Outdoor home around split elevator

By using vertically spliced ​​steel structure units and connecting and fixing mechanisms, the problem of low on-site assembly efficiency of existing elevator shafts has been solved, enabling rapid and stable elevator shaft assembly, reducing costs and extending the construction period.

CN224591736UActive Publication Date: 2026-08-04CHONGQING MACRO ELEVATOR
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHONGQING MACRO ELEVATOR
Filing Date
2025-09-10
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

The existing elevator shaft assembly and welding construction is inefficient and costly, extends the construction period, and adds extra costs for scaffolding erection and dismantling.

Method used

Multiple steel structure units are vertically spliced ​​together. The side panels are assembled into a steel structure unit through connectors and fixing mechanisms. The connecting components and fixing components are used for positioning and fixing, so as to achieve rapid assembly and stable connection of multiple side panels.

Benefits of technology

It shortened the construction period, reduced installation costs, and improved the stability and ease of connection of the steel structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to an outdoor residential surround-type modular elevator, specifically within the technical field of modular elevators. The elevator comprises a steel structure body, an elevator body, and individual steel structure units. Each individual steel structure unit includes four side panels, with adjacent side panels connected by a connecting mechanism. This connecting mechanism includes connector one and connector two, which abut against each other and are fixedly connected by a connecting assembly. This application utilizes multiple side panels for transportation. Connector one and connector two abut against each other, allowing for positioning in two mutually perpendicular directions, thus aligning them. Connector one and connector two are then fixedly connected by the connecting assembly, thereby achieving a fixed connection of the four side panels and assembling the individual steel structure units. Finally, the individual steel structure units are installed, with adjacent units connected by a fixing assembly, significantly shortening the construction period and reducing costs.
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Description

Technical Field

[0001] This application relates to the technical field of modular elevators, and more particularly to outdoor residential surround modular elevators. Background Technology

[0002] An elevator is a permanent transportation device that serves several specific floors within a building, with its car moving along a rigid track. The elevator shaft is fixed to the ground using a steel structure.

[0003] The steel structures in the existing elevator shafts are all installed using on-site assembly and welding methods. This installation method requires the erection of scaffolding on-site to facilitate welding of the steel structure shaft by installation workers. At the same time, this installation method has low construction efficiency and high installation cost. The erection and dismantling of scaffolding not only prolongs the construction period but also increases costs. Utility Model Content

[0004] In order to shorten the construction period and reduce costs, this application provides an outdoor residential surround modular elevator.

[0005] The outdoor residential surround-type modular elevator provided in this application adopts the following technical solution: An outdoor residential surround-type modular elevator includes a steel structure body and an elevator body mounted on the steel structure body. The steel structure body is composed of multiple vertically spliced ​​steel structure units. Adjacent steel structure units are connected by a fixing mechanism. Each steel structure unit includes four side panels that cooperate to form a U-shape. Adjacent side panels are connected by a connecting mechanism, which includes: Connector 1 and connector 2 are spaced apart on the same side plate. When connecting the two side plates, connector 1 and connector 2 abut against each other and are positioned by two mutually perpendicular directions and fixedly connected by the connecting assembly.

[0006] By adopting the above technical solution, multiple side panels are placed together and transported to the installation site. They are then assembled on-site. Connector 1 and connector 2 on two adjacent side panels are positioned by abutting each other and by positioning them in two mutually perpendicular directions, so that connector 1 and connector 2 are aligned. Then, connector 1 and connector 2 are fixedly connected by connecting components, thereby fixing multiple side panels together to obtain a steel structure unit. The steel structure unit is then hoisted and fixed, and then the next steel structure unit is hoisted, so that adjacent steel structure units are connected to each other by fixing components.

[0007] By transporting multiple side panels together, and positioning them from two perpendicular directions by abutting each other with connector one and connector two, connector one and connector two can be aligned. Then, connector one and connector two are fixedly connected by connecting components to achieve the fixed connection of the four side panels, thereby assembling a steel structure unit. Finally, by installing the steel structure unit and connecting adjacent steel structure units with fixing components, the construction period is greatly shortened and the cost is reduced.

