Outer wall scaffold monitoring equipment

By introducing an adjustable-angle installation structure and a solar power supply system into the scaffolding monitoring equipment, the problems of complex equipment installation, inconvenient disassembly, and unstable energy have been solved, achieving efficient and flexible monitoring and low-cost safety management.

CN223882137UActive Publication Date: 2026-02-06SHANDONG LANYOU ENG TECH CO LTD
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Patent Information

Application Number
CN202520767667.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2026-02-06
Estimated Expiration
2035-04-22

AI Technical Summary

Technical Problem

Existing scaffolding monitoring equipment cannot adjust the monitoring direction after installation, resulting in limited monitoring range, complicated fixed structure operation, inconvenient disassembly or replacement, unstable energy supply, and increased operating costs.

Method used

It adopts an adjustable-angle mounting structure and a solar power supply system. The equipment box can be quickly fixed and disassembled through a combination of pins and springs. The solar panels charge the battery and provide a stable power supply.

Benefits of technology

It improves the flexibility of equipment and the efficiency of installation and disassembly, reduces labor and time costs, reduces the frequency of battery replacement, and improves the level of safety management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an exterior wall scaffold monitoring device which comprises a scaffold, a mounting ring A, a mounting ring B, a mounting seat, an adjusting seat, a fixing seat and a device box, the mounting seat is mounted on the mounting ring B, an adjusting groove is formed in the mounting seat, the adjusting seat is rotatably mounted in the adjusting groove, limiting holes are formed in the mounting seat and the adjusting seat, and the fixing seat is mounted in the limiting holes. A limiting screw is installed in the limiting hole in a threaded mode, a mounting groove is formed in the adjusting base, a fixing base is installed at the bottom of the equipment box and matched with the mounting groove, a plug pin rod is installed on the adjusting base in a sliding mode, a spring is installed between the plug pin rod and the adjusting base, and a fixing inserting hole is formed in the fixing base. One end of the bolt rod is slidably connected with the fixed jack. According to the scaffold monitoring device, the mounting and dismounting efficiency of the scaffold monitoring device is improved, the labor and time cost is saved, the angle of the monitoring device can be adjusted, and therefore the requirements for different monitoring angles are met, and the flexibility of the device is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the outer wall scaffold monitoring equipment relevant field, concretely is a kind of outer wall scaffold monitoring equipment. BACKGROUND

[0002] Scaffold refers to the various supports that are erected for workers to operate and solve vertical and horizontal transportation at construction site.The general term in the construction industry refers to the place that is used at outer wall, interior decoration or layer height higher than direct construction place.Mainly in order to construction personnel up and down work or peripheral safety net enclosure and high-altitude installation component etc., scaffold will appear inclination phenomenon when using, when scaffold appears inclination, if staff cannot timely find, danger will occur, life and property loss will occur, by installing monitoring equipment on scaffold, the state of scaffold is monitored in real time, inclination of scaffold is found in time, so as to avoid potential safety hazard.

[0003] The existing device has the following deficiencies when in use: after the scaffold monitoring equipment is installed, the monitoring direction cannot be adjusted, so that the monitoring range is limited, the flexibility of the device is affected, the fixing structure used for connecting the monitoring equipment and the scaffold is integrated, when the monitoring equipment needs to be disassembled or replaced, the entire fixing structure needs to be disassembled from the scaffold, and the operation is complex and inconvenient for maintenance or replacement of the monitoring equipment, the energy supply of the scaffold monitoring equipment is unstable, and the device relies on external power supply or frequently replaces batteries, which increases use cost and inconvenience. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of outer wall scaffold monitoring equipment to solve the problems raised in the above background.

[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of outer wall scaffold monitoring equipment, including scaffold, installation ring A, installation ring B, mounting seat, adjusting seat, fixed seat and equipment box, installation ring B is installed with mounting seat, adjusting groove is opened in the mounting seat, adjusting seat is rotatably installed in the adjusting groove, limiting hole is opened in the mounting seat and adjusting seat, limiting screw is screw-mounted in the limiting hole, installation slot is opened in the adjusting seat, fixed seat is installed at the bottom of the equipment box, the fixed seat is engaged with installation slot, bolt rod is slidably installed on the adjusting seat, spring is installed between the bolt rod and adjusting seat, fixed insertion hole is opened in the fixed seat, one end of the bolt rod is slidably connected with the fixed insertion hole.

