Force absorbing helmet
11484083 · 2022-11-01
Inventors
Cpc classification
International classification
Abstract
A force absorbing helmet has an exterior shell and an interior shell, the interior shell further has an interior lumen comprising a viscous liquid and a plurality of hard springs. A plurality of micro-hinges are located on the exterior surface of the exterior shell to deflect the portions of the exterior shell due to a blunt force exerted thereon.
Claims
1. An impact protecting helmet, comprising: a facemask; a plurality of strap attachment points; a plurality of neck supports; an outer shell having a plurality of micro hinges, the micro hinges are disposed on both sides of a front area, a crown area, and a rear area of the outer shell; an inner shell disposed interiorly to the outer shell; a plurality of micro-springs each attached to an inner surface of the outer shell at a first end of each of the micro-springs and to an outer surface of the inner shell at a second end of each of the micro-springs to provide additional shock absorbing capability; an interstitial space disposed between the outer shell and the inner shell and filled with a viscous material; an interior layer of low-resilience polyurethane foam configured to provide comfort cushioning against the head of a person to provide an additional layer of impact protection; and a hinge pin allowing for motion along a rotational movement path for deflection between adjacent sections of the outer shell and transfer of energy to other portions of the impact protecting helmet; wherein the inner shell having a plurality of air bags mounted thereon and the air bags are configured to provide overall support and positioning of the impact protecting helmet on the head of a person.
2. The impact protecting helmet, according to claim 1, wherein the micro hinges are linear and are intended to deform under impact to absorb shock.
3. The impact protecting helmet, according to claim 1, wherein the micro hinges are mirror images to each other.
4. The impact protecting helmet, according to claim 1, wherein the micro hinges are positioned and configured to allow the outer shell to absorb impact by deflection of alignment of an outer surface of the outer shell.
5. The impact protecting helmet, according to claim 1, wherein the air bags and low-resilience polyurethane foam are mounted to an inner surface of the inner shell such that the inner shell is configured to provide a stable mounting surface for the air bags and the low-resilience polyurethane foam and the outer surface of the inner shell is configured to provide a stable mounting surface for the micro-springs.
6. The impact protecting helmet, according to claim 1, wherein the viscous material surrounds the micro-springs.
7. The impact protecting helmet, according to claim 1, wherein the inner shell is ½ inch thick.
8. The impact protecting helmet, according to claim 1, wherein the micro hinges are physically affixed to both sides of the front area, crown area, and rear area of the outer shell with a fastening means.
9. The impact protecting helmet, according to claim 8, wherein the fastening means is a fastener selected from the group consisting of a plurality of rivets, an adhesive, or a plurality of screws.
10. The impact protecting helmet, according to claim 1, wherein the interstitial space is leakproof.
11. The impact protecting helmet, according to claim 1, wherein the impact protecting helmet is configured to provide physical impact protection for the head of the person.
12. The impact protecting helmet, according to claim 1, wherein the impact protecting helmet is configured to provide reduction in injuries resulting from impact, shock, vibration, and resultant internal damage from a spinal injury, a neck injury, a skull injury, or a concussion.
13. The impact protecting helmet, according to claim 1, wherein the impact protecting helmet is configured to be worn while playing a sport selected from the group consisting of football, baseball, bicycle riding, hockey, or motor sport.
14. The impact protecting helmet, according to claim 1, wherein the impact protecting helmet is configured to be worn during an activity selected from the group consisting of a fire-fighting activity, a construction activity, a military activity, and a law enforcement activity.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The advantages and features of the present invention will become better understood with reference to the following more detailed description and claims taken in conjunction with the accompanying drawings, in which like elements are identified with like symbols, and in which:
(2)
(3)
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DESCRIPTIVE KEY
(7) 10 impact protecting helmet 15 facemask 20 strap attachment point 25 neck support 30 outer shell 35 micro hinge 40 front area 45 crown area 50 rear area 55 inner shell 60 micro spring 65 viscous material 70 standard air bag 75 low-resilience polyurethane foam 80 gap 85 fastening means 90 hinge pin 95 hinge plate 100 rotational movement path “a” 105 impact energy wave 110 energy wave amplitude
1. Description of the Invention
(8) The best mode for carrying out the invention is presented in terms of its preferred embodiment, herein depicted within
(9) The terms “a” and “an” herein do not denote a limitation of quantity, but rather denote the presence of at least one (1) of the referenced items.
2. Detailed Description of the Figures
(10) Referring now to
(11) The helmet 10 is provided with standard appointments such as a facemask 15, strap attachment points 20, and neck supports 25 as would typically be expected. The outer shell 30 is provided with a total of six (6) micro hinges 35 of which only three (3) are visible due to illustrative limitations. These micro hinges 35 are provided on the front area 40, the crown area 45, and the rear area 50 of the outer shell 30 and would be repeated on both sides. The micro hinges 35 are linear in nature and are intended to deform under impact to absorb shock. Further detail on the operation and configuration of the micro hinges 35 will be provided herein below.
(12) Referring next to
(13) The balance of the interstitial space between the outer shell 30 and the inner shell 55 is filled with a viscous material 65. As such, any deformation of the outer shell 30 will result in forces being applied to the local micro springs 60 as well as the viscous material 65. These forces would then be diminished and dissipated through the entire helmet 10 and result in a lower overall point impact on the interior of the helmet 10. The inner shell 55 is provided with conventionally available standard air bags 70 that form the overall support and provide positioning of the helmet 10 on the head of the user. An interior layer of low-resilience polyurethane foam 75 (memory foam) is provided to allow for comfort cushioning against the head of the user as well as provide a final layer of impact protection. The low-resilience polyurethane foam 75 is visible as a continuous covering on the balance of the interior of the helmet 10.
(14) Referring now to
(15) Referring to
(16) Referring to
3. Operation of the Preferred Embodiment
(17) The preferred embodiment of the present invention can be utilized by the common user in a simple and effortless manner with little or no training. It is envisioned that the helmet 10 would be constructed in general accordance with
(18) During utilization of the helmet 10, the following procedure would be initiated: the helmet 10 would be placed atop the user's head in a customary manner; any securing methods such as chin straps would be utilized. The helmet 10 is then worn/utilized in a manner identical to that of current protective helmets helmet 10 thus not requiring any new knowledge or education of the user. Should an impact energy wave 105 be delivered to the outer shell 30, the outer shell 30 flexes inward providing the first step of protection; the second step is provided by the micro hinges 35 allowing a greater level of deformation of the outer shell 30, the third step of protection is provided by the micro springs 60 compressing and absorbing the impact; the fourth step is provided by the viscous material 65 which further dissipates the impact energy wave 105; the fifth step of protection is provided by the inner shell 55; the sixth step of protection is provided by the standard air bags 70; and the final and seventh step of protection is the low-resilience polyurethane foam 75. These seven (7) layers/levels of protection diminish the energy wave amplitude 110 thus reducing/eliminating potential physical injury to the user.
(19) After use of the helmet 10, it is removed and stored until needed again. Should a large impact damage or permanently deform the helmet 10, it should be removed from service and be repaired or replaced as necessary.
(20) The foregoing descriptions of specific embodiments of the present invention have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the invention to the precise forms disclosed, and obviously many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the invention and its practical application, to thereby enable others skilled in the art to best utilize the invention and various embodiments with various modifications as are suited to the particular use contemplated.