CN223922591U - Novel building secondary structure is with ascending a height device - Google Patents
Novel building secondary structure is with ascending a height deviceInfo
- Publication number
- CN223922591U CN223922591U CN202520335059.XU CN202520335059U CN223922591U CN 223922591 U CN223922591 U CN 223922591U CN 202520335059 U CN202520335059 U CN 202520335059U CN 223922591 U CN223922591 U CN 223922591U
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- platform base
- rod
- sliding block
- sliding
- block
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Abstract
The utility model relates to the technical field of novel ascending device for a building secondary structure, and discloses a novel ascending device for a building secondary structure, which comprises a platform base, wherein four groups of first sliding grooves are arranged below the platform base, a bidirectional threaded rod penetrates through the first sliding grooves and rotates, a driving component and a fixing component are arranged below the platform base and used for fixing the platform base, a lifting mechanism comprises a hydraulic cylinder fixedly arranged on the platform base, a second sliding groove is arranged on the platform base, a third sliding block is arranged in the second sliding groove in a sliding manner, a connecting block is fixedly arranged above the third sliding block, and the driving component in the stabilizing mechanism drives a rotating rod, a worm wheel and the bidirectional threaded rod to rotate through shaking a crank, so that the first sliding block slides in the first sliding groove and further drives the fixing component to act. The platform base can be firmly fixed on the ground by screwing the threaded rod of the manual rotating rod to drive the fixed chassis to lift, so that the stability of the device during climbing operation is ensured.
Description
Technical Field
The utility model relates to the technical field of novel ascending device for a building secondary structure, in particular to a novel ascending device for a building secondary structure.
Background
The building refers to an asset formed by artificial building, belongs to the category of fixed assets, and comprises two major categories of houses and constructions, wherein the houses refer to engineering buildings for people to live, work, study, production, operation, entertainment, store articles and perform other social activities, the buildings are different from the structures, the constructions refer to engineering buildings outside the houses, such as enclosing walls, roads, dams, water wells, tunnels, water towers, bridges, chimneys and the like, and the secondary structures of the buildings often use climbing devices to decorate and beautify roofs.
Through searching, the prior art (application number: CN 202020048444.3) is a climbing device for a building secondary structure, and the description of the climbing device relates to the technical field of buildings. The climbing device for the building secondary structure comprises a shell, wherein two symmetrical L-shaped fixing frames are fixedly connected to the inner bottom wall of the shell, a first rotating shaft is rotationally connected to a gap between the two L-shaped fixing frames, driving bevel gears are fixedly connected to the two ends of the first rotating shaft, screw rods are rotationally connected to the top surfaces of the two L-shaped fixing frames, and driven bevel gears are fixedly connected to the bottom surfaces of the two screw rods. The utility model enhances the safety.
However, the prior art has the defects of inconvenient installation and disassembly and easy shaking although the safety is improved.
Disclosure of utility model
The utility model aims to solve the defects in the prior art, and provides a novel ascending device for a building secondary structure.
In order to achieve the aim, the novel ascending device for the building secondary structure adopts the following technical scheme that the novel ascending device for the building secondary structure comprises a platform base, a stabilizing mechanism, a lifting mechanism and a connecting block, wherein four groups of first sliding grooves are arranged below the platform base, the first sliding grooves penetrate through the inside of the first sliding grooves and rotate to form a bidirectional threaded rod, the driving assembly and the fixing assembly are used for driving the lower portion of the platform base to fix the platform base, the lifting mechanism comprises a hydraulic cylinder fixedly arranged on the platform base, the second sliding grooves are formed in the platform base, sliding blocks III are arranged in the second sliding grooves in a sliding mode, connecting blocks are fixedly arranged above the third sliding blocks, the connecting blocks are connected with the output ends of the hydraulic cylinder, the connecting blocks are provided with crossed lifting assemblies, and four groups of universal wheels are arranged below the platform base and are used for moving the platform base.
As a further description of the above technical solution:
The driving assembly comprises a first rotating rod, a worm wheel, a sliding block I, a rotating disc and a crank, wherein the first rotating rod is arranged in the platform base in a rotating mode, the worm is fixedly arranged at two ends of the first rotating rod, the worm wheel is fixedly arranged in the middle of the two-way threaded rod and meshed with the worm, the sliding block I is connected with two ends of the two-way threaded rod in a threaded mode, one end of the sliding block I is fixedly provided with the sliding block II and used for preventing the sliding block I from being separated from the platform base, the rotating disc is fixedly arranged at one end of the first rotating rod, and one side, away from the first rotating rod, of the rotating disc is fixedly provided with the crank used for shaking the first rotating rod.
