Valve rotor for a solenoid valve, and valve cartridge for a solenoid valve
10598295 ยท 2020-03-24
Assignee
Inventors
Cpc classification
F16K31/0696
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/0686
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/0689
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K25/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K31/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K25/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve rotor for a solenoid valve includes a base body and a ram that cooperates with a valve seat. A damping device is arranged between the ram and the base body. The damping device has a cavity that is configured to be filled with a damping medium and a choke opening through which the damping medium flows into or out of the cavity. The damping device damps a pulse that occurs when the ram hits the valve seat. A valve cartridge includes the valve rotor.
Claims
1. A valve rotor for a solenoid valve, comprising: a ram that cooperates with a valve seat in such a way that the ram interrupts a fluid flow through the solenoid valve when the ram contacts the valve seat; a base body permanently directly connected to the ram and configured to move axially with the ram, the axial movement of the base body delimited by the ram; and a damping device arranged between the ram and the base body, the damping device having a cavity configured to be filled with a damping medium and a choke opening through which the damping medium flows out of the cavity or into the cavity, wherein, when the ram hits the valve seat so as to close the valve, the damping medium flows out of the cavity via the choke opening such that the damping device damps a pulse that occurs when the ram hits the valve seat, wherein the choke opening is configured as a groove defined in an inner circumferential wall of the ram.
2. The valve rotor according to claim 1, wherein the damping behavior of the damping device is influenced by the dimensions of the choke opening.
3. The valve rotor according to claim 1, wherein: the ram defines a recess at a ram end region that faces towards the base body in an axial direction; the base body has a base body end wall at a base body end region that faces towards the ram in the axial direction; and the base body end wall and the ram recess define the cavity of the damping device.
4. The valve rotor according to claim 3, wherein: the ram further includes an axial recess end wall at the ram end region that faces towards the base body; at least a portion of the base body end wall contacts at least a portion of the axial recess end wall.
5. The valve rotor according to claim 1, wherein the base body comprises a magnetizable material.
6. The valve rotor according to claim 1, wherein the ram is configured as a plastic injection molding.
7. The valve rotor according to claim 1, wherein the ram and the base body are permanently connected together by a press joint.
8. The valve rotor according to claim 7, wherein an inner wall of the ram, in a region of the press joint, has a contour, the contour and an outer wall of the base body defining at least one passage channel through which the damping medium flows into the cavity or out of the cavity.
9. The valve rotor according to claim 8, wherein the ram at least partially surrounds the base body in the region of the press joint.
10. The valve rotor according to claim 9, wherein: the contour forms at least one contact surface; the at least one contact surface contacts the outer wall of the base body and is connected to the base body; and one passage channel of the at least one passage channel circumferentially separates each respective contact surface of the at least one contact surface from an adjacent contact surface of the at least one contact surface.
11. The valve rotor according to claim 1, wherein the ram at least partially surrounds the base body.
12. The valve rotor according to claim 1, wherein the groove formed in the inner circumferential wall of the ram is a U-shaped groove when viewed in a cross-section taken perpendicular to an axial direction of the ram.
13. The valve rotor according to claim 1, wherein the base body has an axial end wall that is permanently directly connected to an axial end wall of the ram.
14. The valve rotor according to claim 13, wherein the cavity is defined between the ram and the axial end wall of the base body.
15. A valve cartridge for a solenoid valve, comprising: a valve seat; and a valve rotor comprising: a ram that cooperates with the valve seat in such a way that the ram interrupts a fluid flow through the solenoid valve when the ram contacts the valve seat; a base body permanently directly connected to the ram and configured to move axially with the ram, the axial movement of the base body delimited by the ram; and a damping device arranged between the ram and the base body, the damping device having a cavity configured to be filled with a damping medium and a choke opening through which the damping medium flows out of the cavity or into the cavity, wherein, when the ram hits the valve seat so as to close the valve, the damping medium flows out of the cavity via the choke opening such that the damping device damps a pulse that occurs when the ram hits the valve seat, wherein the choke opening is configured as a groove defined in an inner circumferential wall of the ram.
16. The valve cartridge according to claim 15, wherein the fluid flow through the solenoid valve flows into the cavity between the base body and the ram and forms the damping medium.
17. The valve cartridge according to claim 15, wherein: the ram defines a recess at a ram end region that faces towards the base body in the axial direction; the base body has a base body end wall at a base body end region that faces towards the ram in the axial direction; the base body end wall and the ram recess define the cavity of the damping device; and when the ram contacts the valve seat so as to interrupt the fluid flow through the solenoid valve, the base body end wall contacts the ram recess.
18. The valve cartridge according to claim 15, wherein the base body has an axial end wall that is permanently directly connected to an axial end wall of the ram.
19. The valve cartridge according to claim 18, wherein the cavity is defined between the ram and the axial end wall of the base body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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DETAILED DESCRIPTION
(6) A valve cartridge (not shown) for a solenoid valve has a pole core, a guide sleeve connected to the pole core, a valve rotor 10 guided axially movably inside the guide sleeve against the force of a return spring between a closed position and an open position. The valve rotor 10, as shown in
(7) As evident from
(8) As also evident from
(9) As further evident from
(10) As further evident from
(11) As further evident from
(12) In the valve cartridge 102, the fluid which, in the open position, flows between the first flow opening 110 and the second flow opening 112, can flow into the cavity 24.2 between the base body 11 and the ram 20, and form the damping medium 24.6 for damping the closing noise.
(13) Embodiments of the present disclosure propose a valve rotor and a valve cartridge for a solenoid valve, which due to the use of a damping device between the ram and the base body, advantageously damp the pulse from impact of the ram with a closing body on the valve seat, and thus reduce the body-borne noise in the vehicle. The damping device here comprises a cavity which can be filled with a damping medium, and a choke opening.