CAMSHAFT ADJUSTING SYSTEM HAVING A HYDRAULIC CAMSHAFT ADJUSTER AND AN ELECTRIC CAMSHAFT ADJUSTER
20190353237 · 2019-11-21
Assignee
Inventors
Cpc classification
F16H57/0037
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H53/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2059/0295
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/344
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L9/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/34483
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/0473
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/3442
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H53/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/344
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
This disclosure relates to a camshaft adjusting system for a motor vehicle, having an inner camshaft, and an outer camshaft, which is arranged coaxially with and radially on the outside of the inner camshaft. The camshaft adjusting system further includes an input wheel, which is designed to introduce torque into the camshafts, a hydraulic camshaft adjuster, which acts on the outer camshaft to adjust the phase angle of the outer camshaft relative to the input wheel, and an electric camshaft adjuster, which acts on the inner camshaft to adjust the phase angle of the inner camshaft relative to the input wheel. The input wheel is supported on the outer camshaft by means of a radial plain bearing.
Claims
1. A camshaft adjusting system for a motor vehicle, comprising: an inner camshaft; an outer camshaft arranged coaxially with and radially outside of the inner camshaft; an input wheel configured to introduce torque into the camshafts; a hydraulic camshaft adjuster, which acts on the outer camshaft to adjust a phase angle of the outer camshaft relative to the input wheel; and an electric camshaft adjuster, which acts on the inner camshaft to adjust a phase angle of the inner camshaft relative to the input wheel; and the input wheel supported on the outer camshaft by a radial plain bearing.
2. The camshaft adjusting system as claimed in claim 1, wherein the radial plain bearing is arranged on a radial outer side of a bearing hub, the bearing hub fixedly connected to the outer camshaft.
3. The camshaft adjusting system as claimed in claim 1, wherein a rotor of the hydraulic camshaft adjuster is rotatable relative to a stator, the rotor connected for conjoint rotation to the outer camshaft and centered relative to the input wheel by at least one of a compressible sealing element or an elastic rotor blade design.
4. The camshaft adjusting system as claimed in claim 3, wherein the sealing element is spring-preloaded in a radial direction.
5. The camshaft adjusting system as claimed in claim 1, wherein a rotor of the hydraulic camshaft adjuster is mounted on the outer camshaft such that the rotor can float in an axial direction.
6. The camshaft adjusting system as claimed in claim 5, wherein the rotor of the hydraulic camshaft adjuster is mounted on the outer camshaft by a sliding tooth system.
7. The camshaft adjusting system as claimed in claim 6, wherein the sliding tooth system is formed by a rotor hub axially fixed to the rotor and by an intermediate hub axially fixed for conjoint rotation to the outer camshaft.
8. The camshaft adjusting system as claimed in claim 1, wherein an output shaft connected for conjoint rotation to a rotor of an electric motor of the electric camshaft adjuster is torque-transmittingly coupled by a coupling to an output ring gear connected for conjoint rotation to the inner camshaft.
9. The camshaft adjusting system as claimed in claim 8, wherein the coupling is torque-transmittingly connected to the output ring gear by a collared sleeve which is elastically deformable and is fixedly attached to the input wheel.
10. The camshaft adjusting system as claimed in claim 8, wherein the coupling is designed as an Oldham coupling.
11. A camshaft adjusting system for a camshaft having an inner camshaft and an outer camshaft, the camshaft adjusting system comprising: a hydraulic camshaft adjuster including an input wheel configured to provide torque to the inner and outer camshafts, the hydraulic camshaft adjuster configured to adjust a phase angle of the outer camshaft relative to the input wheel; and, an electric camshaft adjuster configured to adjust a phase angle of the inner camshaft; and, the input wheel configured to be supported on the outer camshaft by a radial plain bearing.
12. The camshaft adjusting system of claim 11, further comprising a first cover fixed to the input wheel, the first cover supported configured to be on the outer camshaft by the radial plain bearing.
13. The camshaft adjusting system of claim 12, wherein the first cover is configured to be rotatable relative to the outer camshaft.
14. The camshaft adjusting system of claim 11, wherein a rotor of the hydraulic camshaft adjuster is configured to be axially moveable with conjoint rotation relative to the outer camshaft.
15. The camshaft adjusting system of claim 11, wherein the electric camshaft adjuster is arranged axially outward of the hydraulic camshaft adjuster.
16. A camshaft adjusting system for a camshaft having an inner camshaft and an outer camshaft, the camshaft adjusting system comprising: a hydraulic camshaft adjuster including: a stator conjointly connected to an input wheel, the stator configured to be supported on the outer camshaft by a radial plain bearing; a rotor arranged coaxially with the stator; and, the hydraulic camshaft adjuster configured to adjust a phase angle of the outer camshaft relative to the input wheel; and, an electric camshaft adjuster configured to adjust a phase angle of the inner camshaft.
17. The camshaft adjusting system of claim 16, wherein the hydraulic camshaft adjuster further comprises: a first cover arranged at a first axial end of the stator; a second cover arranged at a second axial end of the stator; and, the first cover, second cover, rotor, and stator form working chambers.
18. The camshaft adjusting system of claim 17, wherein the electric camshaft adjuster further comprises a third cover connected for conjoint rotation with the stator of the hydraulic camshaft adjuster.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The disclosure is explained below with the aid of drawings. In the drawings:
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DETAILED DESCRIPTION
[0039] The figures are of a purely schematic nature and serve only to aid understanding of the disclosure. Identical elements are denoted by the same reference signs. Features of the different illustrative embodiments are interchangeable.