As a further description of the above technical solution:
The crank is arranged at a position of deviating from the circle center of the rotary table, and the rotary table drives the rotary rod I and the worm to rotate so as to drive the worm wheel and the bidirectional threaded rod to rotate, so that the sliding block I slides in the sliding groove I.
As a further description of the above technical solution:
The fixing assembly is provided with four groups which are all arranged at one end of the sliding block I, which is far away from the sliding block II, and comprises a threaded rod I, a manual rotating rod, a fixing chassis, a horn-shaped fixing chassis and a fixing chassis, wherein the threaded rod I is connected with threads and penetrates through one end of the sliding block I, which is far away from the sliding block II, the manual rotating rod is fixedly arranged above the threaded rod I, the fixing chassis is fixedly connected below the threaded rod I and is used for supporting the sliding block I in a horn shape, and the manual rotating rod is screwed to enable the threaded rod to drive the fixing chassis to lift so as to fix the platform base.
As a further description of the above technical solution:
The cross lifting assembly comprises a second hinge block, a first cross lifting rod, a second hinge block and a supporting assembly, wherein the second hinge block is provided with two groups and is fixedly arranged on one side, far away from the connecting block, of the platform base, the first cross lifting rod is arranged on the second hinge block, the second cross lifting rod is arranged on the second hinge block, and the supporting assembly is arranged above the second cross lifting rod and the first cross lifting rod.
As a further description of the above technical solution:
The first cross lifting rod and the second cross lifting rod are connected in a cross rotating mode to form a telescopic structure, the telescopic structure is symmetrically arranged, the middle portions of the telescopic structure are connected through fixing columns, and the hydraulic cylinder pushes the connecting block to slide to drive the first cross lifting rod and the second cross lifting rod to stretch and retract, so that the height of the railing is adjusted.
As a further description of the above technical solution:
The support assembly comprises a first platform, a fourth sliding block, a lifting sliding groove, a railing and a protective rail, wherein the first hinge block is fixedly arranged below the first platform and hinged to the second cross lifting rod, the fourth sliding block is fixedly arranged below the first platform far away from the first hinge block, the lifting sliding groove is arranged on the fourth sliding block, the first cross lifting rod slides inside the fourth sliding block, and the railing is fixedly arranged above the first platform and used for protection.
The utility model has the following beneficial effects:
1. The lifting mechanism pushes the connecting block to slide in the second sliding groove by using the hydraulic cylinder, the connecting block drives the cross lifting assembly to act, the telescopic structure formed by the cross lifting rod I and the cross lifting rod II stretches out and draws back under the action of the hydraulic cylinder, so that the height of the railing is adjusted, and the height of the climbing device can be conveniently adjusted according to different construction requirements.
2. The driving component in the stabilizing mechanism drives the first rotary rod, the worm wheel and the bidirectional threaded rod to rotate by shaking the crank, so that the first sliding block slides in the first sliding groove, and the fixing component is driven to act. The manual rotary rod is screwed, the first threaded rod drives the fixed chassis to lift, the platform base can be firmly fixed on the ground, and the stability of the device during climbing operation is ensured.
Drawings
FIG. 1 is an overall schematic diagram of a novel climbing device for a building secondary structure;
FIG. 2 is a schematic view of a stabilizing mechanism of a novel climbing device for a secondary structure of a building;
FIG. 3 is a schematic diagram of a driving assembly of a novel climbing device for a secondary structure of a building;
FIG. 4 is a schematic view of a fixing assembly of a novel climbing device for a secondary structure of a building;
Fig. 5 is a schematic diagram of a cross lifting assembly of a novel climbing device for a building secondary structure.
