VALVE DEVICE
20220243688 · 2022-08-04
Assignee
Inventors
Cpc classification
F02M26/68
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M26/59
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M26/67
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M26/61
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M26/67
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve device for exhaust gas recirculation in the exhaust gas system of a motor vehicle that is driven by an internal combustion engine. In order to create a valve device that can be used as an EGR check valve in which a pressure loss relative to known designs is reduced even with small valve geometries, it is proposed for the valve device to comprise a valve body that is embodied as a separate part that is mushroom-shaped or umbrella-shaped and is axially guided in a supporting plate in a region through which the gas flows axial, rests with its umbrella against the supporting plate in a way that seals the region through which the gas flows in a closed position, and has an end stop for an open position.
Claims
1. A valve device for an exhaust gas recirculation in an exhaust gas system of a motor vehicle that is driven by an internal combustion engine, which is made to be clamped between two flanges of the exhaust gas recirculation, the valve device comprises a valve body, which is embodied as a separate part that is mushroom-shaped or umbrella-shaped, that is axially guided in a supporting plate in a region through which the gas flows, rests with its umbrella against the supporting plate in a way that seals the region through which the gas flows in a closed position, and has an end stop for an open position.
2. The valve device according to claim 1, wherein a stopper layer constitutes the end stop for the mushroom-shaped or umbrella-shaped valve body in the open position.
3. The valve device according to claim 2, wherein the mushroom-shaped or umbrella-shaped valve body is guided by means of a rod in an opening of the supporting plate and/or the stopper layer.
4. The valve device according to claim 3, wherein the supporting plate and the stopper layer have at least one opening for flowing exhaust gases and a plain bearing serving as a guide of the rod.
5. The valve device according to claim 4, wherein the at least one opening in the supporting plate and in the stopper layer are embodied as congruent and are positioned in alignment in the flow direction of the exhaust gases.
6. The valve device according to claim 2, wherein the supporting plate and the stopper layer have openings corresponding to a screw hole of the flanges at the end.
7. The valve device according to claim 2, wherein the stopper layer and the supporting plate are at least partially connected to each other in a non-positive, positive, and/or integrally joined fashion.
8. The valve device according to claim 2, wherein the stopper layer and supporting plate are embodied as seals for the flanges.
9. The valve device according to claim 1, wherein a guide of the mushroom-shaped or umbrella-shaped valve body is embodied as a plain bearing in the form of a sliding sleeve.
10. The valve device according to claim 2, wherein a material of the relevant sheet metal part that is already present is folded over and/or deep-drawn in order to form an axial guide.
11. The valve device according to claim 1, wherein the valve device has at least one additional seal for the sealing function relative to the flanges.
12. The valve device according to claim 11, wherein the additional seal is embodied as a metal bead seal that is connected to the stopper layer and the supporting plate.
13. The valve device according to claim 1, wherein the mushroom-shaped or umbrella-shaped valve body is embodied as an injection-molded, formed, milled, or turned part, which consists of a thermally resistant material.
14. The valve device according to claim 1, wherein the mushroom-shaped or umbrella-shaped valve body is provided with a rod in the form of a hollow, cylindrical stem, which has openings adjoining the umbrella, which are positioned distributed around a circumference of the rod.
15. The valve device according to claim 1, wherein the rod has at least one detent projection or a collar at a free end, which together with an axial guide defines a maximum stroke of the valve body.
Description
[0019] Other features and advantages of embodiments according to the invention will be explained in greater detail below with reference to exemplary embodiments based on the drawings. In schematic depictions:
[0020]
[0021] show a top view of a first exemplary embodiment of a valve device with cutaway views in a plane A-A with the valve device open and closed and in an exploded view;
[0022]
[0023] show a depiction of second exemplary embodiment of a valve device analogous to
[0024]
[0025] show a depiction of a third exemplary embodiment of a valve device analogous to
[0026]
[0027] show a depiction of a fourth exemplary embodiment of a valve device analogous to
[0028]
[0029]
[0030] show a modification of the exemplary embodiment from
[0031] Throughout the different drawings and exemplary embodiments, the same reference numerals are always used for the same elements.
