IP Library › Granted Patent US 9,414,635
Granted Patent B2
US 9,414,635 · App. 14/809,142 · Granted Aug 16, 2016

Biomechanics aware helmet

Inventor: Robert T. Knight (Berkeley, CA)
Assignee: Brainguard Technologies, Inc.
A42B3/064A42B3/08A42B3/121
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,414,635
App. No.
14/809,142
Granted
Aug 16, 2016
Kind
B2
Abstract

Protective gear includes an outer shell layer connected to a middle shell layer through an outer energy and impact transformer layer. The middle shell layer is connected to an inner shell layer through an inner energy and impact transformer layer. The outer and inner energy and impact transformer layers flexibly connect the shell layers to absorb impact forces, rotational forces, shear forces, etc., and allow the various shell layers to move and slide relative to the other shell layers. The outer and inner energy and impact transformer layers may be constructed using gels, fluids, electro-rheological elements, magneto-rheological elements, etc. The protective gear may be formed as helmets or body protection for various activities and protect users from not only impact and penetrative forces, but rotational and shear forces as well.

Claims (29)

1. A helmet comprising:

an outer shell layer;

an inner shell layer connected to the outer shell layer through a shear mechanism allowing the outer shell layer to slide relative to the inner shell layer, wherein the shear mechanism includes a first energy transformer having a first absorptive/dissipative material, the inner shell layer configured to conform to a human head;

a chin strap attached to the inner shell layer to maintain the position of the inner shell layer on the human head during rotational force impact while the outer shell layer is allowed to slide.

2. The helmet of claim 1 , wherein the shear mechanism is a shear layer.

3. The helmet of claim 2 , wherein the shear layer is connected to the outer shell layer through the first energy transformer, the first energy transformer operable to absorb energy from forces imparted onto the outer shell layer, wherein the first energy transformer includes a first absorptive/dissipative material to allow the outer shell layer to slide relative to the inner shell layer.

4. The helmet of claim 3 , wherein the inner shell layer is connected to the shear layer, the inner shell layer configured to conform to a human head, the inner shell layer associated with a second energy transformer, the second energy transformer including a second absorptive/dissipative material, the second energy transformer operable to absorb energy from forces imparted onto the shear layer through the outer shell layer and the first energy transformer.

5. The helmet of claim 1 , wherein the first absorptive/dissipative material comprises a gel.

6. The helmet of claim 1 , wherein the first absorptive/dissipative material comprises a fluid.

7. The helmet of claim 1 , wherein the first absorptive/dissipative material comprises an electro-rheological element.

8. The helmet of claim 1 , wherein a lining layer is connected to the inner shell layer, wherein the lining layer is configured to conform to a human head.

9. Protective gear comprising:

an outer shell layer;

an inner conforming layer connected to the outer shell layer through a shear mechanism allowing the outer shell layer to slide relative to the inner conforming layer, wherein the shear mechanism includes a first energy transformer having a first absorptive/dissipative material, the inner conforming layer configured to conform to a human head;

a chin strap attached to the inner conforming layer to maintain the position of the inner conforming layer on the human head during rotational force impact while the outer shell layer is allowed to slide.

10. The protective gear of claim 9 , wherein the shear mechanism is a shear layer.

11. The protective gear of claim 10 , wherein the shear layer is connected to the outer shell layer through the first energy transformer, the first energy transformer operable to absorb energy from forces imparted onto the outer shell layer, wherein the first energy transformer includes a first absorptive/dissipative material to allow the outer shell layer to slide relative to the inner conforming layer.

12. The protective gear of claim 11 , wherein the inner conforming layer is connected to the shear layer, the inner conforming layer configured to conform to a human head, the inner conforming layer associated with a second energy transformer, the second energy transformer including a second absorptive/dissipative material, the second energy transformer operable to absorb energy from forces imparted onto the shear layer through the outer shell layer and the first energy transformer.

13. The protective gear of claim 9 , wherein the first absorptive/dissipative material comprises a gel.

14. The protective gear of claim 9 , wherein the first absorptive/dissipative material comprises a fluid.

15. The protective gear of claim 9 , wherein the first absorptive/dissipative material comprises an electro-rheological element.

16. The protective gear of claim 9 , wherein the inner conforming layer is associated with a lining material configured to conform to a human head.

17. A helmet comprising:

an outer shell layer;

an inner conforming layer connected to the outer shell layer through a shear mechanism allowing the outer shell layer to slide relative to the inner conforming layer, wherein the shear mechanism includes a first energy transformer having a first absorptive/dissipative material, the inner conforming layer configured to conform to a human head;

a chin strap attached to the inner conforming layer to maintain the position of the inner conforming layer on the human head during rotational force impact while the outer shell layer is allowed to slide.

18. The helmet of claim 17 , wherein the shear mechanism is a shear layer.

19. The helmet of claim 18 , wherein the shear layer is connected to the outer shell layer through the first energy transformer, the first energy transformer operable to absorb energy from forces imparted onto the outer shell layer, wherein the first energy transformer includes a first absorptive/dissipative material to allow the outer shell layer to slide relative to the inner conforming layer.

20. The helmet of claim 19 , wherein the inner conforming layer is connected to the shear layer, the inner conforming layer configured to conform to a human head, the inner conforming layer associated with a second energy transformer, the second energy transformer including a second absorptive/dissipative material, the second energy transformer operable to absorb energy from forces imparted onto the shear layer through the outer shell layer and the first energy transformer.

Continuity (5)
Continuation 14714093 · May 15, 2015
Continuation 14485993 · Sep 15, 2014
Continuation 13554471 · Jul 20, 2012
Provisional Application 61510401 · Jul 21, 2011
Related Publication 20160081416A1 · Mar 24, 2016