Pull rod type slope deformation monitoring device
By using a tie-rod type slope deformation monitoring device, combined with a distance sensor and a solar power panel, multi-dimensional monitoring and real-time data uploading are achieved. This solves the problems of low monitoring efficiency, high cost, single dimension, and strong power dependence in existing technologies, and is suitable for complex terrain environments.
Patent Information
- Application Number
- CN202521186491.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-11
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-06-11
AI Technical Summary
Existing slope deformation monitoring methods and devices suffer from low efficiency, high cost, limited monitoring dimensions, inconvenient data transmission, and strong power dependence, making it difficult to meet the needs of real-time remote monitoring.
The device employs a tie-rod type slope deformation monitoring system, which combines a distance sensor, drive motor, wireless module, and solar power panel to achieve multi-dimensional monitoring and real-time data upload. Solar power reduces wiring requirements and lowers construction costs.
It enables multi-dimensional slope deformation monitoring and real-time data upload, reducing construction costs and improving the practicality and environmental friendliness of monitoring, making it suitable for complex terrain environments.
Smart Images

Figure CN223925735U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to geological monitoring technical field, concretely is a pull rod type side slope deformation monitoring device. BACKGROUND
[0002] With the continuous advancement of infrastructure construction, in the road, railway, water conservancy and other projects, the side slope stability is very important. Side slope deformation may cause landslide, collapse and other geological disasters, seriously threaten the life and property safety and the normal use of engineering.
[0003] The existing side slope deformation monitoring method and device have many deficiencies, for example, the traditional manual monitoring mode is low in efficiency, and the monitoring frequency is limited, cannot capture the subtle changes of the side slope in time, some fixed monitoring equipment is complex to install, and the cost is high, and the monitoring dimension is single, can only monitor the deformation of a certain direction, and the side slope deformation under the complex geological condition is difficult to monitor comprehensively and accurately, in addition, part of the monitoring device relies on external power supply, and is limited in use in the area where the power supply is inconvenient in the field, and the data transmission is not convenient, cannot satisfy the demand of real-time remote monitoring, therefore, we provide a pull rod type side slope deformation monitoring device to solve the above problems. UTILITARIAN CONTENT
[0004] The utility model aims at providing a pull rod type side slope deformation monitoring device to solve the problems in the prior art.
[0005] In order to realize the above object, the utility model provides the following technical scheme: a pull rod type side slope deformation monitoring device, including the side slope body, the outside of the side slope body is provided with the monitoring mechanism, the monitoring mechanism includes the fixed frame, the bottom surface of the fixed frame is fixedly connected with the side slope body, the inner wall of the fixed frame is rotatably connected with two support adjusting rods, the monitoring barrel is fixedly connected between the two support adjusting rods;
[0006] The inner wall of the monitoring barrel is fixedly connected with the fixed cylinder, the inner wall of the fixed cylinder is fixedly connected with the distance sensor body, the inner wall of the fixed frame is rotatably connected with the trigger rod.
[0007] Preferably, the end, away from the fixed frame, of the trigger rod is rotatably connected with the connecting plate, the outer surface of the connecting plate is fixedly connected with the side slope body, by anchoring the connecting plate on the inclined surface of the side slope body, when the side slope body deforms, the connecting plate will follow displacement synchronously.
[0008] Preferably, the inner wall of the fixed cylinder is slidably connected with the monitoring plate, the outer surface of the monitoring plate is fixedly connected with the connecting sliding rod, and the outer surface of the connecting sliding rod is slidably connected with the fixed cylinder, when the connecting sliding rod moves under pressure, the monitoring plate can be driven to slide in the inner wall of the fixed cylinder simultaneously.
[0009] Preferably, one end of the connecting slide far away from the monitoring plate is fixedly connected with a contact plate, and the outer surface of the connecting slide is sleeved with a supporting spring, and the two ends of the supporting spring are fixedly connected with the fixed cylinder and the contact plate respectively.
[0010] Preferably, the outer surface of the fixed frame is fixedly connected with a protective shell, the inner wall of the protective shell is fixedly connected with a driving motor, and the output end of the driving motor is fixedly connected with the supporting adjusting rod.
[0011] Preferably, the inner wall of the protective shell is fixedly connected with a wireless module assembly, and the inner wall of the protective shell is fixedly connected with a storage battery.
[0012] Preferably, the outer surface of the fixed frame is fixedly connected with a protective shell, the inner wall of the protective shell is fixedly connected with a driving motor, and the output end of the driving motor is fixedly connected with the supporting adjusting rod.
[0013] Compared with the prior art, the utility model has the advantages that:
[0014] 1、The pull rod type slope deformation monitoring device realizes multi-dimensional monitoring of the slope body through the cooperation of the components in the monitoring mechanism, and the data monitored by the slope body can be uploaded to the terminal equipment in real time through the wireless module assembly and displayed, so that the related personnel can quickly respond and deal with the deformation of the slope body, and the practical value of the device is improved.
