Claims
- 1. A piezoelectric actuator for actuating valves, having an actuator body (1) in the form of a multilayered laminate made up of stacked layers of piezoelectric material with intervening electrically conductive layers (27) that function as electrodes, and the end faces of this actuator body (1) are respectively contacted by a top plate (2) oriented toward the valve having an axially protruding valve tappet (3) and a bottom plate (4) at the opposite end, wherein the actuator (10) rests in an axial bore (16) of a valve housing (6), and is prestressed at the ends in the axial direction between the top plate (2) and the bottom plate (4) by means of a spring element (5), wherein at least part of the actuator (10) is enclosed by an electrically insulating sleeve (9, 19; 18) made of a ductile, polymer material so that when installed, the actuator (10) with the insulating sleeve (9, 19; 18) rests snugly against the inner wall of the axial bore (16) of the valve housing (6) in the vicinity of the actuator (10), wherein before insertion into the axial bore (16), the sleeve (9, 19) has a convexity (20) whose diameter (D), at least in sections, is greater than the inner diameter (d) of the axial bore (16) of the valve housing (6).
- 2. The piezoelectric actuator according to claim 1, wherein the sleeve (9, 19) has thermally conductive particles (21) impregnated therein.
- 3. The piezoelectric actuator according to claims 1, wherein the sleeve (9, 19) is comprised of an inner sleeve layer (9) around the actuator (10) and a fresh elastomer film which is introduced around the outer contour of this inner sleeve layer (9) during installation of the actuator (10) and which film solidifies after installation.
- 4. The piezoelectric actuator according to claim 1, wherein top plate (2) and the bottom plate (4) of the actuator (10) are respectively comprised of insulating ceramic material and the unit comprised of the actuator body (1), the top plate (2), the bottom plate (4), and the sleeve (9, 19) is electrically insulated completely in relation to the valve housing (6).
- 5. The piezoelectric actuator according to claim 1, wherein the bottom plate (4) is comprised of metal and is insulated in relation to the actuator body (1) by means of a plasma sprayed layer (14).
- 6. The piezoelectric actuator according to claim 5, wherein the top plate (2) is also comprised of metal and is insulated in relation to the actuator body (1) by means of a plasma sprayed layer (22).
- 7. The piezoelectric actuator according to claim 1, wherein the spring element (5) is a helical spring which is clamped between the top plate (2) and a radial inner shoulder of the valve housing (6).
- 8. The piezoelectric actuator according to claim 1, wherein the spring element (5) is a spring plate packet which is clamped between the top plate (2) and a radial inner shoulder of the valve housing (6).
- 9. The piezoelectric actuator according to claim 7, wherein the sleeve (18) also encompasses the spring element (5).
- 10. The piezoelectric actuator according to claim 1, wherein the ductile, polymer material is an elastomer which encapsulates at least part of the actuator (10) before it is inserted into the valve housing.
- 11. A piezoelectric actuator for actuating valves, having an actuator body (1) in the form of a multilayered laminate made up of stacked layers of piezoelectric material with intervening electrically conductive layers (27) that function as electrodes, and the end faces of this actuator body (1) are respectively contacted by a top plate (2) oriented toward the valve having an axially protruding valve tappet (3) and a bottom plate (4) at the opposite end, wherein the actuator (10) rests in an axial bore (16) of a valve housing (6), and is prestressed at the ends in the axial direction between the top plate (2) and the bottom plate (4) by means of a spring element (5), wherein at least part of the actuator (10) is enclosed by an electrically insulating sleeve (9, 19; 18) made of a ductile, polymer material so that when installed, the actuator (10) with the insulating sleeve (9, 19; 18) rests snugly against the inner wall of the axial bore (16) of the valve housing (6) in the vicinity of the actuator (10), wherein the sleeve (9) includes air bubbles (11).
- 12. A piezoelectric actuator for actuating valves, having an actuator body (1) in the form of a multilayered laminate made up of stacked layers of piezoelectric material with intervening electrically conductive layers (27) that function as electrodes, and the end faces of this actuator body (1) are respectively contacted by a top plate (2) oriented toward the valve having an axially protruding valve tappet (3) and a bottom plate (4) at the opposite end, wherein the actuator (10) rests in an axial bore (16) of a valve housing (6), and is prestressed at the ends in the axial direction between the top plate (2) and the bottom plate (4) by means of a spring element (5), wherein at least part of the actuator (10) is enclosed by an electrically insulating sleeve (9, 19; 18) made of a ductile, polymer material so that when installed, the actuator (10) with the insulating sleeve (9, 19; 18) rests snugly against the inner wall of the axial bore (16) of the valve housing (6) in the vicinity of the actuator (10), wherein before insertion into the axial bore (16), the sleeve (9, 19) has a convexity (20) whose diameter (D), at least in sections, is greater than the inner diameter (d) of the axial bore (16) of the valve housing (6), and wherein the sleeve (9) includes air bubbles (11).
