DOOR SYSTEM FOR AN ELEVATOR INSTALLATION
20170334681 · 2017-11-23
Inventors
Cpc classification
B66B13/00
PERFORMING OPERATIONS; TRANSPORTING
B66B13/08
PERFORMING OPERATIONS; TRANSPORTING
B66B13/16
PERFORMING OPERATIONS; TRANSPORTING
B66B5/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A door system for an elevator installation having an elevator car with a car door arranged to travel in an elevator shaft with shaft doors, wherein the car door is spaced from the shaft doors in a closed position of the door system. A primary pivot spindle is coupled to a pivotable door leaf of the shaft door or the car door and a secondary pivot spindle is coupled to a pivotable door leaf of the other of the car door and the shaft door. A drive unit includes a driven, pivotably mounted shaft to which a first entrainer and a second entrainer are fixed. During a pivoting movement of the shaft, the first entrainer engages a first counterpart element on the primary pivot spindle and the second entrainer engages a second counterpart element on the secondary pivot spindle to effect a pivoting movement of the door leaves.
Claims
1-13. (canceled)
14. A door system for an elevator installation, the elevator installation including an elevator car for travel in an elevator shaft, the door system comprising: a car door arranged at the elevator car; a shaft door arranged at a shaft door opening of the elevator shaft, wherein when the car door is adjacent the shaft door the car door and the shaft door are spaced apart by a door threshold gap in a closed position of the door system; a primary pivot spindle coupled to a pivotable first door leaf of one of the shaft door and the car door, wherein the first door leaf and the primary pivot spindle are arranged on a first side of the door threshold gap, and wherein a first counterpart element is fixed to the primary pivot spindle; and a drive unit including a driven pivotably mounted shaft having a first entrainer fixed thereto, the drive unit being arranged on a second side of the door threshold gap, wherein during a pivoting movement of the shaft by the drive unit, the first entrainer makes direct mechanical contact with the first counterpart element effecting a pivoting movement of the primary pivot spindle and an associated pivoting movement of the first door leaf.
15. The door system according to claim 14 wherein the door system is a folding door system.
16. The door system according to claim 14 wherein the first side is a shaft door side and the second side is a car door side of the door threshold gap, or wherein the first side is the car door side and the second side is the shaft door side of the door threshold gap.
17. The door system according to claim 14 including a further pivot spindle coupled to the first door leaf and arranged coaxial with the primary pivot spindle.
18. The door system according to claim 14 including a further pivot spindle coupled to the primary pivot spindle by a coupling gear, the first door leaf being mounted on the another pivot spindle.
19. The door system according to claim 14 including a secondary pivot spindle having a second door leaf fixed thereto, the secondary pivot spindle being arranged on the second side of the door threshold gap.
20. The door system according to claim 19 including a second entrainer fixed to the shaft and a second counterpart element fixed to the secondary pivot spindle, wherein the second entrainer effects a pivoting movement of the secondary pivot spindle in response to the pivoting movement of the shaft.
21. The door system according to claim 20 wherein the first entrainer and the second entrainer are fixed to the shaft, the first counterpart element is fixed to the primary pivot spindle and the second counterpart element is fixed to the secondary pivot spindle such that the pivoting movements of the primary pivot spindle and the secondary pivot spindle start simultaneously with opening and closing of the door system.
22. The door system according to claim 19 including a further pivot spindle coupled to the second door leaf and arranged coaxial with the secondary pivot spindle.
23. The door system according to claim 19 including a further pivot spindle coupled to the secondary pivot spindle by a coupling gear, the second door leaf being mounted on the further pivot spindle.
24. The door system according to claim 14 wherein a drive shaft of a motor of the drive unit and the driven pivotably mounted shaft are arranged coaxially.
25. The door system according to claim 14 wherein the first entrainer is formed as a cam, and the first counterpart element is formed as a cam engaging element.
26. The door system according to claim 14 wherein the shaft and at least one of the primary pivot spindle, a secondary pivot spindle fixed to a second door leaf, and a further pivot spindle fixed to the first door leaf or the second door leaf are arranged essentially at right angles inside the elevator installation.
