Inclination monitoring device for building
By integrating a meteorological data monitor and wireless data transmission into the tilt monitoring device, the problem that existing devices cannot monitor environmental data is solved, and high-precision tilt measurement and error correction are achieved, which is suitable for a variety of buildings and environments.
Patent Information
- Application Number
- CN202422006959.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-19
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-08-19
AI Technical Summary
Existing tilt monitoring devices are unable to monitor data such as air humidity and temperature near the monitoring point, resulting in large measurement errors and affecting the accuracy of building tilt measurements.
A meteorological data monitor is integrated into the inclinometer to transmit data wirelessly. Temperature and humidity sensors are used to monitor environmental data. Error correction is performed through a built-in data processing unit to improve measurement accuracy.
It realizes real-time monitoring and error correction of environmental data, improves the accuracy and reliability of tilt measurement, reduces project costs, and is suitable for different types of buildings and environmental conditions.
Smart Images

Figure CN223361437U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building inclination measurement, in particular to a tilt monitoring device for buildings. Background Art
[0002] With the acceleration of urbanization, a variety of buildings, such as high-rise residential buildings, commercial towers, and bridges, are constantly emerging. However, due to factors such as geological conditions, construction quality, and natural disasters, buildings may tilt during use. Building tilt not only affects the stability and safety of the structure but can also lead to serious accidents and property damage. Therefore, monitoring building tilt is crucial.
[0003] In the prior art, Chinese patent No. CN202221761797.3 discloses a device for monitoring building inclination, including an inclinometer body, a pressure plate connected to the outside of the inclinometer body, a second connecting rod connected to the outside of the second connecting rod, a frame and a protective cover passing through the outside of the second connecting rod, a pull ring connected to one end of the second connecting rod, a second spring connected to the outside of the second connecting rod, a first connecting rod passing through the inside of the protective cover, one end of the first connecting rod is fixedly connected to the frame, and a first spring is connected to the outside of the first connecting rod. The utility model is provided with a protective cover, a frame, a first spring, a first connecting rod, a second spring, a second connecting rod and a pull ring. When the outside of the protective cover is impacted, the elastic action of the first spring has a buffering effect, which can reduce the damage to the inclinometer body caused by external force, has a protective effect, and solves the problem of lack of protective structure.
[0004] The building tilt monitoring device provided by the aforementioned patent primarily addresses the problem of a lack of protective structures. However, existing tilt monitoring equipment cannot monitor data such as air humidity and temperature near the monitoring point. These environmental factors can significantly affect the error in the monitoring data, hindering the inclinometer's ability to accurately measure the building's tilt. Utility Model Content
[0005] The purpose of the utility model is to provide a tilt monitoring device for buildings, aiming to improve the problem that existing tilt monitoring equipment is unable to monitor data such as air humidity and temperature near the monitoring point, which is not conducive to the accurate measurement of the building inclination by the tilt monitoring equipment.
[0006] The utility model is achieved in this way:
[0007] A tilt monitoring device for a building comprises a support plate and an inclination measuring instrument. The inclination measuring instrument is arranged on the upper surface of the support plate. A connecting rod is provided on the bottom surface of the support plate. A meteorological data monitor is installed on the end of the connecting rod not connected to the support plate. Data is transmitted between the meteorological data monitor and the inclination measuring instrument via wireless means. The meteorological data monitor and the connecting rod are detachably connected.
[0008] Preferably, a plurality of limit columns are provided on the upper surface of the support plate, and the limit columns are used to limit the inclinometer. A connecting hole is provided in the middle of the limit column, and a mounting foot is provided at the rear end of the bottom surface of the support plate, and a plurality of mounting holes are evenly provided on the mounting foot; a mounting platform is provided near the front end of the bottom surface of the support plate, and a threaded groove is provided in the middle of the mounting platform.
[0009] Preferably, a first charging slot is provided on the side of the inclinometer, and a control panel is provided on the front of the inclinometer.
