Novel climbing device for building secondary structure

By combining the stabilizing mechanism and the lifting mechanism, the stability and adaptability problems of the existing devices are solved, and a solution of stable fixation and height adjustment is achieved. This makes the climbing device stable and height adjustable, adaptable to different construction needs, and improves the safety and convenience of the construction process.

CN223922591UActive Publication Date: 2026-02-17HENAN JIALONG CONSTR ENG CO LTD
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Patent Information

Application Number
CN202520335059.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-17
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Existing secondary structural climbing devices for buildings are inconvenient to install and dismantle, are prone to swaying, and lack safety.

Method used

The system employs a stabilizing and lifting mechanism, including a platform base, hydraulic cylinder, sliding groove, bidirectional threaded rod, worm gear transmission system, and cross lifting assembly. The hydraulic cylinder drives the connecting block to slide, which in turn drives the cross lifting rod to extend and retract. Combined with the crank handle driving the rotating rod and the worm gear to rotate, the platform's stability and height can be adjusted.

Benefits of technology

It achieves stable fixation and height adjustment of the climbing device, adapting to different construction needs and improving safety and convenience during the construction process.

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Abstract

The utility model relates to the technical field of novel climbing devices for building secondary structures, and discloses a novel climbing device and stabilizing mechanism for building secondary structures, which comprises a platform base, four groups of first sliding grooves are arranged below the platform base, and bidirectional threaded rods penetrate through the first sliding grooves and are rotatably arranged in the first sliding grooves. The driving assembly and the fixing assembly are arranged below the platform base and used for fixing the platform base; the lifting mechanism comprises a hydraulic cylinder fixedly arranged on the platform base, a second sliding groove is formed in the platform base, a third sliding block is arranged in the second sliding groove in a sliding mode, a connecting block is fixedly arranged above the third sliding block, and a driving assembly in the stabilizing mechanism drives a first rotating rod, a worm, a worm wheel and a two-way threaded rod to rotate by shaking a crank. The first sliding block slides in the first sliding groove, and then the fixing assembly is driven to act. The first threaded rod of the manual rotating rod is screwed to drive the fixed chassis to ascend and descend, the platform base can be stably fixed to the ground, and the stability of the device during climbing operation is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the technical field of a new type of climbing device for secondary building structures, specifically a new type of climbing device for secondary building structures. Background Technology

[0002] Buildings refer to man-made assets and fall under the category of fixed assets. They include two main categories: houses and structures. Houses are engineering buildings used for people to live, work, study, produce, operate, entertain, store goods, and carry out other social activities. In contrast to buildings are structures, which are engineering buildings other than houses, such as walls, roads, dams, wells, tunnels, water towers, bridges, and chimneys. Secondary structures of buildings often use climbing devices to decorate and beautify the roof.

[0003] A search revealed an existing technology (application number: CN202020048444.3) for a climbing device for secondary building structures. The document states that it "relates to the field of building technology. This climbing device for secondary building structures includes a shell. Two symmetrical L-shaped fixing frames are fixedly connected to the inner bottom wall of the shell. A first rotating shaft is rotatably connected between the two L-shaped fixing frames. Both ends of the first rotating shaft are fixedly connected to active bevel teeth. Screws are rotatably connected to the top surfaces of both L-shaped fixing frames, and driven bevel teeth are fixedly connected to the bottom surfaces of both screws." This utility model enhances safety.

[0004] However, while existing technologies have improved safety, they still have some shortcomings: they are not easy to install and disassemble, and they are prone to shaking. Utility Model Content

[0005] The purpose of this utility model is to address the shortcomings of existing technologies by proposing a novel climbing device for secondary building structures.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a novel elevated device for secondary building structures, comprising a stabilizing mechanism including a platform base, four sets of sliding grooves 1 below the platform base, a bidirectional threaded rod passing through and rotating inside the sliding groove 1 for driving a driving component and a fixing component located below the platform base for fixing the platform base; a lifting mechanism including a hydraulic cylinder fixedly arranged on the platform base, and a sliding groove 2 on the platform base, a sliding block 3 slidably arranged inside the sliding groove 2, a connecting block fixedly arranged above the sliding block 3, the connecting block connecting to the output end of the hydraulic cylinder, a cross lifting component on the connecting block, and four sets of universal wheels located below the platform base for moving the platform base.

