IP Library Granted Patent US 7,904,971
Granted Patent B2
US 7,904,971 · App. 11/133,090 · Granted Mar 15, 2011

Protective padding and protective padding systems

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Quick Facts
Patent No.
US 7,904,971
App. No.
11/133,090
Granted
Mar 15, 2011
Kind
B2
Abstract

The present invention provides pads and padding systems for use in protective helmets, and particularly ballistic helmets. Generally, the pad includes a first, outer layer which provides substantial impact resistance and a second, inner layer which provides cushioning and comfort. The pad does not require the use of a moisture-proof, non-perforated, encapsulating layer since both layers provide little resistance to fluid flow. The pad may also include a cover made of moisture-wicking material.

Claims (36)

1. A pad for use in cushioning contact with a body comprising:

at least one section of an outer layer of a flexible, resilient, energy absorbing material, the outer layer being adapted to pass fluids transversely through the outer layer with low resistance; and

at least one section of an inner layer adjacent the section of the outer layer and positioned inside the section of the outer layer when worn on the body, the inner layer being of a flexible, resilient material and being less stiff than the outer layer, the inner layer being adapted to pass fluids therethrough with low resistance,

the outer layer comprising a plurality of discrete beads of elastic, resilient material positioned adjacent one another and bonded together, wherein the beads elastically deform to absorb energy over multiple impacts to provide impact resistance, the beads having interstitial spaces therebetween through which fluids can pass so that fluids pass transversely through the outer layer with low resistance, the outer layer having a density no greater than 4 lb/ft 3 , the inner layer comprising a first layer, a second layer spaced from the first layer and a plurality of yarns connecting the two layers, the plurality of yarns provide a buckling effect to provide resilient compressibility.

2. The pad system of claim 1 wherein the beads are bonded together via an adhesive and are waterproof.

3. The pad system of claim 1 wherein the beads are close celled polymer beads.

4. The pad of claim 1 wherein air and water can pass through the interstitial spaces.

5. The pad of claim 1 wherein the yarns connecting the first layer and the second layer are monofilament.

6. The pad of claim 4 wherein the inner layer has an open mesh construction.

7. The pad of claim 5 wherein the beads of the outer layer are waterproof.

8. The pad of claim 7 wherein the inner layer is formed from one or more hydrophilic materials.

9. The pad of claim 5 wherein the inner layer and the outer layer are encompassed by a cover.

10. The pad of claim 9 wherein the cover comprises an inner cover material placed adjacent to and over an inner surface of the inner layer, the inner cover comprising a hydrophilic, wicking material.

11. The pad of claim 10 wherein an outer surface of the outer cover material includes a fastening mechanism to fasten the pad to an article worn on the body.

12. The pad of claim 11 wherein the fastening mechanism comprises hooks or loops for use in a book-and-loop type connection.

13. A pad for use in cushioning contact with a body comprising:

at least one section of an outer layer of a flexible, resilient, energy absorbing material, the outer layer comprising a plurality of discrete beads of elastic, resilient material positioned adjacent one another and bonded together, wherein the beads elastically deform to absorb energy over multiple impacts to provide impact resistance, the beads having interstitial spaces therebetween through which fluids can pass so that fluids pass transversely through the outer layer with low resistance, the outer layer having a density no greater than 4 lb/ft 3 ; and

at least one section of an inner layer adjacent the section of the outer layer and positioned inside the section of the outer layer when worn on the body, the inner layer being of a flexible, resilient material and being less stiff than the outer layer, the inner layer being adapted to pass fluids transversely therethrough with low resistance, the inner layer comprising a first layer, a second layer spaced from the first layer and a plurality of yarns connecting the two layers, the plurality of yarns provide a buckling effect to provide resilient compressibility.

14. The pad of claim 13 wherein the inner layer comprises a first layer, a second layer spaced from the first layer and a plurality of yarns connecting the two layers.