[0010] Preferably, a connecting head is provided at the top of the connecting rod, a hexagonal joint is provided on the side of the connecting head, and a stud is provided on the upper surface of the connecting head; the stud is threadedly connected to the thread groove, and a fixing platform is provided at the other end of the connecting rod, and a fixing groove is provided in the middle of the fixing platform.
[0011] Preferably, a temperature sensor and a humidity sensor are provided on the side of the meteorological data monitor, and a mounting post is provided at the bottom of the meteorological data monitor, and the mounting post is threadedly connected to the fixing groove; a second charging slot is provided at the bottom of the meteorological data monitor.
[0012] Preferably, it also includes an adjusting screw and a pressure plate, wherein two adjusting screws are provided, and the two adjusting screws are respectively threadedly connected to the two limiting columns at the rear end of the support plate; a knob is provided on the top of the adjusting screw, and a connecting shaft is provided on the top of the knob, and the connecting shaft is rotatably connected to the bottom of the pressure plate.
[0013] Preferably, the pressure plate is L-shaped, and a connecting plate is provided at the bottom end of the pressure plate. A bearing is provided at a position of the connecting plate aligned with the connecting shaft, and the bearing is interference-connected with the connecting shaft.
[0014] Preferably, it also includes a horizontal column, a bracket is provided at the bottom of the horizontal column, a magnetic groove is provided on the bottom surface of the bracket, a magnetic sheet is provided on the upper surface of the supporting plate, and the magnetic sheet is sucked into the magnetic groove.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] 1. This utility model utilizes a tilt meter and a meteorological data monitor, making it unaffected by environmental and observational errors, thereby improving measurement and calculation accuracy. Furthermore, the tilt meter improves measurement accuracy and reliability because its built-in data processing unit continuously monitors the building's tilt and outputs accurate data. Furthermore, the device is adaptable to different types of buildings and diverse environmental conditions, offering broad application prospects.
[0017] 2. Compared with traditional tilt measurement methods such as total station and theodolite inclination method, this tilt monitoring device greatly reduces project costs.
[0018] 3. The utility model can stably fix the inclinometer on the supporting plate by adjusting the screw to drive the pressing plate to move up and down.
[0019] 4. The utility model utilizes a horizontal column to facilitate observation of whether the support plate is installed in a horizontal state, and accurately installs the revetment and the support plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic structural diagram of the utility model as a whole;
[0021] Figure 2 This is a schematic structural diagram of the support plate of the utility model at the front oblique downward angle;
[0022] Figure 3 This is a schematic structural diagram of the support plate of the utility model at the front end oblique upward viewing angle;
[0023] Figure 4 This is a structural diagram of the utility model inclinometer;
[0024] Figure 5 It is a structural diagram of the connecting rod of the utility model;
[0025] Figure 6 This is a schematic structural diagram of the utility model meteorological data monitor;
[0026] Figure 7 This is a schematic structural diagram of the adjusting screw of the utility model;
[0027] Figure 8 It is a structural schematic diagram of the pressing plate of the utility model;
[0028] Figure 9 It is a structural schematic diagram of the horizontal column of the utility model.
[0029] In the figure: 1. Support plate; 11. Limit column; 12. Connecting hole; 13. Magnetic sheet; 14. Mounting platform; 15. Threaded groove; 16. Mounting foot; 17. Mounting hole; 2. Inclinometer; 21. First charging slot; 22. Control panel; 3. Connecting rod; 31. Connecting head; 32. Hexagonal connector; 33. Stud; 34. Fixing platform; 35. Fixing slot; 4. Meteorological data monitor; 41. Humidity sensor; 42. Mounting column; 43. Second charging slot; 44. Temperature sensor; 5. Adjusting screw; 51. Knob; 52. Connecting shaft; 6. Pressure plate; 61. Connecting plate; 62. Bearing; 7. Horizontal column; 71. Bracket; 72. Magnetic groove. DETAILED DESCRIPTION
[0030] In this utility model, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection; direct connection, indirect connection through an intermediate medium, internal communication between two components, or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.