The legend is 2, a stabilizing mechanism, 201, a platform base, 210, a first sliding groove, 207, a bidirectional threaded rod, 202, a crank, 203, a turntable, 204, a first rotating rod, 205, a worm, 206, a worm wheel, 208, a first sliding block, 209, a second sliding block, 211, a first threaded rod, 212, a manual rotating rod, 213, a fixed chassis, 3, a lifting mechanism, 301, a hydraulic cylinder, 302, a connecting block, 303, a third sliding block, 304, a second sliding groove, 312, a second hinging block, 305, a first crossed lifting rod, 306, a second crossed lifting rod, 307, a fourth sliding block, 308, a lifting sliding groove, 309, a first hinging block, 310, a first platform, 311, a railing, 1 and a universal wheel.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1:
As shown in fig. 1 to 5, the novel ascending and descending device for the building secondary structure provided by the embodiment comprises a stabilizing mechanism 2, a lifting mechanism 3 and a lifting mechanism, wherein the stabilizing mechanism comprises a platform base 201, four groups of first sliding grooves 210 are arranged below the platform base 201, two-way threaded rods 207 penetrate through and rotate inside the first sliding grooves 210 and are used for driving components and fixing components arranged below the platform base 201 and fixing the platform base 201, the lifting mechanism 3 comprises a hydraulic cylinder 301 fixedly arranged on the platform base 201, a second sliding groove 304 is arranged on the platform base 201, a third sliding block 303 is arranged inside the second sliding groove 304 in a sliding mode, a connecting block 302 is fixedly arranged above the third sliding block 303, the connecting block 302 is connected with the output end of the hydraulic cylinder 301, a cross lifting component is arranged on the connecting block 302, and four groups of universal wheels 1 are arranged below the platform base 201 and are used for moving the platform base 201.
In this embodiment, the stabilizing mechanism 2 and the lifting mechanism 3 form a novel climbing device for a secondary structure of a building, which is related to the present application, and a novel climbing device for a secondary structure of a building is realized.
In this embodiment, the crank 202 is rocked to drive the turntable 203 and the first rotary rod 204 to rotate, so that the worm 205 rotates, the worm 205 drives the worm wheel 206 engaged with the worm 205 and the bidirectional threaded rod 207 to rotate, the bidirectional threaded rod 207 rotates to enable the first sliding block 208 to slide in the first sliding groove 210, and the first sliding block 208 drives the fixed assembly to move.
In this embodiment, the manual rotation lever 212 is screwed to rotate the first threaded rod 211 to drive the fixed chassis 213 to lift, so as to fix the platform base 201.
The universal wheels 1 are round wheels, and the number of the wheels is 4, and the wheels are positioned below the platform base 201 and used for moving the platform base 201.
Specifically, the driving assembly comprises a first rotating rod 204 rotatably arranged in the platform base 201, a worm 205 fixedly arranged at two ends of the first rotating rod 204, a worm wheel 206 fixedly arranged in the middle of a bidirectional threaded rod 207 and meshed with the worm 205, a first sliding block 208 in threaded connection with two ends of the bidirectional threaded rod 207, a second sliding block 209 fixedly arranged at one end of the first sliding block 208 and used for preventing the first sliding block 208 from being separated from the platform base 201, a rotary table 203 fixedly arranged at one end of the first rotating rod 204, and a crank 202 fixedly arranged at one side of the rotary table 203 away from the first rotating rod 204 and used for shaking the first rotating rod 204.
In this embodiment, a crank 202 is fixedly arranged on a side of the turntable 203 away from the first rotary rod 204, and the first sliding block 208 is driven to slide in the first sliding groove 210 by manually shaking the crank 202 to power the operation of the fixed assembly.
Specifically, the crank 202 is disposed at a position of the turntable 203 deviating from the center of the circle, the crank 202 is rocked, the turntable 203 drives the first rotary rod 204 and the worm 205 to rotate, and drives the worm wheel 206 and the bidirectional threaded rod 207 to rotate, so that the first sliding block 208 slides in the first sliding groove 210.
As a preferred embodiment, the crank 202 is rocked, the turntable 203 drives the first rotary rod 204 to rotate, the first rotary rod 204 drives the worm 205 to rotate, the worm 205 is meshed with the worm wheel 206, the worm wheel 206 and the bidirectional threaded rod 207 are driven to rotate, and the bidirectional threaded rod 207 rotates to enable the first sliding block 208 to slide in the first sliding groove 210.
Specifically, the fixing assembly is provided with four groups, which are all arranged at one end of the first sliding block 208 far away from the second sliding block 209, and comprises a first threaded rod 211, which is in threaded connection with and penetrates through one end of the first sliding block 208 far away from the second sliding block 209, a manual rotating rod 212, which is fixedly arranged above the first threaded rod 211, a fixing base plate 213, which is fixedly connected below the first threaded rod 211 and is in a horn shape and is used for supporting the first sliding block 208, and the first threaded rod 211 drives the fixing base plate 213 to lift by screwing the manual rotating rod 212 so as to fix the platform base 201.
