Emergency air supply system and method
10857396 ยท 2020-12-08
Inventors
Cpc classification
A62B25/00
HUMAN NECESSITIES
International classification
Abstract
An emergency air supply system and method for delivering breathable air to an individual in need thereof. The system includes a wall mounted housing that contains an air tank, an inflatable bag, and an ocular respiratory mask. The air tank is removably connected to the inflatable bag, and the inflatable bag is connected to the ocular respiratory mask. During use, the inflatable bag is inflated by an air supply of the air tank, the inflatable bag is removed from the air tank, and the ocular respiratory mask, which remains connected to the inflatable bag, is worn by the individual in need of breathable air.
Claims
1. An emergency air supply system, comprising: a system housing having a forward housing cover attached to a rearward housing body; a left roller wheel track extending from a lower left portion of a rear surface of an interior of the rearward housing body in an upward and forward direction; a right roller wheel track extending from a lower right portion of the rear surface of the interior of the rearward housing body in the upward and forward direction; an ocular respiratory mask, removably disposed in the interior of the rearward housing body, having an inflatable bag fluidly connected to a mouthpiece of the ocular respiratory mask by a tube assembly of the ocular respiratory mask; an air supply in actuatable fluid communication with the inflatable bag; wherein the tube assembly includes an assembly housing having a left roller wheel disposed on a left surface of the assembly housing, and a right roller wheel disposed on a right surface of the assembly housing; wherein a lower surface of the inflatable bag is flush with a lower surface of the interior of the rearward housing body, the left roller wheel is slidably disposed in the left roller wheel track, and the right roller wheel is slidably disposed in the right roller wheel track; wherein an inflation of the inflatable bag by the air supply causes the inflatable bag to expand, thereby exerting a downward force from the lower surface of the inflatable bag to the lower surface of the interior of the rearward housing body, thereby sliding the left roller wheel upward and forward along the left roller wheel track, and sliding the right roller wheel upward and forward along the right roller wheel track, thereby configuring the ocular respiratory mask for removal from the system housing and use in an emergency, removal of the ocular respiratory mask thereby severing the actuatable fluid communication.
2. The emergency air supply system of claim 1, wherein the air supply includes an air tank, having a pressurized air therein, disposed in the interior of the rearward housing body.
3. The emergency air supply system of claim 1, wherein an air pressure of the air supply is measured and displayed by an air pressure gauge, operably connected to the air supply and viewable from an exterior of the system housing.
4. The emergency air supply system of claim 1, wherein the rearward housing body includes one or more wall mounts, configured to attach the system housing to a wall or another vertical structure for storage and use of the emergency air supply system.
5. The emergency air supply system of claim 1, wherein the forward housing cover includes a plurality of apertures in fluid communication with an exterior of the system housing, wherein the forward housing cover includes a smoke detector disposed on an interior surface of the forward housing cover.
6. The emergency air supply system of claim 5, wherein the forward housing cover includes a plurality of lights configured to illuminate upon a detection of an emergency.
7. The emergency air supply system of claim 6, wherein the detection of the emergency includes an actuation of the smoke detector.
8. The emergency air supply system of claim 1, wherein the ocular respiratory mask includes a transparent ocular cover, and a respiratory cover attached to a lower portion of the transparent ocular cover, wherein the tube assembly is attached to a lower portion of the respiratory cover and includes a handle on a forward surface of the tube assembly.
9. The emergency air supply system of claim 8, wherein the respiratory cover includes the mouthpiece, protruding from an inward surface of the respiratory cover, the mouthpiece having a mouthpiece tube in fluid communication with the inflatable bag.
10. The emergency air supply system of claim 1, wherein the actuatable fluid communication between the air supply and the inflatable bag includes an air supply valve assembly configured to direct a pressurized air of the air supply from the air supply to the inflatable bag upon a removal of an air supply valve assembly clip from the air supply valve assembly.
11. The emergency air supply system of claim 10, wherein the removal of the air supply valve assembly clip from the air supply valve assembly causes an upwardly biased cylindrical seal to slide upward, which directs the pressurized air of the air supply to a tube configured to direct the pressurized air from the air supply to the inflatable bag.
