The invention relates to a motor vehicle door handle arrangement having a closing cylinder for actuating a door lock by means of a key, wherein the closing cylinder is fixed in its installation position by means of a securing element displaceable relative to the closing cylinder from a pre-mounting position into a mounting position, wherein the securing element is displaced from the pre-mounting position into the mounting position by means of at least one actuation screw engaging in a thread in the securing element.
Such motor vehicle door handle arrangements for actuating the door of a motor vehicle are known.
The known motor vehicle door handle arrangements having such a securing element for fixing the closing cylinder come with the disadvantage that said securing element in mounting position is supported on a resting face of the motor vehicle door handle arrangement and high surface pressing may occur in the resting area. Said surface pressing between the securing element and the resting face on the motor vehicle door handle arrangement may lead to damages, particularly in a later replacement and re-installation of a closing cylinder.
The object of the invention is to overcome said disadvantages and to provide a motor vehicle door handle in which damages are reliably prevented even when replacing and re-installing a closing cylinder.
According to the invention, said object is achieved by means of a motor vehicle door handle arrangement. Advantageous developments of the invention are indicated in the sub-claims.
The particular advantage of the motor vehicle door handle arrangement with a closing cylinder for actuating a door lock by means of a key, wherein the closing cylinder is fixed in its installation position by means of a securing element displaceable relative to the closing cylinder from a pre-mounting position into a mounting position, wherein the securing element is displaced from the pre-mounting position into the mounting position by means of at least one actuation screw engaging in a thread in the securing element, lies with the fact that the securing element has at least one stop nose, against which the actuation screw rests in the mounting position axially in the screw-in direction thereof.
Arranging such a stop nose prevents surface pressing between the securing element and another component of the motor vehicle door handle arrangement different from the actuation screw, since in the mounting position of securing element and actuation screw, the actuation screw rests against the stop nose of the securing element.
Here, the term screw-in direction of the actuation screw refers to the movement direction in direction of the axis of the actuation screw when screwing the actuation screw into the thread in the securing element. That means that the direction in axial direction of the screw relative to the securing element is referred to as the screw-in direction of the actuation screw, regardless of whether the actuation screw and/or the securing element is/are displaced relative to the remaining motor vehicle door handle arrangement.
Here, the term pre-mounting position refers to a position of the securing element and the actuation screw, in which insertion of the closing cylinder into its intended installation position is possible. The term mounting position refers to a position of the securing element and the actuation screw, in which the closing cylinder is secured in its installation position by the securing element displaced into the mounting position.
The securing element can be configured as a slider, which can be slid back and forth between the pre-mounting position and the mounting position by actuation of the actuation screw. With respect to the closing cylinder to be fixed by means of the securing element, the pre-mounting position of the slider thus corresponds to a release position. Accordingly, the mounting position of the slider relative to the closing cylinder to be fixed corresponds to the locking position. In the release position, the closing cylinder can be inserted into the installation space provided to that end and removed from the installation space. In the locking position, the closing cylinder is preferably fixed in its installation position in a form-fit manner by means of the slider.
The actuation screw in the pre-mounting position and/or when being actuated and/or in the mounting position is preferably supported on a resting face of a carrier of the motor vehicle door handle arrangement in direction toward the securing element.
Such a resting face on a carrier of the motor vehicle door handle arrangement enables relative movement of the securing element relative to the motor vehicle door handle arrangement, since the actuation screw is supported on the resting face during the actuation and insofar axial movement of the actuation screw in direction of the securing element is inhibited. This results in the relative movement of the securing element relative to the carrier of the motor vehicle-door handle arrangement and thus also relative to the closing cylinder inserted into the motor vehicle-door handle arrangement when actuating the actuation screw.
Particularly preferably, the stop nose of the securing element is configured such so that in the mounting position a contacting occurs between the actuation screw and the stop nose on the securing element without that a planar pressing occurs between the securing element and the carrier of the motor vehicle door handle arrangement.
That means that in this configuration of the stop nose the securing element in its displacement direction from the pre-mounting position into the mounting position does not rest against the carrier of the motor vehicle door handle arrangement. Accordingly, without such a contact, planar pressing cannot be produced at all. Contact between the securing element and the carrier of the motor vehicle door handle arrangement thus refers to a contact subject to planar pressing on a contact face perpendicular or at an angle to the displacement direction of the securing element when displacing the securing element from its pre-mounting position into the mounting position. Since the securing element rests in the carrier, there is of course a contact between said component apart from that.