[0031] The following is a further description with reference to the accompanying drawings and specific embodiments:
[0032] Example 1
[0033] like Figure 1 As shown, a tilt monitoring device for a building includes a support plate 1 and an inclinometer 2. The inclinometer 2 is arranged on the upper surface of the support plate 1. This structure facilitates the installation of the support plate 1 on the building. The inclinometer 2 is placed on the upper surface of the support plate 1 to measure the inclination of the building. A connecting rod 3 is provided on the bottom surface of the support plate 1. A meteorological data monitor 4 is installed on the end of the connecting rod 3 not connected to the support plate 1. The connecting rod 3 facilitates the installation of the meteorological data monitor 4 and the use of the meteorological data monitor 4 in conjunction with the inclinometer 2. Data is transmitted between the meteorological data monitor 4 and the inclinometer 2 via wireless means; the meteorological data monitor 4 feeds back the monitored meteorological data to the inclinometer 2 via Bluetooth, and the inclinometer 2 performs error correction based on the data fed back by the meteorological data monitor 4. The meteorological data monitor 4 is detachably connected to the connecting rod 3. A battery is provided inside the meteorological data monitor 4. This structure facilitates the disassembly and charging of the meteorological data monitor 4.
[0034] like Figure 2 and Figure 3As shown, the upper surface of the support plate 1 is provided with a plurality of limiting posts 11, which are used to limit the position of the inclinometer 2. A connecting hole 12 is provided in the middle of the limiting post 11. A mounting foot 16 is provided at the rear end of the bottom surface of the support plate 1, and a plurality of mounting holes 17 are evenly distributed on the mounting foot 16. The combination of the mounting foot 16 and the mounting holes 17 facilitates the fixing of the support plate 1 with bolts, thereby facilitating the fixing of the support plate 1 to the building. A mounting platform 14 is provided near the front end of the bottom surface of the support plate 1, and a threaded groove 15 is provided in the middle of the mounting platform 14. The combination of the mounting platform 14 and the threaded groove 15 facilitates the connection of the connecting rod 3 with the threaded groove 15.
[0035] like Figure 4 As shown, the inclinometer 2 has a first charging slot 21 on its side and a battery inside, which can be easily charged through the first charging slot 21. The inclinometer 2 has a control panel 22 on its front for controlling the inclinometer 2.
[0036] like Figure 5 As shown, the top of the connecting rod 3 is provided with a connector 31, the side of which is provided with a hexagonal joint 32, and the upper surface of the connecting rod 31 is provided with a stud 33; the stud 33 is threadedly connected to the thread groove 15. The connector 31 and the stud 33 cooperate to facilitate the connection of the connecting rod 3 to the support plate 1, and the hexagonal joint 32 facilitates the flexible assembly and disassembly of the connecting rod 3. The other end of the connecting rod 3 is provided with a fixing platform 34, and the middle of the fixing platform 34 is provided with a fixing groove 35; the combination of the fixing platform 34 and the fixing groove 35 facilitates the connection of the connecting rod 3 to the meteorological data monitor 4.
[0037] like Figure 6 As shown, the weather data monitor 4 is equipped with a temperature sensor 44 and a humidity sensor 41 on its side, which facilitate measuring the temperature and humidity of the air. A mounting post 42 is provided at the bottom of the weather data monitor 4, which is threadedly connected to the fixing slot 35. A second charging slot 43 is also provided at the bottom of the weather data monitor 4 to facilitate charging the weather data monitor 4.
