CAMSHAFT ADJUSTER
20170254233 · 2017-09-07
Inventors
Cpc classification
F01L1/34409
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/348
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/344
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/34433
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01L1/344
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A camshaft adjuster (1) for driving and/or adjusting a camshaft (2) of an internal combustion engine, including a stator (3) and a concentric rotor (6) which is arranged within the stator in a rotatable manner. At least the stator (3) has a central receiving area (31) for receiving the camshaft (2), and at least one projection (13) which protrudes radially inwards is provided on a radial inner edge (12) of the central receiving area (31) in order to engage behind a camshaft (2) connecting piece (20) which protrudes radially outwards. A camshaft adjuster/camshaft combination (26) including such a camshaft adjuster (1) and a camshaft (2) which has a connecting piece (20) that projects radially. The projection (13) preferably engages behind the connecting piece (20). A method for assembling the camshaft adjuster/camshaft combination (26) is also provided.
Claims
1-10. (canceled)
11: A camshaft adjuster for driving a camshaft of an internal combustion engine, the camshaft adjuster comprising: a stator; and a concentric rotor rotatably situated within the stator, the stator having a central receptacle for accommodating the camshaft, at least one radially inwardly protruding projection being present on a radial inner edge of the central receptacle for engaging behind a radially outwardly protruding web of the camshaft.
12: The camshaft adjuster as recited in claim 11 wherein the projection is prepared for axially engaging behind the web.
13: The camshaft adjuster as recited in claim 11 wherein the projection is formed by the stator.
14: The camshaft adjuster as recited in claim 11 wherein the rotor is prepared for centering or for being centered on the web, or the rotor is prepared for being centered on the camshaft, with the aid of a central valve accommodatable in the rotor.
15: The camshaft adjuster as recited in claim 11 wherein a detent for axially securing the camshaft adjuster to the camshaft is provided on the camshaft adjuster in the area of the central receptacle.
16: The camshaft adjuster as recited in claim 11 wherein the camshaft adjuster is axially securable to the camshaft with the aid of the central valve.
17: A camshaft adjuster-camshaft combination comprising: the camshaft adjuster as recited in claim 11 and the camshaft having the radially protruding web, the projection engaging behind the web.
18: The camshaft adjuster-camshaft combination as recited in claim 17 further comprising a central valve.
19: A method for installing the camshaft adjuster-camshaft combination as recited in claim 17, the method comprising the following steps: axially placing the projection on the camshaft on a camshaft side of the web, the camshaft adjuster being pivoted by an angle with respect to the camshaft about a contact site; and pivoting the camshaft adjuster about the contact site, so that the camshaft adjuster is in axial alignment with the camshaft.
20: The method as recited in claim 19 further comprising, after the pivoting, securing the camshaft adjuster to the camshaft in an axial direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The present invention is described below with reference to multiple specific embodiments.
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028] The figures are merely schematic, and are used only for an understanding of the present invention. Identical or comparable elements are provided with the same reference numerals, and may be exchanged with one another and are thus exchangeable.
[0029]
[0030] Camshaft adjuster 1 includes a stator 3 with a cover 4, and a stator housing 5 as well as a rotor 6. Rotor 6 is situated within stator 3 so that the rotor is pivotable relative to the stator. In addition, rotor 6 is situated concentrically with respect to stator 3. This means that rotor 6 and stator 3 have a shared longitudinal axis 7. Cover 4 may also be referred to as the stator cover, as the camshaft adjuster cover, or as the adjuster cover. Longitudinal axis 7 may be referred to as camshaft adjuster longitudinal axis 7 or, as in the following discussion, as adjuster longitudinal axis 7.
[0031] An essentially cylindrical inner contour 8 and a cylindrical accommodation area 9 are formed (radially) centrally in rotor 6. An inner diameter at an inner edge of accommodation area 9 may also be referred to as centering diameter 32 of rotor 6/camshaft adjuster 1. Inner contour 8 and accommodation area 9 together form a through hole through rotor 6. An opening 10 is provided in stator 3. More precisely, opening 10 is formed in cover 4. In the present case, accommodation area 9 and opening 10 together form a central receptacle 31 for accommodating camshaft 2 in camshaft adjuster 1. In the first specific embodiment, central receptacle 31 is thus formed by stator 3 and rotor 6.
