Dangerous building construction monitoring device

By using support structures and sensor components in dilapidated buildings, the problem of difficulty in monitoring wall tilt in existing technologies has been solved, enabling accurate detection of wall tilt and improving monitoring accuracy and construction safety.

CN223976681UActive Publication Date: 2026-03-06CHONGQING YUHAI CONSTR SUPERVISION CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-07
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

In existing technologies, construction monitoring devices for dilapidated buildings are difficult to effectively monitor whether the walls are tilted relative to the ground, resulting in poor monitoring performance.

Method used

The system employs a support structure, including a base, diagonal bracing plates, monitoring components, and reinforcing components. It utilizes pressure and angle sensors to wirelessly connect to terminal devices to monitor the deformation and tilt of the wall. Combined with the design of reinforcing bolts and springs, it enables real-time detection of wall tilt.

Benefits of technology

It enables precise monitoring of the tilting of walls in dilapidated buildings, improving the accuracy and reliability of monitoring and ensuring safety during construction.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223976681U_ABST
    Figure CN223976681U_ABST
Patent Text Reader

Abstract

The utility model discloses a dangerous building construction monitoring device which comprises the components of a bracket which comprises a base and an inclined supporting plate, the inclined supporting plate is arranged in an inclined manner, and one end of the inclined supporting plate is arranged on the base in a sliding manner and is rotatably connected with the base; the monitoring assembly comprises a first fixing plate, a second fixing plate, a plurality of reinforcing bolts, a spring, a pressure sensor and an angle sensor, the first fixing plate and the second fixing plate are arranged at an interval, the first fixing plate is rotationally connected with the other end of the inclined supporting plate, and the number of the reinforcing bolts is multiple; the first fixing plate is fixed to the wall of the dangerous building through the reinforcing bolts, when the wall inclines, the first fixing plate inclines along with the wall and rotates around the inclined supporting plate, and the angle sensor detects the angle between the first fixing plate and the inclined supporting plate; furthermore, whether the wall body inclines relative to the ground can be judged according to the numerical value change of the angle sensor, so that the monitoring of the dangerous building can be enhanced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of building construction technology, and in particular to a monitoring device for the construction of dilapidated buildings. Background Technology

[0002] A dilapidated building refers to a house whose structure is severely damaged or whose load-bearing components are dangerous, and which may lose its structural stability and load-bearing capacity at any time, thus failing to guarantee the safety of living and use. When repairing a dilapidated building, a support device with a monitoring structure is usually added to the walls for reinforcement and monitoring.

[0003] In the prior art, such as the emergency reinforcement and support device for dilapidated buildings and engineering projects with announcement number CN212671288U, it includes: a wall, a reinforcement component, and a locking component. The reinforcement component is installed on the outside of the wall, and the locking component is installed on the inside of the wall. The locking component is mounted on the reinforcement component, and the reinforcement component and the locking component are matched and installed. By embedding a pressure sensor inside the locking ring, when in use, the locking ring is in contact with the wall, so the force of the wall is applied to the pressure sensor. The state of the wall can be monitored and processed by the pressure level received by the pressure sensor.

[0004] In the above scheme, all components of the support device are mounted on the wall. When the wall tilts relative to the ground, because the support device tilts along with the wall, there is essentially no change in the force exerted on the wall relative to the pressure sensor. Consequently, the pressure sensor cannot detect the wall tilting. In other words, the above scheme is ineffective in detecting whether the wall is tilted relative to the ground, resulting in poor monitoring performance. Utility Model Content

[0005] The purpose of this utility model is to provide a construction monitoring device for dilapidated buildings, which can monitor whether the wall is tilted relative to the ground.

[0006] To achieve the above objectives, a construction monitoring device for dilapidated buildings is provided, comprising: a support frame including a base and a diagonal brace, the diagonal brace being arranged at an angle, with one end of the diagonal brace slidably mounted on the base and rotatably connected to the base; a monitoring component including a first fixing plate, a second fixing plate, reinforcing bolts, a spring, a pressure sensor, and an angle sensor, the first fixing plate and the second fixing plate being arranged at intervals, the first fixing plate being rotatably connected to the other end of the diagonal brace, multiple reinforcing bolts being provided, each reinforcing bolt passing through the first fixing plate and the second fixing plate sequentially, a nut and a spring being fitted onto one side of the reinforcing bolt on the second fixing plate, the spring being located between the second fixing plate and the nut, a pressure sensor being provided between the head of at least one reinforcing bolt and the first fixing plate, the angle sensor being mounted on the first fixing plate, and the angle sensor being capable of detecting the rotation of the diagonal brace; and a reinforcing component, one end of the reinforcing component being rotatably connected to the diagonal brace, and the other end of the reinforcing component being detachably rotatably connected to the base.

