Valve for dosing a flowing medium
09976531 ยท 2018-05-22
Assignee
Inventors
Cpc classification
F02M63/0005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M2200/8053
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/167
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M2200/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M51/0603
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M2200/803
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/168
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M63/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M51/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve for metering a flowing, e.g. gaseous or liquid, medium, in particular a fuel injection valve for internal combustion engines, is described, which valve comprises a valve housing having an inflow for the medium, a valve body having a metering opening for the medium, a join present between the valve housing and valve body, and a seal sealing the join. In order to ensure a seal that is reliable and not susceptible to cracking, in which context the material of the valve housing and valve body can be selected without restriction, the seal has a clamping ring, covering the join, that sits with a press fit on end portions, facing toward one another at the join, of the valve housing and valve body.
Claims
1. A valve for metering a flowing medium, comprising: a valve housing having an inflow for the flowing medium; a valve body having a metering opening for the flowing medium; a join present between the valve housing and the valve body; a seal sealing the join and including a clamping ring, wherein the clamping ring covers the join and sits with a press fit on end portions, facing toward one another at the join, of the valve housing and valve body; wherein: the valve body and the valve housing abut against each other in the join with an annular first abutment surface embodied on the valve body and an annular second abutment surface embodied on the valve housing, the first abutment surface has an inner circumferential edge that demarcates a central recess, impinged upon by the flowing medium, in the valve body, the second abutment surface has a projection region protruding beyond the inner circumferential edge, a groove that is open toward the recess is disposed on the valve housing in a projection region of the second abutment surface, the groove is impinged upon by the flowing medium, the groove has a groove flank extending toward the inner circumferential edge of the first abutment surface on the valve body at an obtuse angle with respect to a groove bottom, and the end portions of the valve housing and the valve body are butted against one another at the join, and have an identical outside diameter.
2. The valve as recited in claim 1, wherein the flowing medium includes one of a gaseous flowing medium and a liquid flowing medium.
3. The valve as recited in claim 1, wherein the valve is a fuel injection valve for an internal combustion engine.
4. The valve as recited in claim 1, wherein the end portions of the valve housing and the valve body in a coverage region of the clamping ring are equipped with radial sealing edges spaced apart from one another.
5. The valve as recited in claim 4, wherein the radial sealing edges are formed by tooth flanks of a tooth set.
6. The valve as recited in claim 1, wherein: the recess has an annular recess bottom, a recess wall, and a recess opening surrounded by the recess wall, and the inflow for the flowing medium opens into the recess opening.
7. The valve as recited in claim 6, wherein the recess wall encloses an obtuse angle with the recess bottom and is embodied to be one of flat and concavely curved.
8. The valve as recited in claim 1, wherein the second abutment surface on the valve housing is disposed with a setback with respect to an end face of the valve housing.
9. The valve as recited in claim 1, wherein the seal has a sealing ring axially covering the join and made of an elastomer placed into the clamping ring and pressing radially onto the end portions of the valve housing and the valve body.
10. The valve as recited in claim 9, wherein the elastomer includes silicone.
11. The valve as recited in claim 9, wherein the sealing ring is received in a groove recessed into an inner ring wall of the clamping ring.
12. The valve as recited in claim 1, wherein the seal has a coating made of an elastomer occupying at least a part of that region of the end portions of the valve housing and the valve body covered by the clamping ring.
13. The valve as recited in claim 12, wherein the elastomer includes silicone.
14. The valve as recited in claim 1, wherein the seal has a sealing ring made of an elastomer disposed between the abutting surfaces of the valve body and the valve housing.
15. The valve as recited in claim 14, wherein the elastomer includes silicone.
16. The valve as recited in claim 1, wherein the seal includes a coating made of an elastomer covering at least one of the two abutment surfaces on the valve body and the valve housing.
17. The valve as recited in claim 16, wherein the elastomer includes silicone.
18. The valve as recited in claim 1, wherein the clamping ring is welded at an end on the one hand to the valve housing and on the other hand to the valve body.
19. The valve as recited in claim 1, wherein the press fit is produced by heat-shrinking the clamping ring onto the end portions of the valve housing and the valve body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
DETAILED DESCRIPTION
(4) The valve, depicted in longitudinal section in
(5) A join 18, at which the mutually facing end portions of valve housing 11 and 12, which have the same outside diameter, abut against one another, is present between valve housing 11 and valve body 12. Join 18 is sealed by a seal 20. Seal 20 has, according to the present invention, a clamping ring 19 that covers join 18 and rests with a press fit on the end portions of valve housing 11 and valve body 12. Clamping ring 19 is made from a material having high strength and a hardness slightly less than the hardness of the material of valve housing 11 and valve body 12. Clamping ring 19 is made, for example, of 1.4035 hardened and annealed steel, and valve housing 11 and valve 12 of 1.4035 hardened steel.
(6) The press fit is preferably produced by heat-shrinking clamping ring 18 onto the end portions of valve housing 11 and valve body 12. For this, clamping ring 19 is heated preferably, for example, inductively to the highest possible temperature, and clamping ring 19, its inside diameter enlarged by the heating, is slid or pressed over join 18 onto the end portions of valve housing 11 and of valve body 12. In order to shorten its heating process and in order to save energy, clamping ring 19 has a volume that is as small as possible. Clamping ring 19 shrinks upon cooling. Valve body 12 and valve housing 11 are thereby pulled axially together at join 18, and a nonpositive engagement and a radial and axial seal are produced between valve body 12 and valve housing 11.
(7) As is apparent from the portion of the valve depicted in enlarged fashion in
(8) The radial sealing and the positive engagement are additionally reinforced by the fluid pressure existing in the interior of valve body 12 and valve housing 11, by the fact that a reduction in the stiffness of valve body 12 and valve housing 11 is performed. For this, an annular first abutment surface 22 is embodied on valve body 12, and an annular second abutment surface 23 on valve housing 11. First abutment surface 22 and second abutment surface 23 abut against one another in join 18. First abutment surface 22 has an inner circumferential edge 25 demarcated by a central recess 24 in valve body 12, and second abutment surface 23, which is disposed on valve housing 11 with a setback with respect to the end face of valve housing 11, has a projection region 26 that protrudes beyond inner circumferential edge 25 and is thus located over recess opening 243. Recess 24 has an annular recess bottom 241 through which valve needle 141 of valve member 14 passes, a recess wall 242, and a recess opening 243 surrounded by recess wall 242. Inflow 17 for the medium opens into recess opening 243, so that recess 24 is impinged upon by medium under system pressure. Recess wall 242 preferably encloses an obtuse angle with recess bottom 241, and in the exemplifying embodiment is embodied with a concave curvature (
(9) In the portions depicted in
(10) In the exemplifying embodiment according to
(11) In the exemplifying embodiment according to
(12) In the exemplifying embodiment according to
(13) In the exemplifying embodiment according to
(14) The exemplifying embodiment according to
(15) Except for the modified seal 20, the exemplifying embodiments of the valves depicted in part in