15. A protective helmet comprising a shell and a plurality of pads therein adapted to be placed in cushioning contact with a body, each pad being adapted to pass fluids therethrough in a direction generally perpendicular to the body and comprising:

an outer layer of a flexible, resilient, energy absorbing material adjacent to the shell, the outer layer comprising a plurality of discrete beads of elastic, resilient material positioned adjacent one another and bonded together, wherein the beads elastically deform to absorb energy over multiple impacts to provide impact resistance, the beads having interstitial spaces therebetween through which fluids can pass transversely through the outer layer, the outer layer having a density no greater than 4 lb/ft 3 ; and

an inner layer adjacent the outer layer and positioned on the opposite side of the outer layer from the shell, the inner layer being of a flexible, resilient material and being less stiff than the outer layer, the inner layer being adapted to pass fluids therethrough with low resistance, the inner layer comprising a first layer, a second layer spaced from the first layer and a plurality of yarns connecting the two layers, the plurality of yarns provide a buckling effect to provide resilient compressibility.

16. The helmet of claim 15 wherein the inner layer comprises a first layer, a second layer spaced from the first layer and a plurality of yarns connecting the two layers.

17. The helmet of claim 16 wherein the inner layer is formed from one or more hydrophilic materials.

18. A protective helmet comprising a shell and an impact cap therein for use in cushioning a body, the impact cap comprising a layer of a flexible, resilient, energy absorbing first material that can pass fluids therethrough, the energy absorbing first material comprises a plurality of elastic, resilient material positioned adjacent one another and bonded together, wherein the beads elastically deform to absorb energy over multiple impacts to provide impact resistance, the beads having interstitial spaces therebetween through which air and water can pass transversely through the first material with low resistance, the outer layer having a density no greater than 4 lb/ft 3 , and at least one section adjacent the first material comprising a flexible, resilient second material that is adapted to pass fluids therethrough with low resistance and is less stiff than the layer of first material, the second material comprising a first layer, a second layer spaced from the first layer and a plurality of yarns connecting the two layers, the plurality of yarns provide a buckling effect to provide resilient compressibility.

19. The protective helmet of claim 18 further comprising a plurality of sections of the second material adjacent the first material.

20. The protective helmet of claim 18 wherein the energy absorbing first material comprises a plurality of substantially elastic, resilient material positioned adjacent one another and having interstitial spaces therebetween through which air and water can pass.

21. The protective helmet of claim 17 wherein the inner layer has an open mesh construction.

22. The protective helmet of claim 17 wherein the yarns connecting the first layer and the second layer are monofilament yarns.

23. The protective helmet of claim 17 wherein the yarns connecting the first layer and the second layer are monofilament yarns.

24. The protective helmet of claim 23 wherein the beads are waterproof.

25. The protective helmet of claim 24 wherein the inner layer of each pad is formed from one or more hydrophilic materials.

26. The protective helmet of claim 23 wherein the inner layer of and the outer layer of each pad are encompassed by a cover.

27. The protective helmet of claim 26 wherein the cover of each pad comprises an inner cover material placed adjacent to and over an inner surface of then inner layer, the inner cover comprising a hydrophilic, wicking material.

28. The protective helmet of claim 27 wherein an outer surface of the outer cover material of each pad comprises a fastening mechanism to fasten the pad to the shell.

29. The protective helmet of claim 28 wherein the fastening mechanism of each pad comprises hooks or loops for use in a hook-and-loop type connection.

Assignments (7)
CONFIRMATION OF GRANT OF SECURITY INTEREST Recorded Jul 7, 2021
From: GALVION LTD.
To: THE TORONTO-DOMINION BANK
Reel/Frame 057434/0466 →
CHANGE OF NAME Recorded Aug 26, 2020
From: RM SOLDIER SYSTEMS, LTD.
To: GALVION LTD.
Reel/Frame 053603/0619 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2019
From: REVISION MILITARY LTD.
To: RM SOLDIER SYSTEMS, LTD.
Reel/Frame 050942/0658 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2019
From: REVISION MILITARY S.A.R.L.
To: REVISION MILITARY LTD.
Reel/Frame 050034/0406 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2012
From: REVISION BALLISTICS LTD.
To: REVISION MILITARY S.A.R.L.
Reel/Frame 029110/0303 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2012
From: MINE SAFETY APPLIANCES COMPANY
To: REVISION BALLISTICS LTD.
Reel/Frame 028828/0085 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 5, 2005
From: DORIA, MASON T.; HUBER, CHRISTOPHER L.
To: MINE SAFETY APPLIANCES COMPANY
Reel/Frame 016744/0709 →