[0032] The diagram in
[0033] The opening 6 in the supporting plate 5 is provided with a sliding sleeve 10, which can consist of Teflon, copper, and/or stainless steel. A rod 11 of the valve body 4 is guided in an axially movable fashion in this sliding sleeve 10 so that the openings 7 serving as flow openings of the supporting plate 5 are closed in a sealed fashion by the pressing of a head 12 of the valve body 4 against the supporting plate 5. The valve device 1 in this case therefore only comprises a mushroom-shaped or umbrella-shaped valve body 4 consisting of a head 12 and rod 11 and in this case, is guided between two end positions by means of its rod 11 in the supporting plate 5. The supporting plate 5 constitutes an end stop for a closed end position and the cap-shaped stopper layer 9 constitutes a second end stop that establishes a maximum opening or a valve stroke h of the valve device 1, see
[0034] In comparison to known EGR check valves, a flow through the valve device 1 is improved among other things in that in this case, a free pipe cross-section A can be almost entirely used by the valve body 4 with a diameter a of the head 12, as indicated in
[0035] The valve device 1 is also embodied as a seal, which is positioned between the flanges 2, 3 in a durably sealing fashion. For this purpose, the supporting plate 5 and the stopper layer 9 have an outer shape, which corresponds to the standard shape of the flanges 2, 3. In addition, the supporting plate 5 and stopper layer 9 also have screw holes 13, which are positioned in axial alignment with the screw-mounts of the flanges 2, 3.
[0036]
[0037] In a way that is not shown in greater detail, the opening 7 in the supporting plate 5 can be provided with a bevel, which, during the closing, achieves an additional self-centering in the region of the head 12 of the valve body 4 against the now single opening 7. This results in a diameter b of a single circular opening in the supporting plate 5 serving as a flow opening, which can be selected to be negligibly smaller than the diameter a of the head 12 of the valve body 4 without this negatively affecting the leak-tightness of the valve device 1, see
[0038]
[0039]
[0040] In this case, the stopper layer 9 and the supporting plate 5 are also connected to each other by means of rivets 17 via the two additional seals 15, 16. These rivets 17 lie outside of an actual sealing region and thus also outside of the flanges 2, 3. The cutaway view in
[0041]
[0042] The depictions in
[0043]
[0044] The mushroom-shaped or umbrella-shaped valve body 4 is embodied with a rod 11 and head 12 in one piece in the form of an injection-molded, formed, milled, or turned part, which consists of a material that is thermally resistant up to approx. 300° C. In all of the exemplary embodiments described above, the mushroom-shaped or umbrella-shaped valve body 4 closes automatically as a function of the pressure that is present and does not require any additional restoring force of the kind that in known devices, must be produced by means of an elastically clamped spring, for example. Due to its low mass, the above-described valve device 1 also features a rapid response behavior.
[0045] Furthermore, the valve device 1 shown can be used for non-rectangular geometries that are frequently present, making very good use of the available space, directly and without adaptation or additional seals in the region of a flange connection. For this reason alone—without the invention being limited to this geometry—a pipe with a circular free pipe cross-section of the kind found in an exhaust gas cooler in exhaust gas systems of modern motor vehicles has been selected for the above-described graphic depiction of the exemplary embodiments of the invention.
REFERENCE NUMERAL LIST
[0046] 1 valve device [0047] 2 flange [0048] 3 flange [0049] 4 valve body [0050] 5 supporting plate as the sealing partner of the valve body 4 [0051] 6 opening for guiding the valve body 4 in the supporting plate 5/stopper layer 9 [0052] 7 flow opening in the supporting plate 5, possibly distributed radially around the opening 6 [0053] 8 flow opening embodied as an opening in the stopper layer 9 [0054] 9 stopper layer [0055] 10 sliding sleeve in the supporting plate 5 [0056] 11 rod of the valve body 4 [0057] 12 head of the valve body 4/umbrella [0058] 13 screw hole for a flange connection [0059] 14 sliding sleeve positioned as a guide in the stopper layer 9 [0060] 15 metal bead seal [0061] 16 metal bead seal [0062] 17 rivet [0063] 18 opening in the hollow rod 11 close to the umbrella 12 [0064] 19 axial guide [0065] 20 detent projection [0066] 21 free end of the hollow stem/rod 11 of the valve body 4 [0067] a head-diameter of the valve body 4 [0068] A free pipe cross-sectional area [0069] b diameter of a single circular opening in the supporting plate 5 as a flow opening [0070] h valve stroke