ACCESS CONTROL DEVICE FOR PERSONS OR VEHICLES
20200165867 · 2020-05-28
Inventors
Cpc classification
E06B11/085
FIXED CONSTRUCTIONS
E06B11/08
FIXED CONSTRUCTIONS
International classification
Abstract
An access control device (1) for blocking or opening a passage (2) for persons or vehicles. The access control device comprises one or two blocking bodies (3, 3), each arranged on a carrier (4, 4). Each blocking body (3, 3) comprises a mechanically reversibly deformable element (5, 5) which, in a first position, is substantially planar and opens the passage (2) and, in a second position, assumes a curved shape which blocks the passage (2). One or both ends of the deformable element (5, 5) are connected to an actuator (7). A controller controls the deformable element for transferring them first between the first and second positions. When transferring the deformable element from the first to the second position, either the distance between the ends of the respective blocking body is reduced or, when the ends have a constant distance, the length of the blocking body is increased.
Claims
1-15. (canceled)
16. An access control device (1) for persons or vehicles for blocking or opening a passage (2) of the access control device (1), wherein the access control device (1) comprises at least one blocking body (3, 3), and each at least one blocking body (3, 3) is arranged on a carrier (4, 4), each at least one blocking body (3, 3) has a mechanically reversibly deformable element (5, 5) which, in a first position, is substantially planar and opens the passage (2) to permit passage therethrough and, in a second position, assumes a curved shape such that the at least one blocking body (3, 3) at least sufficiently blocks the passage so as to prevent a person or car passing therethrough, at least one end of each mechanically reversibly deformable element (5, 5) is connected or operatively connected to an actuator (7) which is connected to the respective carrier (4, 4) and controllable by a controller, and, by the control of the respective actuator (7), the mechanically reversibly deformable element (5, 5) is transferred from the first position to the second position and vice versa, and one of: a distance between the ends of each respective at least one blocking body (3, 3) is reduced so as to transfer the mechanically reversibly deformable element (5, 5) from the first position to the second position, or when the ends of the at least one respective blocking body (3, 3) have a constant distance, a length of the blocking body (3, 3) is increased.
17. The access control device (1) according to claim 16, wherein the mechanically reversibly deformable element (5, 5) is designed as a single or a multilayer leaf spring, as a round spring or as an element consisting of a plurality of individual links of the same or different lengths designed and connected, in a hinged manner, to one another, elastically or non-elastically, when the mechanically reversibly deformable element (5, 5) is designed as one of a single or multilayer leaf spring, and a surface normal of the element designed as a leaf spring extends, in the first position, parallel to a plane extending perpendicular to a passage plane and to a passage direction.
18. The access control device (1) according to claim 16, wherein the at least one blocking body (3, 3) comprises two blocking bodies (3, 3), and the respective carriers (4, 4) are arranged on opposite sides of the passage (2) and mirror-symmetrical with respect to a central longitudinal axis of the passage (2).
19. The access control device (1) according to claim 16, wherein one of: each end of the respective mechanically reversibly deformable element (5, 5) are each connected to the respective actuator (7), or one end of the respective mechanically reversibly deformable element (5, 5) is connected to an actuator (7), the other end is connected by a hinge (8) to the carrier (4, 4), and a length of the respective blocking bodies (3, 3) corresponds to length of the respective mechanically reversibly deformable element (5, 5) between the two actuators or between the actuator and the hinge (8).
20. The access control device (1) according to claim 16, wherein one end of the respective mechanically reversibly deformable element (5, 5) is respectively connected to an actuator (7) or by a hinge (8) to the carrier (4, 4), the other end is connected, in a hinged manner, to one end of a non-elastic element (10), the other end of which is connected to an actuator, wherein the length of the respective blocking body corresponds to a length of the respective mechanically reversibly deformable element plus a length of the non-elastic element.
21. The access control device (1) according to claim 19, wherein the respective actuator (7) is one of a hydraulically, a pneumatically, an electrically or an electromagnetically axially displaceable component along a direction parallel to a longitudinal axis of the mechanically reversibly deformable element (5, 5) in the first position.
22. The access control device (1) according to claim 19, wherein the mechanically reversibly deformable element (5, 5) is designed as a single or multilayer leaf spring and that the respective actuator (7) is an electrically driven roller (9) on which the respective end of the element (5, 5) designed as a leaf spring can be wound up and from which the respective end of the element (5, 5) designed as a leaf spring can be unwound.
23. The access control device (1) according to claim 20, wherein the mechanically reversibly deformable element (5, 5) is designed as a single or multilayer leaf spring and the actuator (7) connected to the respective element designed as a leaf spring (5, 5) is an electrically driven roller (9) on which the respective end of the element (5, 5), designed as the spring leaf, can be wound up and from which the respective end of the element designed as the leaf spring (5, 5) can be unwound, the respective actuator (7) connected to the non-elastic element (10) is a hydraulically, pneumatically, electrically or electromagnetically axially displaceable component along a direction parallel to a longitudinal axis of the respective leaf spring element (5, 5) in the first position.
