Functional foot stool for constructional engineering management

By introducing clearance slots and storage slots into the functional scaffolding, combined with reinforcement plates and electric actuators, the stability problem of the functional scaffolding on curved walls was solved, achieving high efficiency and safety during construction.

CN223753660UActive Publication Date: 2026-01-02JINHU COUNTY JINWEI ENGINEERING CONSTRUCTION CO LTD
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Patent Information

Application Number
CN202423092246.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2026-01-02
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Existing functional scaffolding cannot adapt to curved walls, requiring frequent relocation during construction, reducing work efficiency, and is not stable enough on curved structures, increasing safety risks.

Method used

The design incorporates lifting platforms with clearance slots and storage slots. Combined with reinforcing plates and electric actuators, it can flexibly adapt to curved walls. By pressing the electric actuators, a stable connection between multiple lifting platforms can be achieved, enhancing the stability and reliability of the equipment.

Benefits of technology

It simplified the construction process, improved work efficiency, enhanced equipment stability, improved the safety and reliability of the construction process, and reduced the risk of safety accidents.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of functional foot stools, in particular to a functional foot stool for constructional engineering management, which comprises two bases, a lifting plate is arranged above the two bases, two sides of the lifting plate are respectively provided with a receding groove and a storage groove, the receding groove corresponds to the storage groove, and the storage groove is provided with a storage groove. And a set of storage electric push rods are fixedly installed in the lifting plate, the storage groove is slidably connected with a reinforcing plate, the telescopic ends of the storage electric push rods are fixedly connected with the reinforcing plate, and a set of pressing electric push rods are fixedly installed in the lifting plate. The device has the advantages that the device can adapt to the shape of an arc-shaped wall surface, and when a plurality of functional frames are arranged around the arc surface, reinforcing plates are inserted into receding grooves of adjacent lifting plates and are fixed through pressing electric push rods, so that stable connection among the lifting plates is achieved, the overall stability of the device is improved, and the practicability is high. And a user can directly move among the connected lifting plates without frequently adjusting the position, so that the working efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of functional trestle, especially a functional trestle for construction engineering management. BACKGROUND

[0002] The functional trestle for construction engineering management usually refers to a scaffold system specially designed for construction engineering site, which is used for supporting, fixing and moving various equipment and materials. This trestle has multifunctionality and practicality, and the functional trestle can be assembled and adjusted according to different engineering requirements, which is suitable for various construction scenes. In short, the functional trestle is an indispensable tool in construction engineering management, which provides convenience and safety guarantee for construction.

[0003] At present, when the functional trestle is used in construction engineering management, the scaffold cannot adapt to the arc-shaped wall surface, so that the position of the scaffold needs to be moved constantly during the construction process, and the equipment needs to be rearranged, thereby reducing the work efficiency. The traditional right-angle or rectangular functional trestle cannot provide sufficient stability on the arc-shaped wall surface, and the arc-shaped structure easily leads to uneven distribution of the support points of the scaffold, increases the risk of collapse, and easily leads to the sliding of construction personnel during high-altitude operation, thereby reducing the safety of the scaffold and making the practicality of the scaffold poor. SUMMARY

[0004] The utility model provides a functional trestle for construction engineering management to solve the above-mentioned shortcomings existing in prior art.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a functional trestle for construction engineering management, comprising two bases, two bases are parallel to each other, two bases are provided with a reinforcing assembly between two bases, two bases are provided with a lifting plate above two bases, two sides of the lifting plate are respectively provided with adjusting assemblies, two adjusting assemblies are respectively corresponding to two bases, two sides of the lifting plate are respectively provided with a let -by slot and a storage slot, the let -by slot and the storage slot are corresponding, a set of storage electric push rods are fixedly installed in the inside of the lifting plate, the storage slot is slidably connected with a reinforcing plate, the extension end of the storage electric push rod is fixedly connected with the reinforcing plate, the storage electric push rod is used for pushing the reinforcing plate to slide out of the storage slot, a set of compression electric push rods are fixedly installed in the inside of the lifting plate, the compression electric push rod is vertically arranged below the let -by slot, and the compression electric push rod is used for extruding the reinforcing plate in the let -by slot.

