Control apparatus for camshaft phaser
11346259 · 2022-05-31
Assignee
Inventors
- Lucas GIAMBRONE (HAUCOURT-MOULAINE, FR)
- Sebastien Stoltz-Douchet (Basse-Ham, FR)
- Rodrigue BERHIN (ARLON, BE)
Cpc classification
F01L2001/34426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2820/031
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K11/0716
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/34463
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2013/101
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/0613
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/3443
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/3442
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2303/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01L1/344
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A device for controlling a camshaft phaser includes a hydraulic element with a body, a slide assembly having a slide body, and a valve assembly with a first valve, a second valve, and a third valve. The device also includes an actuator which moves along a longitudinal axis between 1) a first position in which the first valve opens or closes a first fluid communication, 2) a second position in which the second valve and the tray open or close a second fluid communication, and 3) a third position in which the third valve and the slide body open or close a third fluid communication between a retard port and a retard chamber.
Claims
1. A control device for locking or releasing a rotor of a camshaft phaser of an internal combustion engine, the control device comprising: a hydraulic element comprising a body, a slide assembly having a slide body, a seal, and a valve assembly comprising a first valve, a second valve and a third valve; and an electromagnetic actuator connected to the slide assembly of the hydraulic element which moves along a longitudinal axis between: a first position, in which the first valve opens or closes a first fluid communication between an advance port of the slide body and an advance chamber of the camshaft phaser; a second position in which the second valve and the slide body open or close a second fluid communication between an oil circuit coming from the internal combustion engine and a supply port of the slide body; and a third position in which the third valve and the slide body open or close a third fluid communication between a retard port of the slide body and a retard chamber of the camshaft phaser; wherein said first valve, said second valve, and said third valve are integrated in a flexible one-piece part such that said first valve, said second valve, and said third each have at least one vane connected to two flexible arms and such that said first valve, said second valve, and said third valve are each connected to two contiguous rigid rings.
2. A method for producing the control device as claimed in claim 1, comprising the following steps: inserting the valve assembly into the slide body; inserting a slide insert into an assembly obtained in the previous step; inserting a corrugated stop ring into an assembly obtained in the previous step; inserting a compression spring into the body of the hydraulic element; inserting the slide assembly into the body of the hydraulic element; crimping the hydraulic element with the electromagnetic actuator.
3. A control device for locking or releasing a rotor of a camshaft phaser of an internal combustion engine, the control device comprising: a hydraulic element comprising a body, a slide assembly having a slide body, a seal, and a valve assembly comprising a first valve, a second valve and a third valve; and an electromagnetic actuator connected to the slide assembly of the hydraulic element which moves along a longitudinal axis between: a first position, in which the first valve opens or closes a first fluid communication between an advance port of the slide body and an advance chamber of the camshaft phaser; a second position in which the second valve and the slide body open or close a second fluid communication between an oil circuit coming from the internal combustion engine and a supply port of the slide body; and a third position in which the third valve and the slide body open or close a third fluid communication between a retard port of the slide body and a retard chamber of the camshaft phaser; wherein said valve assembly comprises a longitudinal bar integrated in a flexible one-piece part with each of said first valve, said second valve, and said third valve such that said first valve, said second valve, and said third each have at least one vane connected to a flexible arm extending along the longitudinal axis and such that the longitudinal bar connects each of said first valve, said second valve, and said third valve to said longitudinal bar.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) One or more embodiments of the invention will now be described, purely by way of example, with reference to the accompanying drawings, in which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(9) To facilitate and clarify the following description, the orientation from top to bottom is arbitrarily chosen and, words and expressions such as “above, below, top, bottom, high, low, etc.” may be used without any intention to limit the invention.
(10)
(11)
(12) According to
(13)
(14) The term “at least one opening”, used in the description below, defines a number of openings comprising at least one opening.
(15)
(16) In
(17)
(18) According to
(19) According to
(20) According to
(21) A first embodiment is described according to
(22) In the embodiment described above, the vanes 62 and the arms 72, 74 are rigidly secured to one another. The valve assembly 34 may be formed for example by cutting, for example with a laser, a cylindrical metal tube, such as for example steel. Other variants of the embodiment of the valve assembly 34 described above are possible such as starting with a metal sheet then cutting by stamping or by laser or by chemical attack and then rolling the metal sheet and finally welding the rolled metal sheet
(23) According to
(24) The spring arms 72, 74 are thin in terms of width. Due to the slenderness of the arms, an opening 78 of the vane is defined between the spring arms 72, 74 of the valve 70, 71, 73.
(25) In a second embodiment, the control valve assembly 34 depicted in
(26) According to
(27) The operation of the control device 12 for controlling the camshaft phaser 13, for locking or releasing a rotor of a camshaft phaser 13, will be described briefly. The electromagnetic actuator 14 is connected to the slide assembly 30 of the hydraulic element 16, which can move along the longitudinal axis X between: a first position in which the first valve 70 opens or closes a first fluid communication F1 between an advance chamber of the camshaft phaser 13 and an advance port 46 of the slide body 36, a second position in which the second valve 71 and the slide body (36) open or close a second fluid communication (F2) between an oil circuit coming from the engine (10) and a supply port (50) of the slide body (36), and a third position in which the third valve 73 opens or closes a third fluid communication F3 between a retard chamber of the camshaft phaser 13 and a retard port 48 of the slide body 36.
(28) The operation of the valve assembly 34 of the two embodiments will be described briefly. When the pressure exerted on the outside of the vane 62 is greater than the pressure exerted on the inside of the vane 62, the force exerted on the surface tends to deform the flexible arms 72, 74, 82. The arms 72, 74, 82 flex the vane 62, the vane 62 moves towards the central longitudinal axis X which frees the recirculation opening 60 and the supply opening 58 of the slide body 36. The maximum deformation of the arms 72, 74, 82 is limited by radial stops in the slide insert 38.
(29) The tubular valve assembly 34 described above could be incorporated into any other system of a vehicle requiring this type of valve to selectively block an opening as described.
(30) Those skilled in the art will appreciate that the invention may be modified according to numerous variants without departing from the scope of the appended claims.
(31) The method for producing and assembling the invention described above for the two embodiments will be described below:
(32) The method for assembling the control device 12 includes the following steps: 100/ inserting the control valve assembly 34 into the slide body 36, 110/ inserting the slide insert 38 into the assembly obtained in the previous step 100, 120/ inserting the corrugated stop ring 42 into the assembly obtained in the previous step 110, 130/ inserting the compression spring 40 into the body 28, 140/ inserting the slide assembly 30 into the body 28, 150/ crimping the hydraulic element 16 with the electromagnetic actuator 14.
(33) The assembled control device 12 is then placed on the engine 10 and then a screw is screwed through the fixing bracket 26 and tightened for axial and rotational immobilization.
LIST OF REFERENCE SIGNS USED
(34) 10 engine 12 control device 13 camshaft phaser 14 electromagnetic actuator 16 hydraulic element 18 connector 20 coil 22 rod 24 housing 26 fixing bracket 28 body 29 bore 30 slide assembly 32 seal 34 control valve assembly 36 slide body 38 slide insert 40 compression spring 42 stop ring 44 washer 45 internal chamber 46 advance port 48 retard port 50 supply port 52 drainage port 53 filter 54 advance opening 56 retard opening 58 supply opening 60 recirculation opening 62 vane 66 first end 67 second end 68 rigid ring 70 valve 72 arm 74 arm 76 indexing element 78 opening 80 end 82 arm 84 longitudinal bar 86 rigid element