[0007] The working principle and effect of the above scheme are as follows: When installing the monitoring device, the base is fixedly installed on the ground outside the dilapidated building. The first fixing plate is installed on the outer wall of the dilapidated building, and the second fixing plate is installed on the inner wall of the dilapidated building. The first and second fixing plates are fixed to the wall using reinforcing bolts. The diagonal brace connects the first fixing plate and the base. The reinforcing component is arranged vertically and connects the diagonal brace and the base. During monitoring, both the pressure sensor and the angle sensor are connected to the terminal device (such as a computer) (e.g., wireless transmission). When the wall deforms, the wall will squeeze the first or second fixing plate. When the first or second fixing plate is squeezed, it will move along the length of the reinforcing bolt. At this time, the spring contracts, and the head of the first fixing plate or the reinforcing bolt squeezes the pressure sensor. After being squeezed, the pressure sensor transmits the signal to the terminal device. When the wall tilts, both the first and second fixing plates tilt with the wall. The first fixing plate rotates relative to the diagonal brace. The angle sensor measures the angle between the first fixing plate and the diagonal brace and transmits the signal to the terminal.

[0008] By using reinforcing bolts to fix the first fixing plate to the wall of the dilapidated building, when the wall tilts, the first fixing plate tilts with the wall and rotates around the diagonal brace. An angle sensor detects the angle between the first fixing plate and the diagonal brace. Furthermore, the change in the angle sensor value can be used to determine whether the wall is tilted relative to the ground, thereby enhancing the monitoring of the dilapidated building.

[0009] According to the aforementioned construction monitoring device for dilapidated buildings, the base is provided with a storage groove that can accommodate the inclined support plate.

[0010] When transporting the device, storing the diagonal brace in the storage slot can prevent the diagonal brace from being deformed by external pressure or impact during transportation.

[0011] According to the aforementioned construction monitoring device for dilapidated buildings, the storage trough has sliding grooves on both sides, and sliders are installed in the sliding grooves. The inclined support plate is rotatably connected to the sliders.

[0012] When installing the device, move the slider along the slide groove to one end of the slide groove, and rotate the inclined support plate so that one end of the inclined support plate is rotatably connected to the first fixed plate on the wall; when storing the inclined support plate, move the slider along the slide groove to the other end of the slide groove, and rotate the inclined support plate so that the inclined support plate is located in the storage groove.

[0013] According to the aforementioned construction monitoring device for dilapidated buildings, a positioning hole is provided on the top surface of the base, and a positioning bolt is provided on the top of the slider, with the positioning bolt engaging with the positioning hole.

[0014] When the diagonal brace is stored in the storage slot or supports the first fixed plate, the slider is fixed in the corresponding positioning hole using positioning bolts.

[0015] According to the aforementioned construction monitoring device for dilapidated buildings, the reinforcing component includes a support rod, an extension rod, and a connecting seat. The support rod is rotatably connected to a bracing plate, the extension rod is inserted into the bottom of the support rod, and the connecting seat is slidably mounted on a receiving groove and rotatably connected to the extension rod. An adjusting bolt is inserted into the side wall of the support rod, and the end of the adjusting bolt abuts against the side wall of the extension rod.

[0016] When the support assembly is in operation, the support rod is arranged vertically and rotatably connected to the diagonal brace plate. The extension rod extends out from the support rod and rotatably connects to the connecting seat on the storage slot. When the wall is tilted, the diagonal brace plate rotates around the first fixed plate, and the extension rod extends or retracts.

[0017] According to the aforementioned construction monitoring device for dilapidated buildings, a fixing hole is provided at the bottom of the storage trough, and a fixing bolt is provided on the connecting seat, with the fixing bolt engaging with the fixing hole.

[0018] When fixing the connector, rotate the fixing bolt on the connector to make the tail of the fixing bolt engage with the fixing hole.

[0019] According to the aforementioned construction monitoring device for dilapidated buildings, the inclined support plate has a groove, and the support rod and extension rod can be stored in the groove.

[0020] When storing the reinforcing component, rotate the fixing bolt to connect the connecting seat to the base block, then move the extension rod to store it inside the support rod, and then rotate the support rod to rotate it into the groove and store it inside the groove.

