Hydraulic camshaft adjuster
11536166 · 2022-12-27
Assignee
Inventors
Cpc classification
F01L2001/34426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/34466
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/34469
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/34463
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/3443
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/3442
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A hydraulic camshaft adjuster (1), in which the locking system (7, 8) includes a first and a second control element (7, 8). In order to approach the middle position easily, the first control element (7) has a first and a second switching position, wherein in the first switching position a fluidic connection between the hydraulic pump (P) and a first of the two sub-chambers (B) and a fluidic connection between the other, second sub-chamber (A) and the tank (T) can be established, and in the second switching position a fluidic connection between the hydraulic pump (P) and the second of the two sub-chambers (A) and a fluidic connection between the other, first sub-chamber (B) and the tank (T) can be established, and the second control element (8) is free from different switching positions and has no influence on the flow of hydraulic fluid.
Claims
1. A hydraulic camshaft adjuster, comprising a stator having a hydraulic chamber; a rotor arranged rotatably in the stator, the rotor having at least one blade arranged in the hydraulic chamber of the stator to define a first part chamber that is separated from a second part chamber; a central valve configured to control a flow of hydraulic fluid into the first part chamber and into the second part chamber; a locking system configured to lock the rotor relative to the stator in a center position, the locking system comprising a first control element and a second control element which are holdable in an unlocked position by loading with hydraulic fluid via the central valve, and which bring about a locking action in case of a removal of pressure of the hydraulic fluid, the first control element and the second control element are movable into an operative connection with a slotted guide in the stator or a component connected to the stator, the slotted guide determining an axial position of the first and second control elements; a hydraulic pump for providing hydraulic fluid; a tank for receiving hydraulic fluid; wherein the first control element has a first, unlocked, switching position and a second, locked, switching position, and in the first switching position, a fluidic connection between the hydraulic pump and the first part chamber of the first part chamber and the second part chamber and a fluidic connection between the second part chamber and the tank are established, and in the second switching position, a fluidic connection between the hydraulic pump and the second of the first part chamber and the second part chamber and a fluidic connection between the first part chamber and the tank are established, and wherein the second control element is free from different switching positions and does not influence the flow of hydraulic fluid.
2. The hydraulic camshaft adjuster as claimed in claim 1, wherein the central valve has a switching position, in which a fluidic connection is established between the pump and one of the two part chambers, and in which a fluidic connection is established between the other one of the part chambers and the tank.
3. The hydraulic camshaft adjuster as claimed in claim 2, wherein the central valve is connected fluidically to the first control element in the first and second switching position.
4. The hydraulic camshaft adjuster as claimed in claim 3, wherein in addition to the switching positions, the central valve has normal operation switching positions which are required for regular operation of the camshaft adjuster.
5. The hydraulic camshaft adjuster as claimed in claim 1, wherein there are a plurality of the hydraulic chambers, and a number of the blades of the rotor corresponds to a number of hydraulic chambers.
6. The hydraulic camshaft adjuster as claimed in claim 1, wherein there are a plurality of the hydraulic chambers, and a number of the blades corresponds to a number of hydraulic chambers.
7. The hydraulic camshaft adjuster as claimed in claim 1, wherein in the stator or in the component which is connected to the stator, the slotted guide has an extent in a circumferential direction, which extent corresponds to a spacing between the two control elements in the circumferential direction.
8. The hydraulic camshaft adjuster as claimed in claim 1, wherein the slotted guide is configured as an arcuate slot in the stator or in the component which is connected to the stator.
9. The hydraulic camshaft adjuster as claimed in claim 1, wherein the control elements are arranged in the rotor, the first control element and the second control element are configured to engage, in a center position (M), into the slotted guide in the stator or the component connected to the stator, in order to establish a mechanical locking action between the rotor and the stator.
10. The hydraulic camshaft adjuster as claimed in claim 1, wherein the control elements are each configured as a pin which is arranged counter to a prestress of a spring in a respective bore in the rotor.
11. The hydraulic camshaft adjuster as claimed in claim 1, wherein there are a plurality of the hydraulic chambers, and the control elements are assigned to one hydraulic chambers.
12. The hydraulic camshaft adjuster as claimed in claim 1, wherein there are a plurality of the hydraulic chambers, and more than one of the hydraulic chambers are assigned a control element to.
13. A hydraulic camshaft adjuster, comprising a stator having a hydraulic chamber; a rotor arranged rotatably in the stator, the rotor having at least one blade arranged in the hydraulic chamber of the stator to define a first part chamber that is separated from a second part chamber; a central valve configured to control a flow of hydraulic fluid into the first part chamber and into the second part chamber, the central valve including a hydraulic pump connection for receiving hydraulic fluid and a tank connection adapted for discharging hydraulic fluid to a tank; a locking system configured to lock the rotor relative to the stator, the locking system comprising first and second control elements which are held in an unlocked position by loading with hydraulic fluid via the central valve, and which bring about a locking action in case of a removal of the loading by the hydraulic fluid, the first control element and the second control element are movable into an operative connection with a slotted guide in the stator or a component connected to the stator, the slotted guide determining an axial position of the control elements; wherein the first control element has a first, unlocked, switching position and a second, locked, switching position, and in the first switching position, a fluidic connection between the hydraulic pump connection and the first part chamber of the two part chambers and a fluidic connection between the second part chamber and the tank connection are established, and in the second switching position, a fluidic connection between the hydraulic pump connection and the second part chamber of the two part chambers and a fluidic connection between the first part chamber and the tank connection are established, and wherein the second control element is free from different switching positions and does not influence the flow of hydraulic fluid.
