IP Library Granted Patent US 10,327,482
Granted Patent B1
US 10,327,482 · App. 15/150,026 · Granted Jun 25, 2019

Apparatus and method for dissipating force

Inventors: Justin B. Wenner (Los Angeles, CA); Christopher J. Falkowski (Novi, MI)
Assignee: Helmet Technologies LLC
A41D13/015A41D13/05A42B3/12A42B3/121
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Quick Facts
Patent No.
US 10,327,482
App. No.
15/150,026
Granted
Jun 25, 2019
Kind
B1
Abstract

An apparatus ( 30 ) that dissipates a force ( 44 ). The apparatus ( 30 ) can be implemented in a wearable embodiment ( 31 ) such as a helmet ( 50 ) as well as non-wearable embodiments ( 32 ). Elastic structures ( 210 ) within the apparatus ( 30 ) dissipate the force ( 44 ) striking a shielded mass ( 39 ).

Claims (35)

1. An apparatus ( 30 ) that is adapted to protect a shielded mass ( 39 ) from an application of force ( 44 ), said apparatus ( 30 ) comprising:

a plurality of surfaces ( 60 ), said plurality of surfaces ( 60 ) including:

an internal surface ( 62 ); and

an external surface ( 64 );

a plurality of elastic structures ( 210 ) positioned between said internal surface ( 62 ) and said external surface ( 64 ), wherein said plurality of elastic structures ( 210 ) are a plurality of hollow elastic structures ( 230 );

wherein said plurality of elastic structures ( 210 ) include a plurality of holes ( 232 );

wherein said application of force ( 44 ) compresses at least one said elastic structure ( 210 ); and

wherein at least one said elastic structure ( 210 ) is not fixed to any of said surfaces ( 60 ).

2. The apparatus ( 30 ) of claim 1 , wherein the shielded mass ( 39 ) is a human being ( 41 ) and wherein the apparatus ( 30 ) is a wearable apparatus ( 31 ) worn by the human being ( 41 ).

3. The apparatus ( 30 ) of claim 2 , wherein said wearable apparatus ( 31 ) is not a helmet ( 50 ).

4. The apparatus ( 30 ) of claim 1 , wherein the shielded mass ( 39 ) is an environmental surface ( 38 ), and wherein said apparatus ( 30 ) is a structural apparatus ( 33 ) positioned on the environmental surface ( 38 ).

5. The apparatus ( 30 ) of claim 1 , wherein said plurality of elastic structures ( 210 ) are positionally constrained within a sleeve ( 310 ).

6. The apparatus ( 30 ) of claim 1 , wherein at least two of said plurality of elastic structures ( 210 ) are affixed to each other.

7. The apparatus ( 30 ) of claim 1 , wherein none of said plurality of elastic structures ( 210 ) are affixed to another elastic structure ( 210 ) or to any said surface ( 60 ).

8. The apparatus ( 30 ) of claim 1 , wherein said plurality of elastic structures ( 210 ) are a plurality of elastic orbs ( 220 ).

9. The apparatus ( 30 ) of claim 1 , wherein said internal surface ( 62 ) is a sheet ( 305 ) that is air permeable and wherein said plurality of elastic structures ( 210 ) are a plurality of hollow elastic structures ( 230 ).

10. The apparatus ( 30 ) of claim 1 , wherein each said elastic structure ( 210 ) has a hole ( 232 ) and wherein each said elastic structure ( 210 ) is an elastic orb ( 220 ).

11. An apparatus ( 30 ) that shields a shielded mass ( 39 ) from an application of force ( 44 ), said apparatus ( 30 ) comprising:

a plurality of elastic structures ( 210 ), wherein said plurality of elastic structures ( 210 ) are a plurality of hollow elastic structures ( 230 );

said plurality of hollow elastic structures ( 230 ) including a plurality of holes ( 232 ) and a gas ( 236 );

wherein said application of force ( 44 ) compresses said plurality of elastic structures ( 210 ), forcing said gas ( 236 ) to move outside said plurality of hollow elastic structures ( 230 );

wherein said plurality of elastic structures ( 210 ) are not fixedly attached to any of said surfaces ( 60 ).

12. The apparatus ( 30 ) of claim 11 , said apparatus ( 30 ) further comprising a sleeve ( 310 ) holding said plurality of elastic structures ( 210 ).

13. The apparatus ( 30 ) of claim 12 , further comprising a plurality of sleeves ( 310 ) holding said plurality of elastic structures ( 210 ), wherein said sleeves ( 310 ) are air permeable.

14. The apparatus ( 30 ) of claim 11 , wherein said elastic structures ( 210 ) move relative to each other within said sleeve ( 310 ).

15. The apparatus ( 30 ) of claim 12 , wherein said plurality of hollow elastic structures ( 230 ) are affixed to each other.

16. A method ( 400 ) for protecting a shielded mass ( 39 ) from an application of force ( 44 ), said method ( 400 ) comprising:

receiving ( 410 ) the application of force ( 44 ) hitting an external surface ( 64 ), wherein a plurality of hollow elastic structures ( 230 ) are positioned between said exterior surface ( 64 ) and an internal surface ( 62 ), wherein said internal surface ( 62 ) is closer to the shielded mass ( 39 ) than said exterior surface ( 64 ), wherein said plurality of hollow elastic structures ( 230 ) include a plurality of holes ( 232 ), wherein at least one of said plurality of elastic structures ( 230 ) is not fixedly attached to exterior surface ( 64 ) or to said interior surface ( 62 );

compressing ( 420 ) at least one of said hollow elastic structures ( 230 ); and

moving ( 430 ) a gas ( 236 ) out of the one or more said hollow elastic structures ( 230 ) that are compressed.

17. The method ( 400 ) of claim 16 , further comprising:

expanding ( 440 ) the hollow elastic structures ( 230 ) using a plurality of ambient air ( 237 ), wherein the expanding ( 440 ) of the hollow elastic structures ( 230 ) occurs without human intervention.

18. The method ( 400 ) of claim 17 , wherein said hollow elastic structures ( 230 ) are comprised of a plastic material ( 250 ) that provide for expanding ( 440 ) in less than about 1 second.

19. The method ( 400 ) of claim 16 , wherein said hollow elastic structures ( 230 ) are attached together in at least one elastic sheet ( 212 ).

20. The apparatus ( 30 ) of claim 16 , further comprising an elastic sheet ( 212 ) that is comprised of said plurality of elastic structures ( 210 ) connected together.

Continuity (1)
Continuation In Part 14514376 · Oct 14, 2014