[0006] The installation ring A and the installation ring B are sleeved on the scaffold at appropriate positions, and are fastened through the connecting bolts to complete installation of the fixing structure, the plug-in rod is pulled outwards to make the spring in a compressed state, then the fixing seat installed at the bottom of the equipment box is inserted into the installation slot on the adjusting seat, the plug-in rod is inserted into the fixing hole on the fixing seat under the elastic force of the spring, and quick fixing of the equipment box is realized, when the monitoring equipment needs to be disassembled or replaced, the equipment box can be easily dismounted from the adjusting seat by reversing the above steps, without the need of dismounting the whole fixing structure from the scaffold, the installation and dismounting efficiency is greatly improved, the manpower and time cost are saved, the adjusting seat is rotatably installed in the adjusting slot on the mounting seat, in the adjusting process, the limiting screw is unscrewed, then the adjusting seat is rotated to adjust the equipment box to a required angle, the limiting hole on the mounting seat and the adjusting seat is aligned, the limiting screw is screwed back into the limiting hole to limit and fix the adjusting seat, adjustment of the angle of the equipment box is realized, and thus the requirement of different monitoring angles is met, and the flexibility of the equipment is increased.

[0007] Preferably, a solar panel is installed on the outer wall of the equipment box, the solar panel is connected with the storage battery installed in the equipment box, and the storage battery is connected with each electronic device on the equipment box.

[0008] The above technical scheme is adopted, the solar panel installed on the outer wall of the equipment box is used to convert solar energy into electric energy to charge the storage battery, and the storage battery provides power for each electronic device on the equipment box, and the power supply mode is not only environmentally friendly and energy-saving, but also reduces the frequency of replacing the battery, and greatly reduces the use cost.

[0009] Preferably, an infrared monitoring device, an alarm lamp and an alarm horn are installed on the equipment box, the infrared monitoring device is connected with the alarm lamp and the alarm horn, and a signaler installed in the equipment box is connected with the infrared monitoring device and a remote server.

[0010] The above technical scheme is adopted, the infrared monitoring device on the equipment box is aligned with another group of infrared monitoring devices installed on the scaffold, one emits an infrared signal, and the other receives the infrared signal, when the scaffold is inclined or displaced, the signal connection between the infrared monitoring device emitting the infrared signal and the infrared monitoring device receiving the infrared signal is interrupted, the infrared monitoring device immediately transmits an abnormal signal to the alarm lamp and the alarm horn, the alarm lamp starts to flicker, and the alarm horn emits an alarm sound to remind the staff that there is a safety hazard in the scaffold, at the same time, the infrared monitoring device also transmits the abnormal signal to the signaler in the equipment box, and the signaler wirelessly transmits the abnormal signal to the remote server, and the staff can receive the safety warning information of the scaffold in real time through the remote monitoring platform, so as to take measures to deal with it quickly, effectively avoiding the occurrence of safety accidents and improving the safety management level of the construction site.

[0011] Preferably, the mounting ring A and the mounting ring B are sleeved outside the scaffold, and the mounting ring A and the mounting ring B are connected through the connecting bolts mounted thereon.

[0012] By adopting the technical scheme, the mounting ring A and the mounting ring B are sleeved at appropriate positions of the scaffold, and are fastened and connected through the connecting bolts, so that the stability and firmness of the fixed structure are ensured. The mounting ring A and the mounting ring B are designed to be able to adapt to scaffolds of different diameters, so that the application range and flexibility of the device are increased. During the mounting process, the fastening degree of the connecting bolts can be adjusted to further ensure the close fit between the fixed structure and the scaffold, and prevent safety hazards caused by loosening or displacement.

[0013] Preferably, anti-skid pads are arranged on the inner walls of the mounting ring A and the mounting ring B, and heat dissipation holes are arranged on the equipment box.

[0014] By adopting the technical scheme, the anti-skid pads are arranged to increase the friction between the mounting ring A and the mounting ring B and the scaffold, prevent sliding or falling caused by external force during the mounting and use process, and further improve the stability and safety of the fixed structure. The heat dissipation holes arranged on the equipment box can effectively dissipate the heat generated by the internal elements of the equipment box during the working process, and prevent damage or performance degradation of the elements caused by high temperature.

[0015] Preferably, two groups of equipment boxes are correspondingly mounted on the scaffold, and the infrared monitoring devices on the two groups of equipment boxes are respectively infrared generators and infrared receivers.

[0016] By adopting the technical scheme, the infrared monitoring devices on the equipment boxes are aligned with the infrared monitoring devices mounted on the other group of the scaffold, one transmits infrared signals, and the other receives infrared signals. When the scaffold is inclined or displaced, the signal connection between the infrared monitoring device transmitting the infrared signals and the infrared monitoring device receiving the infrared signals is interrupted, and an alarm mechanism is triggered.