[0038] Working principle: When in use, fix the support plate 1 on the wall of the monitoring point, then place the inclinometer 2 on the upper surface of the support plate 1, and use the connecting rod 3 to connect the meteorological data monitor 4 to the support plate 1, and connect the meteorological data monitor 4 and the inclinometer 2 via Bluetooth; the meteorological data monitor 4 feeds back the monitored data to the inclinometer 2, and the inclinometer 2 corrects the error through the meteorological data to ensure the accuracy of the building inclination measurement. Compared with the existing technology, this application uses the inclinometer 2 and the meteorological data monitor 4 to make the inclinometer 2 unaffected by the environment and observation errors, thereby improving the measurement and calculation accuracy. The inclinometer 2 also improves the measurement accuracy and reliability because the built-in data processing unit module can continuously monitor the inclination of the building and output accurate data. The device can also be applied to different types of buildings and different environmental conditions, and has broad application prospects.
[0039] Example 2
[0040] like Figure 1 As shown, a tilt monitoring device for a building includes a support plate 1 and an inclinometer 2. The inclinometer 2 is arranged on the upper surface of the support plate 1. This structure facilitates the installation of the support plate 1 on the building. The inclinometer 2 is placed on the upper surface of the support plate 1 to measure the inclination of the building. A connecting rod 3 is provided on the bottom surface of the support plate 1. A meteorological data monitor 4 is installed on the end of the connecting rod 3 not connected to the support plate 1. The connecting rod 3 facilitates the installation of the meteorological data monitor 4 and the use of the meteorological data monitor 4 in conjunction with the inclinometer 2. Data is transmitted between the meteorological data monitor 4 and the inclinometer 2 via wireless means; the meteorological data monitor 4 feeds back the monitored meteorological data to the inclinometer 2 via Bluetooth, and the inclinometer 2 performs error correction based on the data fed back by the meteorological data monitor 4. The meteorological data monitor 4 is detachably connected to the connecting rod 3. A battery is provided inside the meteorological data monitor 4. This structure facilitates the disassembly and charging of the meteorological data monitor 4.
[0041] like Figure 2 and Figure 3 As shown, the upper surface of the support plate 1 is provided with a plurality of limiting posts 11, which are used to limit the position of the inclinometer 2. A connecting hole 12 is provided in the middle of the limiting post 11. A mounting foot 16 is provided at the rear end of the bottom surface of the support plate 1, and a plurality of mounting holes 17 are evenly distributed on the mounting foot 16. The combination of the mounting foot 16 and the mounting holes 17 facilitates the fixing of the support plate 1 with bolts, thereby facilitating the fixing of the support plate 1 to the building. A mounting platform 14 is provided near the front end of the bottom surface of the support plate 1, and a threaded groove 15 is provided in the middle of the mounting platform 14. The combination of the mounting platform 14 and the threaded groove 15 facilitates the connection of the connecting rod 3 with the threaded groove 15.
[0042] like Figure 4 As shown, the inclinometer 2 has a first charging slot 21 on its side and a battery inside, which can be easily charged through the first charging slot 21. The inclinometer 2 has a control panel 22 on its front for controlling the inclinometer 2.
[0043] like Figure 5 As shown, the top of the connecting rod 3 is provided with a connector 31, the side of which is provided with a hexagonal joint 32, and the upper surface of the connecting rod 31 is provided with a stud 33; the stud 33 is threadedly connected to the thread groove 15. The connector 31 and the stud 33 cooperate to facilitate the connection of the connecting rod 3 to the support plate 1, and the hexagonal joint 32 facilitates the flexible assembly and disassembly of the connecting rod 3. The other end of the connecting rod 3 is provided with a fixing platform 34, and the middle of the fixing platform 34 is provided with a fixing groove 35; the combination of the fixing platform 34 and the fixing groove 35 facilitates the connection of the connecting rod 3 to the meteorological data monitor 4.
[0044] like Figure 6 As shown, the weather data monitor 4 is equipped with a temperature sensor 44 and a humidity sensor 41 on its side, which facilitate measuring the temperature and humidity of the air. A mounting post 42 is provided at the bottom of the weather data monitor 4, which is threadedly connected to the fixing slot 35. A second charging slot 43 is also provided at the bottom of the weather data monitor 4 to facilitate charging the weather data monitor 4.
