IP Library Granted Patent US 9,316,191
Granted Patent B2
US 9,316,191 · App. 13/515,105 · Granted Apr 19, 2016

Valve assembly for an injection valve and injection valve

Inventor: Mauro Grandi (Leghorn, IT)
Assignee: CONTINENTAL AUTOMOTIVE GMBH
F02M51/0685F02M2200/306
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Quick Facts
Patent No.
US 9,316,191
App. No.
13/515,105
Granted
Apr 19, 2016
Kind
B2
Abstract

A valve assembly for an injection valve may comprise a valve body including a central longitudinal axis, the valve body comprising a cavity with a fluid inlet portion and a fluid outlet portion, a valve needle axially movable in the cavity, the valve needle preventing a fluid flow through the fluid outlet portion in a closing position and releasing the fluid flow through the fluid outlet portion in further positions, the valve needle comprising a ring element extending radially and arranged at an axial end of the valve needle facing away from the fluid outlet portion, and an electro-magnetic actuator unit being designed to actuate the valve needle.

Claims (30)

1. A valve assembly for an injection valve, comprising:

a valve body including a central longitudinal axis and a cavity having a fluid inlet portion and a fluid outlet portion,

a valve needle axially movable in the cavity, the valve needle having top and bottom portions, the bottom portion preventing a fluid flow through the fluid outlet portion in a closing position by resting on a seat preventing fluid flow through an injection nozzle and releasing the fluid flow through the fluid outlet portion to exit the injector body through the injection nozzle in further positions upon movement away from the seat, the valve needle comprising a ring element extending radially and being arranged at the top portion of the valve needle,

an electro-magnetic actuator unit configured to actuate the valve needle, the electro-magnetic actuator unit comprising an armature axially movable in the cavity, the armature comprising a recess in which at least a portion of the ring element of the valve needle is located, and the armature further comprising a protrusion extending radially into the recess,

a spring element arranged in the recess axially between and contacting the ring element of the valve needle and the protrusion of the armature, and

an armature support spring arranged relative to the spring element and the armature such that an axial movement of the armature in the cavity increases a compressive force on one of the armature support spring and spring element, while decreasing a compressive force on the other one of the armature support spring and spring element.

2. The valve assembly of claim 1 , wherein the spring element is a coil spring.

3. The valve assembly of claim 1 , wherein the armature support spring is arranged in the cavity axially between a step of the valve body and the armature.

4. The valve assembly of claim 1 , wherein the armature support spring is a coil spring.

5. An injection valve comprising:

a valve assembly comprising:

a valve body including a central longitudinal axis and a cavity having a fluid inlet portion and a fluid outlet portion,

a valve needle axially movable in the cavity, the valve needle having top and bottom portions, the bottom portion preventing a fluid flow through the fluid outlet portion in a closing position by resting on a seat preventing fluid flow through an injection nozzle and releasing the fluid flow through the fluid outlet portion to exit the injector body through the injection nozzle in further positions upon movement away from the seat, the valve needle comprising a ring element extending radially and being arranged at the top portion of the valve needle,

an electro-magnetic actuator unit configured to actuate the valve needle, the electro-magnetic actuator unit comprising an armature axially movable in the cavity, the armature comprising a recess in which at least a portion of the ring element of the valve needle is located, and the armature further comprising a protrusion extending radially into the recess,

a spring element arranged in the recess axially between and contacting the ring element of the valve needle and the protrusion of the armature, and

an armature support spring arranged relative to the spring element and the armature such that an axial movement of the armature in the cavity increases a compressive force on one of the armature support spring and spring element, while decreasing a compressive force on the other one of the armature support spring and spring element.

6. The injection valve of claim 5 , wherein the spring element is a coil spring.

7. The injection valve of claim 5 , wherein the armature support spring is arranged in the cavity axially between a step of the valve body and the armature.

8. The injection valve of claim 5 , wherein the armature support spring is a coil spring.

9. A valve assembly for an injection valve, comprising:

a valve body including a central longitudinal axis and a cavity having a fluid inlet portion and a fluid outlet portion,

a valve needle axially movable in the cavity, the valve needle having top and bottom portions, the bottom portion preventing a fluid flow through the fluid outlet portion in a closing position by resting on a seat preventing fluid flow through an injection nozzle and releasing the fluid flow through the fluid outlet portion to exit the injector body through the injection nozzle in further positions upon movement away from the seat, the valve needle comprising a ring element extending radially and being arranged at the top portion of the valve needle,

a calibration spring mechanically coupled to the ring element of the valve needle, the calibration spring exerting a force on the valve needle toward the injection nozzle of the injection valve,

an electro-magnetic actuator unit configured to actuate the valve needle, the electro-magnetic actuator unit comprising an armature axially movable in the cavity, the armature comprising a recess in which at least a portion of the ring element of the valve needle is located, and the armature further comprising a protrusion extending radially into the recess, and

a spring element and arranged in the recess axially between and contacting the ring element of the valve needle and the protrusion of the armature, the spring element configured to delay a movement of the valve needle relative to the armature, and

an armature support spring arranged in the cavity axially between a step of the valve body and the armature, the armature support spring being supported by the step.

10. The valve assembly of claim 9 , wherein the ring element is in contact with an inner surface of the armature, which interaction guides the valve needle axially in the recess of the armature.

11. The injection valve of claim 9 , wherein the spring element is a coil spring and encircles a portion of the valve needle.

12. The injection valve of claim 5 , wherein the spring element is a coil spring and encircles a portion of the valve needle.

13. The injection valve of claim 1 , wherein the spring element is a coil spring and encircles a portion of the valve needle.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2020
From: CONTINENTAL AUTOMOTIVE GMBH
To: VITESCO TECHNOLOGIES GMBH
Reel/Frame 053349/0476 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2012
From: GRANDI, MAURO
To: CONTINENTAL AUTOMOTIVE GMBH
Reel/Frame 029049/0876 →
Priority Claims (1)
EP 09015392 · Dec 11, 2009 · regional
Continuity (1)
Related Publication 20120312903A1 · Dec 13, 2012