Partition plate device of a respirator mask
11344753 · 2022-05-31
Inventors
Cpc classification
A62B23/025
HUMAN NECESSITIES
International classification
A62B18/08
HUMAN NECESSITIES
A41D13/11
HUMAN NECESSITIES
Abstract
A partition plate device of a respirator mask includes a partition plate having an upside surface and a downside surface each cooperating with a mask body and a user's face to define an upper chamber and a lower chamber, respectively, a mask connecting rims for connecting against an inner surface of the mask body a user connecting rim for contacting the user's face, and at least one valve hole extending through the upside and downside surfaces and communicating with the upper and lower chambers. A valve unit includes at least one valve flap covering the valve hole and being movable away from the same to permit air in the lower chamber to flow in a single direction to the upper chamber.
Claims
1. A partition plate device of a respirator mask which has a mask body configured to cover a face of a user, said partition plate device comprising: a partition plate configured to be disposed on an inner surface of the mask body and including an upside surface configured to cooperate with the mask body and the user's face to define an upper chamber for receiving a nose of the user, a downside surface configured to cooperate with the mask body and the face of the user to define a lower chamber for receiving a mouth of the user, a mask connecting rim configured to connect against the inner surface of the mask body, a user connecting rim opposite to said mask connecting rim and configured to contact the face of the user, and at least one valve hole extending through said upside surface and said downside surface and communicating with said upper chamber and said lower chamber; and a valve unit disposed on said upside surface of said partition plate and including at least one valve flap covering said at least one valve hole and being movable away from said at least one valve hole to permit air in said lower chamber to flow in a single direction to said upper chamber, wherein said at least one valve hole is defined by a hole-defining wall which includes two curved sections that are curved in a same direction and that are spaced apart from each other in a front-rear direction.
2. The partition plate device as claimed in claim 1, wherein said partition plate further includes a left end and a right end spaced apart from each other by a first distance of between 65 mm and 130 mm as measured in a left-right direction, and a largest distance between said mask connecting rim and said user connecting rim is greater than 12 mm as measured in the front-rear direction transverse to the left-right direction.
3. The partition plate device as claimed in claim 2, wherein said user connecting rim of said partition plate has an arc segment at a central portion thereof, said arc segment having a radius of between 30 mm and 50 mm, and subtending a central angle of between 80° and 160°.
4. The partition plate device as claimed in claim 2, wherein said partition plate is configured to be disposed removably on the inner surface of the mask body.
5. The partition plate device as claimed in claim 4, further comprising a support seat configured to be fixed to the inner surface of the mask body and including a supporting frame that follows a contour of said mask connecting rim of said partition plate and that extends along the left-right direction, and a socket portion connected to said supporting frame, said partition plate being removably mounted on said support seat, said mask connecting rim of said partition plate connecting against said supporting frame, said partition plate further including a plug portion removably received in said socket portion, said upside surface of said partition plate being configured to cooperate with said support seat, the mask body and the face of the user to define said upper chamber, said downside surface of said partition plate being configured to cooperate with said support seat, the mask body and the face of the user to define said lower chamber.
6. The partition plate device as claimed in claim 2, wherein said left end and said right end of said partition plate are located below said at least one valve hole, each of said left end and right end of said partition plate having a lowest point spaced apart from a bottom end of said hole-defining wall by a distance of greater than 5 mm as measured in a top-bottom direction transverse to the left-right direction and the front-rear direction.
7. The partition plate device as claimed in claim 1, wherein said at least one valve flap has a fixed portion fixed to said upside surface of said partition plate at a position proximate to said at least one valve hole, and a movable portion that extends outwardly from said fixed portion that covers said at least one valve hole and that works as a one-way valve, said at least one valve flap having a maximum length of below 50 mm and a minimum length of greater than 10 mm as measured in a left-right direction from said fixed portion to said movable portion.
8. The partition plate device as claimed in claim 7, wherein said at least one valve flap of said valve unit includes two valve flaps, said at least one valve hole of said partition plate includes two valve holes, wherein said two valve holes each have an area of between 40 mm.sup.2 and 400 mm.sup.2 for air to pass therethrough, said two valve flaps respectively covering said two valve holes.
9. The partition plate device as claimed in claim 8, wherein said fixed portions of said two valve flaps are integrally connected as one piece and are located between said two valve holes, said movable portions of said two valve flaps extending oppositely and respectively from said fixed portions.
10. A partition plate device of a respirator mask, comprising: a support seat configured to be fixed to an inner surface of a mask body of the respirator mask and including a supporting frame extending along a left-right direction, and a socket portion provided at one side of said supporting frame; and a partition plate including an upside surface configured to cooperate with the mask body and a face of a user to define an upper chamber configured to receive a nose of the user, a downside surface configured to cooperate with the mask body and the face of the user to define a lower chamber configured to receive a mouth of the user, a mask connecting rim connecting against said supporting frame, a user connecting rim opposite to said mask connecting rim and configured to contact the face of the user, at least one valve hole communicating with said upper chamber and said lower chamber, and a plug portion removably engaged to said socket portion; and a valve unit disposed on said upside surface of said partition plate and including at least one valve flap covering said at least one valve hole and being movable away from said at least one valve hole to permit air in said lower chamber to flow in a single direction to said upper chamber, wherein said at least one valve hole is defined by a hole-defining wall which includes two curved sections that are curved in a same direction and that are spaced apart from each other in a front-rear direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, of which:
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DETAILED DESCRIPTION
(13) Before the present disclosure is described in greater detail with reference to the accompanying embodiments, it should be noted herein that like elements are denoted by the same reference numerals throughout the disclosure.