[0015] 2、The pull rod type slope deformation monitoring device realizes effective conversion of solar energy into electrical energy and storage in the storage battery through the cooperation of the components in the power supply mechanism, effectively breaks away from the dependence on municipal power supply in field application, and realizes power supply through solar energy without wiring, greatly reduces the construction cost of complex terrain, and makes the device more environmentally friendly. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a whole structure schematic view of the utility model;
[0017] Figure 2 It is a three-dimensional structure schematic view of the monitoring mechanism of the utility model;
[0018] Figure 3 It is the three-dimensional structure schematic view of the distance sensor body of the utility model.
[0019] Figure 4 It is the three-dimensional structure schematic view of the trigger lever of the utility model.
[0020] The label in the figure: 1, the slope body; 2, monitoring mechanism; 201, fixed frame; 202, support adjusting lever; 203, monitoring cylinder; 204, fixed cylinder; 205, distance sensor body; 206, trigger lever; 207, connecting plate; 208, monitoring plate; 209, connecting slide bar; 210, contact plate; 211, support spring; 212, protective shell; 213, drive motor; 214, wireless module assembly; 215, battery; 3, power supply mechanism; 301, installation frame; 302, solar panel. DETAILED DESCRIPTION
[0021] The technical scheme in the embodiments of the utility model will be described clearly and completely in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.
[0022] As shown in Figure 1 and Figure 2 , the utility model provides a kind of technical scheme of pull rod type slope deformation monitoring device, including slope body 1, the outside of slope body 1 is provided with monitoring mechanism 2, monitoring mechanism 2 includes fixed frame 201, the bottom surface of fixed frame 201 is fixedly connected with slope body 1, the inner wall of fixed frame 201 is rotatably connected with two support adjusting levers 202, two support adjusting levers 202 are fixedly connected with monitoring cylinder 203 between, by the setting of support adjusting lever 202, effectively the support limiting effect of monitoring cylinder 203 is played.
[0023] As shown in Figure 1 , Figure 2 , Figure 3 and Figure 4 , the inner wall of monitoring cylinder 203 is fixedly connected with fixed cylinder 204, the inner wall of fixed cylinder 204 is fixedly connected with distance sensor body 205, the inner wall of fixed frame 201 is rotatably connected with trigger lever 206, the end of trigger lever 206 away from connecting plate 207 is set in fixed frame 201 by limit ball sleeve, when slope body 1 is deformed, so that trigger lever 206 can be twisted in fixed frame 201 at the same time.
[0024] The end of the trigger lever 206 away from the fixed frame 201 is rotationally connected with a connecting plate 207, the outer surface of the connecting plate 207 is fixedly connected with the slope body 1, by anchoring the connecting plate 207 on the slope surface of the slope body 1, when the slope body 1 deforms, the connecting plate 207 will follow the displacement synchronously.
[0025] The inner wall of the fixed cylinder 204 is slidingly connected with a monitoring plate 208, the outer surface of the monitoring plate 208 is fixedly connected with a connecting sliding rod 209, the outer surface of the connecting sliding rod 209 is slidingly connected with the fixed cylinder 204, when the connecting sliding rod 209 moves under pressure, the monitoring plate 208 can be driven to slide in the inner wall of the fixed cylinder 204 at the same time, a sealing ring is installed between the fixed cylinder 204 and the connecting sliding rod 209, by the setting of the sealing ring, the outside dust can be prevented from entering, and the sliding stability of the connecting sliding rod 209 is effectively guaranteed.
[0026] The end of the connecting sliding rod 209 away from the monitoring plate 208 is fixedly connected with a contact plate 210, the outer surface of the connecting sliding rod 209 is sleeved with a supporting spring 211, the two ends of the supporting spring 211 are fixedly connected with the fixed cylinder 204 and the contact plate 210 respectively, by the setting of the supporting spring 211, the contact plate 210 is effectively supported, so that each contact plate 210 can keep the position synchronous in the initial state, and the monitoring precision of the distance sensor body 205 is significantly improved.
[0027] The outer surface of the fixed frame 201 is fixedly connected with a protective shell 212, the inner wall of the protective shell 212 is fixedly connected with a driving motor 213, the output end of the driving motor 213 is fixedly connected with the supporting adjusting rod 202, by starting the driving motor 213, the monitoring cylinder 203 between the two supporting adjusting rods 202 can be effectively driven to rotate around the supporting adjusting rod 202 as the axis, by the setting of the protective shell 212, the electrical equipment in the application is effectively protected.
[0028] The inner wall of the protective shell 212 is fixedly connected with a wireless module assembly 214, the inner wall of the protective shell 212 is fixedly connected with a storage battery 215, by the cooperative action of the wireless module assembly 214 and the distance sensor body 205, the monitoring data of the slope body 1 can be effectively uploaded to the terminal equipment in real time for display, and the terminal equipment can query the monitoring data of the previous time period.
[0029] The distance sensor body 205, the driving motor 213, the wireless module assembly 214 and the terminal equipment mentioned in the application are all common electrical equipment and electronic elements in the prior art, the model and internal structure of which will not be described in detail, and the parts in the application are made of high-strength corrosion-resistant materials, so that the service life of the device is significantly improved.
