An installation structure of an elevator guide rail for an elevator engineering

CN224768232UActive Publication Date: 2026-09-18HUBEI CHANGCHI ELEVATOR INSTALLATION CO LTD
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Patent Information

Application Number
CN202522295340.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-30
Publication Date
2026-09-18
Estimated Expiration
2035-10-30

AI Technical Summary

Technical Problem

[0005]本实用新型提供一种电梯工程用电梯导轨的安装结构,解决了现有导轨安装人工依赖度高,调节与定位操作不便的问题

Benefits of technology

本实用新型提供一种电梯工程用电梯导轨的安装结构,电梯导轨在安装使用中,为了提高导轨的准确安装,通过设置的对位组件与工件微调组件的配合使用,可根据导轨实际结构位置自动适配微调,减少因人工操作误差导致的拼接偏差,通过组件间的配合,能精准作用于导轨拼接的关键位置,避免传统微调中过度调节或调节不到位的问题,确保导轨拼接后的平整度与直线度。同时,当工件微调组件进行结构调节时,通过设置的均匀定位组件与同步传动组件的协同工作,可随工件微调组件的动作自适应反向锁定导轨位置,避免调节过程中导轨发生偏移或晃动,确保微调后的导轨位置不回弹,提升安装后的结构稳定性,并提供均匀对称的夹紧力,避免单侧受力导致导轨变形。

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Abstract

The utility model provides a kind of installation structure of elevator guide rail for elevator engineering, comprising: guide rail assembly, the guide rail assembly top is equipped with alignment assembly, the alignment assembly both ends are equipped with workpiece fine adjustment assembly, the alignment assembly side end is equipped with uniform positioning assembly, the uniform positioning assembly side end is equipped with synchronous transmission assembly.The utility model provides a kind of installation structure of elevator guide rail for elevator engineering, the cooperation of the alignment assembly and workpiece fine adjustment assembly being set can be automatically adapted fine adjustment according to guide rail actual structure position, reduces the splicing deviation caused by artificial operation error.Simultaneously, when workpiece fine adjustment assembly carries out structure adjustment, the collaborative work of the uniform positioning assembly and synchronous transmission assembly being set can be reverse locking guide rail position with the action of workpiece fine adjustment assembly, avoid that guide rail occurs to deviate or shake in the adjustment process, ensure that the guide rail position after fine adjustment does not rebound.
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Description

Technical Field

[0001] This utility model relates to the field of elevator guide rail technology, and in particular to an installation structure for elevator guide rails used in elevator engineering. Background Technology

[0002] With the acceleration of urbanization, elevators, as the core equipment for vertical transportation in high-rise buildings, have their operational safety, stability, and service life directly affected by their installation accuracy. Elevator guide rails, as the guiding and supporting structure for the car and counterweight, must meet stringent installation standards.

[0003] The existing device lacks an adaptive alignment structure. When splicing the guide rails, it is necessary to manually and repeatedly calibrate the verticality with a level and measure the joint gap with a feeler gauge. This can easily lead to excessive height difference due to human error. Furthermore, the subsequent adjustment is cumbersome and requires multiple operations. At the same time, the clamping force at both ends of the guide rail is not uniform during adjustment, which can easily lead to deviations in the installation of the guide rail.

[0004] Therefore, it is necessary to provide an installation structure for elevator guide rails in elevator engineering to solve the above-mentioned technical problems. Summary of the Invention

[0005] This utility model provides an installation structure for elevator guide rails used in elevator engineering, which solves the problems of high reliance on manual installation and inconvenient adjustment and positioning operations in existing guide rail installations.

[0006] To solve the above-mentioned technical problems, the present invention provides an installation structure for an elevator guide rail used in elevator engineering, comprising: a guide rail assembly, an alignment component mounted on the top of the guide rail assembly, the alignment component being used for splicing and installing the guide rail assembly, workpiece fine-tuning components mounted at both ends of the alignment component, a uniform positioning component mounted on the side end of the alignment component, the uniform positioning component being used for synchronous positioning of the guide rail assembly, and a synchronous transmission component mounted on the side end of the uniform positioning component, the synchronous transmission component being used for synchronous transmission of the uniform positioning component.

[0007] Preferably, the guide rail assembly includes a guide rail workpiece, a support structure is installed at the bottom of the guide rail workpiece, the support structure is used for structural support of the guide rail workpiece, and a fastening structure is installed on the inner wall of the support structure.

