This application claims the benefit of priority under 35 U.S.C. §119 of German Patent Application DE 10 2011 113 716.9 filed Sep. 17, 2011, the entire contents of which are incorporated herein by reference.
The present invention pertains to a directional valve and to a breathing mask with a directional valve.
A breathing mask with port openings for filters as well as with an inspiration valve and with an expiration valve is known from DE 40 17 336 C1. Respirator filters can be arranged at various points of the half mask by means of a connection adapter, which can be fastened to a half mask in two preferential positions. The gas flow is sent to the mask user via the respirator filters into the mask interior by means of directional valves, which are arranged both in the area of the respirator filters and at the gas outlet of the breathing mask, and the breathing gas enters the environment via an expiration valve during the expiration phase. The directional valves comprise a valve seat and a valve membrane, which lies on the valve seat and is fastened centrally to the valve seat. The valve membrane is lifted off from the valve seat during gas flow, so that a gas flow is made possible. The drawback of the prior-art valve construction is that the flow resistance is relatively high. The length of the membrane section that can be deflected by the gas flow is limited by the diameter of the valve seat due to the central fastening of the valve membrane.
Directional valves for breathing masks are known, which have a valve membrane fastened to the valve seat on one side and can be lifted off from the valve seat in a flap-like manner. Such a directional valve appears, for example, from U.S. Pat. No. 6,047,698. A valve membrane cut to a rectangular shape lies on a flat valve seat and is pressed by a fixing lug fastened to the edge of the valve bonnet against the valve seat. Even though a markedly lower flow resistance can be obtained with this valve construction compared to a directional valve with centrally fastened valve membrane, the leakage values are nevertheless higher because the valve membrane is fastened on one side, and the valve membrane may remain stuck to the inside of the valve bonnet due to adhesive forces in case of a possible condensation of moist expired air, as a result of which the closing operation of the directional valve may be delayed or the closing operation may fail to occur altogether.
A basic object of the present invention is to improve a directional valve in respect to its functional properties and to propose a breathing mask with a corresponding directional valve. In particular, a high level of tightness of the valve shall also be ensured if the expired air has a high moisture content or the breathing mask is being used in a moist environment.
It was found that the flow resistance decreases markedly in case of a slightly eccentric fixation of the valve membrane in an area between 8% and 15% of the axis length D of the greatest longitudinal extension of the valve membrane. The flow resistance is only about 60% of the value for a centrally fastened valve membrane at gas flows of up to about 80 L/minute in the case of a round, eccentrically fixed valve membrane. The valve membrane is preferably circular, but it may also have an oval, elliptical, square or rectangular shape. The axis length is the diameter D of the valve membrane in case of a circularly shaped valve membrane. The axis length of the greatest longitudinal extension is defined as the length of the main axis for the case of an elliptical valve membrane. The valve membrane is fixed by a fixing lug at the valve seat. The fixing lug is arranged at the valve housing, preferably at a valve bonnet of the valve housing comprising a valve bonnet and valve seat. The dimensions of the fixing lug are selected to be such that the valve membrane is in contact with the sealing surface of the valve seat in the absence of flow through the valve and during an inspiration phase. The fixing lug is preferably Y-shaped and has a plurality of fixing points. A specific arching of the valve membrane can be achieved due to this shape, so that the valve membrane is in contact with the sealing surface with a prestress and secured sealing is guaranteed. In addition, the eccentric fastening of the valve membrane according to the present invention leads to the advantage that adhesive effects of the valve membrane on the valve bonnet as a consequence of condensed moisture do not occur, because the lift of the freely mobile surface of the valve membrane is markedly smaller in case of a slightly eccentric fixation than in case of fixation at the edge. Since the valve membrane can move freely on both sides of the fixing lug, which fixes the valve membrane to the valve seat, the entire opening located within the sealing surface is available for the flow of gas in one direction such as during an expiration phase. Both a mechanically stable fastening of the valve membrane in the vicinity of the center of the membrane and reduced flow resistance compared to the central fixation are achieved with the eccentric fixation of the valve membrane according to the present invention.
Breathing masks with the directional valve according to the present invention are half masks, full masks, filtering half masks, but it is also possible to equip protective hoods with the directional valve.
An exemplary embodiment of the device according to the present invention is shown in the drawings and will be explained in more detail below. The various features of novelty which characterize the invention are pointed out with particularity in the claims annexed to and forming a part of this disclosure. For a better understanding of the invention, its operating advantages and specific objects attained by its uses, reference is made to the accompanying drawings and descriptive matter in which preferred embodiments of the invention are illustrated.
Referring to the drawings in particular,
Valve seat 1 and valve bonnet 10 together form a valve housing 15. The directional valve 20 is formed by the valve housing 15 with the valve membrane 16 inserted. The directional valve 20 is connected as an expiration valve on the underside 8 of valve seat 1 with a filter mask 22. Filter mask 22 and directional valve 20 together form a breathing mask,
A slight displacement of fixing lug 13 from the center already leads to a marked reduction of flow resistance R.
While specific embodiments of the invention have been shown and described in detail to illustrate the application of the principles of the invention, it will be understood that the invention may be embodied otherwise without departing from such principles.
Number | Date | Country | Kind |
---|---|---|---|
10 2011 113 716 | Sep 2011 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
2225395 | Young | Dec 1940 | A |
3602219 | Warncke | Aug 1971 | A |
3990439 | Klinger | Nov 1976 | A |
5154168 | Schlobohm | Oct 1992 | A |
6047698 | Magidson | Apr 2000 | A |
7252110 | Semeia | Aug 2007 | B2 |
20040261795 | Brunell | Dec 2004 | A1 |
Number | Date | Country |
---|---|---|
40 17336 | Jun 1991 | DE |
1445521 | Aug 2004 | EP |
2008092052 | Jul 2008 | WO |
Number | Date | Country | |
---|---|---|---|
20130068232 A1 | Mar 2013 | US |