12. The emergency air supply system of claim 1, wherein an actuation of the actuatable fluid communication between the air supply and the inflatable bag directs a pressurized air of the air supply to the tube assembly, wherein the tube assembly directs the pressurized air to the inflatable bag.
13. The emergency air supply system of claim 12, wherein the pressurized air of the air supply overcomes a bias of a biased air flap of the tube assembly, wherein a movement of the biased air flap opens a fluid communication between the air supply and the inflatable bag, and closes a fluid communication between the inflatable bag and a mouthpiece tube of the tube assembly.
14. The emergency air supply system of claim 12, wherein after the pressurized air of the air supply is directed to the inflatable bag, and after the actuatable fluid communication between the air supply and the inflatable bag is severed, the tube assembly directs the pressurized air of the inflatable bag to the mouthpiece of the ocular respiratory mask.
15. The emergency air supply system of claim 14, wherein after the actuatable fluid communication between the air supply and the inflatable bag is severed, a bias of a biased air flap of the tube assembly overcomes an internal pressure of the tube assembly, wherein a movement of the biased air flap opens a fluid communication between the inflatable bag and a mouthpiece tube of the tube assembly, and closes a fluid communication between the inflatable bag and an exterior of the tube assembly revealed upon the actuatable fluid communication between the air supply and the inflatable bag being severed.
Description
BRIEF DESCRIPTIONS OF THE DRAWINGS
(1) Although the characteristic features of the invention will be particularly pointed out in the claims, the invention itself and manners in which it may be made and used may be better understood after a review of the following description, taken in connection with the accompanying drawings, wherein like numeral annotations are provided throughout.
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DETAILED DESCRIPTION OF THE INVENTION
(14) Reference is made herein to the attached drawings. Like reference numerals are used throughout the drawings to depict like or similar elements of the invention. The figures are intended for representative purposes only and should not be considered limiting in any respect.
(15) Reference is now made to the drawings, which depict one or more exemplary embodiments of the invention.
(16) Referring now to
(17) Referring now to
(18) In some embodiments, the smoke detector 19 is operably connected to the plurality of lights 15, thereby configuring the plurality of lights 15 to illuminate upon the detection of the emergency by the smoke detector 19. In this manner, the emergency air supply system 1 is configured to independently detect the emergency, and to alert an individual nearby of the emergency. In some embodiments, a combination of the illuminated plurality of lights 15 and a noise of the smoke detector 19 upon the detection of the emergency provides both visual and audio warnings to alert the individual nearby that escaping the emergency may require a use of the emergency air supply system 1.
(19) An interior of the rearward housing body 3 includes an air supply in actuatable fluid communication with an inflatable bag 7 of an ocular respiratory mask 6. The air supply is fluidly connected to the inflatable bag 7 by a flexible tube 28, and is actuatably connected to the flexible tube 28 by an air supply valve assembly 21. Actuation of the air supply valve assembly 21 from a closed position to an open position includes a removal of an air supply valve assembly clip 22 from the air supply valve assembly 21, as occurs upon an opening of the forward housing cover 2, as explained elsewhere herein.
(20) A feature of the present invention includes a left roller wheel track 4, extending from a lower left portion of a rear surface of the interior of the rearward housing body 3 in an upward and forward direction, and a right roller wheel track 5, extending from a lower right portion of the rear surface of the interior of the rearward housing body 3 in the upward and forward direction. The roller wheel tracks (4, 5) are configured to removably accept a pair of roller wheels attached to a left and a right side of a tube assembly housing 8. Upon actuation of the air supply valve assembly 21 from the closed position to the open position, the roller wheel tracks (4, 5) guide the roller wheels in the upward and forward direction during inflation of the inflatable bag 7 of the respiratory mask 6, thereby configuring the ocular respiratory mask for removal from the housing and use in the emergency, as explained elsewhere herein.
(21) The ocular respiratory mask 6 includes the inflatable bag 7, a tube assembly having the tube assembly housing 8, a respiratory cover 9, and a transparent ocular cover 10. The ocular respiratory mask 6 includes a lightweight and compact form factor, thereby enabling use by individuals having different degrees of physical ability.
