Sightseeing elevator with four view fields

By canceling the counterweight components and using forced-driven elevator design that connects aluminum profile strips and glass snaps, the existing sightseeing elevator construction space is solved and the maintenance of low space requirements and convenient maintenance is achieved.

CN223213602UActive Publication Date: 2025-08-12ZHEJIANG ANJIA EXPRESS ELEVATOR CO LTD
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Patent Information

Application Number
CN202422576921.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-08-12
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

The existing four-sided field of sightseeing elevators have high requirements for on-site construction space and are inconvenient to maintain, especially the difficulty of hiding heavy components and the easy cracking of glass leads to maintenance troubles.

Method used

The forced-driven elevator is used to cancel the counterweight assembly, and vertical and transverse strips made of aluminum profiles are connected to the glass plate snaps. The glass plate is fixed through elastic connection. The columns and beams do not need to be drilled. Double-layer laminated glass and hidden connectors are used to connect the columns and beams.

Benefits of technology

It reduces the requirements for on-site construction space, simplifies the installation and maintenance process of glass plates, and improves the stability and maintenance convenience of glass.

✦ Generated by Eureka AI based on patent content.

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Abstract

The sightseeing elevator is a forcibly-driven elevator, a hoistway of the sightseeing elevator comprises four stand columns (1), a plurality of cross beams (2) which are arranged from top to bottom are arranged between the adjacent stand columns (1), glass plates (3) are arranged between the adjacent cross beams (2), transverse pressing strips (4) are arranged on the upper side and the lower side of each glass plate (3), and the transverse pressing strips (4) are arranged on the upper side and the lower side of each glass plate (3). One part of each transverse pressing strip (4) is connected with the corresponding cross beam (2) in a buckled mode, the other part of each transverse pressing strip (4) is located on the outer side of the glass plate (3) and extends to the inner side of the outer edge of the glass plate (3), vertical pressing strips (5) are arranged on the two horizontal sides of the glass plate (3), and one part of each vertical pressing strip (5) is connected with the corresponding stand column (1) in a buckled mode. And the other part of the vertical pressing strip (5) is positioned on the outer side of the glass plate (3) and extends to the inner side of the outer edge of the glass plate (3). The utility model has the advantages that the requirement on site construction space is lower, and the maintenance is more convenient.
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Description

Technical Field

[0001] The utility model belongs to the field of sightseeing elevators, in particular to a sightseeing elevator with four-sided views. Background Art

[0002] The existing four-sided sightseeing elevator is mainly used in shopping malls. Its main feature is that the four side walls of the shaft and the four side walls of the car are transparent, allowing people in the car to see the scenery outside the elevator.

[0003] Existing sightseeing elevators, such as the four-door machine roomless sightseeing elevator with application number 201420315884.5, can set the four side walls of the shaft and the four side walls of the car to glass material, so as to have a four-sided view and an excellent sightseeing effect. However, there are also some defects, mainly including the following: First, the existing sightseeing elevator is a traction elevator with a counterweight assembly. In order to ensure that the counterweight assembly does not obstruct the view, the counterweight assembly is hidden on the outside of the car frame and can only be slender and long. In order to ensure the smooth lifting and lowering of the counterweight assembly, a longer shaft needs to be set, which requires a high level of on-site construction space. Second, the glass on the shaft is currently fixed with an L-shaped bracket plate. A slot for the glass is formed between the bracket plate and the frame of the shaft, and the bracket plate and the frame are connected with screws. However, due to the high brittleness of the glass material, coupled with the large flow of people and logistics in the shopping mall, the glass is easily broken. Even if all the glass is double-layer glass with glue and can remain intact after breaking, it will still affect sightseeing and still needs to be replaced. When replacing, the bracket plate needs to be disassembled and installed, and multiple screws need to be disassembled and installed, which makes maintenance more troublesome.

[0004] Therefore, existing sightseeing elevators have the disadvantages of requiring high on-site construction space and being difficult to maintain. Utility Model Content

[0005] The purpose of the utility model is to provide a sightseeing elevator with four-sided vision. The utility model has the advantages of low on-site construction space requirements and convenient maintenance.

