IP Library Granted Patent US 12,428,064
Granted Patent B2
US 12,428,064 · App. 17/925,667 · Granted Sep 30, 2025

Rocker reinforcement for an electric vehicle

Inventors: Dan Hasenpouth (Paris, FR); Yohan Merdji (Valdampierre, FR); Joël Wilsius (Paris, FR)
Assignee: ArcelorMittal
B62D21/157B60K1/04B62D25/025
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Quick Facts
Patent No.
US 12,428,064
App. No.
17/925,667
Granted
Sep 30, 2025
Kind
B2
Abstract

Reinforced rocker assembly having a closed section reinforcement located in the hollow volume formed between the rocker components, wherein the reinforcement is assembled to a rocker component in the transition zones between an upper horizontal wall and an upper flange of the rocker component and in the transition zones between a lower horizontal wall and a lower flange of the rocker component and wherein in the transition zones, the angles α and β formed between the flange and the branch of the reinforcement extending outwards of the rocker component are between 90° and 180°.

Claims (26)

1. A rocker assembly comprising:

a first rocker component and a second rocker component and a closed section reinforcement located in a hollow volume formed between the first rocker component and the second rocker component, wherein the reinforcement is assembled to the first rocker component in assembly zones located in transition zones between an upper horizontal wall and an upper flange of the first rocker component and in transition zones between a lower horizontal wall and a lower flange of the first rocker component and wherein in the transition zones, an angle α formed between the upper flange and a first part of the reinforcement extending outwards of the assembly zone is between 90° and 180°, and an angle β formed between the lower flange and a second part of the reinforcement extending outwards of the assembly zone is between 90° and 180°, wherein the reinforcement is assembled to the first rocker component by (i) welding using a filler wire welding technology; or (ii) by MAG welding, or (iii) by using a discontinuous assembly joint in the form of stitches.

2. The rocker assembly as recited in claim 1 wherein the first rocker component is the rocker inner.

3. The rocker assembly as recited in claim 1 wherein the first rocker component is the rocker outer.

4. The rocker assembly as recited in claim 1 wherein the reinforcement is made of one single part.

5. The rocker assembly as recited in claim 1 wherein the reinforcement is made of at least two different parts assembled together to form the reinforcement.

6. The rocker assembly as recited in claim 1 wherein the reinforcement is assembled to the first rocker component by welding using a filler wire welding technology.

7. The rocker assembly as recited in claim 1 wherein the reinforcement is assembled to the first rocker component by MAG welding.

8. The rocker assembly as recited in claim 1 wherein the reinforcement is assembled to the first rocker component using a discontinuous assembly joint in the form of stitches.

9. The rocker assembly as recited in claim 8 wherein the stitches are of the upper and lower transition zones are aligned.

10. The rocker assembly as recited in claim 8 wherein the stitches are of the upper and lower transition zones are offset.

11. The rocker assembly as recited in claim 2 wherein the reinforcement is further assembled to a vertical wall of the rocker inner.

12. The rocker assembly as recited in claim 3 wherein the reinforcement is further assembled to a vertical wall of the rocker outer.

13. A rocker assembly comprising:

a first rocker component and a second rocker component and a closed section reinforcement located in a hollow volume formed between the first rocker component and the second rocker component, wherein the reinforcement is assembled to the first rocker component in assembly zones located in transition zones between an upper horizontal wall and an upper flange of the first rocker component and in transition zones between a lower horizontal wall and a lower flange of the first rocker component and wherein in the transition zones, an angle α formed between the upper flange and a first part of the reinforcement extending outwards of the assembly zone is between 90° and 180°, and an angle β formed between the lower flange and a second part of the reinforcement extending outwards of the assembly zone is between 90° and 180°, wherein for any given transverse cross-section, a closed section of the reinforcement occupies a surface area at least greater than 80% of the total surface area defined by the hollow volume at the given transverse cross-section.

14. A rocker assembly comprising:

a first rocker component and a second rocker component and a closed section reinforcement located in a hollow volume formed between the first rocker component and the second rocker component, wherein the reinforcement is assembled to the first rocker component in assembly zones located in transition zones between an upper horizontal wall and an upper flange of the first rocker component and in transition zones between a lower horizontal wall and a lower flange of the first rocker component and wherein in the transition zones, an angle α formed between the upper flange and a first part of the reinforcement extending outwards of the assembly zone is between 90° and 180°, and an angle β formed between the lower flange and a second part of the reinforcement extending outwards of the assembly zone is between 90° and 180°, wherein for any given transverse cross-section, a maximum dimension of the reinforcement in the elevation direction is at least 75% of the maximum dimension in the elevation direction of the hollow volume and a maximum dimension of the reinforcement in the transverse direction is at least 75% of the maximum dimension in the transverse direction of the hollow volume.

15. An assembly process to produce the rocker assembly as recited in claim 1 , the process comprising the steps of:

providing a first rocker component;

positioning a closed section reinforcement relative to the first rocker component in a pre-assembly position;

securing the reinforcement to the first rocker component by attaching the reinforcement at least in the transition zones between the upper flange and the upper horizontal wall of the first rocker component and in the transition zones between the lower flange and the lower horizontal wall of the first rocker component by (i) welding using a filler wire welding technology; or (ii) by MAG welding, or (iii) by using a discontinuous assembly joint in the form of stitches; and

securing the thus assembled first rocker component and reinforcement to the second rocker component so as to form a reinforced rocker assembly.

16. The assembly process as recited in claim 15 wherein the reinforcement and the first rocker component are assembled using a filler wire welding technology.

17. The assembly process as recited in claim 15 wherein the reinforcement and the first rocker component are assembled using MAG welding.

18. The assembly process as recited in claim 15 further comprising the step of assembling a vertical wall of the first rocker component to the reinforcement, the first rocker component being a rocker inner.

19. The assembly process as recited in claim 15 further comprising the step of assembling a vertical wall of the first rocker component to the reinforcement, the first rocker component being a rocker outer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 28, 2022
From: HASENPOUTH, DAN; MERDJI, YOHAN; WILSIUS, JOËL
To: ARCELORMITTAL
Reel/Frame 061895/0018 →
Continuity (1)
Related Publication 20230219625A1 · Jul 13, 2023
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