[0008] Preferably, the alignment component includes an alignment frame, the inner wall of which is provided with an installation structure for structural installation of the guide rail assembly, limit baffles are installed at both ends of the alignment frame, and a locking structure is installed on the side end of the alignment frame for structural locking of the alignment frame.

[0009] Preferably, the workpiece fine-tuning assembly includes a mounting plate and an adjusting baffle. The inner wall of the mounting plate is threaded with an adjusting structure, which is used to adjust the position movement of the adjusting baffle. The adjusting baffle is installed on the inner wall of the side end of the adjusting structure.

[0010] Preferably, the uniform positioning component includes a sliding plate and a guide frame. The sliding plate is slidably installed on the inner wall of the workpiece fine-tuning component. A sliding block is slidably mounted on the inner wall of the guide frame. A positioning structure is installed on the side end of the sliding block. The positioning structure is used for the structural positioning of the guide rail component. A connecting structure is rotatably connected to the inner walls of the sliding plate and the sliding block. A clamping structure is installed on the side end of the sliding plate. The clamping structure is used for the structural clamping of the sliding plate.

[0011] Preferably, the synchronous transmission assembly includes a fixed plate, a threaded block slidingly disposed on the inner wall of the fixed plate, and a nut structure installed on the inner wall of the threaded block, the nut structure being used for structural fastening of the threaded block.

[0012] Compared with related technologies, the elevator guide rail installation structure for elevator engineering provided by this utility model has the following beneficial effects: This utility model provides an installation structure for elevator guide rails used in elevator engineering. During installation and use, to improve the accuracy of the guide rail installation, a combination of an alignment component and a workpiece fine-tuning component allows for automatic adjustment based on the actual structural position of the guide rail. This reduces splicing deviations caused by human error. The cooperation between the components precisely targets key positions in the guide rail splicing, avoiding over-adjustment or under-adjustment problems found in traditional fine-tuning methods, ensuring the flatness and straightness of the spliced ​​guide rail. Simultaneously, when the workpiece fine-tuning component performs structural adjustments, the coordinated work of a uniform positioning component and a synchronous transmission component adaptively locks the guide rail position in the opposite direction, preventing guide rail offset or wobbling during adjustment. This ensures the fine-tuned guide rail position does not spring back, improving structural stability after installation and providing uniform and symmetrical clamping force to prevent deformation caused by unilateral force. Attached Figure Description

[0013] Figure 1 A schematic diagram of a preferred embodiment of the installation structure of an elevator guide rail for elevator engineering provided by this utility model; Figure 2 for Figure 1 The diagram shows the structure of the alignment component; Figure 3 for Figure 1 The diagram shows the structure of the guide rail workpiece. Figure 4 for Figure 1 The diagram shows the structural design of the installation structure. Figure 5 for Figure 1 The diagram shows the structure of the adjusting stop.

[0014] The diagram is labeled as follows: 1. Guide rail assembly, 11. Guide rail workpiece, 12. Support structure, 13. Fastening structure, 2. Alignment assembly, 21. Alignment frame, 22. Mounting structure, 23. Limiting baffle, 24. Locking structure, 3. Workpiece fine-tuning assembly, 31. Mounting plate, 32. Adjustment structure, 33. Adjustment block, 4. Uniform positioning assembly, 41. Sliding plate, 42. Guide frame, 43. Sliding block, 44. Positioning structure, 45. Connecting structure, 46. Clamping structure, 5. Synchronous transmission assembly, 51. Fixing plate, 52. Threaded block, 53. Nut structure. Detailed Implementation

[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0016] Please refer to the following: Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 ,in, Figure 1 A schematic diagram of a preferred embodiment of the installation structure of an elevator guide rail for elevator engineering provided by this utility model; Figure 2 for Figure 1 The diagram shows the structure of the alignment component; Figure 3 for Figure 1 The diagram shows the structure of the guide rail workpiece. Figure 4 for Figure 1 The diagram shows the structural design of the installation structure. Figure 5 for Figure 1 The diagram shows the structure of the adjusting block. An installation structure for an elevator guide rail used in elevator engineering includes: a guide rail assembly 1; an alignment assembly 2 is mounted on the top of the guide rail assembly 1; the alignment assembly 2 is used for splicing and installing the guide rail assembly 1; workpiece fine-tuning assemblies 3 are mounted at both ends of the alignment assembly 2; a uniform positioning assembly 4 is mounted on the side end of the alignment assembly 2; the uniform positioning assembly 4 is used for synchronous positioning of the guide rail assembly 1; and a synchronous transmission assembly 5 is mounted on the side end of the uniform positioning assembly 4; the synchronous transmission assembly 5 is used for synchronous transmission of the uniform positioning assembly 4.

