Mounting Of A Flap Valve Shaft
20180142790 ยท 2018-05-24
Inventors
Cpc classification
F16C32/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C17/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C23/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K1/224
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K1/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C17/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a bearing system 1 of a flap valve 6 consisting of a valve shaft 1.1 with a valve shaft pivot 1.2, and consisting of a separate bearing body 2 which is fastened on the end side to the valve shaft 1.1, and of a valve housing wall 3 which has a shaft bearing 3.1 in the form of a depression, the bearing body 2 being guided rotatably in the depression 3.1. Here, the bearing body 2 has a recess 2.1, into which a separate bearing piece 4 is inserted, the valve shaft 1.1 bearing indirectly via the bearing body 2 and the bearing piece 4 against the housing-side shaft bearing 3.1, the bearing body 2 and the bearing piece 4 being formed from different metals or different materials.
Claims
1. Bearing system (1) of a flap valve (6) consisting of a valve shaft (1.1) with a valve shaft pivot (1.2) for a valve flap and a bearing body, and consisting of a valve housing wall (3) which has a shaft bearing (3.1) in the form of a depression, the bearing body (2) being guided at least indirectly in the depression (3.1) such that it can be rotated about the valve shaft pivot (1.2), and it being possible for said bearing body (2) to bear at least indirectly against the shaft bearing (3.1) in the axial direction A with respect to the valve shaft pivot (1.2), the bearing body (2) having a recess (2.1), into which a bearing piece (4) is inserted, the bearing piece (4) bearing against the shaft bearing (3.1), with the result that the bearing body (2) is guided such that it can bear indirectly via the bearing piece (4) against the shaft bearing (3.1) and can be rotated about the valve shaft pivot (1.2), characterized in that the bearing body (2) is fastened on the end side to the valve shaft (1.1), and in that the bearing body (2) and the bearing piece (4) are formed from different metals or different materials, or in that the bearing body (2) is formed from metal and the bearing piece (4) is formed from a ceramic material.
2. Bearing system (1) according to claim 1, characterized in that the bearing piece (4) is mounted within the recess (2.1) of the bearing body (2) such that it can be moved in the axial direction A with respect to the valve shaft pivot (1.2), a prestressing element (5) being provided within the recess (2.1), via which prestressing element (5) the bearing piece (4) can be prestressed relative to the bearing body (2) in the axial direction A with respect to the valve shaft pivot (1.2).
3. Bearing system (1) according to claim 1, characterized in that the bearing piece (4) is fixed within the recess (2.1) of the bearing body (2) in the axial direction A with respect to the valve shaft pivot (1.2).
4. Bearing system (1) according to one of the preceding claims, characterized in that the bearing piece (4) and the bearing body (2) have a positively locking connection which acts in the axial direction A with respect to the valve shaft pivot (1.2), the positively locking connection a) being configured as a one-sided stop, against which the bearing piece (4) can bear, or b) fixing the bearing piece (4) in the axial direction A with respect to the valve shaft pivot (1.2) in both directions.
5. Bearing system (1) according to claim 4, characterized in that the one-sided positively locking connection is configured as a shoulder (2.2).
6. Bearing system (1) according to one of the preceding claims, characterized in that, at least at operating temperature, the bearing piece (4) can be moved in the circumferential direction U with respect to the valve shaft pivot (1.2) relative to the bearing body (2) or has a slight play in the radial direction.
7. Bearing system (1) according to one of the preceding claims, characterized in that a cavity (2.3) is provided within the recess, between the bearing piece (4) and the bearing body (2), in which cavity (2.3) lubricant can be stored.
8. Bearing system (1) according to one of the preceding claims, characterized in that the recess (2.1) has a beaded edge (2.4) which forms the undercut (2.2) and the positively locking connection with the bearing piece (4) in the axial direction A, the bearing piece (4) having a region B1 with a diameter d1 and a region B2 with a diameter d2, where d1>d2, the region B1 bearing against the beaded edge (2.4) within the recess (2.1) for the purpose of the formation of the positively locking connection.
9. Bearing system (1) according to claim 7, characterized in that the bearing piece (4) is of spherical configuration and has the diameter d1, or in that the bearing piece (4) is of pin-shaped configuration and has a shoulder (4.1) which is arranged within the recess (2.1), has the diameter d1, and bears against the edge (2.4).
10. Flap valve having a valve housing (6.4) for connecting to an exhaust gas system (8) and a valve flap (6.1) with a bearing system (1) according to one of the preceding claims.
Description
[0039] Further advantages and details of the invention are described in the patent claims and in the description and are shown in the figures, in which:
[0040]
[0041]
[0042]
[0043]
[0044] The bearing body 2 is connected directly to the valve shaft 1.1 or, in the case of a valve shaft 1.1 which is contained integrally within the valve flap 6.1, to the valve flap 6.1. Material with a comparable or similar coefficient of thermal expansion, in particular metal, comes into consideration both for the shaft 1.1 and/or the flap 6.1 and for the bearing body 2, with the result that welding or brazing of the two components is possible for connecting purposes. The bearing body 2 has a recess 2.1 at the lower end. The bearing piece 4 is arranged within said recess 2.1. According to
[0045] In the region of said bearing system 1, the valve housing wall 3 has a depression 3.1 which is configured as a shaft bearing and within which the bearing body 2 comes into contact via the bearing piece 4. The contact takes place, in particular, in the axial direction A. Moreover, the bearing piece 4 is at least guided in the radial direction on account of the trough-shaped form of the depression 3.1. An exact relative movement between the bearing body 2 and the valve housing wall 3 in the circumferential direction U (see
[0046] In contrast to the exemplary embodiment of
[0047] According to the exemplary embodiment of
[0048] A spring 5 is likewise provided in the exemplary embodiment of
[0049] As can be seen according to
[0050] In the exemplary embodiments of
[0051] According to the exemplary embodiments of
[0052] A radial tolerance compensation is ensured by way of the part-spherical contact between the bearing piece 4, 4* and the bearing body 2, that is to say tolerances in the radial direction can be compensated for by way of an axial feed movement or prestress, with the result that rattling noise is avoided. The part-spherical contact exists on the upper side of the bearing piece 4, 4* according to the exemplary embodiment of
LIST OF DESIGNATIONS
[0053] Bearing system
[0054] 1.1 Valve shaft
[0055] 1.2 Valve shaft pivot
[0056] 2 Bearing body
[0057] 2.1 Recess
[0058] 2.2 Undercut
[0059] 2.3 Cavity
[0060] 2.4 Edge
[0061] 2.5 Inner wall
[0062] 3 Valve housing wall
[0063] 3.1 Depression, shaft bearing
[0064] 4 Bearing piece
[0065] 4* Bearing piece, alternative shape
[0066] 4.1 Shoulder
[0067] 5 Prestressing element, spring
[0068] 6 Flap valve
[0069] 6.1 Valve flap
[0070] 6.2 Sleeve bearing, shaft bearing
[0071] 6.3 Drive
[0072] 6.4 Valve housing
[0073] 7 Lubricant
[0074] 8 Exhaust gas system
[0075] A Axial direction
[0076] B1 Region
[0077] B2 Region
[0078] d1 Diameter, width
[0079] d2 Diameter, width
[0080] U Circumferential direction