The invention relates to a door operator, in particular to a swing door operator according to the generic part of patent claim 1.
Such a door operator is known from DE 295 21 068 U1. An overhead door closer with a slide rail linkage is known from DE 40 38 720 C2, which has a cam drive unit allowing for an optimum door moment curve and a comfortable operation. In principle this overhead door closer would therefore be suitable as door operator as well; however, experiments conducted during the course of the invention have shown that applying oil pressure to the drive unit results in a very unfavourable transformation of the hydraulic pressure in the resulting movement of stroke/rotation and repeated stroke. Since about 75% of the output capacity to be applied is required for loading the spring force accumulator of such a door closer, whereas only about 25% of the output capacity needs to be delivered by the system for accelerating the door. As it is furthermore desirable to keep the narrow structural shape of such a door closer for door operators as well, the dimensions of the structural components cannot be adapted to the extremely high loads. Thus, although functionally and technically advantageous, the known overhead door closer is not suitable as a door operator.
Another swing door operator is known from DE 197 56 496 C2. This swing door operator has an electromechanical drive unit, which is provided with a drive motor and a gear and with a subsequent power transmission unit for the connected door. The power transmission unit has a spindle with a spindle nut partially overlapping the former, which spindle is non-positively and positively connected to a toothed rack. Although this swing door operator can be installed concealed, the door moment curve is not as optimal as with the above described door closers having the cam technology.
Therefore, it is the object of the present invention to provide a door operator of the species indicated in the generic part of patent claim 1, which can be installed completely concealed within the door profile or frame profile, and does not require any special constructions of the door system.
This problem is solved by the features of patent claim 1.
On account of its compact structure, the inventive door operator allows for a concealed installation within a door profile or a frame profile and thus allows for total integration with the door system.
Particularly the installation in common narrow door profiles is possible.
As an advantage, neither special door profiles nor any special constructions, which would interfere with the design of the door system, are necessary. Another advantage results from an economical mounting combined with a wide applicability and moreover, it is possible to retrofit existing door systems with the inventive door operator. Another advantage results from the fact that, with the inventive door operator, a direct introduction of power for loading a spring force accumulator is possible. Thus the possibility is given of avoiding unnecessarily loading the mechanical structural components, and a reduction of the required operating pressure can be achieved, because larger effective piston areas are provided. As the hydraulic pump of the inventive door operator is in hydraulic connection with a separate pressure compartment, which is associated directly to the spring force accumulator, a direct pressure application and thus a direct introduction of power into the spring force accumulator is the result, whereby the pre-loading of the spring force accumulator is completely or at least partially achieved. By this measure the disadvantages explained at the beginning are completely eliminated, because unnecessary losses are avoided.
The inventive door operator further achieves avoiding unnecessary stress on structural components, load on bearings, and any loss on account of friction or loss of efficiency. On account of a separate pressure compartment associated to the spring force accumulator, the effective piston areas for loading the spring force accumulator and thus for generating a higher driving torque are further increased and, moreover, the required system pressure is thus considerably reduced and the stroke volume is increased. As a consequence, the control response is improved and the overall hydraulic system is less sensitive, whereby a more precise control of the door operator can be realized.
It can thus be achieved that the torque required at the output shaft for opening the doors can be generated by means of a cam arrangement, while the spring loading work is simultaneously generated in the separate pressure compartment.
Through providing the pressure compartment, associated to the spring force accumulator, and a preferably provided specific hydraulic control, such as through the use of a solenoid valve, further hydraulic functions such as hydraulic hold-open or hydraulic closing sequence control are made possible.
Furthermore, it is possible to realize a hydraulic opening damping and to use differently built drive units.
Advantageous further developments of the invention are the subject matter of the dependent claims.
Further details, features and advantages of the invention will become apparent from the following description of exemplary embodiments, reference being made to the drawings, in which:
Furthermore, the door operator 1 has a motor 3, as well as a spring force accumulator 4 disposed in the housing 13, which accumulator is coupled to the motor 3 and to the drive unit 2.
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Number | Date | Country | Kind |
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10 2004 061 626.4 | Dec 2004 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP05/12164 | 11/14/2005 | WO | 00 | 6/18/2007 |