[0007] As a further description of the above technical solution:

[0008] The drive assembly includes: a rotating rod 1, rotatably arranged inside the platform base; a worm gear, fixedly arranged at both ends of the rotating rod 1; a worm wheel, fixedly arranged in the middle of the bidirectional threaded rod and meshing with the worm gear; a sliding block 1, threadedly connected to both ends of the bidirectional threaded rod, and a sliding block 2 is fixedly arranged at one end of the sliding block 1 to prevent the sliding block 1 from detaching from the platform base; and a turntable, fixedly arranged at one end of the rotating rod 1, and a crank handle is fixedly arranged on the side of the turntable away from the rotating rod 1 for cranking the rotating rod 1.

[0009] As a further description of the above technical solution:

[0010] The crank handle is positioned off-center from the turntable. When the crank handle is turned, the turntable drives the rotating rod and worm gear to rotate, which in turn drives the worm wheel and the double-threaded rod to rotate, causing the sliding block to slide within the sliding groove.

[0011] As a further description of the above technical solution:

[0012] The fixing components are provided in four sets, all arranged at the end of the sliding block one away from the sliding block two; the fixing components include: a threaded rod one, threadedly connected and passing through the end of the sliding block one away from the sliding block two; a manual rotating rod, fixedly arranged above the threaded rod one; a fixed base, fixedly connected below the threaded rod one, and in a trumpet shape, used to support the sliding block one; turning the manual rotating rod causes the threaded rod one to drive the fixed base to rise and fall, thereby fixing the platform base.

[0013] As a further description of the above technical solution:

[0014] The cross lifting assembly includes: two sets of hinge blocks, fixedly arranged on the side of the platform base away from the connecting block; a cross lifting rod 1 on hinge block 2; a cross lifting rod 2 on hinge block 2; and a support assembly arranged above the cross lifting rod 2 and the cross lifting rod 1.

[0015] As a further description of the above technical solution:

[0016] Cross lifting rod one and cross lifting rod two are rotatably connected to form a telescopic structure. The telescopic structure is symmetrically arranged and connected in the middle by a fixed column. The hydraulic cylinder pushes the connecting block to slide, causing cross lifting rod one and cross lifting rod two to extend and retract, which is used to adjust the height of the railing.

[0017] As a further description of the above technical solution:

[0018] The support assembly includes: a platform 1, which is hinged to a cross lifting rod 2 via a hinge block 1 fixedly disposed below the platform 1; a sliding block 4, which is fixedly disposed below the platform 1 away from the hinge block 1; a lifting sliding groove, which is disposed on the sliding block 4 and has the cross lifting rod 1 sliding inside; and a railing, which is fixedly disposed above the platform 1 for protection.

[0019] This utility model has the following beneficial effects:

[0020] 1. The lifting mechanism uses a hydraulic cylinder to push the connecting block to slide in the sliding groove two. The connecting block drives the cross lifting assembly to move. The telescopic structure composed of cross lifting rod one and cross lifting rod two extends and retracts under the action of the hydraulic cylinder, thereby adjusting the height of the railing. The height of the climbing device can be easily adjusted according to different construction needs.

[0021] 2. The drive assembly in the stabilizing mechanism rotates the rotating rod, worm gear, worm wheel, and double-threaded rod by cranking the handle. This causes the sliding block to slide within the sliding groove, thereby actuating the fixing assembly. Turning the manual rotating rod raises the threaded rod, which in turn raises the fixed base, securing the platform base firmly to the ground and ensuring the stability of the device during high-altitude operations. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of a novel elevated structure device for secondary building structures proposed in this utility model.

[0023] Figure 2 A schematic diagram of the stabilizing mechanism of a novel building secondary structure climbing device proposed in this utility model;

[0024] Figure 3 This is a schematic diagram of the drive assembly of a novel building secondary structure climbing device proposed in this utility model;

[0025] Figure 4 This is a schematic diagram of the fixing components of a novel building secondary structure climbing device proposed in this utility model;

[0026] Figure 5 This is a schematic diagram of a cross-lifting component of a novel building secondary structure climbing device proposed in this utility model.