[0045] like Figure 1 and Figure 7 As shown, the device further includes an adjusting screw 5 and a pressure plate 6. Two adjusting screws 5 are provided, and the two adjusting screws 5 are respectively threadedly connected to the two limit posts 11 at the rear end of the support plate 1. This structure facilitates the adjusting screw 5 to drive the pressure plate 6 to move up and down, thereby facilitating the pressure plate 6 to be pressed against the inclinometer 2. A knob 51 is provided at the top of the adjusting screw 5, and a connecting shaft 52 is provided at the top of the knob 51. The connecting shaft 52 is rotatably connected to the bottom of the pressure plate 6. This structure facilitates the adjustment screw 5 to be rotated by the knob 51, and facilitates the adjustment screw 5 to drive the pressure plate 6 to move up and down.
[0046] like Figure 8 As shown, the pressure plate 6 is L-shaped, and a connecting plate 61 is provided at the bottom end of the pressure plate 6. A bearing 62 is provided at the position of the connecting plate 61 aligned with the connecting shaft 52, and the bearing 62 is interference-connected with the connecting shaft 52. This structure facilitates the pressure plate 6 to press the inclinometer 2 while also facilitating the rotation of the pressure plate 6 and the adjusting screw 5.
[0047] Example 3
[0048] like Figure 1As shown, a tilt monitoring device for a building includes a support plate 1 and an inclinometer 2. The inclinometer 2 is arranged on the upper surface of the support plate 1. This structure facilitates the installation of the support plate 1 on the building. The inclinometer 2 is placed on the upper surface of the support plate 1 to measure the inclination of the building. A connecting rod 3 is provided on the bottom surface of the support plate 1. A meteorological data monitor 4 is installed on the end of the connecting rod 3 not connected to the support plate 1. The connecting rod 3 facilitates the installation of the meteorological data monitor 4 and the use of the meteorological data monitor 4 in conjunction with the inclinometer 2. Data is transmitted between the meteorological data monitor 4 and the inclinometer 2 via wireless means; the meteorological data monitor 4 feeds back the monitored meteorological data to the inclinometer 2 via Bluetooth, and the inclinometer 2 performs error correction based on the data fed back by the meteorological data monitor 4. The meteorological data monitor 4 is detachably connected to the connecting rod 3. A battery is provided inside the meteorological data monitor 4. This structure facilitates the disassembly and charging of the meteorological data monitor 4.
[0049] like Figure 2 and Figure 3 As shown, the upper surface of the support plate 1 is provided with a plurality of limiting posts 11, which are used to limit the position of the inclinometer 2. A connecting hole 12 is provided in the middle of the limiting post 11. A mounting foot 16 is provided at the rear end of the bottom surface of the support plate 1, and a plurality of mounting holes 17 are evenly distributed on the mounting foot 16. The combination of the mounting foot 16 and the mounting holes 17 facilitates the fixing of the support plate 1 with bolts, thereby facilitating the fixing of the support plate 1 to the building. A mounting platform 14 is provided near the front end of the bottom surface of the support plate 1, and a threaded groove 15 is provided in the middle of the mounting platform 14. The combination of the mounting platform 14 and the threaded groove 15 facilitates the connection of the connecting rod 3 with the threaded groove 15.
[0050] like Figure 4 As shown, the inclinometer 2 has a first charging slot 21 on its side and a battery inside, which can be easily charged through the first charging slot 21. The inclinometer 2 has a control panel 22 on its front for controlling the inclinometer 2.
[0051] like Figure 5 As shown, the top of the connecting rod 3 is provided with a connector 31, the side of which is provided with a hexagonal joint 32, and the upper surface of the connecting rod 31 is provided with a stud 33; the stud 33 is threadedly connected to the thread groove 15. The connector 31 and the stud 33 cooperate to facilitate the connection of the connecting rod 3 to the support plate 1, and the hexagonal joint 32 facilitates the flexible assembly and disassembly of the connecting rod 3. The other end of the connecting rod 3 is provided with a fixing platform 34, and the middle of the fixing platform 34 is provided with a fixing groove 35; the combination of the fixing platform 34 and the fixing groove 35 facilitates the connection of the connecting rod 3 to the meteorological data monitor 4.