[0017] The guide rail assembly 1 includes a guide rail workpiece 11, and a support structure 12 is installed at the bottom of the guide rail workpiece 11. The support structure 12 is used for structural support of the guide rail workpiece 11, and a fastening structure 13 is installed on the inner wall of the support structure 12.

[0018] During installation and use, the guide rail workpiece 11 is structurally stable thanks to the support structure 12 at its bottom, which reduces positional deviation of the guide rail.

[0019] Among them, the guide rail assembly 1 includes, but is not limited to, spliced ​​stepped guide rails and modular adjustable guide rails; in this embodiment, the guide rail assembly 1 is preferably a spliced ​​stepped guide rail.

[0020] The alignment component 2 includes an alignment frame 21. The inner wall of the alignment frame 21 is provided with an installation structure 22. The installation structure 22 is used for the structural installation of the guide rail component 1. Limiting baffles 23 are installed at both ends of the alignment frame 21. A locking structure 24 is installed on the side end of the alignment frame 21. The locking structure 24 is used for the structural locking of the alignment frame 21.

[0021] During installation and use, the mounting structure 22 on the inner wall ensures the pre-precision of the guide rail, facilitating subsequent installation operations and providing ease of use.

[0022] The alignment component 2 includes, but is not limited to, reference-adaptive alignment and image recognition alignment; in this embodiment, the alignment component 2 is preferably reference-adaptive alignment.

[0023] The workpiece fine-tuning component 3 includes a mounting plate 31 and an adjusting baffle 33. An adjusting structure 32 is threadedly connected to the inner wall of the mounting plate 31. The adjusting structure 32 is used to adjust the position movement of the adjusting baffle 33. The adjusting baffle 33 is installed on the inner wall of the side end of the adjusting structure 32.

[0024] After the guide rail assembly 1 is installed inside the alignment assembly 2, the adjustment structure 32 at the side end can be rotated. When the thread of the adjustment structure 32 is rotated, the adjustment baffle 33 at the end can be moved synchronously, thereby adjusting the position of the internal guide rail assembly 1.

[0025] The workpiece fine-tuning component 3 includes, but is not limited to, elastic strut fine-tuning and threaded rotation fine-tuning; in this embodiment, the workpiece fine-tuning component 3 is preferably threaded rotation fine-tuning.

[0026] The uniform positioning component 4 includes a sliding plate 41 and a guide frame 42. The sliding plate 41 is slidably installed on the inner wall of the workpiece fine-tuning component 3. A sliding block 43 slides on the inner wall of the guide frame 42. A positioning structure 44 is installed on the side end of the sliding block 43. The positioning structure 44 is used for the structural positioning of the guide rail component 1. A connecting structure 45 is rotatably connected to the inner walls of the sliding plate 41 and the sliding block 43. A clamping structure 46 is installed on the side end of the sliding plate 41. The clamping structure 46 is used for the structural clamping of the sliding plate 41.

[0027] To ensure the adjustment accuracy of the guide rail assembly 1, the inner wall can be contacted in advance through the synchronous transmission assembly 5. Under the structural adjustment of the workpiece fine adjustment assembly 3, the sliding plate 41 on the inner wall will slide in the opposite direction. Then, under the rotational connection of the connecting structure 45, the position of the sliding block 43 will be moved synchronously. When the sliding block 43 moves, the positioning structure 44 on the inner wall will position the guide rail assembly 1 to ensure the uniform clamping of the guide rail assembly 1.

[0028] The uniform positioning component 4 includes, but is not limited to, symmetrical clamping positioning and pneumatic pressure equalization positioning; in this embodiment, the uniform positioning component 4 is preferably symmetrical clamping positioning.

[0029] The synchronous transmission assembly 5 includes a fixed plate 51, a threaded block 52 that slides on the inner wall of the fixed plate 51, and a nut structure 53 that is installed on the inner wall of the threaded block 52. The nut structure 53 is used to secure the threaded block 52.

[0030] In order to ensure uniform clamping of the guide rail assembly 1, the threaded block 52 on the inner wall can make contact with the workpiece fine-tuning assembly 3 in advance, and under the structural rotation of the workpiece fine-tuning assembly 3, the uniform positioning assembly 4 will move in the opposite direction simultaneously.