[0027] Legend: 2. Stabilizing Mechanism; 201. Platform Base; 210. Sliding Groove 1; 207. Two-way Threaded Rod; 202. Handle; 203. Turntable; 204. Rotating Rod 1; 205. Worm Gear; 206. Worm Wheel; 208. Sliding Block 1; 209. Sliding Block 2; 211. Threaded Rod 1; 212. Manual Rotating Rod; 213. Fixed Chassis; 3. Lifting Mechanism; 301. Hydraulic Cylinder; 302. Connecting Block; 303. Sliding Block 3; 304. Sliding Groove 2; 312. Hinge Block 2; 305. Cross Lifting Rod 1; 306. Cross Lifting Rod 2; 307. Sliding Block 4; 308. Lifting Sliding Groove; 309. Hinge Block 1; 310. Platform 1; 311. Railing; 1. Casters. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] Example 1:

[0030] like Figures 1 to 5 As shown, this embodiment provides a novel elevated structure for secondary building construction, comprising: a stabilizing mechanism 2, including a platform base 201, with four sets of sliding grooves 210 below the platform base 201, and a bidirectional threaded rod 207 passing through and rotatably mounted inside the sliding groove 210, for driving the driving and fixing components below the platform base 201 to fix the platform base 201; a lifting mechanism 3, including a hydraulic cylinder 301 fixedly arranged on the platform base 201, and a sliding groove 304 on the platform base 201, with a sliding block 303 slidably mounted inside the sliding groove 304, and a connecting block 302 fixedly mounted above the sliding block 303, the connecting block 302 being connected to the output end of the hydraulic cylinder 301, and a cross lifting component mounted on the connecting block 302; and four sets of casters 1 below the platform base 201 for moving the platform base 201.

[0031] In this embodiment, the stabilizing mechanism 2 and the lifting mechanism 3 constitute the novel building secondary structure climbing device involved in this application, realizing a novel building secondary structure climbing device.

[0032] In this embodiment, cranking the handle 202 causes the turntable 203 and the rotating rod 204 to rotate, which in turn causes the worm gear 205 to rotate. The worm gear 205 drives the worm wheel 206 and the bidirectional threaded rod 207 that mesh with it to rotate. The rotation of the bidirectional threaded rod 207 causes the sliding block 208 to slide in the sliding groove 210. The sliding block 208 drives the fixed component to move.

[0033] In this embodiment, turning the manual rotating rod 212 causes the threaded rod 211 to rotate, which in turn drives the fixed base 213 to rise and fall, thereby fixing the platform base 201.

[0034] It should be noted that the universal wheels 1 are round wheels, there are 4 sets, located below the platform base 201, and are used to move the platform base 201.

[0035] Specifically, the drive assembly includes: a rotating rod 204, rotatably arranged inside the platform base 201; a worm gear 205, fixedly arranged at both ends of the rotating rod 204; a worm wheel 206, fixedly arranged in the middle of the bidirectional threaded rod 207 and meshing with the worm gear 205; a sliding block 208, threadedly connected to both ends of the bidirectional threaded rod 207, and a sliding block 209 fixedly arranged at one end of the sliding block 208 to prevent the sliding block 208 from detaching from the platform base 201; and a turntable 203, fixedly arranged at one end of the rotating rod 204, and a crank handle 202 fixedly arranged on the side of the turntable 203 away from the rotating rod 204 for cranking the rotating rod 204.

[0036] In this embodiment, a crank 202 is fixedly arranged on the side of the turntable 203 away from the rotating rod 204. By manually cranking the crank 202, the sliding block 208 is driven to slide in the sliding groove 210, providing power for the operation of the fixed component.

[0037] Specifically, the crank handle 202 is positioned off-center from the center of the turntable 203. When the crank handle 202 is cranked, the turntable 203 drives the rotating rod 204 and the worm gear 205 to rotate, which in turn drives the worm wheel 206 and the bidirectional threaded rod 207 to rotate, causing the sliding block 208 to slide within the sliding groove 210.

[0038] In a preferred embodiment, cranking the handle 202 causes the turntable 203 to rotate the rotating rod 204, which in turn drives the worm gear 205 to rotate. The worm gear 205 meshes with the worm wheel 206, causing the worm wheel 206 and the double-threaded rod 207 to rotate. The rotation of the double-threaded rod 207 causes the sliding block 208 to slide within the sliding groove 210.