[0017] Compared with the prior art, the utility model has the beneficial effects that:

[0018] The plug-in rod is pulled outward to compress the spring, then the fixing seat mounted at the bottom of the equipment box is inserted into the mounting slot on the adjusting seat, and then the plug-in rod is released, and the plug-in rod is inserted into the fixed insertion hole on the fixing seat under the elastic force of the spring, so that the equipment box is quickly fixed. When it is necessary to disassemble or replace the monitoring device, the equipment box can be easily disassembled from the adjusting seat by reversing the above steps, without the need to disassemble the entire fixed structure from the scaffold, so that the installation and disassembly efficiency is greatly improved, and the labor and time cost is saved.

[0019] The adjusting seat is rotatably installed in the adjusting groove of the mounting seat, in the adjusting process, the limiting screw is unscrewed, then the adjusting seat is rotated to adjust the equipment box to the required angle, the limiting hole of the mounting seat and the adjusting seat is aligned, the limiting screw is screwed into the limiting hole, the adjusting seat is limited and fixed, the angle of the equipment box is adjusted, the requirements of different monitoring angles are met, and the flexibility of the equipment is increased.

[0020] The solar energy is converted into electric energy by the solar panel installed on the outer wall of the equipment box, the electric energy is used for charging the storage battery, and the storage battery provides power for each electronic device on the equipment box, the power supply mode is not only environmental protection and energy saving, but also reduces the frequency of replacing the battery, and greatly reduces the use cost. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a three-dimensional structure schematic view of the utility model;

[0022] Figure 2 It is a sectional structure schematic view of the utility model;

[0023] Figure 3 It is a side end surface structure schematic view of the utility model;

[0024] Figure 4 It is an enlarged schematic view of the adjusting structure of the utility model.

[0025] In the drawing: 1, scaffold; 2, mounting ring A; 3, mounting ring B; 4, connecting bolt; 5, non-slip pad; 6, mounting seat; 7, adjusting seat; 8, fixed seat; 9, equipment box; 10, infrared monitoring equipment; 11, alarm lamp; 12, alarm horn; 13, solar panel; 14, storage battery; 15, signal device; 16, limiting screw; 17, bolt; 18, spring; 19, fixed jack; 20, limiting hole; 21, adjusting groove; 22, mounting groove. DETAILED DESCRIPTION

[0026] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model, and apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.

[0027] Please refer to Figures 1-4The utility model provides an embodiment: a kind of outer wall scaffold monitoring equipment, including scaffold 1, mounting ring A2, mounting ring B3, mounting seat 6, adjusting seat 7, fixed seat 8 and equipment box 9, mounting ring B3 is equipped with mounting seat 6, adjusting groove 21 is opened in the mounting seat 6, adjusting seat 7 is rotatably installed in the adjusting groove 21, limiting hole 20 is opened in the mounting seat 6 and adjusting seat 7, limiting screw 16 is threadedly installed in the limiting hole 20, mounting groove 22 is opened in the adjusting seat 7, fixed seat 8 is installed in the bottom of equipment box 9, fixed seat 8 is engaged with mounting groove 22, bolt bar 17 is slidably installed on adjusting seat 7, spring 18 is installed between bolt bar 17 and adjusting seat 7, fixed jack 19 is opened in the fixed seat 8, one end of bolt bar 17 is slidably connected with fixed jack 19.By mounting ring A2 and mounting ring B3 are suitably positioned in the scaffold 1 and are fastened by connecting bolt 4, the installation of fixed structure is completed, bolt bar 17 is pulled outwards to make spring 18 be in compression state, then the fixed seat 8 installed in the bottom of equipment box 9 is inserted into mounting groove 22 on adjusting seat 7, bolt bar 17 is inserted into fixed jack 19 on fixed seat 8 under the elastic force of spring 18, the quick fixing of equipment box 9 is realized, when needing to disassemble or replace monitoring equipment, just reverse operation above-mentioned step, equipment box 9 can be easily detached from adjusting seat 7, without disassembling the whole fixed structure from scaffold, greatly improve the efficiency of installation and disassembly, save manpower and time cost, by the adjusting seat 7 rotatably installed in the adjusting groove 21 on mounting seat 6, in the adjusting process, limiting screw 16 is unscrewed, then adjusting seat 7 is rotated to adjust equipment box 9 to the angle required, the limiting hole 20 opened in mounting seat 6 and adjusting seat 7 is aligned, then limiting screw 16 is screwed back into limiting hole 20, limiting and fixing adjusting seat 7, the angle adjustment of equipment box 9 is realized, to meet the demand of different monitoring angle, increase the flexibility of equipment.