[0006] Preferably, the reinforcing assembly comprises a plurality of reinforcing frames, and the two ends of the plurality of reinforcing frames are fixedly connected with the bases on the corresponding sides.

[0007] Preferably, the adjusting assembly comprises two groups of vertical rods fixedly installed on the top of the base, a plurality of plug holes are formed on the same side of the two groups of vertical rods, the plurality of plug holes are linearly distributed on the vertical rods, the two groups of vertical rods are slidably connected with lifting frames, the two ends of the lifting frames are slidably connected with fixed plugs respectively, the two fixed plugs correspond to the plug holes on the two groups of vertical rods respectively, and the bottom of the lifting plate is fixedly connected with the top of the lifting frame.

[0008] Preferably, the two sides of the lifting plate are rotatably connected with rotating plates through rotating hinges respectively, the rotating plates are located between the two lifting frames, and the rotating plate and the bottom of the lifting plate are respectively provided with magnets with opposite magnetism.

[0009] Preferably, the interiors of the two lifting frames are respectively provided with driving assemblies, sliding grooves are formed on the two lifting frames respectively, the driving assembly comprises a double-head motor fixedly installed at the middle position of the sliding groove, the two ends of the double-head motor are fixedly connected with lead screws respectively, two supporting frames are arranged between the two driving assemblies, the two supporting frames correspond to the two rotating plates respectively and are parallel to each other, the two ends of the two supporting frames are slidably connected with the sliding grooves on the corresponding sides and are threadedly connected with the lead screws on the corresponding sides.

[0010] Preferably, connecting assemblies are arranged between the two bases, the connecting assemblies are located above the reinforcing assemblies, and the connecting assemblies comprise a plurality of top rods, and the two ends of the plurality of top rods are fixedly connected with the vertical rods on the corresponding sides.

[0011] Compared with the prior art, the device has the following advantages:

[0012] 1、The device is capable of flexibly adapting to the shape of the arc-shaped wall surface through the setting of the accommodation grooves and the accommodation grooves, the corresponding reinforcing plates, the accommodation electric push rods and the pressing electric push rods, when a plurality of functional frames are arranged around the arc surface, the reinforcing plates can be inserted into the accommodation grooves of the adjacent lifting plates and fixed through the pressing electric push rods, so that stable connection between the plurality of lifting plates is realized, when the arc-shaped wall surface needs to be constructed or displayed, the user can directly move between the connected plurality of lifting plates, without the need of frequently adjusting the position or re-arranging the equipment, so that the construction process is simplified, the work efficiency is improved, through the action of the reinforcing plates and the pressing electric push rods, stable connection structure is formed between the plurality of lifting plates, not only the overall stability of the equipment is improved, but also the equipment damage or collapse caused by external force in the construction process is prevented, so that the safety and reliability in the construction process are improved, and the risk of safety accidents caused by unstable equipment is reduced.

[0013] 2、The device is provided with rotating plates on both sides of the lifting plate, which fully utilizes the top space of the foot stand to place building materials without affecting the movement of personnel, thereby optimizing the space utilization efficiency; when building materials need to be placed, the support frame drives the rotating plate to rotate to be flush with the lifting plate through the driving of the double-head motor, rapidly expanding the placement area and providing greater flexibility to adapt to building materials of different sizes; the rotating plate is stored at the bottom of the lifting plate in the normal state and does not occupy the top space, so that the movement of the user on the top of the lifting plate is less affected when placing building materials, improving the work efficiency and safety; the magnet of the rotating plate ensures that it is firmly fixed at the bottom of the lifting plate when not needed to prevent accidental movement.

