.2≤Vtp/Vtm≤1.5 is satisfied where Vtm is an average value of a voltage between the electrodes in main current passage in the test welding and Vtp is an average value of a voltage between the electrodes in subsequent current passage in the test …
Who is the assignee on this patent?
Jfe Steel Corp
What technology area does this patent fall under?
Primary CPC classification B23K11/257. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Feb 20 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).