The invention relates to a solenoid valve as is used, for example, in metering valves for metering gaseous or liquid fuel.
Solenoid valves having a movable valve element with which an outlet opening can be opened or closed are frequently used for metered delivery of gaseous or liquid fuels. The valve element is moved by an electromagnet that, when energized, moves the valve element against the force of a spring. Such a solenoid valve is known, for example, from DE 10 2015 212 476 A1. The valve element, which is designed here in the form of a plate, and which also forms the magnet armature, is moved against the force of a closing spring and opens an outlet opening through which the fuel, which is in this case gaseous, can flow out.
The electromagnet moving the valve element comprises a solenoid coil and a magnet body on which the solenoid coil is fixed. The magnet body, together with the solenoid coil, is arranged in a recess of a magnet pot. Said recess is cylindrical and open in the direction of the magnet armature in order to focus the magnetic field onto the magnet armature. Because the gaseous fuel flows around the magnet armature, the fuel also reaches the region of the magnet pot and thus the region of the solenoid coil. The permanent supply of the gaseous fuel or also of other fluid fuels can cause damage to the coil body or to the solenoid coil, which can impair the functionality of the electromagnet and thus of the solenoid valve over time.
The solenoid valve according to the invention has the advantage of a longer service life because the solenoid coil and the coil body on which the solenoid coil is fixed is not acted upon by the gaseous or liquid fuel, and therefore the corresponding components cannot be damaged by the fuel. For this purpose, the solenoid valve has a movable valve element that is movable by an electromagnet, wherein the electromagnet has a magnet pot having a recess in which a solenoid coil fixed on a coil body is arranged. A sealing element is arranged on the coil body or a sealing body fixedly connected to the coil body, which sealing element seals the recess of the magnet pot from the outside.
The gaseous or liquid fuel flows around the valve element such that the fuel also reaches the region of the electromagnet and can damage the solenoid coil or the other components on the electromagnet in the long term. In particular the solenoid coil that is attached to the coil body and is fixed with a potting compound can be damaged as a result. The sealing of the corresponding recess in the magnet pot by a sealing body on the coil body is a simple and cost-effective solution that does not require any further sealing elements that would have to be mounted in a separate manufacturing step. The seal is thus produced with the installation of the solenoid coil in the magnet pot.
In a first advantageous embodiment, the recess has a cylindrical shape. Accordingly, the sealing element comprises a sealing ring that serves to seal the recess. Advantageously, the coil body is also cylindrical or annular and has an outer sealing ring on the outer side and an inner sealing ring on the inner side, which sealing rings seal the coil body against the wall of the recess. Such a coil body having the corresponding sealing rings can easily be introduced into the recess and thereby seals the recess without further process steps being necessary. In this case, the sealing rings are in each case arranged in an annular groove in the coil body or in a sealing body that is fixedly connected to the coil body.
The sealing element is advantageously designed such that it seals the recess in a gas-tight and/or liquid-tight manner from the outside. The sealing element or the sealing rings are made from an elastic polymer, for example rubber, or from another polymer, for example PTFE (polytetrafluoroethylene).
The drawings show a solenoid valve according to the invention. In the drawings:
The sealing element 15 or the sealing rings 115a, 115b are made from a polymer having sufficient elasticity to bring about a gas-tight sealing of the recess 14. The sealing rings 115a, 115b can be manufactured from a polymer, for example an elastomer or some other plastics material. In particular, the sealing rings 115a, 115b can be made from PTFE (polytetrafluoroethylene) because this plastics material has a high chemical resistance.
Number | Date | Country | Kind |
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102021212172.1 | Oct 2021 | DE | national |