[0030] As Figure 1As shown, the outer part of the slope body 1 is provided with a power supply mechanism 3, the power supply mechanism 3 comprises a mounting frame 301, the outer surface of the mounting frame 301 is fixedly connected with the fixed frame 201, and the inner wall of the mounting frame 301 is fixedly connected with a solar panel 302. Through the arrangement of the solar panel 302, the solar energy can be effectively converted into electrical energy and stored in the battery 215. In field applications, the dependence on municipal power supply can be effectively eliminated. Through solar power supply, wiring is not required, the construction cost of complex terrain is greatly reduced, and the device is more environmentally friendly.
[0031] The structures of the components shown in the drawings are exemplary illustrations, and the specific embodiments should be adapted and optimized in terms of structure parameters, size specifications and connection modes in combination with the functional requirements, assembly conditions and process limitations in actual application scenarios.
[0032] Working principle: first, the fixed frame 201 and the connecting plate 207 are firmly fixed on the slope body 1 through the anchor, then the driving motor 213 is started to drive the support adjusting rod 202 to rotate according to the inclination of the trigger rod 206, the support adjusting rod 202 drives the monitoring cylinder 203 to rotate synchronously, the monitoring cylinder 203 is adjusted to be parallel to the trigger rod 206 in combination with the existing horizontal equipment during the rotation process, when the slope body 1 deforms, the connecting plate 207 will be displaced synchronously, the connecting plate 207 drives the trigger rod 206 to twist in the fixed frame 201, the fixed frame 201 is twisted and touches the contact plate 210, the contact plate 210 is pressed and drives the connecting slide rod 209 to slide in the fixed cylinder 204, the fixed cylinder 204 slides and changes the distance between the monitoring plate 208 and the distance sensor body 205, the distance sensor body 205 is data-connected with the wireless module assembly 214, so that the distance between the monitoring plate 208 and the distance sensor body 205 is sent to the wireless module assembly 214 in real time, and then the data is uploaded to the terminal equipment in real time to display, through this optimization, when the slope body 1 deforms, relevant personnel can respond and deal quickly, and the practical value of the device is significantly improved. Secondly, through the arrangement of the solar panel 302, the solar energy can be effectively converted into electrical energy and stored in the battery 215. In field applications, the dependence on municipal power supply can be effectively eliminated. Through solar power supply, wiring is not required, the construction cost of complex terrain is greatly reduced, and the device is more environmentally friendly.
[0033] 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 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 pull rod type slope deformation monitoring device comprising a slope body (1), characterized in that: The outer part of the slope body (1) is provided with a monitoring mechanism (2), the monitoring mechanism (2) comprises a fixing frame (201), the bottom surface of the fixing frame (201) is fixedly connected with the slope body (1), the inner wall of the fixing frame (201) is rotatably connected with two supporting adjusting rods (202), and the monitoring barrel (203) is fixedly connected between the two supporting adjusting rods (202); the inner wall of the monitoring barrel (203) is fixedly connected with a fixed barrel (204), the inner wall of the fixed barrel (204) is fixedly connected with a distance sensor body (205), and the inner wall of the fixing frame (201) is rotatably connected with a trigger rod (206).
2. The pull rod type slope deformation monitoring device according to claim 1, characterized in that: The end, away from the fixing frame (201), of the trigger rod (206) is rotatably connected with a connecting plate (207), and the outer surface of the connecting plate (207) is fixedly connected with the slope body (1).
3. The drawbar type slope deformation monitoring device according to claim 1, characterized in that: The inner wall of the fixed barrel (204) is slidably connected with a monitoring plate (208), and the outer surface of the monitoring plate (208) is fixedly connected with a connecting sliding rod (209); the outer surface of the connecting sliding rod (209) is slidably connected with the fixed barrel (204).
4. The pull rod type slope deformation monitoring device according to claim 3, characterized in that: The end, away from the monitoring plate (208), of the connecting sliding rod (209) is fixedly connected with a contact plate (210), the outer surface of the connecting sliding rod (209) is sleeved with a supporting spring (211), and the two ends of the supporting spring (211) are fixedly connected with the fixed barrel (204) and the contact plate (210) respectively.
5. The pull rod type slope deformation monitoring device according to claim 1, characterized in that: The outer surface of the fixing frame (201) is fixedly connected with a protective shell (212), the inner wall of the protective shell (212) is fixedly connected with a driving motor (213), and the output end of the driving motor (213) is fixedly connected with the supporting adjusting rod (202).
6. The pull rod type slope deformation monitoring device according to claim 5, characterized in that: The inner wall of the protective shell (212) is fixedly connected with a wireless module assembly (214), and the inner wall of the protective shell (212) is fixedly connected with a storage battery (215).
7. The pull rod type slope deformation monitoring device according to claim 1, characterized in that: The outer part of the slope body (1) is provided with a power supply mechanism (3), the power supply mechanism (3) comprises an installation frame (301), the outer surface of the installation frame (301) is fixedly connected with the fixing frame (201), and the inner wall of the installation frame (301) is fixedly connected with a solar power generation panel (302).