[0032] Opening 10, accommodation area 9, and inner contour 8 are lined up in this sequence along adjuster longitudinal axis 7, beginning with a stator front side 11 of camshaft adjuster 1 defined by cover 4. Stator front side 11 may also be referred to as the cover front side, as the camshaft adjuster front side, as the adjuster front side or, as in the following discussion, as the front side.
[0033] Opening 10 has an inner edge 12 whose diameter is at least equal to the diameter of accommodation area 9, or preferably greater than the diameter of accommodation area 9. Opening 10 also has a projection 13. Projection 13 adjoins inner edge 12 in the circumferential direction around adjuster longitudinal axis 7. Projection 13 is formed in sections in the circumferential direction; i.e., projection 13 does not completely surround adjuster longitudinal axis 7 in the circumferential direction. A minimum distance 14 from adjuster longitudinal axis 7 to projection 13 is smaller than the radius of accommodation area 9. In other words, viewed from inner edge 12 and from accommodation area 9, projection 13 protrudes radially inwardly in each case. Projection 13 and accommodation area 9 thus form an undercut, viewed from stator front side 11. Inwardly protruding projection 13 is elevated with respect to the diameter of opening 10, and therefore may also be referred to as an elevation.
[0034] Camshaft 2 has a longitudinal axis 15. Longitudinal axis 15 may also be referred to as the camshaft longitudinal axis, or as the shaft longitudinal axis for short. A plurality of cams 16, at least one camshaft bearing area 17, and a retaining section 18 are formed on camshaft 2. A cylindrical clearance 19 is formed on retaining section 18 of camshaft 2. A web 20, which may also be referred to as a nose, protrudes or extends radially outwardly from clearance 19. An outer diameter 21 of web 20 may also be referred to as a centering diameter.
[0035] Retaining section 18, camshaft bearing area 17, and cams 16 follow one another along longitudinal axis 15, starting from a front side 22 of camshaft 2. Front side 22 may also be referred to as the camshaft front side or as the shaft front side. Web 20 axially adjoins front side 22 of camshaft 2. It is particularly advantageous for web 20 to directly adjoin front side 22, since this arrangement takes up little installation space in camshaft adjuster 1. A further web 23 may be formed at one end of clearance 19 at a distance from web 20, as shown in
[0036] A marking 24 is provided radially outwardly on stator front side 11, viewed from adjuster longitudinal axis 7—in the present case, in the radial direction behind projection 13. Marking 24 is impressed with the aid of a punch, for example.
[0037] Of course, marking 24 may also be provided at some other location if desired. However, it is advantageous to position marking 24 in such a way that projection 13 is at the top during the installation. Due to the fact that rotor 6 and stator 3 can rotate with respect to one another, it is also advantageous to provide marking 24 rotatably fixed with respect to projection 13; i.e., since projection 13 is formed on stator 3 in the present case, marking 24 is also provided on stator 3. To even further reduce the effort in assembling stator 3, the marking may be present on the same component as projection 13; i.e., since projection 13 is formed on cover 4, marking 24 may be provided on cover 4.
[0038] Installation of camshaft adjuster 1 on camshaft 2 is described below with reference to
[0039] Stator front side 11 is initially oriented toward front side 22 of camshaft 2, so that front sides 11, 22 point approximately toward one another. It should be ensured that marking 24 is at the top, viewed in the direction of the force of gravity or in the direction of gravity. In front of or at the camshaft, camshaft adjuster 1 is then tipped or pivoted by an angle α about the horizontal, so that preferably no further area of camshaft adjuster 1 is situated opposite from projection 13 in the direction of gravity. Next, projection 13 is placed axially on web 20 on the camshaft side, or on clearance 19. This step may also be referred to as “threading” camshaft 2 into camshaft adjuster 1. For this threading, it is particularly advantageous for the diameter of inner edge 12 to be greater than centering diameter 32.
[0040] This results in the state shown in
[0041] The location at which camshaft adjuster 1 rests against camshaft 2 in this state during the installation is referred to below as contact site 25. Next, camshaft adjuster 1 is pivoted backwards about contact site 25 by angle α, so that adjuster longitudinal axis 7 is aligned with shaft longitudinal axis 15.
[0042] After pivoting, camshaft adjuster 1 is in an installation position with respect to camshaft 2. This state is illustrated in
[0043] Camshaft adjuster 1 is now centered on outer diameter 21 of camshaft 2 via centering diameter 32. It must be ensured that in a state after the installation of camshaft adjuster 1 and camshaft 2, projection 13 is rotatable relative to camshaft 2, in particular relative to web 20 and/or to clearance 19. It is particularly preferred when projection 13 is rotatable relative to camshaft 2 without scraping against clearance 19 or without rubbing on the surface of camshaft 2.