[0006] The technical solution of the present invention is as follows: a sightseeing elevator with four-sided views, the sightseeing elevator is a forced-drive elevator, the shaft of the sightseeing elevator includes four columns, a plurality of beams arranged from top to bottom are provided between adjacent columns, glass plates are provided between adjacent beams, horizontal beadings are provided on the upper and lower sides of the glass plates, a part of the horizontal beadings is connected with the corresponding beam buckle, the other part of the horizontal beadings is located on the outside of the glass plate and extends to the inner side of the outer edge of the glass plate, vertical beadings are provided on both horizontal sides of the glass plate, a part of the vertical beadings is connected with the corresponding column buckle, the other part of the vertical beadings is located on the outside of the glass plate and extends to the inner side of the outer edge of the glass plate.

[0007] In the aforementioned sightseeing elevator with four-sided views, the column is L-shaped when viewed from above, and both ends of the column when viewed from above are provided with a first concave step, the first concave step is located at the connection between the outer side wall of the column and the side wall of the column facing the glass plate, the horizontal side of the glass plate is located at the first concave step, and the horizontal side of the first concave step is provided with a first clipping groove, the first clipping groove is located on the outer side wall of the column, a part of the vertical strip is provided with a first clipping strip that cooperates with the first clipping groove, and the other part of the vertical strip extends to the inner side of the outer edge of the glass plate and maintains an elastic connection with the glass plate.

[0008] In the aforementioned sightseeing elevator with four-sided views, the vertical bead is connected to the glass plate via a first convex strip, the first convex strip is located on the width side of the vertical bead, and the height of the first convex strip is 1-2 mm.

[0009] In the aforementioned sightseeing elevator with four-sided views, the materials of the columns and the vertical strips are both aluminum profiles.

[0010] In the aforementioned sightseeing elevator with four-sided views, second concave steps are provided on the upper and lower sides of the beam, and the second concave steps are located at the connection between the outer side wall of the beam and the beam facing the corresponding glass plate. The upper or lower side of the glass plate is located at the second concave step, and a second clip groove is provided on the vertical side of the second concave step. The second clip groove is located on the outer side wall of the beam, and a part of the transverse strip is provided with a second clip strip that cooperates with the corresponding second clip groove. The other part of the transverse strip extends to the inner side of the outer edge of the corresponding glass plate and maintains an elastic connection with the glass plate.

[0011] In the aforementioned sightseeing elevator with four-sided views, the transverse bead is connected to the glass plate via a second convex strip, the second convex strip is located on the width side of the transverse bead, and the height of the second convex strip is 1-2 mm.

[0012] In the aforementioned sightseeing elevator with four-sided views, the materials of the cross beams and the transverse pressure strips are both aluminum profiles.

[0013] In the aforementioned sightseeing elevator with four-sided views, the glass panels are double-layer laminated glass.

[0014] In the aforementioned four-sided sightseeing elevator, both ends of the column, when viewed from above, are provided with first connecting grooves located on the inner sides of the corresponding glass panels, and both side walls of the first connecting groove are provided with first ribs, with a gap of more than 8 mm left between the two first ribs, the inner sides of the first ribs forming a first inner sliding groove, and the outer sides of the first ribs forming a first outer sliding groove;

[0015] The top and bottom surfaces of the crossbeam are both provided with a second connecting groove, the second connecting groove being located on the inner side of the corresponding glass plate, and the two side walls of the second connecting groove are both provided with a second rib, with a gap of more than 8 mm left between the two second ribs, the inner side of the second rib forming a second inner sliding groove, and the outer side of the second rib forming a second outer sliding groove;

[0016] Two L-shaped connectors are provided at the connection between the column and the beam. The two connectors are respectively located on the upper and lower sides of the beam. One of the side plates of the connector is located in the corresponding first outer groove and is screwed to the first plywood. The first plywood is located in the corresponding first inner groove. The other side plate of the connector is located in the corresponding second outer groove and is screwed to the second plywood. The second plywood is located in the corresponding second inner groove.

[0017] Compared with the prior art, the present invention has the following major improvements on the basis of the existing four-sided sightseeing elevator:

[0018] First, the elevator is a forced-drive elevator, in which the main engine directly drives the car up and down, and there is no need to set up a counterweight component. Therefore, there is no need to set up a longer shaft to meet the lifting requirements of the counterweight component, which reduces the on-site construction space requirements.

