IP Library Granted Patent US 8,162,240
Granted Patent B2
US 8,162,240 · App. 11/670,798 · Granted Apr 24, 2012

Actor device for an injector and injector

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Quick Facts
Patent No.
US 8,162,240
App. No.
11/670,798
Granted
Apr 24, 2012
Kind
B2
Abstract

An actor device ( 14 ) for an injector has a solid-state actuator ( 17 ) and a first and a second end plate ( 18, 16 ) which are coupled to the solid-state actuator ( 17 ) at first and, respectively, at second axial end of the solid-state actuator ( 17 ). Further, the actor device ( 14 ) has a sliding body ( 24 ) which is rigidly coupled to the first end plate ( 18 ) and which extends to the second end plate ( 16 ). The sliding body ( 24 ) radially surrounds the solid-state actuator ( 17 ) and has a clearance to the solid-state actuator ( 17 ) and to the second end plate ( 16 ).

Claims (32)

1. An actor device for an injector comprising

an injector housing,

a solid-state actuator having an outer perimeter and an axial length extending from a first axial end to a second axial end opposite the first axial end,

a first end plate located at and coupled to the first axial end of the solid-state actuator,

a second end plate located at and coupled to the second axial end of the solid-state actuator,

a rigid sliding body which is rigidly coupled to the first end plate at the first axial end of the solid-state actuator, wherein the rigid sliding body is located outside the outer perimeter of the actuator and extends along a substantial portion of the axial length of the actuator, and which has a clearance to the solid-state actuator and to the second end plate, and

a temperature compensation assembly coupled to the actor device such that the temperature compensation assembly and actuator are axially positioned on opposite sides of the first end plate, wherein the temperature compensation assembly compensates for different thermal expansions of the actor device and a housing containing the actor device;

wherein the first end plate, the first axial end of the solid-state actuator, the second end plate, and the second axial end of the solid-state actuator are all axially movable relative to the injector housing.

2. The actor device according to claim 1 , wherein the sliding body and the first end plate being rigidly coupled to each other at an end face of the first end plate and at an end face of the sliding body.

3. The actor device according to claim 1 , wherein the sliding body being tube-shaped.

4. The actor device according to claim 1 , wherein the temperature compensation assembly is coupled at the first end plate.

5. The actor device according to claim 1 , wherein the temperature compensation assembly is coupled at the second end plate.

6. An injector for dosing fluid comprising

a housing,

an actor device comprising a solid-state actuator having an outer perimeter and an axial length extending from a first axial end to a second axial end opposite the first axial end, a first end plate located at and coupled to the first axial end of the solid-state actuator, a second end plate located at and coupled to the second axial end of the solid-state actuator, and a rigid sliding body (a) which is rigidly coupled to the first end plate at the first axial end of the solid-state actuator, wherein the rigid sliding body is located outside the outer perimeter of the actuator and extends along a substantial portion of the axial length of the actuator, and which has a clearance to the solid-state actuator and to the second end plate, wherein the actor device is arranged in the housing movable in an axial direction,

a needle which is arranged in the housing movable in axial direction and which is coupled to the actor device and which prevents in a closed position of the needle a fluid flow through an injection nozzle in the housing and otherwise enables the fluid flow through the injection nozzle, and

a temperature compensation assembly coupled between the housing and the actor device such that the temperature compensation assembly and actuator are axially positioned on opposite sides of the first end plate, wherein the temperature compensation assembly compensates for different thermal expansions of the housing and the actor device;

wherein the first end plate, the first axial end of the solid-state actuator, the second end plate, and the second axial end of the solid-state actuator are all axially movable relative to the injector housing.

7. The injector according to claim 6 having a slight clearance between the sliding body and the housing.

8. The injector according to claim 6 , wherein the temperature compensation assembly is coupled at the first end plate.

9. The injector according to claim 6 , wherein the temperature compensation assembly is coupled at the second end plate.

10. An method for manufacturing an actor device for an injector comprising:

providing an injector housing,

providing a solid-state actuator having an outer perimeter and an axial length extending from a first axial end to a second axial end opposite the first axial end,

coupling a first end plate to the first axial end of the solid-state actuator and coupling a second end plate to the second axial end of the solid-state actuator such that the full axial length of the actuator is located between the first and second end plates, and

coupling a rigid sliding body rigidly to the first end plate at the first axial end of the solid-state actuator, wherein the rigid sliding body is located outside the outer perimeter of the actuator and extends along a substantial portion of the axial length of the actuator, and which has a clearance to the solid-state actuator and to the second end plate, and

providing a temperature compensation assembly coupled to the actor device such that the temperature compensation assembly and actuator are axially positioned on opposite sides of the first end plate, wherein the temperature compensation assembly compensates for different thermal expansions of the actor device and a housing containing the actor device;

wherein the first end plate, the first axial end of the solid-state actuator, the second end plate, and the second axial end of the solid-state actuator are all axially movable relative to the injector housing.

11. The method according to claim 10 , further comprising the step of rigidly coupling the sliding body and the first end plate to each other at an end face of the first end plate and at an end face of the sliding body.

12. The method according to claim 10 , wherein the sliding body being tube-shaped.

13. The method according to claim 10 , wherein the temperature compensation assembly is coupled at the first end plate.

14. The method according to claim 10 , wherein the temperature compensation assembly is coupled at the second end plate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2010
From: SIEMENS AKTIENGESELLSCHAFT
To: CONTINENTAL AUTOMOTIVE GMBH
Reel/Frame 023897/0312 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2007
From: BONDI, ANTONIO
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 019484/0060 →