IP Library › Granted Patent US 12,654,252
Granted Patent B2
US 12,654,252 · App. 18/282,359 · Granted Jun 16, 2026

Element, method of friction element welding, and method of manufacturing friction-element-welded joint

Inventors: Naoaki Munemura (Tokyo, JP); Yasuaki Okita (Tokyo, JP); Hiroshi Matsuda (Tokyo, JP); Yoshiaki Murakami (Tokyo, JP)
Assignee: JFE STEEL CORPORATION
B23K20/1255B23K20/125B23K20/129
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Quick Facts
Patent No.
US 12,654,252
App. No.
18/282,359
Granted
Jun 16, 2026
Kind
B2
Abstract

In performing friction element welding of a sheet set constituted by two or more metal sheets, an element is press penetrated into the sheet set. The element may include a round columnar mandrel; a disc-shaped collar provided at an upper end face of the mandrel; and a conical pin extending from a lower end face of the mandrel. The element has a plurality of fluidized-metal discharge grooves arranged spirally in a flat area of the lower end face of the mandrel, the flat area excluding the pin. Alternatively, the element may include a round columnar mandrel having a lower end face that forms a conical face with an apical angle αm, the conical face having one or more pairs of chippings discharge grooves or having a plurality of cutting edges, the chippings discharge grooves each extending in a curved manner from an apex of the conical face.

Claims (17)

1 . An element to be used in friction element welding of a sheet set obtained by stacking two or more metal sheets, the friction element welding being performed by press penetrating the element into the sheet set while rotating the element, the element comprising:

a round columnar mandrel configured to be press penetrated into the sheet set in the friction element welding; and

a disc-shaped collar provided at an upper end face of the mandrel,

wherein:

the mandrel has a lower end face that forms a conical face with an apical angle αm, the conical face having:

one or more pairs of chippings discharge grooves, the chippings discharge grooves each extending in a curved manner starting at a common point at an apex of the conical face.

2 . The element according to claim 1 , wherein a distance L (mm) from a bottommost end of an outer peripheral portion of the collar to the apex of the lower end face of the mandrel in a direction parallel to the center axis of the pin satisfies Expression (1) below:

( T TOTAL −T BOTTOM )+0.02 mm≤ L ≤( T TOTAL −T BOTTOM )+4 mm  (1)

where:

T TOTAL : a total thickness (mm) of the sheet set, and

T BOTTOM : a thickness (mm) of a bottom sheet included in the sheet set.

3 . A method of manufacturing a friction-element-welded joint in which the friction-element-welded joint is manufactured by joining together a sheet set obtained by stacking two or more metal sheets, the method comprising:

press penetrating the element according to claim 1 into the sheet set while rotating the element.

4 . The method of manufacturing a friction-element-welded joint according to claim 3 , wherein a bottom sheet included in the sheet set and a top sheet included in the sheet set are both steel sheets.

5 . A method of manufacturing a friction-element-welded joint in which the friction-element-welded joint is manufactured by joining together a sheet set obtained by stacking two or more metal sheets, the method comprising:

press penetrating the element according to claim 2 into the sheet set while rotating the element.

6 . The method of manufacturing a friction-element-welded joint according to claim 5 , wherein a bottom sheet included in the sheet set and a top sheet included in the sheet set are both steel sheets.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2023
From: MUNEMURA, NAOAKI; OKITA, YASUAKI; MATSUDA, HIROSHI; MURAKAMI, YOSHIAKI
To: JFE STEEL CORPORATION
Reel/Frame 064920/0507 →
Priority Claims (1)
JP 2021-050332 · Mar 24, 2021 · national
Continuity (1)
Related Publication 20240149372A1 · May 9, 2024
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