ELEVATOR CAR ARRANGEMENT AND METHOD FOR DAMPENING VIBRATIONS
20170158466 · 2017-06-08
Assignee
Inventors
- Johannes De Jong (Jarvenpaa, FI)
- Gabriela Roivainen (Hyvinkaa, FI)
- Jussi Perälä (Hyvinkaa, FI)
- Jouni Ratia (Hyvinkaa, FI)
Cpc classification
B66B11/0273
PERFORMING OPERATIONS; TRANSPORTING
B66B19/007
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An elevator car arrangement includes an elevator car body and an elevator car sling. The elevator car arrangement further includes a hanging damper arranged to connect the elevator car body and the elevator car sling together for dampening vibrations coming from guide rails through the elevator car sling to the elevator car body. The hanging damper includes a first part connected to a bottom part of the elevator car body; a second part connected to the elevator car sling; and a damping element arranged to dampen vibrations coming from the second part to the first part. A method for dampening vibrations coming from guide rails through the elevator car sling to the elevator car body is disclosed.
Claims
1. An elevator car arrangement comprising: an elevator car body; an elevator car sling; a hanging damper arranged to connect the elevator car body and the elevator car sling together for dampening vibrations coming from guide rails through the elevator car sling to the elevator car body, the hanging damper comprising: a first part connected to a bottom part of the elevator car body; a second part connected to the elevator car sling; and a damping element arranged to dampen vibrations coming from the second part to the first part, wherein the first part comprises a first rod and a first plate connected together, said first rod having a first end connected to the bottom part of the elevator car body and a second end connected to the first plate, wherein the second part comprises a second plate and at least one second rod in connection with the second plate, and wherein the damping element is arranged between the first plate of the first part and the second plate of the second part such that the damping element has a connection with the first plate of the first part and the second plate of the second part such that the connection between the first part and the second part is arranged through the damping element.
2. The elevator car arrangement according to claim 1, wherein the hanging damper is connected to the bottom part of the elevator car such that the first rod is connected to a beam of the elevator car body and the second rod is having a connection with a beam of the elevator car sling.
3. The elevator car arrangement according to claim 1, wherein the connection between the first rod and the elevator car body is a threaded connection.
4. The elevator car arrangement according to claim 1, wherein the second rod is arranged to go through the first plate and the damping element to have a connection with the second plate.
5. The elevator car arrangement according to claim 1, wherein the connection between the second rod and the beam of the elevator car sling is a thread nut fixing in connection with the beam.
6. The elevator car arrangement according to claim 1, wherein the first rod is arranged to go through the beam of the elevator car sling without having a connection with the sling.
7. The elevator car arrangement according to claim 1, wherein the arrangement comprises four hanging dampers, two on each side of the elevator car body.
8. The elevator car arrangement according to claim 1, wherein the damping element comprises rubber.
9. The elevator car arrangement according to claim 1, wherein the damping element comprises polyurethane.
10. The elevator car arrangement according to claim 1, wherein the hanging damper comprises a post for an additional mass to be added to the elevator car arrangement.
11. A method for dampening vibrations coming from guide rails through the elevator car sling to the elevator car body, the method comprising the steps of: providing a hanging damper comprising a first part and a second part between the elevator car body and the elevator car sling by; connecting the first part to a bottom part of the elevator car body, said first part comprising a first rod and a first plate connected together, said first rod having a first end to be connected to the bottom part of the elevator car body and a second end connected to the first plate; connecting the second part to the elevator car sling, said second part comprising a second plate and at least one second rod in connection with the second plate, said second rod having a first end and a second end; arranging a damping element between the first plate of the first part and the second plate of the second part to have a connection with the first plate of the first part and the second plate of the second part to dampen vibrations coming from the second part to the first part; and connecting the first part and the second part together through the damping element.
12. The method according to claim 11, wherein the step of connecting the first part to a bottom part of the elevator car body comprises the steps of: arranging the first rod to go through a beam of the elevator car sling and connecting the first end of the first rod to a beam of the elevator car body.
13. The method according to claim 11, wherein the step of connecting the second part to the elevator car sling comprises the steps of: arranging the at least one second rod through a hole in a beam of the elevator car sling such that the first end of the second rod and the second end of the second rod are on different sides of the beam or on different sides of part of the beam; and providing a nut to the first end of the second rod and tightening the nut.
14. The method to claim 11, wherein the step of arranging a damping element between the first plate of the first part and the second plate of the second part comprises the steps of: providing a hole in the damping element for the at least one second rod to go through the damping element; arranging the damping element in connection with the first plate such that the second rod goes through the damping element; arranging the second plate in connection with the damping element, said second plate having a hole for the second rod to go through the second plate; and tightening a nut to the second end of the second rod.
15. The method according to claim 11, wherein the method further comprises a step of adding mass to the hanging damper for balancing the elevator car body.
16. An elevator comprising the elevator car arrangement according to claim 1.
17. The elevator car arrangement according to claim 2, wherein the connection between the first rod and the elevator car body is a threaded connection.
18. The elevator car arrangement according to claim 2, wherein the second rod is arranged to go through the first plate and the damping element to have a connection with the second plate.
19. The elevator car arrangement according to claim 3, wherein the second rod is arranged to go through the first plate and the damping element to have a connection with the second plate.
20. The elevator car arrangement according to claim 2, wherein the connection between the second rod and the beam of the elevator car sling is a thread nut fixing in connection with the beam.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In the following the invention will be described in greater detail by means of preferred embodiments with reference to the attached drawings, in which
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION OF THE INVENTION
[0016]
[0017]
[0018]
[0019] As shown in
[0020] The hanging damper 1 may comprise a post for an additional mass to be added to the elevator car arrangement. This is advantageous when needing to balance the elevator car body 2 easily. The additional mass can be added for example through a magnetic connection on the first plate 11b.