[0021] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments;

[0023] Figure 1 This is a three-dimensional diagram of a construction monitoring device for dilapidated buildings.

[0024] Figure 2 This is a front view of the contracted state of a construction monitoring device for dilapidated buildings.

[0025] Figure 3 This is a three-dimensional view of the base of a construction monitoring device for dilapidated buildings.

[0026] Figure 4 This is a three-dimensional view of the inclined support plate of a construction monitoring device for dilapidated buildings.

[0027] Figure 5 This is a three-dimensional view of a slider in a construction monitoring device for dilapidated buildings.

[0028] Figure 6 A three-dimensional view of a reinforcing component of a construction monitoring device for dilapidated buildings. Detailed Implementation

[0029] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.

[0030] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0031] In the description of this utility model, terms such as greater than, less than, and exceeding are understood to exclude the stated number, while terms such as above, below, and within are understood to include the stated number. The use of terms like "first" and "second" is merely for distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the quantity or sequence of the indicated technical features.

[0032] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0033] Reference Figures 1-6 This utility model discloses a construction monitoring device for dilapidated buildings, comprising: a support 10, the support 10 including a base 11 and a diagonal brace 12, the diagonal brace 12 being arranged at an angle, and one end of the diagonal brace 12 being slidably mounted on the base 11 and rotatably connected to the base 11; and a monitoring component 20, the monitoring component 20 including a first fixing plate 21, a second fixing plate 22, a reinforcing bolt 23, a spring 24, a pressure sensor 25, and an angle sensor 26, the first fixing plate 21 and the second fixing plate 22 being arranged at intervals, the first fixing plate 21 being rotatably connected to the other end of the diagonal brace 12, and the reinforcing bolt 23 being arranged at an angle. Multiple reinforcing bolts 23 are provided, each passing through a first fixing plate 21 and a second fixing plate 22. A nut and a spring 24 are fitted onto one side of the second fixing plate 22. The spring 24 is located between the second fixing plate 22 and the nut. A pressure sensor 25 is provided between the head of at least one reinforcing bolt 23 and the first fixing plate 21. An angle sensor 26 is provided on the first fixing plate 21 and can detect the rotation of the diagonal brace 12. A reinforcing assembly 30 is provided, with one end rotatably connected to the diagonal brace 12 and the other end detachably rotatably connected to the base 11.

[0034] Specifically, when installing the monitoring device, the base 11 is fixedly installed on the ground outside the dilapidated building. The first fixing plate 21 is installed on the outer wall of the dilapidated building, and the second fixing plate 22 is installed on the inner wall of the dilapidated building. Reinforcing bolts 23 are used to fix the first fixing plate 21 and the second fixing plate 22 to the wall. The diagonal brace 12 connects the first fixing plate 21 and the base 11. The reinforcing assembly 30 is vertically arranged and connects the diagonal brace 12 and the base 11. During monitoring, both the pressure sensor 25 and the angle sensor 26 are connected to a terminal device (such as a computer) (e.g., wireless transmission). When the wall deforms, The wall will press against the first fixing plate 21 or the second fixing plate 22. When the first fixing plate 21 or the second fixing plate 22 is pressed, it will move along the length of the reinforcing bolt 23. At this time, the spring 24 will contract, and the head of the first fixing plate 21 or the reinforcing bolt 23 will press against the pressure sensor 25. After being pressed, the pressure sensor 25 will transmit a signal to the terminal device. When the wall tilts, both the first fixing plate 21 and the second fixing plate 22 will tilt with the wall. The first fixing plate 21 will rotate relative to the diagonal brace 12. The angle sensor 26 will measure the angle between the first fixing plate 21 and the diagonal brace 12 and transmit the signal to the terminal.

[0035] Optionally, the base 11 has a storage groove 111 for accommodating the inclined support plate 12.

[0036] Optionally, the storage groove 111 has sliding grooves 112 on both sides, and a slider 113 is provided in each sliding groove 112. The inclined support plate 12 is rotatably connected to the slider 113.

[0037] Optionally, the base 11 has a positioning hole 114 on its top surface, and the slider 113 has a positioning bolt 115 on its top, which is connected to the positioning hole 114.

[0038] Optionally, the reinforcing assembly 30 includes a support rod 31, an extension rod 32, and a connecting seat 33. The support rod 31 is rotatably connected to the diagonal brace 12. The extension rod 32 is inserted into the bottom of the support rod 31. The connecting seat 33 is slidably disposed on the receiving groove 111 and rotatably connected to the extension rod 32. An adjusting bolt is inserted into the side wall of the support rod 31, and the end of the adjusting bolt abuts against the side wall of the extension rod 32.