27. The door system according to claim 14 wherein the shaft and the primary pivot spindle are arranged with axes parallel with one another.
28. An elevator installation including the door system according to claim 14.
29. A door system for an elevator installation, the elevator installation including an elevator car for travel in an elevator shaft, the door system comprising: a car door arranged at the elevator car; a shaft door arranged at a shaft door opening of the elevator shaft, wherein when the car door is adjacent the shaft door the car door and the shaft door are spaced apart by a door threshold gap in a closed position of the door system; a primary pivot spindle coupled to a pivotable first door leaf of one of the shaft door and the car door, wherein the first door leaf and the primary pivot spindle are arranged on a first side of the door threshold gap, and wherein a first counterpart element is fixed to the primary pivot spindle; a secondary pivot spindle having a second door leaf fixed thereto, the secondary pivot spindle being arranged on a second side of the door threshold gap, and wherein a second counterpart element is fixed to the secondary pivot spindle; and a drive unit including a driven pivotably mounted shaft having a first entrainer and a second entrainer fixed thereto, the drive unit being arranged on a second side of the door threshold gap, wherein during a pivoting movement of the shaft by the drive unit, the first entrainer contacts the first counterpart element effecting a pivoting movement of the primary pivot spindle and an associated pivoting movement of the first door leaf and the second entrainer contacts the second counterpart element effecting a pivoting movement of the secondary pivot spindle and an associated pivoting movement of the second door leaf.
Description
DESCRIPTION OF THE DRAWINGS
[0019] The invention is explained in greater detail below with the aid of figures. In the figures:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION
[0026]
[0027] Elevator car 4 is arranged so as to be capable of travel inside elevator shaft 1. In order to ensure adequate safety during the travel of elevator car 4, elevator car 4 is sufficiently spaced apart from the components fixed in elevator shaft 1, in particular shaft doors 6.1, 6.2, 6.3. This spacing is marked by a door threshold gap S. By means of door threshold gap S, the components of the elevator car, for example the car door, are prevented from touching, in particular striking against, components fixed in elevator shaft 1 during the travel of elevator car 4.
[0028]
[0029] The door system comprises a pivotably mounted shaft 20 of a drive unit and a primary pivot spindle 22. The drive unit comprising shaft 20 is arranged on the car door side. A motor, not represented, can be a component of the drive unit. Shaft 20 can be driven, i.e. is automatically pivoted, by means of this motor. Primary pivot spindle 22 is arranged on the shaft door side. The door system can comprise a secondary pivot spindle 24, which is arranged on the side of the drive unit, i.e. on the car door side. As an alternative to the shown embodiment, driven pivotably mounted shaft 20 and, as the case may be, secondary pivot spindle 24 can be arranged on the shaft door side and primary spindle 22 on the car door side.
[0030] A first entraining means (first entrainer) 26 is fixed to pivotable shaft 20. A counterpart element 27 which can be actuated by entraining means 26 is fixed to primary pivot spindle 22. As represented in
[0031] If the door system comprises secondary pivot spindle 24, a second entraining means (second entrainer) 28 can be fixed to pivotable shaft 20. In this case, a second counterpart element 29 which can be actuated by this second entraining means 28 is fixed to secondary pivot spindle 24. At least one of these entraining means 26, 28 can—as represented—be formed by a cam. Counterpart element 27, 29 which can be actuated by this cam can be constituted as an engaging element.
[0032] Shaft 20 of the drive unit is pivotable in the direction of the arrow marked by A. Primary pivot spindle and secondary pivot spindle 22, 24 are also pivotable in the direction of the arrow marked by B.
[0033]
[0034]
[0035]
[0036]
[0037] According to the door system shown in
[0038]
[0039] It should be noted that the door leaf, not represented in
[0040]
[0041] In accordance with the provisions of the patent statutes, the present invention has been described in what is considered to represent its preferred embodiment. However, it should be noted that the invention can be practiced otherwise than as specifically illustrated and described without departing from its spirit or scope.