Oxygen Mask Assembly
20230249009 · 2023-08-10
Inventors
Cpc classification
A41D13/11
HUMAN NECESSITIES
A62B23/025
HUMAN NECESSITIES
A62B18/084
HUMAN NECESSITIES
International classification
A62B18/00
HUMAN NECESSITIES
A41D13/11
HUMAN NECESSITIES
A62B18/08
HUMAN NECESSITIES
Abstract
An oxygen mask assembly for assisting a user with breathing while wearing a mask includes a mask is wearable on a user's face such that the mask covers the user's mouth and nose. An oxygen tube extends through the mask to deliver oxygen to the user for breathing when the mask is being worn. An exhale valve is fluidly integrated into the mask and the exhale valve has a single direction of flow. In this way the exhale valve facilitates air exhaled by the user to pass through the exhale valve and inhibit air inhaled by the user from passing through the exhale valve. An oxygen reservoir containing gaseous oxygen is provided and the oxygen tube is fluidly coupled to the oxygen tank to deliver the gaseous oxygen to the user for breathing.
Claims
1. An oxygen mask assembly for protecting a user from airborne transmission of infectious diseases, said assembly comprising: a mask being wearable on a user's face such that said mask covers the user's mouth and nose, said mask comprising an inner layer and an outer layer, said outer layer being comprised of a fluid impermeable material wherein said outer layer is configured to inhibit the user from inhaling airborne pathogens and particles, said inner layer being foraminous thereby facilitating said inner layer to ventilate a space between said inner layer and said outer layer; a pair of ear loops, each of said ear loops being coupled to said mask wherein each of said ear loops is configured to be positioned around a respective one of the user's ears; an oxygen tube extending through said mask wherein said oxygen tube is configured to deliver oxygen to the user for breathing when said mask is being worn; an exhale valve being fluidly integrated into said mask, said exhale valve having a single direction of flow wherein said exhale valve is configured to facilitate air exhaled by the user to pass through said exhale valve and to inhibit air inhaled by the user from passing through said exhale valve; and an oxygen reservoir containing gaseous oxygen, said oxygen tube being fluidly coupled to said oxygen tank wherein said oxygen tank is configured to deliver the gaseous oxygen to the user for breathing.
2. The assembly according to claim 1, wherein: said mask has a perimeter edge, each of said inner layer and said outer layer being joined at said perimeter edge, said perimeter edge having a lower portion being rounded and an upper portion being ovoid such that said perimeter edge defines a pear shape wherein said mask is configured to conform to the shape of the user's face; said mask has a tube being bonded to said perimeter edge, said tube extending around an entirety of said perimeter edge, said tube being comprised of a resiliently compressible material wherein said tube is configured to enhance comfort for the user's face when said mask is worn; and said mask has an oxygen hole extending through said inner surface and said outer surface, said oxygen hole being positioned adjacent to said lower portion of said perimeter edge.
3. The assembly according to claim 2, wherein said oxygen tube has a primary end and a secondary end, said oxygen tube extending through said oxygen hole having said secondary end being exposed on said mask.
4. The assembly according to claim 2, wherein said exhale valve extends through said outer surface and said inner surface, said single direction of flow of said exhale valve moving from said inner surface toward said outer surface.
5. The assembly according to claim 3, wherein said primary end of said oxygen tube being fluidly coupled to an outlet of said oxygen reservoir.
6. An oxygen mask assembly for protecting a user from airborne transmission of infectious diseases, said assembly comprising: a mask being wearable on a user's face such that said mask covers the user's mouth and nose, said mask comprising an inner layer and an outer layer, said outer layer being comprised of a fluid impermeable material wherein said outer layer is configured to inhibit the user from inhaling airborne pathogens and particles, said inner layer being foraminous thereby facilitating said inner layer to ventilate a space between said inner layer and said outer layer, said mask having a perimeter edge, each of said inner layer and said outer layer being joined at said perimeter edge, said perimeter edge having a lower portion being rounded and an upper portion being ovoid such that said perimeter edge defines a pear shape wherein said mask is configured to conform to the shape of the user's face, said mask having a tube being bonded to said perimeter edge, said tube extending around an entirety of said perimeter edge, said tube being comprised of a resiliently compressible material wherein said tube is configured to enhance comfort for the user's face when said mask is worn, said mask having an oxygen hole extending through said inner surface and said outer surface, said oxygen hole being positioned adjacent to said lower portion of said perimeter edge; a pair of ear loops, each of said ear loops being coupled to said mask wherein each of said ear loops is configured to be positioned around a respective one of the user's ears, each of said ear loops having a first end and a second end, each of said first end and said second end of each of said ear loops being coupled to said tube, said ear loops being positioned on opposite sides of said mask with respect to each other; an oxygen tube extending through said mask wherein said oxygen tube is configured to deliver oxygen to the user for breathing when said mask is being worn, said oxygen tube having a primary end and a secondary end, said oxygen tube extending through said oxygen hole having said secondary end being exposed on said mask; an exhale valve being fluidly integrated into said mask, said exhale valve having a single direction of flow wherein said exhale valve is configured to facilitate air exhaled by the user to pass through said exhale valve and to inhibit air inhaled by the user from passing through said exhale valve, said exhale valve extending through said outer surface and said inner surface, said single direction of flow of said exhale valve moving from said inner surface toward said outer surface; and an oxygen reservoir containing gaseous oxygen, said oxygen tube being fluidly coupled to said oxygen tank wherein said oxygen tank is configured to deliver the gaseous oxygen to the user for breathing, said primary end of said oxygen tube being fluidly coupled to an outlet of said oxygen reservoir.
