IP Library Granted Patent US 10,544,849
Granted Patent B2
US 10,544,849 · App. 15/751,712 · Granted Jan 28, 2020

Shock absorbers for protective body gear

Inventor: Kyle Lamson (Chelmsford, MA)
Assignee: XENITH, LLC
F16F7/12A42B3/04F16F2224/0233F16F2226/04F16F2228/14
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Quick Facts
Patent No.
US 10,544,849
App. No.
15/751,712
Granted
Jan 28, 2020
Kind
B2
Abstract

A shock absorber includes a bottom rim, a top wall comprising a raised central portion and a top rim, a side wall extending between the top and bottom rims, and a corrugation surrounding a periphery of the raised central portion that (i) connects the raised central portion to the top rim, (ii) descends to a depth below half a height of the side wall, and (iii) is separated by a distance from a surface. Impact forces imparted on the shock absorber are attenuated by a first amount in a first stage by resistive yielding of the side wall; by a second amount in a second stage by depression of the central portion and resistive yielding of the corrugation associated therewith; and by a third amount in a third stage by resistive yielding of the corrugation in response to a force applied to the top rim upon contact with the surface.

Claims (33)

1. A shock absorber for attenuating impact forces imparted thereto in stages of differing attenuation, the shock absorber comprising:

a top wall comprising a raised central portion and a top rim;

a bottom rim extending from a bottom wall plane;

a side wall extending between the top and bottom rims; and

a corrugation surrounding a periphery of the raised central portion that (i) connects the raised central portion to the top rim, (ii) descends to a depth below half a height of the side wall, and (iii) is separated by a distance from the bottom wall plane,

wherein the shock absorber is configured to attenuate impact forces imparted on the shock absorber by a first amount in a first stage by resistive yielding of the side wall, by a second amount in a second stage by depression of the raised central portion and resistive yielding of the corrugation associated therewith, and by a third amount in a third stage by resistive yielding of the corrugation.

2. The shock absorber of claim 1 , wherein the first amount is less than the second amount.

3. The shock absorber of claim 2 , wherein the second amount is less than the third amount.

4. The shock absorber of claim 1 , wherein the side wall comprises a first region having a first angle with respect to a vertical reference line and a second region having a second angle with respect to the vertical reference line, the second angle being different from the first angle.

5. The shock absorber of claim 4 , wherein the first angle and the second angle are acute angles, the first angle having a value less than that of the second angle, the first region being closer to the bottom rim than the second region.

6. The shock absorber of claim 4 , wherein the first region and the second region meet at a point disposed at approximately half the height of the side wall.

7. The shock absorber of claim 1 , wherein the shock absorber is configured to cause overlap in time between the first, second, and third stages.

8. The shock absorber of claim 1 , wherein the shock absorber is substantially cylindrically symmetric.

9. The shock absorber of claim 1 , wherein the bottom rim has a diameter equal to or greater than that of any portion of the side wall.

10. The shock absorber of claim 1 , wherein the corrugation is configured to yield in response to a force applied to the shock absorber when the corrugation contacts the bottom wall plane.

11. The shock absorber of claim 1 , wherein a lowest portion of the corrugation is disposed below a midpoint of the sidewall and spaced above the bottom rim.

12. The shock absorber of claim 1 , wherein the raised central portion is raised above the height of the side wall.

13. The shock absorber of claim 1 , wherein the side wall resistively yields to an impact force in the first stage before the corrugation yields in the second stage.

14. The shock absorber of claim 13 , wherein the corrugation yields in the second stage before the corrugation further yields in the third stage.

15. A method for attenuating impact forces imparted to a shock absorber in stages of differing attenuation, the method comprising:

attenuating the impact forces by a first amount in a first stage by resistive yielding of a side wall of the shock absorber, the side wall extending from a bottom wall plane between a top rim and a bottom rim of the shock absorber;

attenuating the impact forces by a second amount in a second stage by depression of a raised central portion of the shock absorber and resistive yielding of a corrugation of the shock absorber associated therewith, the corrugation surrounding a periphery of the raised central portion, connecting the raised central portion to the top rim; and

attenuating the impact forces by a third amount in a third stage by resistive yielding of the corrugation in response to a force applied to the top rim upon contact with the bottom wall plane initially separated by a distance from the corrugation.

16. The method of claim 15 , wherein the first amount is less than the second amount.

17. The method of claim 16 , wherein the second amount is less than the third amount.

18. The method of claim 15 , wherein the side wall comprises a first region having a first angle with respect to a vertical reference line and a second region having a second angle with respect to the vertical reference line, the second angle being different from the first angle.

19. The method of claim 18 , wherein the first angle and the second angle are acute angles, the first angle having a value less than that of the second angle, the first region being closer to the bottom rim than the second region.

20. The method of claim 18 , wherein the first region and the second region meet at a point disposed at approximately half a height of the side wall.

21. The method of claim 15 , wherein the occurrence of at least one of the first, second, and third stages overlaps the occurrence of another of the first, second, and third stages.

22. The method of claim 15 , wherein the bottom rim has a diameter equal to or greater than that of any portion of the side wall.

23. The method of claim 15 , wherein the shock absorber is substantially cylindrically symmetric.

24. The method of claim 15 , wherein the corrugation descends to a depth below half a height of the side wall.

25. The method of claim 15 , wherein the second stage is initiated before the third stage and the first stage is initiated before the second stage.

Assignments (4)
SECURITY INTEREST Recorded May 14, 2026
From: RIDDELL, INC.; ALL AMERICAN SPORTS CORPORATION; EB SPORTS CORP.; RIDDELL SPORTS INC.; RIDDELL SPORTS GROUP, INC.; RIDMARK CORPORATION; MACMARK CORPORATION; EQUILINK LICENSING, LLC; SIMBEX LLC
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 075588/0299 →
SECURITY INTEREST Recorded May 14, 2026
From: RIDDELL SPORTS INC.; RIDDELL SPORTS GROUP, INC.; ALL AMERICAN SPORTS CORPORATION; EB SPORTS CORP.; RIDDELL, INC.; MACMARK CORPORATION; RIDMARK CORPORATION; EQUILINK LICENSING, LLC; SIMBEX LLC
To: PNC BANK, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 075604/0882 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2025
From: XENITH, LLC
To: RIDDELL, INC.
Reel/Frame 070975/0965 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2018
From: LAMSON, KYLE
To: XENITH, LLC
Reel/Frame 044942/0415 →
Continuity (2)
Provisional Application 62203755 · Aug 11, 2015
Related Publication 20180274620A1 · Sep 27, 2018
Cited By (1)
US 12,642,325