[0019] Second, the elevator shaft has been improved. The outer edge of the glass plate is fixed to the shaft column through a pressure strip. The pressure strip is connected to the column with a snap. When making the column, there is no need to drill holes, only need to cut it according to the required length, which is more convenient to process. When disassembling and assembling the glass plate, there is no need to remove and install multiple screws. You only need to lift one end of the pressure strip and then pull it out as a whole, which is more convenient to maintain.

[0020] In summary, the utility model has the advantages of low requirements for on-site construction space and convenient maintenance. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a top view schematic diagram of the well of the present utility model.

[0022] Figure 2 This is a schematic diagram of the column looking down.

[0023] Figure 3 It is a cross-sectional diagram of the beam.

[0024] Figure 4 This is a schematic diagram of the connection between the column and the beam.

[0025] The marks in the accompanying drawings are: 1-column, 2-crossbeam, 3-glass plate, 4-horizontal pressure strip, 5-vertical pressure strip, 6-first concave step, 7-first snap-in groove, 8-first snap-in strip, 9-first convex strip, 10-second concave step, 11-second snap-in groove, 12-second snap-in strip, 13-second convex strip, 14-first rib, 15-first inner slide groove, 16-first outer slide groove, 17-second rib, 18-second inner slide groove, 19-second outer slide groove, 20-connecting piece, 21-first splint, 22-second splint, 23-track. DETAILED DESCRIPTION

[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments, but they are not intended to limit the present invention.

[0027] Embodiment. A four-sided sightseeing elevator, the sightseeing elevator is a forced drive elevator, such as Figure 1 As shown, the shaft of the sightseeing elevator includes four columns 1, and a plurality of beams 2 arranged from top to bottom are provided between adjacent columns 1. Glass plates 3 are provided between adjacent beams 2. Horizontal beadings 4 are provided on the upper and lower sides of the glass plates 3. The length of the horizontal beadings 4 matches the width of the glass plates 3. A portion of the horizontal beadings 4 is snap-connected with the corresponding beams 2, and the other portion of the horizontal beadings 4 is located on the outside of the glass plates 3 and extends to the inner side of the outer edge of the glass plates 3. Vertical beadings 5 are provided on both horizontal sides of the glass plates 3, and a portion of the vertical beadings 5 is snap-connected with the corresponding columns 1. The other portion of the vertical beadings 5 is located on the outside of the glass plates 3 and extends to the inner side of the outer edge of the glass plates 3. The length of the vertical beadings 5 matches the height of the glass plates 3.

[0028] The column 1 is L-shaped when viewed from above. Both ends of the column 1, viewed from above, are provided with a first recessed step 6. The first recessed step 6 is located at the junction of the outer wall of the column 1 and the side wall of the column 1 facing the glass plate 3. The horizontal side of the first recessed step 6 corresponds to the horizontal side of the glass plate 3. A first engaging groove 7 is provided on the horizontal side of the first recessed step 6. The first engaging groove 7 is located on the outer wall of the column 1. A portion of the vertical bead 5 is provided with a first engaging strip 8 that mates with the first engaging groove 7. Another portion of the vertical bead 5 extends to the inner side of the outer edge of the glass plate 3 and maintains an elastic connection with the glass plate 3. The vertical bead 5 is connected to the glass plate 3 via a first convex strip 9 located on the widthwise side of the vertical bead 5. The first convex strip 9 has a height of 1.5 mm and a width of 8 mm. During installation, the first convex strip 9 first contacts the glass plate 3, and the first engaging strip 8 then fully enters the first engaging groove 7, causing the vertical bead 5 to slightly deform, thereby maintaining an elastic connection with the glass plate 3 and pressing the vertical bead 5 against the glass plate 3. The purpose of providing the first convex strip 9 is to prevent the vertical bead 5 from pressing against the edge of the glass plate 3, which would cause the edge of the glass plate 3 to crack easily due to stress.

[0029] The material of the column 1 and the material of the vertical bead 5 are all aluminum profiles. Wherein two side plates of the columns 1 have been widened, and this is for the convenience of installing the track 23 used for connecting the guide shoe on the car on these two columns 1.