14. The hydraulic camshaft adjuster as claimed in claim 13, wherein the central valve has a switching position, in which a fluidic connection is established between the pump connection and one of the first part chamber and the second part chamber, and in which a fluidic connection is established between the other one of the part chambers and the tank.
15. The hydraulic camshaft adjuster as claimed in claim 13, wherein the central valve is connected fluidically to the first control element in the first and second switching position.
16. The hydraulic camshaft adjuster as claimed in claim 15, wherein, in addition to the switching positions, the central valve has normal operation switching positions which are required for regular operation of the camshaft adjuster.
17. The hydraulic camshaft adjuster as claimed in claim 13, wherein there are a plurality of the hydraulic chambers, and a number of the blades of the rotor corresponds to a number of hydraulic chambers, and only one of the hydraulic chambers is equipped with the first control element and the second control element.
18. The hydraulic camshaft adjuster as claimed in claim 13, wherein there are a plurality of the hydraulic chambers, and a number of the blades corresponds to a number of hydraulic chambers.
19. The hydraulic camshaft adjuster as claimed in claim 13, wherein in the stator or in the component which is connected to the stator, the slotted guide has an extent in a circumferential direction, which extent corresponds to a spacing between the two control elements in the circumferential direction.
20. The hydraulic camshaft adjuster as claimed in claim 13, wherein the slotted guide is configured as an arcuate slot in the stator or in the component which is connected to the stator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Exemplary embodiments of the disclosure are shown in the figures, in which:
(2)
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION
(8) The figures diagrammatically show a camshaft adjuster 1 which has a stator 2 and a rotor 3 which can be rotated relative to the latter. The rotor 3 has a number of blades 4 which reach into respective hydraulic chambers 5 of the stator 2 and divide a first part chamber A from a second part chamber B here. During regular operation of the camshaft adjuster 1, a desired relative rotational position between the stator 2 and the rotor 3 is established by way of the feeding of hydraulic oil via a central valve 6 into the part chambers A and/or B.
(9) In the following text, only the novel features of the hydraulic camshaft adjuster are described, since the general method of operation of an adjuster of this type is well known. In respect of the hydraulic control of an element of this type and, in particular, in respect of the actuation of the adjuster with a central valve, reference is made expressly, for example, to DE 10 2013 226 437 B4 of the patent applicant, where detailed information in this regard is contained.
(10) Accordingly, during normal operation of the camshaft adjuster 1, the part chambers A and B are supplied with hydraulic oil in a desired way. In this operating mode, a locking system 7, 8 is passive, which is brought about by the fact that pressurized oil is conducted into a C-port. This has the consequence that two control elements 7 and 8 are pressed counter to a spring 10 by the pressure of the hydraulic fluid in such a way that the control elements 7 and 8 assume an unlocked position and therefore the camshaft adjuster 1 is in its normal operating position.
(11) Accordingly, in the case of the C-port being loaded with pressurized oil by a hydraulic pump P, the two control elements 7 and 8 are held counter to the action of the spring 10 in a position, in which no locking of the rotor 3 relative to the stator 2 takes place.
(12) The regular operation of the camshaft adjuster 1 is shown in
(13) In
(14) The reverse case is shown in
(15) In that position of the central valve 6 which lies between the two said positions, the flow from the hydraulic pump P and to the tank T is interrupted, with the result that no relative rotation can take place between the rotor 3 and the stator 2. Merely the C-port is pressurized and holds the two control elements 7 and 8 in the unlocked position.
(16) The aim is to ensure, in the case of an engine stop of the internal combustion engine, that the rotor 3 comes to lie relative to the stator 2 in a center position M, as shown in
(17) This is brought about by way of the two control elements 7 and 8 in the form of control pins which can move in an axial direction a (see
(18) Here, the first control element 7 is configured in such a way that it has or can assume a first and a second switching position; the two switching positions can be seen from the figures. In the first, unlocked switching position (pressure prevails in the C-port, and the control element 7 is pressed counter to the spring 10), a fluidic connection between the hydraulic pump P and a first one of the two part chambers A, B and a fluidic connection between the other, second part chamber A, B and the tank T can be established, which is dependent on the corresponding position of the central valve 6 which has to be situated in the position on the extreme left to this end (as shown in
(19) In the meantime, the second control element 8 is free from different switching positions and does not have any influence on the flow of hydraulic fluid. It is pressed to the right in the direction of the slotted guide 9 as a consequence of the action of the spring 10; whether the control element 8 moves into the slotted guide 9 is dependent on the relative position between the stator 2 and the rotor 3 and also on whether pressure prevails in the C-port.
(20) Accordingly, the following method of operation results, in order to move the rotor 3 relative to the stator 2 into the center position M and to lock it here.
(21) According to
(22) If, in the case of the pressure being removed from the C-port, the control element 7 is already in the meantime situated in the region of the slotted guide 9, as shown in
(23) Accordingly, a backward rotation of the rotor 3 relative to the stator 2 can take place, with the result that the locked position which is shown in
(24)
LIST OF DESIGNATIONS
(25) 1 Camshaft adjuster 2 Stator 3 Rotor 4 Blade 5 Hydraulic chamber 6 Central valve 7, 8 Locking system 7 First control element (control or switching pin) 8 Second control element (control or switching pin) 9 Slotted guide 10 Spring A First part chamber B Second part chamber C C-port for unlocking P Hydraulic pump T Tank a Axial direction M Center position