The invention relates to a clamping connection between the clamping shoe of a roller carriage and a sliding leaf, in particular a glass pane, which is suspended in a clamping compartment of the clamping shoe and restrained therein by means of clamping screws.
Generally, prior art clamping connections have a clamping shoe restraining the sliding leaf, which shoe, via a carrying bolt, is suspended in a roller carriage and connected thereto, which carriage is disposed above the clamping shoe and guided in a roller rail. As basically boreholes or openings in the sliding leaf are to be avoided, the adhesive friction force required for restraining the sliding leaf in the clamping shoe is obtained by a screw connection, which is disposed above the upper frontal face of the sliding leaf and presses the two cheeks of the flanks, which laterally delimit a groove shaped recess of the clamping shoe, non-positively against the plane surfaces of the sliding leaf. As a consequence, the disposition of the screw connection above the upper frontal face delimitation of the sliding leaf, on the one hand, inevitably results in a high construction height of the clamping shoe; and, on the other hand, on account of the above described lever ratios, a relatively important clamping force needs to be applied in the area of the screw connection, and the selection of an appropriate material for the above described clamping connection is required.
The object of the invention, in a clamping connection of the species mentioned in the introduction, is to prevent the loss of clamping force resulting from the above described lever ratios, and to minimize the required construction height for restraining a sliding leaf at the same time.
The invention solves the given problem with the teaching according to claim 1.
Accordingly, a clamping plate, which is adjustable against a plane surface of the sliding leaf by means of adjusting screws, is disposed in the clamping compartment of the clamping shoe.
This means that, while foregoing the lever arm, recognized as being disadvantageous, the force transfer of the adjusting screws is done directly into the sliding leaf, resulting in a considerable reduction of the required construction height. The torque applied by the adjusting screws is directly transformed into a resultant clamping force, whereby, at a comparable resultant clamping force, less stress needs to be transferred to the structural parts, such that a material of less stringent requirements, but still matching the stress can be used. In addition, with an appropriate shaping of the width of the groove-shaped clamping compartment, the inventive solution allows for using a scalable system, i.e. the restraining of sliding leaves without need for structural modification, particularly glass panes with different thicknesses, moreover, thickness tolerances do not matter anymore.
Further embodying features of the invention are subject matter of the dependent claims.
As the clamping compartments are formed as grooves open to below, the invention allows for disposing the upper frontal face of the sliding leaf adjacent the groove bottom, i.e. the sliding leaf can be introduced as far into the clamping compartment until its upper frontal face is located in the area of the groove bottom of the clamping compartment.
If the above described invention is advantageously usable also in such structural solutions where the clamping shoe is guided at a roller carriage by means of a carrying tenon, according to a particularly advantageous embodiment of the invention, it is proposed that the clamping compartment be integral with the roller carriage. The above mentioned feature results in a further considerable reduction of the required construction height. In this case, the clamping shoe and the roller carriage may form a structural unit, wherein in a further development, the clamping shoe has a lateral recess extending orthogonally to a plane surface of the sliding leaf and intended for the reception of a roller bracket carrying the carrying rollers, which, for adjusting purposes, is disposed height-adjustable at the clamping shoe.
It can be seen that, on account of the inventive solution, there is no loss of clamping force as a consequence of the constructional lever arms, which would result in a reduced clamping force compared to the applied torque, such that, with equal or higher clamping force, the construction height can be reduced considerably.
Hereinafter the invention will be explained based on a basic drawing representing the state-of-the-art and on an exemplary embodiment of the invention, wherein
A clamping connection 1′ according to
In the clamping connection 1 according to
In this case, the glass protection 15 can be formed such that an additional friction and thus an increased holding force are generated.
According to the perspective illustration of
For this purpose, the clamping shoe 2 has a lateral recess 12 for the reception of a roller bracket 14 carrying the carrying rollers 13. Also in the exemplary embodiment according to
Number | Date | Country | Kind |
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10 2004 050 596.9 | Oct 2004 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP05/09687 | 9/9/2005 | WO | 4/13/2007 |