It should be noted that, when the manual rotating rod 212 is screwed, the manual rotating rod 212 drives the first threaded rod 211 to rotate, and when the first threaded rod 211 rotates, the first threaded rod 211 is in threaded connection with the first sliding block 208, so as to drive the fixed chassis 213 to lift, and the fixed chassis 213 contacts with the ground and provides a supporting force, thereby fixing the platform base 201.
Example 2:
On the basis of embodiment 1, in order to further improve the stability of the platform one 310 during lifting, four groups of fixing components are arranged at one end of the sliding block one 208 far from the sliding block two 209;
Specifically, 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 far away from the connecting block 302, a first cross lifting rod 305, a second cross lifting rod 306, a second hinge block 312 and a support assembly arranged above the second cross lifting rod 306 and the first cross lifting rod 305.
As a preferred embodiment, the hydraulic cylinder 301 pushes the connecting block 302 to slide in the second sliding groove 304, the connecting block 302 drives the first cross lifting rod 305 and the second cross lifting rod 306 to stretch and retract, so as to adjust the height of the railing 311, and adjust the height of the railing 311 to adapt to different construction height requirements of the secondary structure of the building.
Specifically, the first cross lifting rod 305 and the second cross lifting rod 306 are connected in a cross rotating manner to form a telescopic structure, the telescopic structure is symmetrically arranged, the middle parts of the telescopic structure are connected through fixing columns, and the hydraulic cylinder 301 pushes the connecting block 302 to slide to drive the first cross lifting rod 305 and the second cross lifting rod 306 to stretch and retract, so that the height of the railing 311 is adjusted.
It should be noted that, the first cross lifter 305 and the second cross lifter 306 are connected in a cross rotation manner to form a telescopic structure, when the hydraulic cylinder 301 works, the output end of the hydraulic cylinder pushes the connecting block 302, the connecting block 302 slides in the second sliding groove 304, and simultaneously drives the first cross lifter 305 and the second cross lifter 306 to stretch and retract, so that the height of the railing 311 is automatically adjusted.
Specifically, the support assembly includes a first platform 310 hinged to a second cross lifting rod 306 through a first hinge block 309 fixedly arranged below the first platform 310, a fourth slide block 307 fixedly arranged below the first platform 310 and away from the first hinge block 309, a lifting sliding groove 308 arranged on the fourth slide block 307 and internally sliding with the first cross lifting rod 305, and a railing 311 fixedly arranged above the first platform 310 for protection.
In this embodiment, the first cross lifting rod 305 slides in the lifting sliding groove 308, and drives the first platform 310 to lift along with the expansion and contraction of the first cross lifting rod 305 and the second cross lifting rod 306, and the railing 311 is fixed above the first platform 310 and lifts along with the first platform 310 to provide protection for constructors.
When in use, when a user needs to ascend, the user can push the device to a required place, then rotate the crank 202, the turntable 203 drives the rotary rod I204 to rotate, the worm 205 is meshed with the worm wheel 206 to rotate, the worm wheel 206 is meshed with the sliding block I208 to slide below the sliding groove I210 by rotating the bidirectional threaded rod 207, the sliding block II 209 reaches a fixed position, the rotary rod 212 is manually rotated, the sliding block I208 is in threaded connection with the threaded rod I211, the threaded rod I211 descends, and the fixed chassis 213 contacts the bottom surface to be fixed. At this time, the user puts the material to be lifted on the first platform 310, activates the hydraulic cylinder 301, stretches the hydraulic rod, and slides the connecting block 302 with the third sliding block 303 in the second sliding groove 304, and the first cross lifting rod 305 and the second cross lifting rod 306 cross and lift upwards, so that the top end of the first cross lifting rod 305 slides in the first lifting sliding groove 308, and the first platform 310 is lifted upwards.
Finally, it should be noted that the electrical components appearing in the text are all electrically connected with an external main controller and 220V mains supply, and the main controller can be conventional known equipment controlled by a computer or the like, detailed descriptions of known functions and known components are omitted in the specific embodiments of the present disclosure, and in order to ensure compatibility of the equipment, the adopted operation means are consistent with the parameters of the instruments on the market.
The foregoing description is only illustrative of the preferred embodiments of the present utility model, and although the present utility model has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements or changes may be made without departing from the spirit and principles of the present utility model.