[0031] The synchronous transmission component 5 includes, but is not limited to, structural meshing transmission and hydraulic synchronization circuit; in this embodiment, the synchronous transmission component 5 is preferably structural meshing transmission.

[0032] The working principle of the elevator guide rail installation structure for elevator engineering provided by this utility model is as follows: During the installation and use of elevator guide rails, firstly, guide rail assembly 1 is installed and spliced ​​into the alignment assembly 2. When there is a positional deviation in guide rail assembly 1, the synchronous transmission assembly 5 can be clamped in the opposite direction onto the inner wall of the workpiece fine-tuning assembly 3. Then, the workpiece fine-tuning assembly 3 is structurally adjusted. When the workpiece fine-tuning assembly 3 is structurally adjusted, the uniform positioning assembly 4 will be subjected to a reverse clamping force to perform structural positioning clamping on the guide rail assembly 1 on the inner wall. After symmetrical clamping, the synchronous transmission assembly 5 is slid open at the side end to reduce structural restraint. Subsequently, the workpiece fine-tuning assembly 3 will fine-tune the position of guide rail assembly 1 to ensure the installation accuracy of guide rail assembly 1.

[0033] Compared with related technologies, the elevator guide rail installation structure for elevator engineering provided by this utility model has the following beneficial effects: During elevator guide rail installation, to improve accuracy, the alignment component 2 and workpiece fine-tuning component 3 work together to automatically adjust the guide rail according to its actual structural position. This reduces splicing deviations caused by human error. The coordinated operation of these components precisely targets key points in the guide rail splicing, avoiding over-adjustment or under-adjustment issues common in traditional fine-tuning methods, ensuring the flatness and straightness of the spliced ​​guide rail. Simultaneously, when the workpiece fine-tuning component 3 adjusts its structure, the uniform positioning component 4 and synchronous transmission component 5 work together to adaptively lock the guide rail position in the opposite direction, preventing deviation or wobbling during adjustment. This ensures the adjusted guide rail position does not spring back, improving structural stability after installation and providing uniform and symmetrical clamping force to prevent deformation caused by unilateral force.

[0034] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. An installation structure of an elevator guide rail for an elevator engineering, characterized by comprising: include: A guide rail assembly, wherein an alignment component is mounted on the top of the guide rail assembly for splicing and installing the guide rail assembly, workpiece fine-tuning components are mounted at both ends of the alignment component, a uniform positioning component is mounted on the side end of the alignment component for synchronous positioning of the guide rail assembly, and a synchronous transmission component is mounted on the side end of the uniform positioning component for synchronous transmission of the uniform positioning component.

2. The installation structure of an elevator guide rail for an elevator engineering according to claim 1, characterized by The guide rail assembly includes a guide rail workpiece, a support structure is installed at the bottom of the guide rail workpiece, the support structure is used for structural support of the guide rail workpiece, and a fastening structure is installed on the inner wall of the support structure.

3. The installation structure for an elevator guide rail for an elevator engineering according to claim 1, characterized by The alignment component includes an alignment frame, the inner wall of which is provided with an installation structure for the structural installation of the guide rail assembly. Limiting baffles are installed at both ends of the alignment frame, and a locking structure is installed on the side end of the alignment frame for structural locking of the alignment frame.

4. The installation structure for an elevator guide rail for an elevator engineering according to claim 1, characterized by The workpiece fine-tuning assembly includes a mounting plate and an adjusting baffle. An adjusting structure is threadedly connected to the inner wall of the mounting plate. The adjusting structure is used to adjust the position movement of the adjusting baffle. The adjusting baffle is installed on the inner wall of the side end of the adjusting structure.

5. The installation structure for an elevator guide rail for an elevator engineering according to claim 1, characterized by The uniform positioning component includes a sliding plate and a guide frame. The sliding plate is slidably installed on the inner wall of the workpiece fine-tuning component. A sliding block is slidably mounted on the inner wall of the guide frame. A positioning structure is installed on the side end of the sliding block. The positioning structure is used for the structural positioning of the guide rail component. A connecting structure is rotatably connected to the inner walls of the sliding plate and the sliding block. A clamping structure is installed on the side end of the sliding plate. The clamping structure is used for the structural clamping of the sliding plate.

6. The installation structure for an elevator guide rail for an elevator engineering according to claim 1, characterized by The synchronous transmission assembly includes a fixed plate, a threaded block that slides on the inner wall of the fixed plate, and a nut structure installed on the inner wall of the threaded block for structural fastening of the threaded block.