[0040]
[0041] The camshaft adjusting system 1 also has a hydraulic camshaft adjuster 5 of the rotary vane type, which is coupled to the outer camshaft 3. The hydraulic camshaft adjuster 5 acts on the outer camshaft 3 to adjust a phase angle of the outer camshaft 3 relative to the input wheel 4. The camshaft adjusting system 1 also has an electric camshaft adjuster 6, which is coupled to the inner camshaft 2. The electric camshaft adjuster 6 acts on the inner camshaft 2 to adjust a phase angle of the inner camshaft 2 relative to the input wheel 4.
[0042] The hydraulic camshaft adjuster 5 has a stator 7 and a rotor 8 arranged coaxially therewith. The rotor 8 is arranged radially inside the stator 7 and mounted in such a way as to be rotatable relative to the stator 7. The stator 7 is formed integrally with the input wheel 4. The electric camshaft adjuster 6 has an electric motor 9, which is not illustrated in detail in the figures but is only indicated schematically. An output shaft 10 connected for conjoint rotation to a rotor of the electric motor 9 is coupled in a torque-transmitting manner to an output ring gear 11. The output ring gear 11 is attached to the inner camshaft 2 by way of a central screw/a central valve 12.
[0043] The output shaft 10 is arranged in such a way that it engages in/projects into the hydraulic camshaft adjuster 5 in the axial direction. That is to say that the output shaft 10 is arranged radially inside the rotor 8 of the hydraulic camshaft adjuster 5 and at least partially on the same axial level as the rotor 8. The rotor 8 has an annular rotor body 13 and a rotor web 14 extending perpendicularly to the axial direction.
[0044] The output ring gear 11 is mounted on a radial inner side/an inside diameter of the rotor 8, in particular of the rotor body 13. Oil passages 15, which extend in the radial direction and carry oil from a region within the inner camshaft 2 to the radial inner side of the rotor 8, are formed in the output ring gear 11. The oil passages 15 open into an encircling annular passage 16, which is formed on the radial inner side of the rotor 8. From there, additional oil passages extend to working chambers for adjusting the phase angle, which are formed between the rotor 8 and the stator 7.
[0045] A bearing hub 17 is connected for conjoint rotation and in an axially fixed manner to the outer camshaft 3. The bearing hub 17 serves as an external mounting 18 for the input wheel 4. The input wheel 4 is provided with radial sliding support on the bearing hub 17. For this purpose, a first cover 19, which is fixed with respect to the input wheel/fixed with respect to the stator and is arranged on one axial end of the stator 7, rests on the bearing hub 17. A second cover 20, which is fixed with respect to the input wheel/fixed with respect to the stator, is arranged on another axial end of the stator 7. The first cover 19, the stator 7, the second cover 20, a third cover 21, which rests on the second cover 20 in the axial direction on a side of the second cover 20 facing away from the stator, and a collared sleeve 22 are connected to one another for conjoint rotation and in an axially fixed manner by a screw 23.
[0046] The collared sleeve 22 has a section extending perpendicularly to the axial direction and a sleeve-shaped section. The sleeve-shaped section is situated radially inside the output ring gear 11 and has an external tooth system, which meshes with an internal tooth system on a radial inner side of the output ring gear 11. The collared sleeve 22 is elastically deformable in the radial direction. The torque is transmitted from the output shaft 10 to the collared sleeve 22 by a harmonic drive 24, i.e. a gear mechanism which has a flexible transmission element. A gear mechanism of this kind is already known from the prior art. A detailed description of the gear mechanism is therefore omitted.
[0047] The collared sleeve 22 is connected in a torque-transmitting manner to the output shaft 10 by means of a coupling 25. In this case, the coupling 25 is designed as an Oldham coupling 26, which can compensate a radial offset between two shafts coupled by the coupling. The concentricity of the output ring gear 11 is considerably improved by the elasticity of the collared sleeve 22 and the radial offset compensation of the coupling 25.
[0048] A central locking device 27 of the rotor 8 is additionally illustrated in
[0049]
[0050] As shown in
[0051] It can be seen in
[0052] It can be seen in
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LIST OF REFERENCE CHARACTERS
[0054] 1 camshaft adjusting system
[0055] 2 inner camshaft
[0056] 3 outer camshaft
[0057] 4 input wheel
[0058] 5 hydraulic camshaft adjuster
[0059] 6 electric camshaft adjuster
[0060] 7 stator
[0061] 8 rotor
[0062] 9 electric motor
[0063] 10 output shaft
[0064] 11 output ring gear
[0065] 12 central screw
[0066] 13 rotor body
[0067] 14 rotor web
[0068] 15 oil passage
[0069] 16 annular passage
[0070] 17 bearing hub
[0071] 18 external mounting
[0072] 19 first cover
[0073] 20 second cover
[0074] 21 third cover
[0075] 22 collared sleeve
[0076] 23 screw
[0077] 24 harmonic drive
[0078] 25 coupling
[0079] 26 Oldham coupling
[0080] 27 central locking device
[0081] 28 spring
[0082] 29 locking pin
[0083] 30 bushing
[0084] 31 sliding tooth system
[0085] 32 intermediate hub
[0086] 33 rotor hub
[0087] 34 riveted joint
[0088] 35 cam
[0089] 36 cam
[0090] 37 vane
[0091] 38 working chamber
[0092] 39 first subchamber
[0093] 40 second subchamber
[0094] 41 sealing element
[0095] 42 spring element