[0014] 3、The device is provided with a threaded connection design of the vertical rod, so that the user can freely adjust the total length of the vertical rod according to the needs, thereby meeting the operation requirements of different heights, and the entire device has great flexibility in height; the fixed plug on the lifting frame can be inserted into different plug holes on the vertical rod to realize the height adjustment of the lifting frame on the vertical rod, so that the user can quickly and simply adjust the height of the lifting plate according to the specific operation requirements, and the reinforcing frame further enhances the connection stability between the bases, thereby improving the stability of the entire device and ensuring the safety during operation. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 The overall structure diagram of a functional foot stand for construction engineering management is proposed for the present application;

[0016] Figure 2 The structure diagram of the connected state of a functional foot stand for construction engineering management is proposed for the present application;

[0017] Figure 3 The structure diagram of the lifting frame and lifting plate part of a functional foot stand for construction engineering management is proposed for the present application;

[0018] Figure 4 The structure diagram of the lifting frame and lifting plate part of a functional foot stand for construction engineering management is proposed for the present application;

[0019] Figure 5 The structure diagram of a functional foot stand for construction engineering management is proposed for the present application;

[0020] Figure 6 The structure diagram of the lifting frame and lifting plate part of a functional foot stand for construction engineering management is proposed for the present application;

[0021] Figure 7 The structure diagram of the lifting frame and lifting plate part of a functional foot stand for construction engineering management is proposed for the present application;

[0022] Figure 8 A structural schematic diagram of a functional tripod support frame for construction engineering management is provided for the present application.

[0023] In the figure: 1 base, 2 reinforcing frame, 3 vertical rod, 4 plug hole, 5 lifting frame, 6 fixed plug, 7 lifting plate, 8 accommodation slot, 9 accommodation slot, 10 top rod, 11 compression electric push rod, 12 storage electric push rod, 13 reinforcing plate, 14 rotating hinge, 15 rotating plate, 16 sliding groove, 17 double-head motor, 18 lead screw, 19 support frame. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments.

[0025] Reference Figures 1 to 8 A functional tripod for construction engineering management, comprising two bases 1, the two bases 1 are parallel to each other, a reinforcing assembly is arranged between the two bases 1, the reinforcing assembly comprises a plurality of reinforcing frames 2, both ends of the plurality of reinforcing frames 2 are fixedly connected with the bases 1 on the corresponding sides, further enhancing the connection stability between the bases 1, thereby improving the stability of the entire device, ensuring the safety during operation, a lifting plate 7 is arranged above the two bases 1, adjusting assemblies are arranged on both sides of the lifting plate 7, the two adjusting assemblies correspond to the two bases 1 respectively, the adjusting assembly comprises two groups of vertical rods 3 fixedly installed on the top of the base 1, the vertical rods 3 can be threadedly spliced with each other, which is helpful to adapt to the operation requirements of different heights, thereby enhancing the practicability of the device, a plurality of plug holes 4 are formed on the same side of the two groups of vertical rods 3, the plurality of plug holes 4 are linearly distributed on the vertical rods 3, a lifting frame 5 is slidingly connected through the two groups of vertical rods 3, fixed plugs 6 are slidingly connected through both ends of the lifting frame 5 respectively, the two fixed plugs 6 correspond to the plug holes 4 on the two groups of vertical rods 3 respectively, the bottom of the lifting plate 7 is fixedly connected with the top of the lifting frame 5, the lifting plate 7 is driven by the lifting frame 5 in the two adjusting assemblies to move up and down, after moving to the working position, the fixed plugs 6 are inserted into the corresponding plug holes 4, avoiding the movement of the lifting frame 5 during work, a connecting assembly is arranged between the two bases 1, the connecting assembly is located above the reinforcing assembly, the connecting assembly comprises a plurality of top rods 10, both ends of the plurality of top rods 10 are fixedly connected with the vertical rods 3 on the corresponding sides, which is helpful to enhance the stability of the entire device.