- 13. A piezoelectric actuator for actuating valves, having an actuator body (1) in the form of a multilayered laminate made up of stacked layers of piezoelectric material with intervening electrically conductive layers (27) that function as electrodes, and the end faces of this actuator body (1) are respectively contacted by a top plate (2) oriented toward the valve having an axially protruding valve tappet (3) and a bottom plate (4) at the opposite end, wherein the actuator (10) rests in an axial bore (16) of a valve housing (6), and is prestressed at the ends in the axial direction between the top plate (2) and the bottom plate (4) by means of a spring element (5), wherein at least part of the actuator (10) is enclosed by an electrically insulating sleeve (9, 19; 18) made of a ductile, polymer material so that when installed, the actuator (10) with the insulating sleeve (9, 19; 18) rests snugly against the inner wall of the axial bore (16) of the valve housing (6) in the vicinity of the actuator (10), wherein the outer contour of the sleeve (9) has grooves (12) at definite locations.
- 14. The piezoelectric actuator according to claim 13, wherein the grooves (12) are embodied as annular grooves.
- 15. A piezoelectric actuator for actuating valves, having an actuator body (1) in the form of a multilayered laminate made up of stacked layers of piezoelectric material with intervening electrically conductive layers (27) that function as electrodes, and the end faces of this actuator body (1) are respectively contacted by a top plate (2) oriented toward the valve having an axially protruding valve tappet (3) and a bottom plate (4) at the opposite end, wherein the actuator (10) rests in an axial bore (16) of a valve housing (6), and is prestressed at the ends in the axial direction between the top plate (2) and the bottom plate (4) by means of a spring element (5), wherein at least part of the actuator (10) is enclosed by an electrically insulating sleeve (9, 19; 18) made of a ductile, polymer material so that when installed, the actuator (10) with the insulating sleeve (9, 19; 18) rests snugly against the inner wall of the axial bore (16) of the valve housing (6) in the vicinity of the actuator (10), wherein before insertion into the axial bore (16), the sleeve (9, 19) has a convexity (20) whose diameter (D), at least in sections, is greater than the inner diameter (d) of the axial bore (16) of the valve housing (6), and wherein the outer contour of the sleeve (9) has grooves (12) at definite locations.
- 16. The piezoelectric actuator according to claim 15, wherein the grooves (12) are embodied as annular grooves.
- 17. A piezoelectric actuator for actuating valves, having an actuator body (1) in the form of a multilayered laminate made up of stacked layers of piezoelectric material with intervening electrically conductive layers (27) that function as electrodes, and the end faces of this actuator body (1) are respectively contacted by a top plate (2) oriented toward the valve having an axially protruding valve tappet (3) and a bottom plate (4) at the opposite end, wherein the actuator (10) rests in an axial bore (16) of a valve housing (6), and is prestressed at the ends in the axial direction between the top plate (2) and the bottom plate (4) by means of a spring element (5), wherein at least part of the actuator (10) is enclosed by an electrically insulating sleeve (9, 19; 18) made of a ductile, polymer material so that when installed, the actuator (10) with the insulating sleeve (9, 19; 18) rests snugly against the inner wall of the axial bore (16) of the valve housing (6) in the vicinity of the actuator (10), wherein at least one radial centering ring (15, 15a), made of a material which is stronger than the rest of the sleeve, encompasses the actuator body (1), wherein the inner contour of the centering ring (15, 15a) is adapted to the outer contour of the actuator body (1) and the outer contour of the centering ring (15, 15a) is adapted to the inner contour of the axial bore (16) of the valve housing (6).
- 18. A piezoelectric actuator for actuating valves, having an actuator body (1) in the form of a multilayered laminate made up of stacked layers of piezoelectric material with intervening electrically conductive layers (27) that function as electrodes, and the end faces of this actuator body (1) are respectively contacted by a top plate (2) oriented toward the valve having an axially protruding valve tappet (3) and a bottom plate (4) at the opposite end, wherein the actuator (10) rests in an axial bore (16) of a valve housing (6), and is prestressed at the ends in the axial direction between the top plate (2) and the bottom plate (4) by means of a spring element (5), wherein at least part of the actuator (10) is enclosed by an electrically insulating sleeve (9, 19; 18) made of a ductile, polymer material so that when installed, the actuator (10) with the insulating sleeve (9, 19; 18) rests snugly against the inner wall of the axial bore (16) of the valve housing (6) in the vicinity of the actuator (10), wherein before insertion into the axial bore (16), the sleeve (9, 19) has a convexity (20) whose diameter (D), at least in sections, is greater than the inner diameter (d) of the axial bore (16) of the valve housing (6), and wherein at least one radial centering ring (15, 15a), made of a material which is stronger than the rest of the sleeve, encompasses the actuator body (1), wherein the inner contour of the centering ring (15, 15a) is adapted to the outer contour of the actuator body (1) and the outer contour of the centering ring (15, 15a) is adapted to the inner contour of the axial bore (16) of the valve housing (6).
Priority Claims (1)
Number |
Date |
Country |
Kind |
1 99 14 411.7 |
Mar 1999 |
DE |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation of application Ser. No. 09/701,506, having a 35 USC 102(e) date of Mar. 16, 2001, which was a 35 USC 371 application of PCT/DE 00/00533 filed on Feb. 25, 2000.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09701506 |
Mar 2001 |
US |
Child |
10175840 |
Jun 2002 |
US |