Claims (7)
1. The novel climbing device for the building secondary structure is characterized by comprising the following components:
the stabilizing mechanism (2) comprises a platform base (201), four groups of first sliding grooves (210) are arranged below the platform base (201), and two-way threaded rods (207) penetrate through the first sliding grooves (210) and rotate in the first sliding grooves, and are used for driving components and fixing components arranged below the platform base (201) and fixing the platform base (201);
Elevating system (3), including fixed pneumatic cylinder (301) of arranging on platform base (201), and be equipped with sliding tray two (304) on platform base (201), the inside slip of sliding tray two (304) is equipped with slider three (303), and the fixed connecting block (302) that is equipped with in top of slider three (303), and the output of pneumatic cylinder (301) is connected to connecting block (302), and be equipped with alternately lifting unit on connecting block (302), and platform base (201) below is equipped with four sets of universal wheels (1) for moving platform base (201).
2. The novel climbing device for building secondary structure according to claim 1, wherein:
The drive assembly includes:
The first rotating rod (204) is rotatably arranged in the platform base (201);
The worm (205) is fixedly arranged at two ends of the first rotating rod (204);
A worm wheel (206) fixedly arranged in the middle of the bidirectional threaded rod (207) and meshed with the worm (205);
the first sliding block (208) is in threaded connection with two ends of the bidirectional threaded rod (207), and one end of the first sliding block (208) is fixedly provided with the second sliding block (209) for preventing the first sliding block (208) from being separated from the platform base (201);
The turntable (203) is fixedly arranged at one end of the first rotating rod (204), and a crank (202) is fixedly arranged at one side of the turntable (203) away from the first rotating rod (204) and is used for shaking the first rotating rod (204).
3. The novel climbing device for building secondary structure according to claim 2, wherein:
The crank (202) is arranged at a position of the rotary table (203) deviating from the circle center, the crank (202) is rocked, the rotary table (203) drives the rotary rod I (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 I (208) slides in the sliding groove I (210).
4. A novel building secondary structure is with device of ascending a height according to claim 3, wherein:
the fixed assembly is provided with four groups which are all arranged at one end of the sliding block I (208) far away from the sliding block II (209);
the fixing assembly includes:
the first threaded rod (211) is in threaded connection with and penetrates through one end, far away from the second sliding block (209), of the first sliding block (208);
A manual rotary rod (212) fixedly arranged above the first threaded rod (211);
The fixed chassis (213) is fixedly connected below the first threaded rod (211) and is in a horn shape and is used for supporting the first sliding block (208);
The manual rotating rod (212) is screwed, so that the first threaded rod (211) drives the fixed chassis (213) to lift, and the platform base (201) is further fixed.
5. The novel climbing device for building secondary structure according to claim 4, wherein:
The cross lifting assembly includes:
The second hinge block (312) is provided with two groups and is fixedly arranged on one side of the platform base (201) far away from the connecting block (302);
The cross lifting rod I (305) is hinged to the hinge block II (312), and the cross lifting rod II (306) is hinged to the hinge block II (312);
and the support component is arranged above the cross lifting rod II (306) and the cross lifting rod I (305).
6. The novel climbing device for building secondary structure according to claim 5, wherein:
The first cross lifting rod (305) and the second cross lifting rod (306) are connected in a cross rotating mode to form a telescopic structure, the telescopic structure is symmetrically arranged, the middle portions of the telescopic structure are connected through fixing columns, and the hydraulic cylinder (301) pushes the connecting block (302) to slide to drive the first cross lifting rod (305) and the second cross lifting rod (306) to stretch and retract, so that the height of the railing (311) is adjusted.
7. The novel climbing device for building secondary structure according to claim 6, wherein:
the support assembly includes:
The first platform (310) is hinged 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) far from the first hinging block (309);
The lifting sliding groove (308) is arranged on the sliding block IV (307) and internally slides with the crossed lifting rod I (305), and the railing (311) is fixedly arranged above the platform I (310) for protection.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520335059.XU CN223922591U (en) | 2025-02-28 | 2025-02-28 | Novel building secondary structure is with ascending a height device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520335059.XU CN223922591U (en) | 2025-02-28 | 2025-02-28 | Novel building secondary structure is with ascending a height device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223922591U true CN223922591U (en) | 2026-02-17 |
Family
ID=98760241
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520335059.XU Active CN223922591U (en) | 2025-02-28 | 2025-02-28 | Novel building secondary structure is with ascending a height device |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223922591U (en) |
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2025
- 2025-02-28 CN CN202520335059.XU patent/CN223922591U/en active Active
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