[0028] The outer wall of the equipment box 9 is provided with a solar panel 13, the solar panel 13 is connected with a battery 14 installed in the equipment box 9, and the battery 14 is connected with each electronic device on the equipment box 9. The solar panel 13 installed on the outer wall of the equipment box 9 converts solar energy into electric energy to charge the battery 14, and the battery 14 provides power for each electronic device on the equipment box 9. The power supply method is not only environmentally friendly and energy-saving, but also reduces the frequency of replacing batteries and greatly reduces the use cost.

[0029] The device box 9 is provided with an infrared monitoring device 10, an alarm lamp 11 and an alarm horn 12, the infrared monitoring device 10 is connected with the alarm lamp 11 and the alarm horn 12, and the signal indicator 15 installed in the device box 9 is connected with the infrared monitoring device 10 and the remote server. The infrared monitoring device 10 on the device box 9 is aligned with another set of infrared monitoring devices 10 installed on the scaffold 1, one transmits infrared signals and the other receives infrared signals. When the scaffold is tilted or displaced, the signal connection between the infrared monitoring device 10 transmitting infrared signals and the infrared monitoring device 10 receiving infrared signals will be interrupted, and the infrared monitoring device 10 will immediately transmit an abnormal signal to the alarm lamp 11 and the alarm horn 12. The alarm lamp 11 starts to flash, and the alarm horn 12 emits an alarm sound, reminding the staff that there is a safety hazard in the scaffold. At the same time, the infrared monitoring device 10 also transmits an abnormal signal to the signal indicator 15 in the device box 9, and the signal indicator 15 transmits the abnormal signal to the remote server wirelessly. The staff can receive the safety warning information of the scaffold in real time through the remote monitoring platform, so as to take timely measures for processing, effectively avoiding the occurrence of safety accidents and improving the safety management level of the construction site.

[0030] The mounting ring A2 and the mounting ring B3 are sleeved on the scaffold 1, and the mounting ring A2 and the mounting ring B3 are connected by the connecting bolts 4 installed thereon. The mounting ring A2 and the mounting ring B3 are sleeved on the scaffold 1 at appropriate positions, and are tightly connected by the connecting bolts 4, to ensure the stability and firmness of the fixed structure. The mounting ring A2 and the mounting ring B3 are designed to adapt to scaffolds of different diameters, increasing the application range and flexibility of the device. During installation, by adjusting the fastening degree of the connecting bolts 4, the close fit between the fixed structure and the scaffold can be further ensured, preventing safety hazards caused by looseness or displacement.

[0031] The inner walls of the mounting ring A2 and the mounting ring B3 are provided with anti-skid pads 5, and the device box 9 is provided with heat dissipation holes. The anti-skid pads 5 can increase the friction between the mounting ring A2 and the mounting ring B3 and the scaffold 1, preventing sliding or falling caused by external forces during installation and use, and further improving the stability and safety of the fixed structure. The heat dissipation holes on the device box 9 can effectively dissipate the heat generated by the internal elements of the device box 9 during work, preventing damage or performance degradation of the elements caused by high temperature.

[0032] The two groups of equipment boxes 9 are installed on the scaffold 1, and the infrared monitoring equipment on the two groups of equipment boxes 9 are infrared generator and infrared receiver respectively. The infrared monitoring equipment 10 on the equipment box 9 is aligned with the infrared monitoring equipment 10 installed on the scaffold 1, one transmits infrared signal, and the other receives infrared signal. When the scaffold is inclined or displaced, the signal connection between the infrared monitoring equipment 10 transmitting infrared signal and the infrared monitoring equipment 10 receiving infrared signal is interrupted, and the alarm mechanism is triggered.

[0033] The monitoring electronic devices involved in the present application are all mature technologies, and there are many products on the market. They are general standard parts or components known to those skilled in the art. Their structure and principle can be known by technical personnel through technical manual or through conventional use. The protection content of the present application does not involve improvement of the monitoring electronic devices, so the model and control process of the monitoring electronic devices will not be described in detail here.