7. The assembly according to claim 6, further comprising a cover being attachable to said outer layer of said mask, said cover being comprised of a textile material to protect said outer layer.
8. The assembly according to claim 7, further comprising: a first mating member being coupled to said outer surface of said mask, said first mating member being coextensive with said perimeter edge of said mask; and a second mating member being coupled to an inside surface of said cover, said second mating member being matable to said first mating member when said cover is positioned over said mask for retaining said cover on said mask.
Description
BRIEF DESCRIPTION OF SEVERAL VIEWS OF THE DRAWING(S)
[0011] The disclosure will be better understood and objects other than those set forth above will become apparent when consideration is given to the following detailed description thereof. Such description makes reference to the annexed drawings wherein:
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
DETAILED DESCRIPTION OF THE INVENTION
[0021] With reference now to the drawings, and in particular to
[0022] As best illustrated in
[0023] The perimeter edge 26 has a lower portion 28 that is rounded and an upper portion 30 that is ovoid such that the perimeter edge 26 defines a pear shape to conform to the shape of the user's face 14. The mask 12 includes a tube 32 which is bonded to the perimeter edge 26 and the tube 32 extends around an entirety of the perimeter edge 26. The tube 32 is comprised of a resiliently compressible material to enhance comfort for the user's face 14 when the mask 12 is worn. The mask 12 has an oxygen hole 34 extending through the inner surface 14 and the outer surface 14, and the oxygen hole 34 is positioned adjacent to the lower portion 28 of the perimeter edge 26.
[0024] A pair of ear loops 36 is coupled to the mask 12 and each of the ear loops 36 can be positioned around a respective one of the user's ears 38. Each of the ear loops 36 has a first end 40 and a second end 42, and each of the first end 40 and the second end 42 of each of the ear loops 36 is coupled to the tube 32. The ear loops 36 is positioned on opposite sides of the mask 12 with respect to each other. An oxygen tube 44 extends through the mask 12 to deliver oxygen to the user for breathing when the mask 12 is being worn. The oxygen tube 44 has a primary end 46 and a secondary end 48, and the oxygen tube 44 extends through the oxygen hole 34 has the secondary end 48 is exposed on the mask 12.
[0025] An exhale valve 50 is fluidly integrated into the mask 12 and the exhale valve 50 has a single direction of flow. In this way air exhaled by the user can pass through the exhale valve 50 and inhibit air inhaled by the user from passing through the exhale valve 50. The exhale valve 50 extends through the outer surface 14 and the inner surface 14. The single direction of flow of the exhale valve 50 moves from the inner surface 14 toward the outer surface 14. An oxygen reservoir 52 is provided which contains gaseous oxygen. The oxygen tube 44 is fluidly coupled to the oxygen tank to deliver the gaseous oxygen to the user for breathing. Additionally, the primary end 46 of the oxygen tube 44 is fluidly coupled to an outlet 54 of the oxygen reservoir 52. As is most clearly shown in
[0026] In an alternative embodiment 60 as is most clearly shown in
[0027] In use, the mask 12 is worn on the user's face 14 when the user needs to adhere to Covid-19 related masking requirements. The oxygen tube 44 delivers oxygen to the user while the user is wearing the mask 12. In this way the user can breathe more easily as compared to wearing cloth mask or surgical mask. The cover 62 can be positioned over the mask 12 for enhanced protection against airborne particles and pathogens.
[0028] With respect to the above description then, it is to be realized that the optimum dimensional relationships for the parts of an embodiment enabled by the disclosure, to include variations in size, materials, shape, form, function and manner of operation, assembly and use, are deemed readily apparent and obvious to one skilled in the art, and all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by an embodiment of the disclosure.
[0029] Therefore, the foregoing is considered as illustrative only of the principles of the disclosure. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the disclosure to the exact construction and operation shown and described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of the disclosure. In this patent document, the word “comprising” is used in its non-limiting sense to mean that items following the word are included, but items not specifically mentioned are not excluded. A reference to an element by the indefinite article “a” does not exclude the possibility that more than one of the element is present, unless the context clearly requires that there be only one of the elements.