(22) Referring now to
(23) The left roller wheel track 4 and the right roller wheel track 5 are configured to lift and present the ocular respiratory mask 6 upon inflation of the inflatable bag 7 by the air supply. In this manner, the individual needing to use the emergency air supply system does not need to perform any unnecessary or complicated tasks or steps to obtain breathable air in the emergency.
(24) Referring now to
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(27) The air supply valve assembly clip 22 is operably connected to the forward housing cover 2. In this manner, opening the forward housing cover 2 pulls the air supply valve assembly clip 22, removing the air supply valve assembly clip 22 from the air supply valve assembly 21 and actuating the actuatable fluid communication between the air supply and the inflatable bag. In this manner, the individual in the emergency does not need to perform any unnecessary or complicated tasks or steps to obtain breathable air.
(28) In some embodiments, the air supply valve assembly 21 is configured to provide a continuous source of pressurized air from the air tank 25 to the left channel 26, and actuation of the air supply valve assembly 21 directs pressurized air from the air tank 25 to the right channel 27. In this manner, the pressure of the pressurized air from the air tank 25 may be continuously monitored and displayed without the need to actuate the air supply valve assembly 21. In some embodiments, the air supply valve assembly 21 is designed for a one-time use of the air supply, and the air supply cannot be reused once the air supply valve assembly 21 is actuated.
(29) In some embodiments, a regulator is included in the emergency air supply system, such that the regulator is configured to control a pressure output from the air supply valve assembly 21. Particularly, the pressure output from the air supply valve assembly 21 should not exceed a maximum pressure capacity of the inflatable bag, to avoid popping or destroying the inflatable bag during use in the emergency. Particularly, the pressure output from the air supply valve assembly 21 is configured to not exceed the maximum pressure capacity of the inflatable bag. The emergency air supply system is configured to deliver the pressurized air from the air supply to the inflatable bag, such that when the inflatable bag is fully inflated, the system remains intact before use by the user.
(30) Referring now to
(31) The pressurized air passes from the inlet chamber 29 through the intermediate channel 33, and into the main chamber 30, where it is directed to an upper portion 31 of the inflatable bag, and into the inflatable bag for inflation. Upon inflation of the inflatable bag, a pressure of the main chamber 30 is greater than a pressure of a mouthpiece tube 32 and the bias of the biased air flap 34, thereby keeping the biased air flap 34 in a horizontal position, as depicted in
(32) In some embodiments, a force may be applied (e.g., a squeezing or pinching force, manually applied by one or more digits of a user of the ocular respiratory mask) at or near the upper portion 31 of the inflatable bag after inflation of the inflatable bag and removal of the ocular respiratory mask. In this manner, the pressurized air within the inflatable bag is preserved when applying the ocular respiratory mask to a face of the user, or when traversing one or more sections of the building that do not require the use of the ocular respiratory mask.
(33) Referring now to
(34) Generally, the mouthpiece 13 is configured to be bitten down to secure the ocular respiratory mask to the face of the user. A flow of the pressurized air from the inflatable bag through the mouthpiece 13 may be controlled by the squeezing or pinching force, manually applied by one or more digits of the user of the ocular respiratory mask, or may be controlled by blocking the flow by placement of a tongue of the user over an aperture of the mouthpiece 13, as would be understood by the user. In this manner, both hands of the user may be available for opening doors, removing debris, or navigating obstacles while escaping the emergency.
(35) Referring now to
(36) Referring now to
(37) 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 present invention to the precise forms disclosed, and modifications and variations are possible in view of the above teaching. The exemplary embodiment was chosen and described to best explain the principles of the present invention and its practical application, to thereby enable others skilled in the art to best utilize the present invention and its embodiments with modifications as suited to the use contemplated.
(38) It is therefore submitted that the present invention has been shown and described in the most practical and exemplary embodiments. It should be recognized that departures may be made which fall within the scope of the invention. With respect to the description provided herein, it is submitted that the optimal features of the invention include variations in size, materials, shape, form, function and manner of operation, assembly, and use. All structures, functions, and relationships equivalent or essentially equivalent to those disclosed are intended to be encompassed by the present invention.