[0008] Optionally, both connector one and connector two are provided with at least one mutually abutting connecting surface one and at least one mutually abutting connecting surface two, wherein connecting surface one and connecting surface two are perpendicular to each other.

[0009] By adopting the above technical solution, the positions of connector one and connector two can be aligned through the contact of connecting surface one and connecting surface two. At the same time, the multiple points of contact positioning can make the stability after installation higher and the connection more convenient.

[0010] Optionally, the first connector and the second connector shall at least abut against the adjacent two side walls of the side plate.

[0011] By adopting the above technical solution, the side plate is in contact with at least the adjacent two side walls, thereby increasing the contact area between the side plate and connector one and connector two, improving the stability between connector one and connector two and the side plate, and improving the stability of the steel structure.

[0012] Optionally, the connection component includes: The connecting screw passes through connector one and connector two. The connecting nut is threaded onto the connecting screw and presses against connecting part one and connecting part two for positioning.

[0013] By adopting the above technical solution, the connecting screw is passed through connector one and connector two, and then the connecting nut is threaded onto the connecting screw. Tightening the connecting screw causes the connecting screw and the connecting nut to press against connector one and connector two for positioning, thereby achieving a fixed connection between connector one and connector two.

[0014] Optionally, both connector one and connector two are formed by bending metal sheets, and after connector one and connector two are spliced ​​together, they form an installation chamber with a cross-section of a regular quadrilateral.

[0015] By adopting the above technical solution, connector one and connector two are integrally bent to form a single unit, which improves their strength and stability after connection. The installation chamber allows the outer walls of connector one and connector two to fit better with the foundation pit during steel structure installation, further improving the stability of the steel structure after connection.

[0016] Optionally, the fixing mechanism includes: The fixing plate is formed by bending a metal sheet and is snapped onto the installation chamber for positioning; A fixing component is used to securely connect connector one and / or connector two to the fixing plate.

[0017] By adopting the above technical solution, the fixing plate is inserted and installed into the installation chamber for positioning. Then, the fixing plate, connector one, and connector two are fixedly connected by the fixing components, so that the fixing plate is fixedly connected to one of the steel structure units. This process is repeated to fix the fixing plate to two steel structure units, thereby realizing the installation of the steel structure, shortening the construction period and reducing costs.

[0018] Optionally, the fixing plate is provided with multiple inclined guide plates that are easy to insert and install into the mounting chamber.

[0019] By adopting the above technical solutions, the convenience of steel structure installation has been further improved, the construction period has been shortened, and the cost has been reduced.

[0020] Optionally, the fixing component includes: The fixing screw passes through the fixing plate and the connecting piece 1; The fixing nut is threaded onto the fixing screw and presses against the fixing plate and connector for positioning.

[0021] By adopting the above technical solution, the fixing screw passes through the fixing plate and the first connector, and then the fixing nut is threaded onto the fixing screw. Tightening the fixing screw causes the fixing screw and the fixing nut to press against the fixing plate and the first connector for positioning, thereby achieving a fixed connection of multiple steel structure units.

[0022] Optionally, the fixing plate is positioned by contact with at least three side walls of the mounting chamber, and the fixing nut is disposed on the fixing plate.

[0023] By adopting the above technical solution, the fixing piece can be automatically positioned during insertion, thereby improving the convenience of connection, shortening the construction period and reducing costs.

[0024] Optionally, the first connector and the second connector are provided with a support assembly, the support assembly comprising: Support plate one and support plate two are respectively set on connector one and connector two and have support surfaces that are closely attached to each other for positioning and are in an inclined state.

[0025] By adopting the above technical solution, the two supporting surfaces on the first and second supporting plates abut against each other for support and positioning, thereby enabling the first and second supporting plates to form a whole to support and position the first and second connecting pieces, thus improving the stability of the steel structure.

[0026] In summary, this application includes at least one of the following beneficial technical effects: 1. By transporting multiple side panels together, and positioning them from two perpendicular directions by abutting each other with connector one and connector two, connector one and connector two can be aligned. Then, connector one and connector two are fixedly connected by connecting components to achieve the fixed connection of the four side panels, thereby assembling a steel structure unit. Finally, by installing the steel structure unit and connecting adjacent steel structure units with fixing components, the construction period is greatly shortened and the cost is reduced.

