A CORNER BRACKET
20220389742 ยท 2022-12-08
Inventors
Cpc classification
E05Y2400/44
FIXED CONSTRUCTIONS
International classification
Abstract
The disclosure relates to a corner bracket (14, 16) for a vertical moving door (2), the corner bracket (14, 16) comprising: a base plate (32) configured to be attached to the door (2); and a guide path (34) for a lift cable (4, 6) arranged in the base plate (32). A switch (28) is arranged in the base plate (32) and configured to be actuated by the lift cable (4, 6) in the event of a breakage of the lift cable (4, 6). The disclosure further relates to a method, performed by a control device (200), for stopping a vertical moving door (2) of a vertical moving door system (100), the vertical moving door system (100).
Claims
1. A corner bracket (14, 16) for a vertical moving door (2), the corner bracket (14, 16) comprising: a base plate (32) configured to be attached to the door (2); and a guide path (34) for a lift cable (4, 6) arranged in the base plate (32); wherein: a switch (28) is arranged in the base plate (32) and configured to be actuated by the lift cable (4, 6) in the event of a breakage of the lift cable (4, 6).
2. The bracket (14, 16) according to claim 1, wherein a control element (36) is arranged in the guide path (34) and configured to be controlled by the lift cable (4, 6); and wherein: the control element (36) is configured to be pushed by the lift cable (4, 6) to a first position when the lift cable (4, 6) extends into the guide path (34), the control element (36) is configured to be released by the lift cable (4, 6) to a second position in the event of a breakage of the lift cable (4, 6), and the control element (36) is configured to actuate the switch (28) when the control element (36) has been moved to the second position.
3. The bracket (14, 16) according to claim 2, wherein the control element (36) is a lever (36), comprising a leaf spring element (42) having a spring force configured to be exceeded by a force from the lift cable (4, 6) when the lever (36) is pushed to the first position.
4. The bracket (14, 16) according to claim 2, wherein the control element (36) is a pin (36), comprising a helical spring element (50) having a spring force configured to be exceeded by a force from the lift cable (4, 6) when the pin (36) is pushed to the first position.
5. The bracket (14, 16) according to claim 2, wherein the guide path (34) comprises an aperture (38), through which aperture (38) the control element (36) is configured to extend.
6. The bracket (14, 16) according to claim 1, wherein the guide path (34) comprises a circular extension (46).
7. The bracket (14, 16) according to claim 6, wherein the aperture (38) is arranged in the circular extension (46) of the guide path (34).
8. The bracket (14, 16) according to claim 1, wherein the base plate (32) comprising a fastener element (40), which is configured to attaching the lift cable (4, 6) to the base plate (32).
9. The bracket (14, 16) according to claim 1, wherein the switch (28) is an electrical micro switch.
10. A vertical moving door system (100) comprising a vertical moving door (2), at least two lift cables (4, 6), a motor (12) and at least two corner brackets (14, 16) according to claim 1, wherein the respective at least two lift cables (4, 6) are connected to the motor (12) and to the at least two corner brackets (14, 16) and wherein the motor (12) is configured to move the vertical moving door (2) by the at least two lift cables (4, 6) between an open and closed position (O, C).
11. The door system (100) according to claim 10, wherein the motor (12) and the switch (28) in each of the at least two corner brackets (4, 6) are connected to an electric circuit (30), and wherein the switch (28) is actuated and configured to stop the motor (12) in the event of a breakage of the lift cable (4, 6), which is connected to the corner bracket (4, 6) comprising the actuated switch (28).
12. The door system (100) according to claim 11, wherein the electric circuit (30) comprises a control device (200) configured to receive an input signal from the actuated switch (28), and wherein the control device (200) is configured to stop the motor (12) as a response to the received input signal from the actuated switch (28).
13. The door system (100) according to claim 10, wherein a first corner bracket (14) is arranged at a first lower side part (26) of the door (2), and wherein a second corner bracket (16) is arranged at a second lower side part (27) of the door (2).
14. A method, performed by a control device (200), for stopping a vertical moving door (2) of a vertical moving door system (100), the vertical moving door system (100) comprising: at least two lift cables (4, 6), a motor (12) and at least two corner brackets (14, 16), the at least two corner brackets (14, 16) each comprising: a base plate (32) configured to be attached to the door (2); a guide path (34) for a lift cable (4, 6) arranged in the base plate (32); and a switch (28) is arranged in the base plate (32) and configured to be actuated by the lift cable (4, 6) in the event of a breakage of the lift cable (4, 6), wherein the respective at least two lift cables (4, 6) are connected to the motor (12) and to the at least two corner brackets (14, 16) and wherein the motor (12) is configured to move the vertical moving door (2) by the at least two lift cables (4, 6) between an open and closed position (0, C), the method comprises the steps of: receiving (s101) a signal from the switch (28) in the event of a breakage of the lift cable (4, 6), and controlling (s102) the motor (12) to stop the movement of the vertical moving door (2).
15. A computer program (P) comprising instructions which, when the program is executed by a computer (200; 500), cause the computer (200; 500) to carry out the method according to claim 14.
16. A computer-readable medium comprising instructions, which when executed by a computer (200; 500), cause the computer (200; 500) to carry out the method according to claim 14.
Description
BRIEF DESCRIPTIONS OF THE DRAWINGS
[0022] The above objects, as well as additional objects, features and advantages of the present invention will be more fully appreciated by reference to the following illustrative and non-limiting detailed description of example embodiments of the present invention, when taken in conjunction with the accompanying drawings.
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
DETAILED DESCRIPTION
[0033] The present disclosure will now be described with reference to the accompanying drawings, in which currently preferred example aspects and embodiments of the disclosure are shown. This disclosure may, however, be embodied in many different forms and should not be construed as limited to the herein disclosed embodiments. The disclosed aspects and embodiments are provided to fully convey the scope of the disclosure to the skilled person.