[0026] Two sides of the lifting plate 7 are rotatably connected with rotating plates 15 through rotating hinges 14, the rotating plates 15 are located between the two lifting frames 5, the rotating plate 15 and the bottom of the lifting plate 7 are respectively provided with magnets with opposite magnetism, the attraction force of the magnets makes the rotating plate 15 retract to the bottom of the lifting plate 7, the interiors of the two lifting frames 5 are respectively provided with driving assemblies, the two lifting frames 5 are respectively provided with sliding grooves 16, the driving assembly comprises a double-head motor 17 fixedly installed at the middle position of the sliding groove 16, the two ends of the double-head motor 17 are fixedly connected with lead screws 18, two supporting frames 19 are arranged between the two driving assemblies, the two supporting frames 19 correspond to and are parallel to the two rotating plates 15, the two ends of the two supporting frames 19 are slidably connected with the sliding grooves 16 of the corresponding sides and are threadedly connected with the lead screws 18 of the corresponding sides, after the two driving assemblies are started, the two supporting frames 19 move away from each other, after the supporting frame 19 contacts with the corresponding rotating plate 15, the rotating plate 15 is pushed to rotate, so that the rotating plate 15 is flush with the lifting plate 7, the placing area is rapidly expanded, greater flexibility is provided, and the building materials of different sizes can be adapted.

[0027] Two sides of the lifting plate 7 are rotatably connected with rotating plates 15 through rotating hinges 14, the rotating plates 15 are located between the two lifting frames 5, the rotating plate 15 and the bottom of the lifting plate 7 are respectively provided with magnets with opposite magnetism, the attraction force of the magnets makes the rotating plate 15 retract to the bottom of the lifting plate 7, the interiors of the two lifting frames 5 are respectively provided with driving assemblies, the two lifting frames 5 are respectively provided with sliding grooves 16, the driving assembly comprises a double-head motor 17 fixedly installed at the middle position of the sliding groove 16, the two ends of the double-head motor 17 are fixedly connected with lead screws 18, two supporting frames 19 are arranged between the two driving assemblies, the two supporting frames 19 correspond to and are parallel to the two rotating plates 15, the two ends of the two supporting frames 19 are slidably connected with the sliding grooves 16 of the corresponding sides and are threadedly connected with the lead screws 18 of the corresponding sides, after the two driving assemblies are started, the two supporting frames 19 move away from each other, after the supporting frame 19 contacts with the corresponding rotating plate 15, the rotating plate 15 is pushed to rotate, so that the rotating plate 15 is flush with the lifting plate 7, the placing area is rapidly expanded, greater flexibility is provided, and the building materials of different sizes can be adapted.

[0028] In the utility model, the lifting frame 5 is moved to the appropriate position and the fixed plug 6 is inserted, the fixed plug 6 is inserted into the plug hole 4 of the vertical rod 3, the height fixing of the lifting frame 5 can be completed, the user can simply and freely adjust the height according to the need, the lifting plate 7 is welded on the lifting frame 5, and the user can stably stand on the lifting plate 7 to carry out relevant operation.

[0029] The conventional function stand is fixed in width, and can only be placed in the aisle position when the building materials need to be placed, affecting the movement of personnel. The opposite side top of the two lifting frames 5 of the same function frame is provided with a sliding groove 16, a double-head motor 17 is installed in the middle of the inside of the sliding groove 16, the output ends of the double-head motor 17 are fixedly connected with lead screws 18, and a support frame 19 is slidably connected between the sliding grooves 16 of the two lifting frames 5 of the same function frame. The support frame 19 is threadedly connected with the lead screws 18. The lifting plate 7 is rotatably connected with a rotating plate 15 through a rotating hinge 14. The rotating plate 15 and the lifting plate 7 are respectively embedded with magnets that attract each other. The rotating plate 15 is accommodated at the bottom of the lifting plate 7 under the action of the magnets. When other things need to be placed, the double-head motor 17 is controlled to rotate, so that the two support frames 19 that are originally close to each other are moved away from each other, the rotating plate 15 is pried open, until the rotating plate 15 and the lifting plate 7 are 180°, at this time, the building materials can be placed on the upper surface of the rotating plate 15 with increased area, which has less effect on the movement of the user on the top of the lifting plate 7.

