VALVE ASSEMBLY FOR AN INJECTION VALVE AND INJECTION VALVE
20200232434 ยท 2020-07-23
Assignee
Inventors
Cpc classification
F02M51/061
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/165
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M63/0077
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M61/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M2200/27
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M61/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B05B1/30
PERFORMING OPERATIONS; TRANSPORTING
F02M61/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M63/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve assembly for an injection valve includes a valve body that includes a cavity with a fluid inlet portion and a fluid outlet portion. The cavity includes a first portion extending from the fluid inlet portion to a bottom surface and a second portion extending from a central opening in the bottom surface down towards the fluid outlet portion. The valve assembly includes a valve needle axially movable in the cavity. The valve needle includes a shaft and a ball; the ball cooperating with a valve seat to prevent a fluid flow through the fluid outlet portion in a closing position and to release the fluid flow through the fluid outlet portion in further positions. The valve assembly includes a seat body forming the valve seat and a ball guide. The valve assembly includes where a lower particle filter is entirely arranged in the second portion of the cavity.
Claims
1. A valve assembly for an injection valve, the valve assembly comprising: a valve body with a central longitudinal axis, the valve body comprising a cavity with a fluid inlet portion and a fluid outlet portion, the cavity comprises a first portion extending from the fluid inlet portion to a bottom surface and a second portion extending from a central opening in the bottom surface down towards the fluid outlet portion; a valve needle axially movable in the cavity, the valve needle comprising a shaft and a ball, the ball cooperating with a valve seat to prevent a fluid flow through the fluid outlet portion in a closing position and to release the fluid flow through the fluid outlet portion in further positions; a seat body being an integral part of the valve body and forming the valve seat and a ball guide; an armature of an electro-magnetic actuator unit designed to actuate the valve needle, the armature arranged in the first portion of the cavity; wherein a lower particle filter is entirely arranged in the second portion of the cavity.
2. The valve assembly according to claim 1, wherein the lower particle filter is spaced from the bottom surface in axial direction towards the fluid outlet portion.
3. The valve assembly according to claim 1, wherein the lower particle filter is positioned upstream of the seat body.
4. The valve assembly according to claim 1, wherein at least one element of the lower particle filter is fixed to the valve needle.
5. The valve assembly according to claim 4, wherein the lower particle filter includes one element fixed to the needle, wherein a clearance is formed between an outer rim of the lower particle filter and the valve body.
6. The valve assembly according to claim 4, wherein the lower particle filter includes one element fixed to the needle, wherein one section of the lower particle filter is resiliently supported by the valve body.
7. The valve assembly according to claim 4, wherein the lower particle filter includes at least two elements, a first element being fixed to the valve needle and a second element being fixed to the valve body.
8. The valve assembly according to claim 7, wherein the first element and the second element remain in contact with each other during opening and closing of the valve.
9. The valve assembly according to claim 7, wherein a clearance is formed between the first element and the second element.
10. A fluid injection valve with a valve assembly, the valve assembly comprising: a valve body with a central longitudinal axis, the valve body comprising a cavity with a fluid inlet portion and a fluid outlet portion, the cavity comprises a first portion extending from the fluid inlet portion to a bottom surface and a second portion extending from a central opening in the bottom surface down towards the fluid outlet portion; a valve needle axially movable in the cavity, the valve needle comprising a shaft and a ball, the ball cooperating with a valve seat to prevent a fluid flow through the fluid outlet portion in a closing position and to release the fluid flow through the fluid outlet portion in further positions; a seat body being an integral part of the valve body and forming the valve seat and a ball guide; an armature of an electro-magnetic actuator unit designed to actuate the valve needle, the armature arranged in the first portion of the cavity; wherein a lower particle filter is entirely arranged in the second portion of the cavity.
Description
DESCRIPTION OF DRAWINGS
[0024]
[0025]
[0026]
[0027]
[0028]
[0029] Like reference symbols in the various drawings indicate like elements.
DETAILED DESCRIPTION
[0030] The fluid injection valve 1 shown in
[0031] The injection valve 1 includes a valve assembly 3. The valve assembly 3 includes a valve body 4 with a central longitudinal axis L. A housing 6 is partially arranged around the valve body 4.
[0032] The valve body 4 includes a cavity 9. The cavity 9 has a fluid outlet portion 7. The fluid outlet portion 7 communicates with a fluid inlet portion 5 which is provided in the valve body 4. The fluid inlet portion 5 and the fluid outlet portion 7 are in particular positioned at opposite axial ends of the valve body 4. The cavity 9 takes in a valve needle 11. The valve needle 11 includes a needle shaft 15 and a sealing ball 13 welded to the tip of the needle shaft 15.
[0033] In a closing position of the valve needle 11, it sealingly rests on a valve seat 17 having at least one injection nozzle constituting the fluid outlet portion 7. A preloaded calibration spring 18 exerts a force on the needle 11 towards the closing position. In the closing position of the valve needle 11, a fluid flow through the at least one injection nozzle is prevented. The injection nozzle may be, for example, an injection hole. However, it may also be of some other type suitable for dosing fluid.
[0034] The valve assembly 3 is provided with an electro-magnetic actuator unit 19. The electro-magnetic actuator unit 19 includes a solenoid 21, which is arranged inside the housing 6. Furthermore, the electro-magnetic actuator unit 19 includes an armature 23. The housing 6, parts of the valve body 4 and the armature 23 form an electromagnetic circuit. The armature 23 is axially movable in the cavity 9 and fixed to the valve needle 11 by form fit.
[0035] The cavity 9 includes a first portion 25 and a second portion 27. The first portion 25 extends from the fluid inlet portion 5 down towards a bottom surface 29 below the armature 23. The second portion 27 extends from a central opening 31, which accommodates the needle shaft 15, in the bottom surface 29 down towards the fluid outlet portion 7.
[0036] As can be seen from the detailed drawing on the right-hand side of
[0037]
[0038] According to the first example shown in
[0039] When the needle 11 travels upwards to open the injection valve 1, the overlap between the first element 37 and the second element 39 decreases during the travel of the needle 11, the clearance 41 between the first element 37 and the second element 39 remains. An overlap between the first element 37 and the second element 39 remains even when the needle 11 has traveled to its maximum. Thus, the maximum overlap a is larger than the maximum travel of the needle 11.
[0040] According to this first example, there is no mechanical interaction between the first element 37 and the second element 39 of the lower particle filter 35. This has the advantage, that problems due to wear of components are avoided.
[0041] The lower particle filter 35 according to all examples shown in the drawings and other examples of the disclosure may include or consist of one or more turned or stamped elements with holes, the holes being mechanically drilled or laser drilled. The element(s) may also be a braided net.
[0042]
[0043]
[0044]
[0045] A number of implementations have been described. Nevertheless, it will be understood that various modifications may be made without departing from the spirit and scope of the disclosure. Accordingly, other implementations are within the scope of the following claims.