[0052] like Figure 6As shown, the weather data monitor 4 is equipped with a temperature sensor 44 and a humidity sensor 41 on its side, which facilitate measuring the temperature and humidity of the air. A mounting post 42 is provided at the bottom of the weather data monitor 4, which is threadedly connected to the fixing slot 35. A second charging slot 43 is also provided at the bottom of the weather data monitor 4 to facilitate charging the weather data monitor 4.
[0053] like Figure 1 and Figure 7 As shown, the device further includes an adjusting screw 5 and a pressure plate 6. Two adjusting screws 5 are provided, and the two adjusting screws 5 are respectively threadedly connected to the two limit posts 11 at the rear end of the support plate 1. This structure facilitates the adjusting screw 5 to drive the pressure plate 6 to move up and down, thereby facilitating the pressure plate 6 to be pressed against the inclinometer 2. A knob 51 is provided at the top of the adjusting screw 5, and a connecting shaft 52 is provided at the top of the knob 51. The connecting shaft 52 is rotatably connected to the bottom of the pressure plate 6. This structure facilitates the adjustment screw 5 to be rotated by the knob 51, and facilitates the adjustment screw 5 to drive the pressure plate 6 to move up and down.
[0054] like Figure 8 As shown, the pressure plate 6 is L-shaped, and a connecting plate 61 is provided at the bottom end of the pressure plate 6. A bearing 62 is provided at the position of the connecting plate 61 aligned with the connecting shaft 52, and the bearing 62 is interference-connected with the connecting shaft 52. This structure facilitates the pressure plate 6 to press the inclinometer 2 while also facilitating the rotation of the pressure plate 6 and the adjusting screw 5.
[0055] like Figure 2 and Figure 9 As shown, the support plate 1 also includes a horizontal column 7, with a bracket 71 at the bottom. The bracket 71 facilitates the assembly and disassembly of the horizontal column 7. The bottom surface of the bracket 71 is provided with a magnetic groove 72, and the upper surface of the support plate 1 is provided with a magnetic sheet 13, which is sucked into the magnetic groove 72; this structure facilitates the stable adsorption of the bracket 71 on the support plate 1.
[0056] Example 4
[0057] A method for measuring the inclination of a building, the specific steps of the method are as follows:
[0058] S100: Building status analysis, mainly to make an initial judgment on the building status, analyze safety risks, etc., to determine the basic data for tilt measurement and meet the measurement requirements for the building status.
[0059] S200: Determine the monitoring location, mainly after analyzing and judging the structural status of the building, determine the monitoring profile of the monitoring building, monitor the characteristic location, and install the monitoring equipment.
[0060] S300: Based on the determined monitoring location, a special mounting base is used and installed on the monitored building, eliminating the need for prior preparations such as grinding and leveling, allowing for quick base installation.
[0061] S400: Install the inclinometer 2 and the meteorological data monitor 4 to record weather, temperature, etc. The meteorological data monitor 4 can be freely combined with other monitoring equipment according to on-site observation conditions to achieve manual and automatic multi-mode measurement.
[0062] S500: After installing the inclinometer 2, you can adjust its status in manual monitoring mode. Adjust the positioning bolts on the base to keep the inclinometer's axis reference value close to the factory zero point, or customize the inclinometer's tilt value range. Observation data should be recorded, including basic information such as project name, instrument number, observer, recorder, observation date, observation time, weather, and temperature. Automated monitoring mode allows for automated collection and uploading of this information.
[0063] S600: After the initial state of the monitored building is collected, tilt measurement data is collected according to the risk state of the monitored building.
[0064] S700: Analyze and organize the observation data to form a report. By drawing time curves, monitoring cross-sections, and monitoring longitudinal sections, analyze the changing patterns and impact range of the monitoring data.