[0030] The crossbeam 2 is provided with a second recessed step 10 on both its upper and lower sides. This step is located at the junction of the outer wall of the crossbeam 2 and the corresponding glass pane 3. The upper or lower side of the glass pane 3 is located at the second recessed step 10. A second snap-fit groove 11 is provided vertically on the outer wall of the crossbeam 2. A portion of the transverse bead 4 is provided with a second snap-fit strip 12 that mates with the corresponding second snap-fit groove 11. Another portion of the transverse bead 4 extends to the inner side of the outer edge of the corresponding glass pane 3 and maintains an elastic connection with the glass pane 3. The transverse bead 4 is connected to the glass pane 3 via a second convex strip 13 located on the widthwise side of the bead 4. The second convex strip 13 has a height of 1.5 mm and a width of 8 mm. During installation, the second convex strip 13 first contacts the glass pane 3, and then the second snap-fit strip 12 fully enters the second snap-fit groove 11, causing the transverse bead 4 to slightly deform, thereby maintaining an elastic connection with the glass pane 3 and pressing the transverse bead 4 against the glass pane 3. The purpose of providing the second convex strip 13 is to prevent the transverse bead 4 from pressing against the edge of the glass plate 3, which would cause the edge of the glass plate 3 to crack easily due to stress.

[0031] The cross beam 2 and the transverse bead 4 are both made of aluminum profiles. The cross-sectional shapes of the transverse bead 4 and the vertical bead 5 are the same, which can save a pair of extrusion dies.

[0032] The glass plate 3 is double-layer laminated glass.

[0033] When viewed from above, both ends of the upright column 1 are equipped with a first connecting groove located inside the corresponding glass plate 3. A first rib 14 is provided on each sidewall of the first connecting groove, with a 12mm gap between the two first ribs 14. The inner side of the first rib 14 forms a first inner groove 15, and the outer side of the first rib 14 forms a first outer groove 16. The top and bottom surfaces of the crossbeam 2 are equipped with a second connecting groove located inside the corresponding glass plate 3. A second rib 17 is provided on each sidewall of the second connecting groove, with a 12mm gap between the two second ribs 17. The inner side of the second rib 17 forms a second inner groove 18, and the outer side of the second rib 17 forms a second outer groove 19. Both the first rib 14 and the second rib 17 are load-bearing components and are at least 4mm thick.

[0034] Two L-shaped connectors 20 are located at the junction of the column 1 and the crossbeam 2, one located on the upper and lower sides of the crossbeam 2. These die-cast connectors 20 have one side panel positioned within the corresponding first outer slot 16 and screwed to a first steel clamping plate 21 with 8mm diameter screws. The first clamping plate 21 is positioned within the corresponding first inner slot 15. The other side panel of the connector 20 is positioned within the corresponding second outer slot 19 and screwed to a second steel clamping plate 22 with 8mm diameter screws. The second clamping plate 22 is positioned within the corresponding second inner slot 18. When the screws on the first clamping plate 21 are loosened, the crossbeam 2 can be moved vertically to accommodate glass panels 3 of varying heights. The connectors 20 are concealed within the first and second outer slots 16, 19, out of sight, enhancing the visual effect. Triangular reinforcing ribs can be provided inside the bent corners of the connectors 20. The column 1 and the beam 2 are connected by the connecting piece 20. No holes are required on the column 1 and the beam 2, ensuring that the structural strength of the column 1 and the beam 2 is not damaged. At the same time, the height of the beam 2 is easy to adjust, which is also more convenient for on-site assembly.

[0035] The utility model is suitable for a sightseeing elevator with a shaft height not exceeding 15 meters.

Claims

1. A sightseeing elevator with four-sided views, characterized by: The sightseeing elevator is a forced-drive elevator. The shaft of the sightseeing elevator comprises four columns (1). A plurality of crossbeams (2) arranged from top to bottom are provided between adjacent columns (1). Glass plates (3) are provided between adjacent crossbeams (2). The upper and lower sides of the glass plates (3) are both provided with transverse beadings (4). A portion of the transverse beadings (4) is snap-connected with the corresponding crossbeams (2). Another portion of the transverse beadings (4) is located on the outside of the glass plates (3) and extends to the inside of the outer edge of the glass plates (3). Vertical beadings (5) are provided on both horizontal sides of the glass plates (3). A portion of the vertical beadings (5) is snap-connected with the corresponding columns (1). Another portion of the vertical beadings (5) is located on the outside of the glass plates (3) and extends to the inside of the outer edge of the glass plates (3).

