Valve for metering in a flowing medium
09822750 · 2017-11-21
Assignee
Inventors
Cpc classification
F02M61/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M2200/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M63/0026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M51/0603
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K31/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M51/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M63/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve for metering a flowing medium, in particular a fluid, having a metering opening situated in the fluid flow and surrounded by a valve seat, a valve needle that controls the metering opening and that has a closing head that works together with the valve seat to close and release the metering opening, a piezoelectric actuator that acts on the valve needle to release the metering opening, and an elastic resetting element that acts on the valve needle to close the metering opening. To minimize the required stroke of the piezoelectric actuator for a required stroke of the closing head of the valve needle, the point of action of the resetting element on the valve needle is situated on or close to the end of the valve needle that bears the closing head.
Claims
1. A valve for metering a fluid flow, comprising: a metering opening situated in the fluid flow and surrounded by a valve seat; a valve needle that controls the metering opening, the valve needle having a closing head that works together with the valve seat to close and release the metering opening; a piezoelectric actuator that acts on the valve needle to release the metering opening; and an elastic resetting element that acts on the valve needle to close the metering opening; wherein a point of action of the resetting element on the valve needle is situated on or close to an end of the valve needle that bears the closing head, wherein the resetting element has a sleeve, wherein the sleeve has a sleeve shaft and a flange that stands out radially from the sleeve shaft, wherein the sleeve shaft has a shaft segment that is smaller in diameter and one that is larger in diameter, and the shaft segment that is smaller in diameter lies on the valve needle and is welded to an outermost surface of the valve needle at its free end, and wherein the outermost surface of the valve needle is located on an outermost circumference of the valve needle, and wherein the entire shaft segment that is smaller in diameter contacts the outermost surface of the valve needle.
2. The valve as recited in claim 1, wherein the resetting element has a pressure spring that acts on the sleeve with a pressure force directed to the actuator, the sleeve is situated concentric to the valve needle and is connected fixedly to the valve needle, at the point of action of the resetting element with its end facing the closing head.
3. The valve as recited in claim 2, wherein the pressure spring is a helical pressure spring that is situated concentric to the sleeve shaft and is supported on the flange.
4. The valve as recited in claim 1, wherein the flange is formed in one piece on the free end of the shaft segment that is larger in diameter.
5. The valve as recited in claim 1, wherein the valve needle and the closing head are fashioned in one piece, and the piezoelectric actuator lies with a non-positive fit on an end of the valve needle remote from the closing head.
6. The valve as recited in claim 5, wherein the valve seat and the metering opening are fashioned on a nozzle body that is fastened in a valve housing that accommodates the valve needle, actuator, and resetting element, and the pressure spring supported on the flange is further supported on at least one of the nozzle body and a radial shoulder fashioned in the valve housing.
7. The valve as recited in claim 6, wherein the actuator is situated in a valve chamber that is sealed against a medium, the valve needle is guided through a central opening into the valve chamber, and a shaft bellows that surrounds a segment of the valve needle is fastened in medium-tight fashion with one bellows end to the valve needle and with the other bellows end surrounds, in medium-tight fashion, the central opening to the valve chamber.
8. The valve as recited in claim 7, wherein the valve chamber is formed by a tube situated in the valve housing whose tube end facing the nozzle body is terminated in medium-tight fashion by an end piece that is set into the tube end and that has a central hole, and the central opening for the guiding through of the valve needle is realized with a sliding socket joint that guides the valve needle and that is set in medium-tight fashion in the central hole of the end piece, on which joint the other bellows end of the shaft bellows is fastened.
9. The valve as recited in claim 1, wherein the shaft segment that is smaller in diameter is welded directly to the valve needle at its free end.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Below, the present invention is explained in more detail on the basis of exemplary embodiments shown in the figures.
(2)
(3)
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS
(4) The valve shown in longitudinal section in
(5) As main components, the valve has a metering opening 11, surrounded by a valve seat 12, situated in the fluid flow, and a valve needle 13 that controls the metering opening and that bears a closing head 131 that works together with valve seat 12 to close and release metering opening 11, the closing head preferably being made in one piece with valve needle 13, and has a piezoelectric actuator 14 that acts on valve needle 13 in order to release metering opening 11, and has an elastic resetting element 15 that acts on valve needle 13 to close metering opening 11. Piezoelectric actuator 14, of which only a part is shown in
(6) The costs of the injection valve are generally determined by the piezo stack, the stroke of piezoelectric actuator 14 required for the valve actuation determining the volume of the piezo stack, which in turn significantly influences the cost of piezoelectric actuator 14 due to the use of noble metals for the electrodes. In addition to the stroke of closing head 131 required for the defined valve opening, piezoelectric actuator 14 must provide an additional stroke in order to compensate a so-called stroke loss of valve needle 13. This stroke loss Δl of valve needle 13, caused by an elongation of valve needle 13 in the closed state of the valve as a result of the closing or resetting force of resetting element 15 acting on valve needle 13, is a function of closing force F of resetting element 15, effective length l.sub.eff of valve needle 13 between closing head 131, or more precisely the surface of closing head 131 that acts on valve seat 12, and the point of action of resetting element 15 on valve needle 13, and the modulus of elasticity E and cross-section A of valve needle 13, according to:
(7)
(8) In order to minimize stroke loss Δl and thus to reduce the required stroke of piezoelectric actuator 14, and thus to achieve a significant cost reduction, as can be seen in
(9) In order to realize this, in the exemplary embodiment of
(10) The components of the valve described above are integrated in a valve housing 22 and in a nozzle body 23 that is situated in valve housing 22 and that protrudes therefrom. Nozzle body 23, which is made with two parts in the exemplary embodiment of
(11) Piezoelectric actuator 14, which is not resistant to fuel, is situated in a valve chamber 29 that is sealed against the medium. Valve needle 13 is guided, through a central opening 30, into valve chamber 29 up to piezoelectric actuator 14, and lies against terminating plate 17 of piezoelectric actuator 14 with a non-positive fit, under the action of pressure spring 20. Preferably, the seating of the end of valve needle 13 remote from the closing head on terminating plate 17 is realized as a cardanic mount. In order to seal central opening 30 for the guiding through of valve needle 13, a shaft bellows 34 is provided that, in shaft segment 191a having a larger diameter of flange sleeve 19, surrounds valve needle 13, the bellows being fastened on valve needle 13 with one bellows end in medium-tight fashion, and surrounding central opening 30 in medium-tight fashion with the other bellows end. As can be seen in
(12) The valve shown partly in longitudinal section in
(13) As in the valve according to