[0034] Working principle: through the installation ring A2 and installation ring B3 set in the appropriate position of the scaffold 1, and through the connecting bolt 4 fastening, complete the installation of fixed structure, pull the bolt rod 17 outward to make the spring 18 in compression state, then insert the bottom of the equipment box 9 installed in the fixed seat 8 into the installation slot 22 on the adjusting seat 7, then loosen the bolt rod 17, the spring 18 is pushed into the fixed hole 19 on the fixed seat 8 under the action of elastic force, realize the quick fixing of equipment box 9, when need to disassemble or replace the monitoring equipment, just reverse operation above steps, can easily remove the equipment box 9 from the adjusting seat 7, without removing the whole fixed structure from the scaffold, greatly improve the installation and disassembly efficiency, save the labor and time cost, through the adjusting groove 21 on the mounting seat 6 rotating adjusting seat 7, in the adjustment process, unscrew the limiting screw 16, then rotate the adjusting seat 7 to adjust the equipment box 9 to the required angle, make the limiting hole 20 on the mounting seat 6 and adjusting seat 7 align, then screw the limiting screw 16 back into the limiting hole 20, limit and fix the adjusting seat 7, realize the angle adjustment of equipment box 9, so as to meet the demand of different monitoring angle, increase the flexibility of the equipment, the infrared monitoring equipment 10 on the equipment box 9 is aligned with another group of infrared monitoring equipment 10 installed on the scaffold 1, one transmits infrared signal, the other receives infrared signal, when the scaffold inclines or displaces, the signal connection between the infrared monitoring equipment 10 transmitting infrared signal and the infrared monitoring equipment 10 receiving infrared signal will be interrupted, the infrared monitoring equipment 10 immediately transmits the abnormal signal to the alarm lamp 11 and the alarm horn 12, the alarm lamp 11 begins to flash, the alarm horn 12 gives an alarm, remind the staff that the scaffold has safety hidden trouble, at the same time, the infrared monitoring equipment 10 also transmits the abnormal signal to the signaler 15 in the equipment box 9, the signaler 15 transmits the abnormal signal to the remote server wirelessly, the staff can receive the safety warning information of the scaffold in real time through the remote monitoring platform, so as to take measures to deal with quickly, effectively avoid the occurrence of safety accident, improve the safety management level of construction site, use the solar panel 13 installed on the outer wall of the equipment box 9 to convert solar energy into electric energy to charge the storage battery 14, the storage battery 14 provides power for each electronic equipment on the equipment box 9, the power supply mode is not only environmental protection and energy saving, reduces the frequency of replacing battery, greatly reduces the use cost.

[0035] It is apparent for a person skilled in the art that the present application is not restricted to the details of the above exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary only, and not limiting, the scope of the present application being defined by the appended claims rather than by the above description, and all changes coming within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.

Claims

1. A kind of outer wall scaffold monitoring device, including scaffold (1), mounting ring A (2), mounting ring B (3), mounting seat (6), adjusting seat (7), fixed seat (8) and equipment box (9), it is characterized in that: The mounting ring B (3) is provided with a mounting seat (6), the mounting seat (6) is provided with an adjusting groove (21), the adjusting groove (21) is rotatably provided with an adjusting seat (7), the mounting seat (6) and the adjusting seat (7) are provided with a limiting hole (20), the limiting hole (20) is screwedly provided with a limiting screw (16), the adjusting seat (7) is provided with a mounting groove (22), the bottom of the equipment box (9) is provided with a fixing seat (8), the fixing seat (8) is matched with the mounting groove (22), the adjusting seat (7) is slidably provided with a bolt rod (17), the bolt rod (17) and the adjusting seat (7) are provided with a spring (18), the fixing seat (8) is provided with a fixed jack (19), and one end of the bolt rod (17) is slidably connected with the fixed jack (19).

2. The external wall scaffold monitoring device according to claim 1, characterized in that: The outer wall of the equipment box (9) is provided with a solar panel (13), the solar panel (13) is connected with a storage battery (14) arranged in the equipment box (9), and the storage battery (14) is connected with each electronic device on the equipment box (9).

3. The external wall scaffold monitoring device according to claim 1, characterized in that: The equipment box (9) is provided with an infrared monitoring device (10), an alarm lamp (11) and an alarm horn (12), the infrared monitoring device (10) is connected with the alarm lamp (11) and the alarm horn (12), and a signaler (15) arranged in the equipment box (9) is connected with the infrared monitoring device (10) and a remote server.

4. The exterior wall scaffold monitoring device of claim 1, wherein: The mounting ring A (2) and the mounting ring B (3) are sleeved outside the scaffold (1), and the mounting ring A (2) and the mounting ring B (3) are connected through the connecting bolt (4) arranged thereon.

5. The exterior wall scaffold monitoring device of claim 1, wherein: The inner walls of the mounting ring A (2) and the mounting ring B (3) are provided with anti-skid pads (5), and the equipment box (9) is provided with a heat dissipation hole.

6. The exterior wall scaffold monitoring device of claim 1, wherein: The scaffold (1) is correspondingly provided with two groups of equipment boxes (9), and the infrared monitoring devices on the two groups of equipment boxes (9) are respectively infrared generators and infrared receivers.