[0030] When the conventional function frame is used, it is difficult to cooperate with the use of the arc-shaped wall surface. The lifting plate 7 of the device is provided with a yielding groove 8 and a receiving groove 9. When an arc-shaped wall surface is encountered, a plurality of function frames are arranged in advance to ensure that a plurality of lifting plates 7 can surround the arc surface, and the positions of the yielding grooves 8 and the receiving grooves 9 are corresponded. Then the receiving electric push rod 12 is controlled to extend the reinforcing plate 13 in the receiving groove 9, which is inserted into the yielding groove 8 of the adjacent lifting plate 7, and the pressing electric push rod 11 is controlled to extend and press the reinforcing plate 13. The plurality of lifting plates 7 are connected through the reinforcing plate 13, which is more convenient for the user to move directly between the plurality of functions, and is also better for the related construction of the arc-shaped wall surface.

[0031] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A functional foot for construction engineering management, characterized in that, The utility model provides a kind of two bases (1), two described bases (1) are parallel to each other, and strengthening assembly is provided between two described bases (1), and the upper portion of two described bases (1) is provided with lifting plate (7), the both sides of described lifting plate (7) are respectively provided with adjusting assembly, two groups of described adjusting assembly correspond with two bases (1) respectively, the both sides of described lifting plate (7) are respectively provided with let go slot (8) and storage slot (9), described let go slot (8) and storage slot (9) correspond, the inside of described lifting plate (7) is fixedly installed with a group of storage electric push rod (12), described storage slot (9) is slidably connected with reinforcing plate (13), the telescopic end of described storage electric push rod (12) is fixedly connected with reinforcing plate (13), and described storage electric push rod (12) is used to push reinforcing plate (13) and slide out storage slot (9), the inside of described lifting plate (7) is fixedly installed with a group of compression electric push rod (11), and described compression electric push rod (11) is vertically arranged below let go slot (8), and described compression electric push rod (11) is used to extrude reinforcing plate (13) into let go slot (8).

2. A functional foot as claimed in claim 1, characterized in that The strengthening assembly includes a plurality of reinforcing frames (2), and the two ends of the plurality of reinforcing frames (2) are fixedly connected with the corresponding side bases (1).

3. A functional foot as claimed in claim 1, wherein, The adjusting assembly includes two groups of vertical rods (3) fixedly installed on the top of the base (1), the same side of the two groups of vertical rods (3) is respectively provided with a plurality of plug holes (4), the plurality of plug holes (4) are linearly distributed on the vertical rod (3), and the two groups of vertical rods (3) are slidably connected with lifting frames (5), the two ends of the lifting frame (5) are respectively slidably connected with fixed plugs (6), and the two fixed plugs (6) correspond to the plug holes (4) on the two groups of vertical rods (3). The bottom of the lifting plate (7) is fixedly connected with the top of the lifting frame (5).

4. A functional foot as claimed in claim 3, characterized in that The both sides of the lifting plate (7) are respectively rotatably connected with rotating plates (15) through rotating hinges (14), the rotating plate (15) is located between the two lifting frames (5), and the rotating plate (15) and the bottom of the lifting plate (7) are respectively provided with magnets with opposite magnetic properties.

5. A functional foot as claimed in claim 4, characterized in that The inside of the two lifting frames (5) is respectively provided with a driving assembly, and the two lifting frames (5) are respectively provided with sliding grooves (16). The driving assembly includes a double-head motor (17) fixedly installed at the middle position of the sliding groove (16), the two ends of the double-head motor (17) are respectively fixedly connected with lead screws (18), two support frames (19) are provided between the two groups of driving assemblies, the two support frames (19) correspond to and are parallel to the two rotating plates (15), the two ends of the two support frames (19) are respectively slidably connected with the corresponding side sliding grooves (16) and are threadedly connected with the corresponding side lead screws (18).

6. A functional foot as claimed in claim 1, for the management of construction works, characterized by the fact that, A connecting assembly is provided between the two bases (1), and the connecting assembly is located above the strengthening assembly. The connecting assembly includes a plurality of jacks (10), and the two ends and the bottom of the plurality of jacks (10) are respectively fixedly connected with the corresponding side vertical rods (3).