[0027] 2. The side plate is in contact with at least two adjacent side walls, thereby increasing the contact area between the side plate and connector one and connector two, improving the stability between connector one and connector two and the side plate, and improving the stability of the steel structure. Attached Figure Description

[0028] Figure 1 It is a three-dimensional structural diagram of a single steel structure; Figure 2 yes Figure 1 Enlarged diagram of section A in the middle; Figure 3 This is a partial top view of a single steel structure.

[0029] Reference numerals: 1. Steel structure unit; 11. Side plate; 2. Connecting mechanism; 21. Connector 1; 22. Connector 2; 23. Connecting surface 1; 24. Connecting surface 2; 25. Bending part 1; 26. Bending part 2; 27. Installation chamber; 3. Connecting assembly; 31. Connecting screw; 32. Connecting nut; 4. Fixing mechanism; 41. Fixing plate; 42. Guide plate; 5. Fixing assembly; 51. Fixing screw; 52. Fixing nut; 53. Reinforcing plate; 6. Support assembly; 61. Support plate 1; 62. Support plate 2; 63. Support surface. Detailed Implementation

[0030] The following provides a further detailed description of this application.

[0031] This application discloses an outdoor residential surround-type modular elevator.

[0032] Reference Figures 1-2The outdoor residential surround-type modular elevator includes a steel structure body and an elevator body mounted on the steel structure body. The steel structure body is composed of multiple vertically spliced ​​steel structure units 1, with adjacent steel structure units 1 connected by a fixing mechanism 4. Each steel structure unit 1 includes four side panels 11 that fit together to form a U-shape, with adjacent side panels 11 connected by a connecting mechanism 2. The side panels 11 are typically made of high-strength steel frame structures to ensure their structural strength and stability. The side panels 11 can also undergo anti-corrosion treatment on their surface, such as galvanizing or spraying anti-corrosion paint, to improve their service life in outdoor environments.

[0033] Reference Figures 1-3 The connecting mechanism 2 includes a first connector 21 and a second connector 22. The first connector 21 and the second connector 22 are spaced apart along the length of the side piece 11, and the side piece 11 is fixedly installed on the opposite side walls of the first connector 21 and the second connector 22. Alternatively, two first connectors 21 are spaced apart, and the side pieces 11 are fixedly installed on the opposite side walls of the two first connectors 21. Simultaneously, two second connectors 22 are spaced apart, and the side piece 11 adjacent to the first connector 21 is fixedly installed on the opposite side walls of the two second connectors 22. When connecting the two side pieces 11, the first connector 21 and the second connector 22 abut against each other and are positioned in two mutually perpendicular directions, and are fixedly connected by the connecting assembly 3.

[0034] Both connector 1 21 and connector 22 are provided with at least one mutually abutting connecting surface 1 23 and at least one mutually abutting connecting surface 24, and connecting surface 1 23 and connecting surface 24 are perpendicular to each other; connector 1 21 is formed by bending to form two bent portions 1 25, and the two bent portions 1 25 are perpendicular to each other; connector 22 is formed by bending to form two bent portions 26, and the two bent portions 26 are perpendicular to each other.

[0035] When the side piece 11 is connected to the first connector 21, the adjacent two side walls on the frame of the side piece 11 contact the side walls of the first connector 21 and the first bend 25 respectively, and then are welded and fixedly connected. Similarly, when the side piece 11 is connected to the second connector 22, the adjacent two side walls on the frame of the side piece 11 contact the side walls of the second connector 22 and the second bend 26 respectively, and then are welded and fixedly connected. This makes the first connector 21 and the second connector 22 at least abut against the adjacent two side walls of the side piece 11, increasing the contact area and improving the stability of the side piece 11 after it is connected to the first connector 21 and the second connector 22.