[0039] Specifically, the fixing components are provided in four sets, all arranged at the end of the sliding block 208 away from the sliding block 209; the fixing components include: a threaded rod 211, which is threadedly connected to and passes through the end of the sliding block 208 away from the sliding block 209; a manual rotating rod 212, which is fixedly arranged above the threaded rod 211; and a fixed base 213, which is fixedly connected below the threaded rod 211 and is flared to support the sliding block 208; by turning the manual rotating rod 212, the threaded rod 211 drives the fixed base 213 to rise and fall, thereby fixing the platform base 201.

[0040] It should be noted that when the manual rotating lever 212 is turned, the manual rotating lever 212 drives the threaded rod 211 to rotate. When the threaded rod 211 rotates, due to its threaded connection with the sliding block 208, it drives the fixed base 213 to rise and fall. The fixed base 213 contacts the ground and provides support, thereby fixing the platform base 201.

[0041] Example 2:

[0042] Based on Example 1, in order to further improve the stability of platform 310 during lifting, four sets of fixing components are arranged at the end of sliding block 208 away from sliding block 209.

[0043] Specifically, the cross lifting assembly includes: two sets of hinge blocks 312, which are fixedly arranged on the side of the platform base 201 away from the connecting block 302; a cross lifting rod 305 on hinge blocks 312; a cross lifting rod 306 on hinge blocks 312; and a support assembly arranged above the cross lifting rod 306 and the cross lifting rod 305.

[0044] In a preferred embodiment, the hydraulic cylinder 301 pushes the connecting block 302 to slide within the sliding groove 304. The connecting block 302 drives the cross lifting rod 305 and the cross lifting rod 306 to extend and retract, thereby adjusting the height of the railing 311. The adjustment of the height of the railing 311 can adapt to different construction height requirements of the secondary structure of the building.

[0045] Specifically, the first cross lifting bar 305 and the second cross lifting bar 306 are rotatably connected to form a telescopic structure. The telescopic structure is symmetrically arranged and connected in the middle by a fixed column. The hydraulic cylinder 301 pushes the connecting block 302 to slide, thereby causing the first cross lifting bar 305 and the second cross lifting bar 306 to extend and retract, which is used to adjust the height of the railing 311.

[0046] It should be noted that the cross lifting rod 305 and the cross lifting rod 306 are rotatably connected to form a telescopic structure. When the hydraulic cylinder 301 is working, its output end pushes the connecting block 302, and the connecting block 302 slides in the sliding groove 304. At the same time, it drives the cross lifting rod 305 and the cross lifting rod 306 to extend and retract, so that the height of the railing 311 is automatically adjusted.

[0047] Specifically, the support components include: a platform 310, which is hinged to a cross lifting rod 306 via a hinge block 309 fixedly disposed below the platform 310; a sliding block 307, which is fixedly disposed below the platform 310 away from the hinge block 309; a lifting sliding groove 308, which is disposed on the sliding block 307 and has a cross lifting rod 305 sliding inside it; and a railing 311, which is fixedly disposed above the platform 310 for protection.

[0048] In this embodiment, the first cross lifting bar 305 slides within the lifting sliding groove 308. As the first cross lifting bar 305 and the second cross lifting bar 306 extend and retract, the first platform 310 is driven to rise and fall. The railing 311 is fixed above the first platform 310 and rises and falls together with the first platform 310 to provide protection for construction personnel.

[0049] In use, when climbing is required, the user can push the device to the desired location, then rotate the crank handle 202. The turntable 203 drives the rotating rod 204 to rotate, the worm gear 205 meshes with the worm wheel 206 to rotate, and the worm wheel 206 drives the bidirectional threaded rod 207 to rotate and mesh with the sliding block 208, sliding it below the sliding groove 210. The sliding block 209 reaches the fixed position. Rotating the manual rotating rod 212, the sliding block 208 is threadedly connected to the threaded rod 211, causing the threaded rod 211 to descend, and the fixed base 213 contacts the bottom surface to achieve fixation. At this time, the user places the material to be climbed onto the platform 310, starts the hydraulic cylinder 301, the hydraulic rod extends, the connecting block 302 slides with the sliding block 303 in the sliding groove 304, and the cross lifting rods 305 and 306 cross and push upwards. The top of the cross lifting rod 305 slides in the lifting sliding groove 308, causing the platform 310 to rise.

[0050] Finally, it should be noted that all electrical components mentioned in this article are connected to an external main controller and 220V AC mains power. The main controller can be a conventional known device that can be controlled by a computer or other means. The detailed description of known functions and components is omitted in the specific implementation of this disclosure. In order to ensure the compatibility of the device, the operating methods used are consistent with the parameters of commercially available instruments.

