Vehicle Roof Comprising a Roof Opening System Having Two Kinematic Units
20230008758 · 2023-01-12
Inventors
Cpc classification
B60J7/192
PERFORMING OPERATIONS; TRANSPORTING
B60J7/0435
PERFORMING OPERATIONS; TRANSPORTING
B60J7/1642
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A vehicle roof having a roof opening system having a cover element which is displaceable between a closed position, in which a roof opening is closed, and an open position, in which the roof opening is open; displacement kinematics for displacing the cover element on either side of a vertical longitudinal center roof plane, each displacement kinematics may have a guide rail, a first kinematic unit guided in the guide rail, and a second kinematic unit guided in the guide rail; and a set of drive cables for the two kinematic units, the first kinematic unit may have a first deploying lever which is adjustable between a raised position and a lowered position, and the second kinematic unit may have a second deploying lever. The first kinematic unit has a securing slide which is guided in the guide rail and secures the first deploying lever in its lowered position.
Claims
1. A vehicle roof having a roof opening system comprising: a cover element which is displaceable between a closed position, in which a roof opening is closed, and an open position, in which the roof opening is open; displacement kinematics for displacing the cover element on either side of a vertical longitudinal center roof plane, each displacement kinematics comprising a guide rail, a first kinematic unit guided in the guide rail, and a second kinematic unit guided in the guide rail; and a set of drive cables for the two kinematic units, the first kinematic unit comprising a first deploying lever which is adjustable between a raised position and a lowered position, and the second kinematic unit comprising a second deploying lever, wherein the first kinematic unit comprises a securing slide which is guided in the guide rail and secures the first deploying lever in its lowered position.
2. The vehicle roof according to claim 1, wherein the securing slide is a drive slide of the first kinematic unit, the drive slide actuating the first deploying lever.
3. The vehicle roof according to claim 1, wherein the securing slide has a securing protrusion at the front, the securing protrusion interacting with a mating securing element to secure the first deploying lever in its lowered position, the mating securing element being disposed on the first deploying lever or on a component fixed to the cover element.
4. The vehicle roof according to claim 3, wherein the mating securing element is a securing cam or journal which is disposed on the deploying lever and which extends perpendicular to the guide rail.
5. The vehicle roof according to claim 3, wherein the mating securing element has a groove on its underside, the groove engaging a stop element when the cover element is in the closed position, the stop element being disposed on the guide rail and holding the cover element in position in the longitudinal roof direction.
6. The vehicle roof according to claim 1, wherein the set of drive cables comprises a first drive cable, which is driven by a first drive motor and drives the first kinematic unit, and a second drive cable, which is driven by a second drive motor and drives the second kinematic unit.
7. The vehicle roof according to claim 1, wherein a sliding element is disposed on the second deploying lever, a guide track of a cover support of the cover element being guided on the sliding element when the cover element is being displaced.
Description
[0012] An illustrative example of a vehicle roof according to the invention is schematically illustrated in the drawing and will be discussed in more detail in the following description.
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[0026] In a highly schematized manner,
[0027] Roof opening system 18 of vehicle roof 10 comprises a guide rail 20 on either side of a vertical longitudinal center roof plane. A first front kinematic unit 22 and a second rear kinematic unit 24 are disposed in each guide rail 20. Front kinematic units 22 are driven by means of a first drive motor 28 via first drive cables 26. Rear kinematic units 24 are driven by means of a second drive motor 32 via second drive cables 30. In the embodiment at hand, the two drive motors 28 and 32 are each disposed centrally forward of roof opening 12 on a front frame part of a roof frame (not shown).
[0028] Roof opening system 18, which is illustrated in detail in
[0029] As explained above, the displacement kinematics each comprise a front kinematic unit 22 and a rear kinematic unit 24, which are disposed in a common guide rail 20 and are each connected to a separate drive cable 26 or 30. The two drive cables 26 and 30 are guided one above the other in guide channels 34 and 36 in respective guide rails 20, guide channels 34 and 36 being formed on one side of a guide track 38 in guide rail 20. The two kinematic units 22 and 24 are disposed and guided in guide track 38.
[0030] As can be seen in
[0031] Deploying lever 46 of front kinematic unit 22 has a securing cam 90 on its side facing away from guide journal 56, securing cam 90 interacting with a front securing protrusion 92 of drive slide 40 of first kinematic unit 22 in such a manner when the cover element is in the closed position that securing protrusion 92, which protrudes forward at the front in the manner of a tab, covers securing cam 90, thus holding deploying lever 46 in its lowered position. For this purpose, securing protrusion 92, which points in the direction of the front roof edge from sliders of drive slide 40, has an even contact surface at its underside, the contact surface being in contact with the even upper side of securing cam 90. At its underside, securing cam 90 has a groove 94, which is engaged by a stop element 96, which is formed on guide rail 20 and holds cover element 16 in position in the longitudinal roof direction, when the cover element is in the closed position.
[0032] Rear kinematic unit 24, which is illustrated in detail in
[0033] In its end area facing away from hinge point 64, deploying lever 66 has a bearing journal 72, which is guided in a sliding manner in a guide track 74, which is formed on guide rail 20. Moreover, a control journal 76 is disposed on deploying lever 66 in an area spaced apart from bearing journal 72, control journal 76 interacting with a slotted piece 78, which is also formed on guide rail 20 and has a curved shape with an upper exit opening 80. In its end area facing away from hinge point 64, deploying lever 66 has a holding journal 82, which interacts with a support track 84 when deploying lever 66 is in the deployed state, support track 84 being formed on guide rail 20 and being oriented essentially vertically.
[0034] Roof opening system 18 described above works in the manner described below.
[0035] To move cover element 16 from the closed position, which is illustrated in
[0036] Cover element 16 is moved from its open position into its closed position vice-versa. At the end of the closing process, drive slide 40 is shifted relative to slide 45 of first kinematic unit 22, to which deploying lever 46 is hinged. The interaction of journal 42, which is formed on drive slide 40, with deploying slotted piece 44 and the interaction of guide journal 56 with slotted track 54 moves deploying lever 46 from its raised position into the lowered position. Subsequently, further shifting of drive slide 40 relative to slide 45 and deploying lever 46 moves securing protrusion 92 over securing cam 90, whereby deploying lever 46 is securely held in its lowered position. Drive slide 40 thus forms a securing slide for deploying lever 46 and cover element 16.
REFERENCE SIGNS
[0037] 10 vehicle roof [0038] 12 roof opening [0039] 14 fixed roof portion [0040] 16 cover element [0041] 18 roof opening system [0042] 20 guide rail [0043] 22 first kinematic unit [0044] 24 second kinematic unit [0045] 26 first drive cable [0046] 28 first drive motor [0047] 30 second drive cable [0048] 32 second drive motor [0049] 34 first guide channel [0050] 36 second guide channel [0051] 38 guide track [0052] 40 drive slide [0053] 42 journal [0054] 44 deploying slotted piece [0055] 45 slide [0056] 46 deploying lever [0057] 48 hinge point [0058] 50 hinge point [0059] 52 cover support [0060] 54 slotted track [0061] 56 guide journal [0062] 58 drive slide [0063] 60 hinge point [0064] 62 control rod [0065] 64 hinge point [0066] 66 deploying lever [0067] 68 sliding element [0068] 70 guide track [0069] 72 bearing journal [0070] 74 guide track [0071] 76 control journal [0072] 78 slotted piece [0073] 80 exit opening [0074] 82 holding journal [0075] 84 support track [0076] 90 securing cam [0077] 92 securing protrusion [0078] 94 groove [0079] 96 stop element