[0036] One of the bends 25 and the other bend 26 abut against each other to form the contact of two connecting surfaces 23, and the other bend 25 and the other bend 26 abut against each other to form the contact of two connecting surfaces 24. This achieves the positioning of connector 21 and connector 22 from two mutually perpendicular directions, so that connector 21 and connector 22 are aligned, so as to facilitate the subsequent connection of connecting component 3.

[0037] The length directions of connector 1 21, connector 2 22 and side plate 11 are parallel to each other, i.e. the height direction of the steel structure. Multiple corresponding through holes are vertically spaced on both bending part 1 25 and bending part 2 26. The through holes are offset from the side plate 11. The connecting component 3 is located at the through holes and is spaced out with multiple holes, which are designed as needed.

[0038] The connecting assembly 3 includes a connecting screw 31 and a connecting nut 32. The connecting screw 31 passes through the through holes located on the first bend 25 and the second bend 26 in sequence. The connecting nut 32 is threaded onto the connecting screw 31. Tightening the connecting screw 31 or the connecting nut 32 causes the connecting screw 31 and the connecting nut 32 to cooperate and press against the first bend 25 and the second bend 26 for positioning, thereby achieving a fixed connection between two adjacent side pieces 11. This process is repeated to fix all four side pieces 11 together. At the same time, the four side pieces 11 can be installed at intervals as needed, and not all four side pieces 11 are installed at the same time. Only a few of the four side pieces 11 are installed as needed.

[0039] Both connector 1 21 and connector 22 are formed by bending metal sheets, and the material can be steel. After connector 1 21 and connector 22 are spliced ​​together, they form an installation chamber 27 with a cross-section of a regular quadrilateral. The fixing mechanism 4 includes a fixing plate 41 and a fixing component 5. The fixing plate 41 is formed by bending metal sheets, and the material can be steel. The fixing plate 41 is snapped onto the installation chamber 27, and the fixing plate 41 is positioned by contacting at least three side walls of the installation chamber 27. At the same time, the fixing plate 41 can also be positioned by contacting all four side walls of the installation chamber 27. A reinforcing plate 53 for providing strength is fixedly installed inside the fixing plate 41. Multiple reinforcing plates 53 can be set as needed.

[0040] The fixing component 5 includes a fixing screw 51 and a fixing nut 52. The fixing component 5 can be set on the first connector 21 or the second connector 22, or both the first connector 21 and the second connector 22 can be equipped with the fixing component 5. The following explanation will take the fixing component 5 located on the first connector 21 as an example.

[0041] The fixing screw 51 passes through the fixing plate 41 and the connector 21 in sequence. The fixing nut 52 is threaded onto the fixing screw 51. Tightening the fixing screw 51 or the fixing nut 52 causes the fixing screw 51 and the fixing nut 52 to cooperate and press against the fixing plate 41 and the connector 21 for positioning. This achieves a fixed connection between one end of the fixing plate 41 and one steel structure unit 1. Then, the process is repeated so that the other end of the fixing plate 41 is fixedly connected to the next steel structure unit 1, thereby achieving a fixed connection between multiple steel structure units 1.

[0042] Alternatively, the fixing nut 52 is fixedly installed on the inner side wall of the fixing plate 41, and the fixing screw 51 passes through the connector 21 and the fixing plate 41 in sequence and is threadedly connected to the fixing nut 52. Tightening the fixing screw 51 can achieve a fixed connection between the fixing plate 41 and the connector 21.

[0043] Multiple guide plates 42 are provided at the top or both ends of the fixing plate 41. The end of the guide plate 42 away from the fixing plate 41 is inclined towards the installation chamber 27 to guide and position the fixing plate 41 when it is inserted into the installation chamber 27, thereby facilitating the insertion and installation of the fixing plate 41 into the installation chamber 27.

[0044] Support components 6 are provided on connector 1 21 and connector 2 22. Multiple support components 6 are spaced apart along the length of connector 1 21 and connector 2 22. Support components 6 include support plate 1 61 and support plate 2 62. Support plate 1 61 and support plate 2 62 are respectively fixedly installed on the inner sidewall of connector 1 21 and connector 2 22. Support plate 1 61 and support plate 2 62 are both provided with mutually close and inclined support surfaces 63. By the two support surfaces 63 being closely close to each other, support plate 1 61 and support plate 2 62 form a whole, thereby improving the support effect of connector 1 21 and connector 2 22 and improving the stability of the steel structure after construction.