[0065] S800: Through the collection, analysis and organization of monitoring data, the deformation characteristics of the monitoring data are concentrated, extracted and refined, and targeted summary is carried out. Potential risks are found from the deformation laws and development trends of the data, the current safety status is evaluated, and subsequent engineering risks are predicted.
[0066] The above is only a preferred embodiment of the present invention and is not intended to limit the present invention. For those skilled in the art, various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention shall be included in the scope of protection of the present invention.
Claims
1. A tilt monitoring device for a building, comprising a support plate (1), characterized in that: The device further comprises an inclinometer (2), the inclinometer (2) being arranged on the upper surface of the supporting plate (1), the bottom surface of the supporting plate (1) being provided with a connecting rod (3), the end of the connecting rod (3) not connected to the supporting plate (1) being provided with a meteorological data monitor (4), data being transmitted between the meteorological data monitor (4) and the inclinometer (2) by wireless means; and the meteorological data monitor (4) and the connecting rod (3) being detachably connected.
2. A tilt monitoring device for a building according to claim 1, characterized in that: The upper surface of the support plate (1) is provided with a plurality of limiting columns (11), the limiting columns (11) are used to limit the inclinometer (2), a connecting hole (12) is provided in the middle of the limiting columns (11), a mounting foot (16) is provided at the rear end of the bottom surface of the support plate (1), and a plurality of mounting holes (17) are evenly provided on the mounting foot (16); a mounting platform (14) is provided at a position near the front end of the bottom surface of the support plate (1), and a threaded groove (15) is provided in the middle of the mounting platform (14).
3. The tilt monitoring device for a building according to claim 1, characterized in that: A first charging slot (21) is provided on the side of the inclinometer (2), and a control panel (22) is provided on the front of the inclinometer (2).
4. A tilt monitoring device for a building according to claim 2, characterized in that: The top end of the connecting rod (3) is provided with a connecting head (31), the side of the connecting head (31) is provided with a hexagonal joint (32), and the upper surface of the connecting head (31) is provided with a stud (33); the stud (33) is threadedly connected to the thread groove (15), and the other end of the connecting rod (3) is provided with a fixing platform (34), and the middle of the fixing platform (34) is provided with a fixing groove (35).
5. The tilt monitoring device for a building according to claim 4, characterized in that: The side of the meteorological data monitor (4) is provided with a temperature sensor (44) and a humidity sensor (41); the bottom of the meteorological data monitor (4) is provided with a mounting post (42), and the mounting post (42) is threadedly connected to the fixing groove (35); and the bottom of the meteorological data monitor (4) is provided with a second charging slot (43).
6. The device for monitoring the tilt of a building according to claim 2, characterized in that: It also includes an adjusting screw (5) and a pressure plate (6), wherein two adjusting screws (5) are provided, and the two adjusting screws (5) are respectively threadedly connected to two limiting columns (11) at the rear end of the supporting plate (1); a knob (51) is provided on the top of the adjusting screw (5), and a connecting shaft (52) is provided on the top of the knob (51), and the connecting shaft (52) is rotatably connected to the bottom of the pressure plate (6).
7. A device for monitoring the tilt of a building according to claim 6, characterized in that: The pressing plate (6) is L-shaped, and a connecting plate (61) is provided at the bottom end of the pressing plate (6). A bearing (62) is provided at a position where the connecting plate (61) is aligned with the connecting shaft (52), and the bearing (62) is interference-connected with the connecting shaft (52).
8. A device for monitoring the tilt of a building according to any one of claims 1 to 7, characterized in that: It also includes a horizontal column (7), wherein a bracket (71) is provided at the bottom of the horizontal column (7), a magnetic suction groove (72) is provided on the bottom surface of the bracket (71), and a magnetic suction piece (13) is provided on the upper surface of the supporting plate (1), and the magnetic suction piece (13) is sucked into the magnetic suction groove (72).
Citation Information
Patent Citations
Building inclination monitoring device
CN218153492U