24. The access control device (1) according to claim 17, wherein the surface normal of the respective element (5, 5), designed as a leaf spring, runs parallel or perpendicular to the passage plane in the first position.
25. The access control device (1) according to claim 16, wherein the mechanically reversibly deformable element (5, 5) is made of rubber, metal, fiberglass reinforced plastic or laminated plastic and has a torsional rigidity by which a bending of the element, by an above-average human force, is impossible, and the non-elastic element (10) is made of metal or plastic.
26. The access control device (1) according to claim 17, wherein the side of the mechanically reversibly deformable element (5, 5), designed as the leaf spring facing the carrier (4, 4), is convex with respect to the carrier in the first position.
27. The access control device (1) according to claim 16, wherein lighting means are integrated into the respective mechanically reversibly deformable element (5, 5).
28. The access control device (1) according to claim 16, wherein, in the second position, the mechanically reversibly deformable element (5, 5) assumes one of a circular arc or elliptical arc shape.
29. The access control device (1) according to claim 16, wherein, in the first position, a longitudinal axis of the mechanically reversibly deformable element (5, 5) extends perpendicular or parallel to a passage plane.
30. The access control device (1) according to claim 16, wherein additional blocking bodies are provided, and the additional blocking bodies are arranged, on a carrier (4, 4), one above the other to block the passage (2) at respectively different heights.
31. An access control device (1) for persons or vehicles for blocking or releasing a passage (2), wherein the access control device (1) comprises one or two blocking bodies (3, 3), each arranged on a carrier (4, 4), the one or two blocking bodies (3, 3) each have a mechanically reversibly deformable element (5, 5), which, in a first position, is substantially planar and opens the passage (2) and, in a second position, assumes a curved shape, and where only one blocking body is provided, the one blocking body blocks the passage (2) and, where two blocking bodies are provided, the two blocking bodies partially block the passage so that a combination of two blocking bodies blocks the passage, one or both ends of the mechanically reversibly deformable element (5, 5) are each connected or operatively connected to an actuator (7) which is connected to the respective carrier (4, 4) and controlled by a controller, due to control by the controller, the mechanically reversibly deformable element (5, 5) is transferred from the first position to the second position and vice versa, and one of: a distance between ends of the respective one or two blocking bodies (3, 3) is reduced for transferring the mechanically reversibly deformable element (5, 5) from the first position to the second position, or a length of the respective one or two blocking bodies (3, 3) is increased when there is a constant distance between the ends of the respective one or two blocking bodies (3, 3).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The invention is explained in more detail below by way of example with reference to the attached figures. Shown are:
[0032]
[0033]
[0034]
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0039] According to the invention and with reference to
[0040] In the example shown in
[0041] The surface normal of the respective leaf spring element 5, 5 extends, in the first position, parallel to a plane extending perpendicular to the passage plane and to the passage direction. In the embodiments according to
[0042] The embodiment according to
[0043] In the embodiments according to
[0044] In order to transfer an element 5, 5 designed as a leaf spring from the first to the second position, according to an embodiment of the invention, the distance between the ends of the respective blocking body 3, 3 is reduced, as illustrated with reference to
[0045] Starting from the state shown in the right part of
[0046] As an alternative to reducing the distance between the ends of the respective blocking body 3, 3, the length of the respective blocking body 3, 3 can be enlarged with constant distance between the ends of the blocking body to transfer an element 5, 5 designed as a leaf spring from the first position to the second position. In this case, referring to
[0047] In the example shown in
[0048] According to a further development of the invention and with reference to
[0049] The access control device according to the invention is constructed very compact through the underlying principle of using a mechanically reversibly deformable element, which, for example, allows the use of the access control device in a door, as illustrated by
[0050] An access control device according to the invention has at least one reading device connected to the controller for access authorizations stored on data carriers. The reading device is preferably designed for the non-contact reading of access authorizations via a standard for wireless communication, for example, via Bluetooth Low Energy (BLE) or RFID. In the case of a valid access authorization, in this case, the at least one blocking body is transferred from the second position to the first position.
[0051] The compact construction also advantageously allows the use of the access control device according to the invention for the implementation of a barrier-free access with valid access authorization. In this case, the at least one blocking body is transferred from the first position to the second position when there is an invalid or no access authorization.
[0052] According to further embodiments of the invention, a plurality of blocking bodies can be arranged one above the other on a carrier in order to block the passage at respectively different heights.
[0053] An access control device according to the invention has the advantage in that it can be modular in design to meet different requirements. For example, the blocking bodies can be exchanged to achieve a form of the blocking body required for the respective application in the second position or a required torsional rigidity.