2. The four-view sightseeing elevator according to claim 1, characterized in that: The column (1) is L-shaped when viewed from above. Both ends of the column (1) when viewed from above are provided with first concave steps (6). The first concave steps (6) are located at the connection between the outer wall of the column (1) and the side wall of the column (1) facing the glass plate (3). The horizontal side of the glass plate (3) is located at the first concave step (6). The horizontal side of the first concave step (6) is provided with a first snap-fitting groove (7). The first snap-fitting groove (7) is located on the outer wall of the column (1). A part of the vertical bead (5) is provided with a first snap-fitting strip (8) that matches the first snap-fitting groove (7). The other part of the vertical bead (5) extends to the inner side of the outer edge of the glass plate (3) and maintains elastic connection with the glass plate (3).

3. The four-view sightseeing elevator according to claim 2, characterized in that: The vertical bead (5) is connected to the glass plate (3) via a first convex strip (9), the first convex strip (9) is located on the width side of the vertical bead (5), and the height of the first convex strip (9) is 1-2 mm.

4. The four-view sightseeing elevator according to claim 3, characterized in that: The materials of the upright column (1) and the vertical pressure strip (5) are both aluminum profiles.

5. The four-view sightseeing elevator according to claim 1, characterized in that: The upper and lower sides of the crossbeam (2) are both provided with a second concave step (10), the second concave step (10) is located at the connection between the outer side wall of the crossbeam (2) and the crossbeam (2) facing the corresponding glass plate (3), the upper side or the lower side of the glass plate (3) is located at the second concave step (10), the vertical side of the second concave step (10) is provided with a second snap-fitting groove (11), the second snap-fitting groove (11) is located on the outer side wall of the crossbeam (2), a part of the transverse bead (4) is provided with a second snap-fitting strip (12) that matches the corresponding second snap-fitting groove (11), and the other part of the transverse bead (4) extends to the inner side of the outer edge of the corresponding glass plate (3) and maintains elastic connection with the glass plate (3).

6. The four-view sightseeing elevator according to claim 4, characterized in that: The transverse bead (4) is connected to the glass plate (3) via a second convex band (13), the second convex band (13) is located on the width side of the transverse bead (4), and the height of the second convex band (13) is 1-2 mm.

7. The four-view sightseeing elevator according to claim 1, characterized in that: The material of the crossbeam (2) and the material of the transverse pressure strip (4) are both aluminum profiles.

8. The four-view sightseeing elevator according to claim 1, characterized in that: The glass plate (3) is double-layer laminated glass.

9. The four-view sightseeing elevator according to claim 1, characterized in that: The pillar (1) is provided with a first connecting groove located on the inner side of the corresponding glass plate (3) at both ends when viewed from above, and a first rib (14) is provided on both side walls of the first connecting groove, with a gap of more than 8 mm left between the two first ribs (14), a first inner sliding groove (15) is formed on the inner side of the first rib (14), and a first outer sliding groove (16) is formed on the outer side of the first rib (14); The top and bottom surfaces of the crossbeam (2) are both provided with a second connecting groove, the second connecting groove being located on the inner side of the corresponding glass plate (3), the two side walls of the second connecting groove are both provided with a second rib (17), a gap of more than 8 mm is left between the two second ribs (17), the inner side of the second rib (17) forms a second inner sliding groove (18), and the outer side of the second rib (17) forms a second outer sliding groove (19); Two L-shaped connecting members (20) are provided at the connection between the column (1) and the crossbeam (2). The two connecting members (20) are respectively located on the upper and lower sides of the crossbeam (2). One of the side plates of the connecting member (20) is located in the corresponding first outer slot (16) and is screwed to a first clamping plate (21). The first clamping plate (21) is located in the corresponding first inner slot (15). The other side plate of the connecting member (20) is located in the corresponding second outer slot (19) and is screwed to a second clamping plate (22). The second clamping plate (22) is located in the corresponding second inner slot (18).

Citation Information

Patent Citations

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