[0044] As a result, web 20 engages behind projection 13 in a form-locked manner, thus ensuring that, according to the object of the present invention, camshaft adjuster 1 does not come off during mounting on camshaft 2. However, rotor 6 is not yet rotatably fixedly connected to camshaft 2, so that, for example, an angle between camshaft 2 and rotor 6 is easily settable, or, for example, a belt or a chain (neither of which is illustrated) is easily mountable on stator 3 for connection to a crankshaft (not illustrated). In particular, the simultaneous presence of the secured state of camshaft adjuster 1 on camshaft 2, and the rotatability between rotor 6 and camshaft 1, facilitates the installation.
[0045] Camshaft adjuster 1 is secured to camshaft 2 in an operationally secure manner in a further installation step. For this purpose, a central valve 27 is inserted axially through inner contour 8, accommodation area 9, and opening 10 into a valve receptacle 28 that is formed in camshaft 2. Central valve 27 is screwed into valve receptacle 28 with the aid of a thread pair, for example (not illustrated). In the process, a front side 29 of central valve 27 comes into contact with a further front side 30 of camshaft adjuster 1. Front side 29 of central valve 27 may also be referred to as the central valve front side or as the valve front side. Front side 30 of camshaft adjuster 1 is preferably formed on rotor 6, and may be referred to as the (further) camshaft adjuster front side, as the adjuster front side, or as the rotor front side.
[0046] Camshaft adjuster 1 is thus secured against coming off camshaft 2 during the installation, and stator 3 is prevented from scraping against camshaft 2 in the operative state.
[0047] Another specific embodiment of the present invention is not illustrated in the figures, but is described below. In the second specific embodiment, a detent or a plurality of detents is provided at inner edge 12. The detents are situated at inner edge 12, opposite from projection 13. The detents are dimensioned in such a way that they allow installation using detent forces that are typical for installation. More precisely, the detents allow the step of pivoting camshaft adjuster 1 resting against web 20 to be carried out using forces that are typical for installation. In particular, the detents prevent elimination of the pivoting, without exceeding predefined limiting forces. Even greater security against coming off is thus achieved during the further installation.
[0048] Yet another specific embodiment of the present invention, likewise not illustrated in the figures, is described briefly below. In the third specific embodiment, accommodation area 9 is formed not in rotor 6, but, rather, solely in stator 3, preferably solely in cover 4 of stator 3. In this specific embodiment, central receptacle 31 is thus formed only in stator 3. This means that the undercut of camshaft adjuster 1 is preferably formed only by cover 4. This has the advantage that a particularly large amount of installation space may be saved in rotor 6 and is available for other design measures. It is advantageous for the outer diameter of web 20 to be smaller than the inner diameter of accommodation area 9, to the extent that in an operative state, rubbing of stator 3 against camshaft 2 is prevented, the same as in the specific embodiments previously discussed. It is also advantageous for rotor 6 to be centered on camshaft 2 with the aid of central valve 27.
LIST OF REFERENCE NUMERALS
[0049] 1 camshaft adjuster
[0050] 2 camshaft
[0051] 3 stator
[0052] 4 cover
[0053] 5 stator housing
[0054] 6 rotor
[0055] 7 adjuster longitudinal axis
[0056] 8 inner contour
[0057] 9 accommodation area
[0058] 10 opening
[0059] 11 front side of the stator
[0060] 12 inner edge
[0061] 13 projection
[0062] 14 minimum distance between the adjuster longitudinal axis and the projection
[0063] 15 longitudinal axis of the camshaft
[0064] 16 cam
[0065] 17 camshaft bearing area
[0066] 18 retaining section
[0067] 19 clearance
[0068] 20 web
[0069] 21 outer diameter of the web of the camshaft
[0070] 22 front side of the camshaft
[0071] 23 web
[0072] 24 marking
[0073] 25 contact site
[0074] 26 camshaft adjuster-camshaft combination
[0075] 27 central valve
[0076] 28 valve receptacle
[0077] 29 front side of the central valve
[0078] 30 front side of the rotor
[0079] 31 central receptacle
[0080] 32 centering diameter of the camshaft adjuster
[0081] α angle