The invention relates to a shading device for a window of a motor vehicle, with a flexible sheet-like structure which is held on a winding shaft so as to be able to be wound up and unwound between a wound-up inoperative position and a stretched protective position, which winding shaft is mounted rotatably in a vehicle-mounted receiving space which is closable by a closing part which is mounted pivotably between a closed position and at least one opening position, wherein the sheet-like structure is provided at its front end region in the unwinding direction with a dimensionally stable pull-out profile which is shiftable parallel along the window by means of a drive system.
A shading device of this type is known in general for a side window or a rear window of a passenger vehicle. The shading device has a flexible sheet-like structure which is held on a winding shaft so as to be able to be wound up and unwound. The winding shaft is mounted rotatably in a cassette housing. In order to shade the window, the flexible sheet-like structure is pulled out of the cassette housing and stretched along the window. The cassette housing is held fixed to the vehicle below the window. The cassette housing has a passage slot which defines an opening of the cassette housing upward. In an inoperative position, the sheet-like structure is completely wound up onto the winding shaft and the pull-out profile is deposited in the region of the passage slot in the cassette housing. The opening of the cassette housing is closable by a closing part which is configured as a flap and is mounted pivotably on a corresponding functional part of the vehicle interior. In the inoperative position of the sheet-like structure, the closing part closes the opening of the cassette housing and is transferred into its opening position when the pull-out profile and the sheet-like structure are extended upward out of the passage slot toward the window. In the stretched protective position of the sheet-like structure, the closing part remains in its opening position.
It is the object of the invention to provide a shading device of the type mentioned at the beginning which, with simple means, permits low-wear retraction and extension of the sheet-like structure relative to the receiving space and relative to the closing part.
This object is achieved in that the closing part is forcibly controlled by means of a control mechanism between at least two different opening positions, of which a first opening position opens up an opening permitting passage of the pull-out profile, and a second opening position opens up a reduced opening which is selected to be of a size sufficient in order to permit the flexible sheet-like structure to pass through without contact. The solution according to the invention is suitable in a particularly advantageous manner for shading a rear window of a passenger vehicle, in which a vehicle-fixed receiving space in the form of a cassette housing is positioned below a rear parcel shelf and an opening of the receiving space toward the vehicle interior is closed by a closing part in the form of a closing flap. In accordance with the inclination of the rear window, the flexible sheet-like structure is pulled out obliquely upward into its protective position and returned again obliquely downward. The drive system preferably has an electric motor which, by means of a suitable transmission, synchronously drives two pull-push strands which act with an end region on opposite end sides of the pull-out profile and thus permit longitudinal shifting of the pull-out profile between the inoperative position of the sheet-like structure and the protective position of the sheet-like structure.
The two opening positions which, according to the invention, are defined by the control mechanism serve firstly to be able to guide the pull-out profile, which is substantially thicker than the thin sheet-like structure, past the closing part without the pull-out profile touching the closing part. Secondly, even after the pull-out profile has been guided past in the pull-out direction, the closing part is intended to remain in an opening position which is reduced in comparison to the first opening position, in order to ensure that the closing part remains with a corresponding border edge at a distance from the sheet-like structure during a further pull-out movement of the sheet-like structure. Owing to the fact that the closing part remains held at a contactless distance from the sheet-like structure, the sheet-like structure cannot be damaged and also, by sliding past the closing part, cannot be exposed to increased wear.
In a refinement of the invention, the control mechanism is assigned to a lever arm of the closing part. The lever arm preferably extends in the region of a hinge arrangement of the closing part and is provided for exerting a lever action and accordingly a torque on the closing part. The closing part is preferably held in its closed position by means of a spring device. The lever mechanism acting on the lever arm exerts a torque on the closed part counter to the torque of the spring device.
In a further refinement of the invention, the control mechanism has a control link arranged in the region of the lever arm and a control cam which is movable along the control link, wherein the control link has various link track portions which define the two opening positions of the closing part. The link track portions preferably merge in a flowing manner into each other, and therefore no stepped shoulders arise between the various link track portions.
In a further refinement of the invention, the control link is arranged on the lever arm. The control link preferably extends at least substantially parallel to a pivot axis of the closing part.
In a further refinement of the invention, the control link is arranged on a guide track for the control cam. This corresponds to a kinematic reversal with respect to the arrangement of the control link on the lever arm.
In a further refinement of the invention, the drive system has two bendable, longitudinally extending pull-push strands which are operatively connected at an end region to the pull-out profile for parallel shifting, wherein at least one pull-push strand is guided by its opposite end region in a control guide in the region of the lever arm. The opposite end region of the pull-push strand is accordingly used as part of the control mechanism.
The pull-push strand should be understood as meaning a flexible means which is extended longitudinally and can transmit pull and push forces, such as a rack, a Bowden cable or a threaded shaft.
In a further refinement of the invention, the end region of the pull-push strand is provided with the control cam. The use of the pull-push strand of the drive system for the control mechanism obviates the need for any additional drive means. This refinement is advantageous if the control mechanism is only effective in the retraction and extension region of the pull-out profile. The supporting stop ensures that the closing part is also held in one of the two opening positions without the control mechanism being effective.
Further advantages and features of the invention emerge from the claims and from the description below of a preferred exemplary embodiment of the invention, which is illustrated with reference to the drawings.
A shading device according to
The closing part 7 is held permanently in its closed position according to
According to the invention, the closing part 7 is inevitably transferred into two different opening positions when the pull-out profile 6 is extended upward out of the inoperative position according to
An end region of the flexible shaft 12 opposite the pull-out profile 6 is provided with a control cam 11 which projects downward out of the control guide 16, which is configured to be correspondingly open, and is displaceable longitudinally in the control guide 16 together with the flexible shaft 12. The control cam 11 interacts with the control contour of the control link 10. Since the flexible shaft 12 is guided rectilinearly via the rectilinear control guide 16, which runs parallel to the pivot axis 8, the control cam 11 is also guided in a correspondingly rectilinear manner. Since the central link portion of the control link 10 is positioned closer to the control guide 16 than the two opposite outer link portions, the control cam 11, while sliding along the control contour of the control link 10, inevitably pushes the closing part 7 further upward in the central link portion. The control cam 11 has a run-on slope in order to be able to run onto the left end of the control link 10 in
During a further extension movement of the pull-out profile 6, the control cam 11 leaves the control link 10.
In order to avoid that, after the control cam 11 is removed from the control link 10, the closing part 7 is pivoted back into the complete closed position according to
Number | Date | Country | Kind |
---|---|---|---|
10 2015 211 293.4 | Jun 2015 | DE | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/EP2016/058515 | 4/18/2016 | WO | 00 |