Thus, the stop nose can be dimensioned such that not only a too high planar pressing between the securing element and a carrier of the motor vehicle-door handle arrangement is prevented, but the stop nose in a preferred embodiment can be dimensioned such that contacting occurs only between the stop nose of the securing element and the actuation screw in the mounting position, without that a contact occurs between the securing element and a carrier of the motor vehicle door handle arrangement at all. Accordingly, no planar pressing can be produced without such a contact.
The securing element is preferably formed by an in particular U-shaped bracket, which engages around the closing cylinder and secures the closing cylinder in the mounting position in the radial direction. Said bracket can be configured open U-shaped or in closed manner. It is of particular advantage if the bracket engages the closing cylinder on two sides, thus securing and fixing it in the mounting position.
Particularly preferably, the securing element is displaced at an angle of 45° to 90° relative to the axis of the closing cylinder from the pre-mounting position into the mounting position.
Preferably, the closing cylinder in its installation position rests in a cylinder housing in the motor vehicle door handle arrangement.
Preferably, the securing element engages around the closing cylinder in a form-fit manner in the mounting position and secures the closing cylinder in the mounting position in particular in the axial direction of the closing cylinder.
Preferably, the actuation screw is supported particularly in its pre-mounting position axially in the direction facing away from the securing element on a second resting face of a carrier of the motor vehicle door handle arrangement.
Said second resting face on a carrier in the screw-out direction of the actuation screw enables screwing the actuation screw out all the way to said second stop, wherein the further screwing of the actuation screw out of the thread in the securing element then effects the displacement of the securing element from the mounting position back into the pre-mounting position due to the resting of the actuation screw on the second stop, in order to be able to dismount and replace the closing cylinder. As a result, a replacement of the closing cylinder is facilitated by means of said second stop arranged oppositely, since the securing element can be displaced from its mounting position back into its pre-mounting position, in which the closing cylinder is not blocked by the securing element. In the mounting position, the closing cylinder is blocked by the securing element as described above.
Here, the term “screw-out direction” refers to the axial movement direction of the actuation screw relative to the securing element when screwing the actuation screw out of the thread in the securing clement.
The motor vehicle door handle arrangement may further comprise a handle, which is arranged in a handle housing and can be displaced by rotation around a rotation axis from a resting position into an actuating position, wherein a handle hook arranged on a rear side of the handle on the free end is kinematically coupled with a deflection lever, wherein the deflection lever directly or indirectly acts on a motor vehicle door lock when being displaced from the resting position into the actuating position, in order to effect a release of the lock and enable opening of the motor vehicle door.
Accordingly, the motor vehicle door handle arrangement may comprise a handle housing, in which are arranged the closing cylinder in a corresponding receptacle as well as further the securing element and the actuation screw, serving the displacement of the securing element from the pre-mounting position into the mounting position. Said handle housing per se may comprise the first and/or second stop, on which the actuation screw rests against depending on the rotation direction. The handle hosing can thus form a carrier. However, a carrier can be arranged in the handle housing as a separate component, said carrier comprising the first and/or the second stop.
One exemplary embodiment of the invention is illustrated in the figures and described below. The figures show in:
Identical components are provided with identical reference numerals throughout the figures.
As soon as the closing cylinder has been inserted into the cylindrical receptacle 5 from above, the securing element 2 is displaced to the right in the image plane according to
After insertion into the carrier 1 of the securing element 2 and the actuation screw 3 screwed into a thread of the securing element 2, the actuating screw 3 is screwed out until said screw is brought in its transport position according to the illustration in
After insertion of the closing cylinder into the cylindrical receptacle 5 provided to that end in the carrier 1 of the motor vehicle door hand arrangement, the actuation screw 3 is brought into the mounting position according to
As can be taken from the plan view according to
By means of the, in the axial direction, rear stop 7 on the carrier 1 it is in turn enabled to screw the actuation screw 3 out of the thread in the securing element 2 such that upon reaching the stop 7 in the axial direction when screwing-out the actuation screw 3, a further actuation of the actuation screw 3 in the screw-out direction effects a displacement of the securing element 2 to the left in the image plane. As a result, the securing element 2 can in turn be displaced all the way to the left until the securing element 2 abandons the engagement on the closing cylinder and then the closing cylinder can be replaced.
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Number | Date | Country | |
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20170254122 A1 | Sep 2017 | US |
Number | Date | Country | |
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62301883 | Mar 2016 | US |