[0051] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A novel climbing device for new building secondary structure, characterized in that: Comprise: Stable mechanism (2) including platform base (201), four groups of sliding groove one (210) are equipped below platform base (201), bidirectional threaded rod (207) is rotated and penetrated in sliding groove one (210), for driving the drive assembly and fixed assembly that are equipped below platform base (201), for the fixation of platform base (201); Lifting mechanism (3) including hydraulic cylinder (301) fixedly arranged on platform base (201), and sliding groove two (304) is equipped on platform base (201), sliding block three (303) is slidably arranged in the inside of sliding groove two (304), and the upper side of sliding block three (303) is fixedly arranged with connecting block (302), and the output end of hydraulic cylinder (301) is connected with connecting block (302), and connecting block (302) is equipped with cross lifting assembly, and four groups of universal wheel (1) are equipped below platform base (201), for moving platform base (201).

2. The new building secondary structure climbing device according to claim 1, wherein: The drive assembly comprises: Rotary rod one (204) is rotationally arranged in the inside of platform base (201); Worm (205) is fixedly arranged at the two ends of rotary rod one (204); Worm wheel (206) is fixedly arranged in the middle of bidirectional threaded rod (207), and is engaged with worm (205); Sliding block one (208) is threadedly connected with the two ends of bidirectional threaded rod (207), and one end of sliding block one (208) is fixedly arranged with sliding block two (209), for preventing sliding block one (208) from being separated from platform base (201); Rotating disc (203) is fixedly arranged at one end of rotary rod one (204), and rotating disc (203) is fixedly arranged with crank handle (202) on the side away from rotary rod one (204), for rocking rotary rod one (204).

3. The new building secondary structure climbing device according to claim 2, wherein: The crank handle (202) is arranged at the position deviating from the center of the rotating disc (203), the rotating disc (203) drives the rotary rod one (204) and the worm (205) to rotate, and the worm wheel (206) and the bidirectional threaded rod (207) are driven to rotate, so that the sliding block one (208) slides in the sliding groove one (210).

4. The new building secondary structure climbing device according to claim 3, wherein: The fixed assembly is provided with four groups, which are arranged at the end of sliding block one (208) away from sliding block two (209); The fixed assembly comprises: Threaded rod one (211) is threadedly connected and penetrates the end of sliding block one (208) away from sliding block two (209); Manual rotary rod (212) is fixedly arranged above threaded rod one (211); Fixed base (213) is fixedly connected below threaded rod one (211), and is in the shape of a horn, for supporting sliding block one (208); Twist the manual rotary rod (212), so that the threaded rod one (211) drives the fixed base (213) to lift, and then the platform base (201) is fixed.

5. The novel climbing device for the secondary structure of a building according to claim 4, characterized in that: the cross lifting assembly comprises: a second hinge block (312) provided with two groups and fixedly arranged on one side of the platform base (201) away from the connecting block (302); a first cross lifting rod (305) hingedly connected to the second hinge block (312); and a second cross lifting rod (306) hingedly connected to the second hinge block (312); a support assembly arranged above the second cross lifting rod (306) and the first cross lifting rod (305).

6. The novel climbing device for the secondary structure of a building according to claim 5, characterized in that: the first cross lifting rod (305) and the second cross lifting rod (306) are cross-rotatably connected to form a telescopic structure, the telescopic structure is symmetrically arranged, and the middle part is connected through a fixed column; the connecting block (302) is pushed to slide by the hydraulic cylinder (301), and the first cross lifting rod (305) and the second cross lifting rod (306) are telescoped to adjust the height of the guardrail (311).

7. The novel climbing device for the secondary structure of a building according to claim 6, characterized in that: the support assembly comprises: a first platform (310) hingedly connected to the second cross lifting rod (306) through a first hinge block (309) fixedly arranged below the first platform (310); a fourth sliding block (307) fixedly arranged below the first platform (310) away from the first hinge block (309); a lifting sliding groove (308) arranged on the fourth sliding block (307) and internally slidingly having the first cross lifting rod (305); and a guardrail (311) fixedly arranged above the first platform (310) for protection.

Citation Information

Patent Citations

  • Climbing device for building secondary structure

    CN212027035U