[0021] The first part 11 comprises a first rod 11a and a first plate 11b connected together, said first rod 11a having a first end Hal to be connected to the bottom part of the elevator car body 2 and a second end 11a2 connected to the first plate 11b and the second part 12 comprises a second plate 12a and at least one second rod 12b in connection with the second plate 12a, said second rod 12b having a first end 12b1 and a second end 12b2.
[0022] In the method according to the invention the method comprises the steps of providing a hanging damper 1 comprising a first part 11 and a second part 12 between the elevator car body 2 and the elevator car sling 3 by connecting the first part 11 to a bottom part of the elevator car body 2, connecting the second part 12 to the elevator car sling 3, arranging a damping element 11 between the first plate 11b of the first part 11 and the second plate 12a of the second part 12 to have a connection with the first plate 11b of the first part 11 and the second plate 12a of the second part 12 to dampen vibrations coming from the second part 12 to the first part 11; and connecting the first part 11 and the second part 12 together through the damping element 11.
[0023] The step of connecting the first part 11 to a bottom part of the elevator car body 2 comprises the steps of arranging the first rod 11a to go through a beam 31 of the elevator car sling 3 and connecting the first end 11a1 of the first rod 11a to a beam 21 of the elevator car body 2.
[0024] The step of connecting the second part 12 to the elevator car sling 3 comprises the steps of arranging the at least one second rod 12b through a hole in a beam 31 of the elevator car sling 3 such that the first end 12b1 and the second end 12b2 are on different sides of the beam 31 or on different sides of part of the beam 31; providing a nut 12d to the first end 12b1 of the second rod 12b and tightening the nut 12d. The step of connecting the second part 12 to the elevator car sling 3 may further comprise a step of arranging a baseplate 12c on the elevator car sling 3 to the side of the elevator car body 2 such that the second rod 12b goes through a hole in the baseplate 12c, i.e. arranging a baseplate 12c between the beam 31 and the nut 12d.
[0025] The step of arranging a damping element 11 between the first plate 11b of the first part 11 and the second plate 12a of the second part 12 comprises the steps of providing a hole in the damping element 11 for the at least one second rod 12b to go through the damping element 11; arranging the damping element 11 in connection with the first plate 11b such that the second rod 12b goes through the damping element 11; arranging the second plate 12a in connection with the damping element 11, said second plate 12a having a hole for the second rod 12b to go through the second plate 12a; and tightening a nut 12d to the second end 12b2 of the second rod 12b.
[0026] The method further comprises a step of adding mass to the hanging damper 1 for balancing the elevator car body 2.
[0027]
[0028] The hanging damper 1 also comprises the second part 12 which comprises a second plate 12a and at least one second rod 12b in connection with the second plate 12a. As can be seen from
[0029] The damping element 13 is arranged between the first plate 11b and the second plate 12a such that by tightening the nut in the first end 12b1 and/or in the second end 12b2 of the second rod 12b the contact between the damping element 13 and the first plate 11b and the second plate 12a can be made tight.
[0030] So the first part 11 is connected to the elevator car body 2 and the second part 12 is connected to the elevator car sling 3 and the damping element 13 connects the first part 11 and the second part 12 together such that it is the only connection between the lower part of the elevator car body and the elevator car sling. In other words the first rod 11a is connected from its first end 11a1 to the elevator car body 2 and especially to its beam 21 and from its second end 11a2 to the first plate 11b. The second rod 12b is connected from its first end 12b1 to the elevator car sling 3 and especially to its beam 31 and from its second end 12b2 to the second plate 12a. The first plate 11b and the second plate 12a are isolated from each other through the damping element 13. So the first plate 11b and the second plate 12a are not connected to each other directly but through the damping element 13. The damping element 13 is rubber and/or polyurethane. So the direct connection between the elevator car body 2 and the elevator car sling 3 is replaced by the connection between the first plate 11b and the second plate 12a through the damping element 13. The damping element 13 ensures that the vibrations from the elevator car sling 3 excited by guide rail misalignments, roller, counterweight passing bye, ropes or something else is not transferred straight to the elevator car body and to passengers in it. The damping element 13 in other words attenuates or kill the vibrations.
[0031] The elevator car sling 3 has a beam 31 to which the second rod 12b of the hanging damper 1 is connected. As the first rod 11a of the first part 11 goes through the beam 31 has the beam 31 therefore at least two holes from which one is for the first rod 11a and is larger than the first rod 11a so that there is no direct connection with the first rod 11a and the beam 31. Preferably there is a covering, a bushing or a padding between the first rod 11a and the beam 31 around the area of the hole in the case that the first rod 11a and the beam 31 of the elevator car sling 3 accidentally touch during the elevator run in abnormal conditions.
[0032] The second rod 12b also comprises a soft rubber covering 12e between the nut 12d and the second plate 12a and/or between the nut 12d and a baseplate 12c which is preferably arranged between the nut 12d and the beam 31 of the elevator car sling 3. The baseplate 12c is part of the second part 12 of the hanging damper 1.
[0033] Mass can be added on each hanging damper 1 in order to balance the elevator car if it is tilted due to heavier doors, top guard or decoration panels. The additional mass is can be placed on top of the first plate 11b for example with clamps or with magnet.
[0034] An elevator comprises an elevator car body 2 and an elevator car sling 3 and a hanging damper 1.
[0035] It will be obvious to a person skilled in the art that, as the technology advances, the inventive concept can be implemented in various ways. The invention and its embodiments are not limited to the examples described above but may vary within the scope of the claims.