[0034]
[0035] The vertical moving door system 100 according to an aspect is an up and above vertical moving door 2, i.e. the vertical moving door 2 is moveable from a closed position C to an open position O. In the open position O the vertical moving door 2 is positioned in a substantial vertical position above an opening 110 of a wall 120.
[0036] The vertical moving door 2 is according to an aspect a single blade vertical moving door 2. However, the vertical moving door may alternatively be a sectional vertical moving door 2 comprising a number of connected sections (not shown).
[0037] The motor 12 is mounted either directly on the wall 120 or at one of the tracks 8, 10. The first and second lift cables 4, 6 is in one end connected to the motor 12 via first and second cable drums 18, 20 and in the other end connected to the vertical moving door 2 via the first and second corner brackets 14, 16. Put in another way, the first and second lift cables 4, 6 are mounted or connected to the first and second corner brackets 14, 16 and the first and second corner brackets 14, 16 are connected or mounted to the vertical moving door 2.
[0038] The motor 5 is configured to wind up and unwind the first and second lift cables 4, 6 on the first and second cable drums 18, 20 and thereby move the vertical moving door 2 between the open and closed position O, C.
[0039] The vertical moving door 2 is moveably connected to the first and second tracks 8, 10. The first and second tracks 8, 10 are mounted at the opening 110 and configured to guide the vertical moving door 2 when it is moved between the closed position C and the open position O. Put in another way, the first and second tracks 8, 10 guides the vertical moving door 2 when it is moved from the closed position C to the open position O and from the open positon O to the closed position C.
[0040] The first corner bracket 14 is arranged at a first lower side part 26 of the door 2, and the second corner bracket 16 is arranged at a second lower side part 27 of the door 2.
[0041] According to an aspect the vertical moving door system 100 may comprise two motors 12, positioned at each side of the door 2. The first and second tracks 8, 10 may be arranged on each side of the door 2 and positioned at opposite vertical edges of the opening 110. The first and second tracks 8, 10 may have a U-, C- or G-shaped cross sectional shape.
[0042] In order to relieve the motor 12, springs 22, 24 may be connected to the vertical moving door 2 and the adjacent wall 120. When moving the door 2 in the direction of the closed position C, the springs 22, 24 may be tensioned.
[0043] The vertical moving door system 100 as such are well known and will thus not be described further in detail herein.
[0044] Each of the first and second corner brackets 14, 16 comprises a switch 28, which is configured to be actuated by the lift cables 4, 6 in the event of a breakage of the lift cables 4, 6. The actuation of the switch 28 is an indication of a lift cable break.
[0045] The motor 12 and each switch 28 in the corner brackets 14, 16 are connected to an electric circuit 30. The switch 28 is actuated and configured to stop the motor 12 in the event of a breakage of one of the lift cables 4, 6 connected to the corner bracket 14, 16 comprising the actuated switch 28. In the event of a breakage of one of the lift cables 4, 6, the other lift cable 4, 6 will still be tensioned and work correctly. However, the switch 28 is actuated and configured to stop the motor 12 in the event of a breakage of one of the lift cables 4, 6. Thus, the door 2 will stop in the event of a breakage of one of the lift cables 4, 6. The electric circuit 30 comprises a control device 200 configured to receive an input signal from the actuated switch 28. Thus, the control device 200 is configured to send a signal to the motor 12 in order to stop the motor 12 as a response to the received input signal from the actuated switch 28.
[0046]
[0047] Stopping the motor 12 and the vertical moving door 2 in the event of a lift cable break will eliminate the risk of that a person or objects in the path of the vertical moving door 2 could be injured or that the vertical moving door system 100 is damaged. Stopping the door 2 in the event of a lift cable break is also an indication for service personnel to replace the broken lift cable 14, 16 with a new lift cable 14, 16.
[0048]
[0049]
[0050]
[0051]
[0052]
[0053]
[0054]
[0055] The method comprises the steps of: receiving s101 a signal from the switch 28 in the event of a breakage of the lift cable 4, 6, and controlling s102 the motor 12 to stop the movement of the vertical moving door 2.
[0056]
[0057] There is provided a computer programme P which comprises routines for performing the safety method. The programme P may be stored in an executable form or in a compressed form in a memory 560 and/or in a read/write memory 550.
[0058] Where the data processing unit 510 is described as performing a certain function, it means that the data processing unit 510 effects a certain part of the programme stored in the memory 560 or a certain part of the programme stored in the read/write memory 550.
[0059] The data processing device 510 can communicate with a data port 599 via a data bus 515. The non-volatile memory 520 is intended for communication with the data processing unit 510 via a data bus 512. The separate memory 560 is intended to communicate with the data processing unit 510 via a data bus 511. The read/write memory 550 is adapted to communicating with the data processing unit 510 via a data bus 514.
[0060] When data are received on the data port 599, they are stored temporarily in the second memory element 540. When input data received have been temporarily stored, the data processing unit 510 is prepared to effect code execution as described above.
[0061] Parts of the methods herein described may be effected by the device 500 by means of the data processing unit 510 which runs the programme stored in the memory 560 or the read/write memory 550. When the device 500 runs the programme, methods herein described are executed.
[0062] The person skilled in the art realizes that the present invention is not limited to the preferred embodiments described above. The person skilled in the art further realizes that modifications and variations are possible within the scope of the appended claims.
[0063] Additionally, all aspects and embodiments of the invention could be combined with the other aspects and embodiments of the invention. Additionally, variations to the disclosed embodiments can be understood and effected by the skilled person in practicing the claimed invention, from a study of the drawings, the disclosure, and the appended claims.