[0039] Optionally, the bottom of the storage slot 111 is provided with a fixing hole 116, and the connecting seat 33 is provided with a fixing bolt 331, which is connected to the fixing hole 116.

[0040] Optionally, the inclined brace 12 has a groove 121, and the support rod 31 and extension rod 32 can be housed in the groove 121.

[0041] Specifically, when the wall deforms, it presses against the first fixing plate 21 or the second fixing plate 22. After being pressed, the first fixing plate 21 or the second fixing plate 22 will move. At this time, the spring 24 contracts, the pressure sensor 25 is compressed, and the pressure sensor 25 transmits a signal to the terminal device. When the wall tilts, both the first fixing plate 21 and the second fixing plate 22 tilt with the wall. The first fixing plate 21 rotates relative to the inclined support plate 12. The angle sensor 26 measures the angle between the first fixing plate 21 and the inclined support plate 12 and transmits the signal to the terminal. When storing the device, the fixing bolt 331 is rotated to rotate the support rod 31 into the groove 121. The positioning bolt 115 is rotated to move the slider 113 along the slide groove 112 to the other end of the slide groove 112 and fix it with the positioning bolt 115. The inclined support plate 12 is rotated to rotate into the storage groove 111.

[0042] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.

Claims

1. A dangerous building construction monitoring device, characterized by, The utility model relates to a kind of support and monitoring device, including: Support (10), the support (10) includes base (11) and inclined bracing plate (12), the inclined bracing plate (12) is arranged obliquely, and inclined bracing plate (12) one end is slidably arranged on base (11), and is rotatably connected with base (11); Monitoring assembly (20), the monitoring assembly (20) includes first fixed plate (21), second fixed plate (22), reinforcing bolt (23), spring (24), pressure sensor (25) and angle sensor (26), the first fixed plate (21) and second fixed plate (22) are arranged at intervals, first fixed plate (21) is rotatably connected with the other end of inclined bracing plate (12), the reinforcing bolt (23) is provided with multiple, multiple reinforcing bolt (23) are sequentially arranged first fixed plate (21) and second fixed plate (22), reinforcing bolt (23) is sleeved with nut and spring (24) on the side of second fixed plate (22), spring (24) is located between second fixed plate (22) and nut, and the head of at least one reinforcing bolt (23) is provided with pressure sensor (25) between first fixed plate (21), the angle sensor (26) is arranged on first fixed plate (21), and angle sensor (26) can detect the relative rotation of inclined bracing plate (12) and first fixed plate (21); Reinforcing assembly (30), the reinforcing assembly (30) one end is rotatably connected with inclined bracing plate (12), and the other end of reinforcing assembly (30) is detachably connected with base (11).

2. The dangerous building construction monitoring device according to claim 1, wherein The base (11) is provided with a receiving groove (111) capable of accommodating the inclined bracing plate (12).

3. The building construction monitoring device of claim 2, wherein Both sides of the receiving groove (111) are provided with a sliding groove (112), and the sliding groove (112) is provided with a sliding block (113).

4. The building construction monitoring device according to claim 3, wherein The top surface of the base (11) is provided with a positioning hole (114), and the top of the sliding block (113) is provided with a positioning bolt (115) connected with the positioning hole (114).

5. The dangerous building construction monitoring device according to claim 2, wherein The reinforcing assembly (30) includes a support rod (31), an extension rod (32) and a connecting seat (33), the support rod (31) is rotatably connected with the inclined bracing plate (12), the extension rod (32) is inserted into the bottom of the support rod (31), the connecting seat (33) is slidably arranged in the receiving groove (111) and rotatably connected with the extension rod (32), and the side wall of the support rod (31) is provided with an adjusting bolt, and the end of the adjusting bolt abuts against the side wall of the extension rod (32).

6. The building construction monitoring device of claim 5, wherein The bottom of the receiving groove (111) is provided with a fixing hole (116), and the connecting seat (33) is provided with a fixing bolt (331) connected with the fixing hole (116).

7. The building construction monitoring device of claim 5, wherein The inclined bracing plate (12) is provided with a groove (121), and the support rod (31) and the extension rod (32) can be accommodated in the groove (121).

Citation Information

Patent Citations

  • Emergency reinforcing and supporting device for dangerous houses and projects

    CN212671288U