[0045] The working principle of this application embodiment is as follows: Multiple side pieces 11 are placed together and transported to the installation site. Two bent parts 1 25 and two bent parts 26 are positioned by abutting each other. The bent parts 1 25 and bent parts 26 are fixedly connected by multiple connecting components 3, thereby fixing two adjacent side pieces 11 together. Then, multiple side pieces 11 are fixedly connected together to obtain multiple steel structure units 1.

[0046] After one end of the fixing plate 41 is inserted into the installation chamber 27, it is fixed by the fixing component 5. The steel structure unit 1 is fixedly installed in the foundation pit. The next steel structure unit 1 is hoisted, so that the top end of the fixing plate 41 is inserted into the installation chamber 27 located in the next steel structure unit 1. Then, the fixing plate 41 and the next steel structure unit 1 are fixedly connected by the fixing component 5, thereby realizing the fixed installation of multiple steel structure units 1 to obtain the steel structure body. Finally, the elevator body is fixedly installed on the steel structure body, thus shortening the construction period and reducing the cost.

[0047] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An outdoor residential surround-type modular elevator, characterized in that: The system includes a steel structure body and an elevator body mounted on the steel structure body. The steel structure body is composed of multiple vertically spliced ​​steel structure units (1). Adjacent steel structure units (1) are connected by a fixing mechanism (4). Each steel structure unit (1) includes four side pieces (11) that cooperate to form a U-shape. Adjacent side pieces (11) are connected by a connecting mechanism (2). The connecting mechanism (2) includes: Connector 1 (21) and connector 2 (22) are spaced apart on the same side piece (11). When connecting the two side pieces (11), connector 1 (21) and connector 2 abut against each other and are positioned by two mutually perpendicular directions and fixedly connected by the connecting component (3).

2. The outdoor residential surround-type modular elevator according to claim 1, characterized in that: The first connector (21) and the second connector (22) abut against at least the adjacent two side walls of the side piece (11).

3. The outdoor residential surround-type modular elevator according to claim 1, characterized in that: The connection component (3) includes: Connecting screw (31) passes through connector one (21) and connector two (22); The connecting nut (32) is threaded onto the connecting screw (31) and presses against the first connector (21) and the second connector (22) for positioning.

4. The outdoor residential surround-type modular elevator according to claim 1, characterized in that: Both connector one (21) and connector two (22) are formed by bending metal plates. After being spliced ​​together, connector one (21) and connector two (22) form an installation chamber (27) with a cross-section of a regular quadrilateral.

5. The outdoor residential surround-type modular elevator according to claim 4, characterized in that: The fixing mechanism (4) includes: The fixing piece (41) is formed by bending a metal sheet and is snapped onto the mounting chamber (27) for positioning; The fixing component (5) securely connects the first connector (21) and / or the second connector (22) to the fixing piece (41).

6. The outdoor residential surround-type modular elevator according to claim 5, characterized in that: The fixing plate (41) is provided with a plurality of inclined guide plates (42) that are easy to insert and install into the mounting chamber (27).

7. The outdoor residential surround-type modular elevator according to claim 5, characterized in that: The fixing component (5) includes: The fixing screw (51) passes through the fixing plate (41) and the connector (21); The fixing nut (52) is threaded onto the fixing screw (51) and presses against the fixing plate (41) and the connecting piece (21) for positioning.

8. The outdoor residential surround-type modular elevator according to claim 7, characterized in that: The fixing plate (41) is positioned by contact with at least three side walls of the mounting chamber (27), and the fixing nut (52) is disposed on the fixing plate (41).

9. The outdoor residential surround-type modular elevator according to claim 4, characterized in that: The first connector (21) and the second connector (22) are provided with a support assembly (6), the support assembly (6) comprising: Support plate one (61) and support plate two (62) are respectively set on connector one (21) and connector two (22) and have support surfaces (63) that are closely attached to each other for positioning and are in an inclined state.