(14) Referring to
(15) The support seat 3 is made of a non-rigid material. In this embodiment, the support seat 3 is fixed to the inner surface 21 of the mask body 2. However, in actual practice, the support seat 3 may be removably fixed to the inner surface 21 of the mask body 2 in a known manner. The support seat 3 of this embodiment includes a supporting frame 31 fixed to the inner surface 21 of the mask body 2 and extending along a left-right direction (X), a socket portion 32 connected to the center of the supporting frame 31, and two clamping portions 34 respectively connected to two opposite ends of the supporting frame 31.
(16) Referring to
(17) Referring to
(18) Left and right ends 45 of the partition plate 4 are spaced apart from each other by a first distance (D1) of between 65 mm and 130 mm as measured in the left-right direction (X). In this embodiment, the first distance (D1) is about 106 mm.
(19) The valve holes 461 are spacedly formed in a central portion of the partition plate 4. The total area of all the valve holes 461 is between 80 mm.sup.2 and 800 mm.sup.2 for air to pass therethrough. Each valve hole 461 has a large hole end 4611 having the largest width in the front-rear direction (Y), and a small hole end 4612 opposite to the large hole end 4611 and having the smallest width in the front-rear direction (Y). The large hole end 4611 is close to the central portion of the partition plate 4. The small hole ends 4612 of the valve holes 461 are respectively close to the left and right ends 45. The width of each valve hole 461 gradually decreases from the large hole end 4611 toward the small hole end 4612. Preferably, the area (A) of each valve hole 461 ranges between 40 mm.sup.2 and 310 mm.sup.2, and more preferably between 50 mm.sup.2 and 200 mm.sup.2. When the largest distance (d) is 14.5 mm, the area (A) is 78.8 mm.sup.2.
(20) With reference to
(21) The fixed portions 511 of the valve flaps 51 are integrally connected as one piece, and are located between the valve holes 461. The valve flaps 51 are almost the same shape as and slightly larger than the valve holes 461 to fully cover it.
(22) With reference to
(23) When the user inhales air through the nose, one stream of ambient air is sucked into the lower chamber 42 through the mask body 2 with filter facepiece, and the stream of air pushes the valve flaps 51 to move away from the valve holes 461 to permit a portion of air in the lower chamber 42 to flow into the upper chamber 41. The other stream of air directly enters the upper chamber 41 through the mask body 2, and combines with the portion of air that enters the upper chamber 41 from the lower chamber 42 to increase the amount of air intake of the upper chamber 41 for providing inhalation by the nose. Through this, a sufficient amount of air can be inhaled by the nose, and there is no increasing of breathing resistance caused by a smaller filter area of the upper chamber 41.
(24) When the user exhales air through the nose, the exhaled air pushes the valve flaps 51 to close the valve holes 461 of the partition plate 4, so that it cannot flow from the upper chamber 41 into the lower chamber 42, and is limited within the upper chamber 41 for discharge into the atmosphere through the mask body 2.
(25) When the user exhales air through the mouth, apart from being discharged into the atmosphere through the mask body 2 from the lower chamber 42, a portion of the exhaled air will pass through the valve unit 5 and enter the upper chamber 41 for quick discharge into the atmosphere through the mask body 2. Repeating this, the amount of exhaled air in the lower chamber 42 is gradually reduced so that the amount of fresh air during inhalation can be increased. A sultry feeling during use of the respirator of this disclosure can then be reduced.
(26) Referring again to
(27) Referring back to
(28) With reference again to
(29) It is worth to mention herein that the height of the user connecting rim 44 of the partition plate 4 is larger than that of the mask connecting rim 43 thereof, so that when the user connecting rim 44 contacts the upper lip of the user, a wearing comfort and an abutment effect can be enhanced.
(30) It should be noted herein that the number of each of the valve hole 461 and the valve flap 51 is not limited to two. In an alternative embodiment, the number of each of the valve hole 461 and the valve flap 51 may be one, as shown in
(31) In another alternative embodiment, as shown in
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(33) From the foregoing description, the advantages of the present disclosure can be summarized as follows:
(34) 1. This disclosure uses the partition plate 4 to restrict the exhaled air from the nose in the upper chamber 41. Further, through coordination of the valve holes 461 and the valve flaps 51 of the valve unit 5 to control the flow of air in a single direction, the upper chamber 41 can have a portion of the air in the lower chamber 42, so that the amount of the exhaled air inside the respirator of this disclosure can be reduced, and the amount of inhaled fresh air can be increased. Hence, the respirator mask of this disclosure can be worn with comfort without breathing resistance and sultry feeling, so that willingness of the user to wear the respirator mask can be promoted.
(35) 2. Through the detachable configuration of the partition plate 4 and its connection relationship with the support seat 3, various sizes and shapes of the partition plates 4 can be changed to fit the user's face. Apart from that, less stretching of the mask body 2 leads to less leakage, thereby enhancing the protecting efficiency and wear comfort.
(36) In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiment(s). It will be apparent, however, to one skilled in the art, that one or more other embodiments maybe practiced without some of these specific details.
(37) While the disclosure has been described in connection with what are considered the exemplary embodiments, it is understood that this disclosure is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.