Road slope stability monitoring sensor mounting rack

The sensor mounting frame, which uses ropes to form a mesh structure, solves the problem of low detection sensitivity of traditional sensors, achieving efficient slope collapse detection and cost savings.

CN223691771UActive Publication Date: 2025-12-19山东省公路检测中心
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Patent Information

Application Number
CN202520342241.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2025-12-19
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Traditional slope detection sensors lack linkage, resulting in low sensitivity in detecting small-scale collapses, and increasing sensor density will increase engineering costs.

Method used

The sensor mounting bracket uses ropes to form a mesh structure. The ropes trigger the sensors to sound an alarm when there is a small-scale collapse. Combined with photovoltaic power supply, the sensor density is reduced to improve detection sensitivity and save costs.

Benefits of technology

It improves the sensitivity of small-scale slope collapse detection, avoids false alarms, reduces engineering costs, and eliminates the need for external power supply.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a road slope stability monitoring sensor mounting rack, which relates to the technical field of road safety detection, and comprises a mounting seat, a positioning insertion shaft is fixedly arranged on the lower surface of the mounting seat, the positioning insertion shaft is perpendicular to the lower surface of the mounting seat, a photovoltaic panel is fixedly connected above the mounting seat through a support, and the photovoltaic panel is fixedly connected with the mounting seat through the support. A storage battery is installed below the photovoltaic panel, the sensitivity of slope collapse detection is effectively improved, the detection sensitivity is guaranteed while the sensor installation density is reduced, the engineering cost is saved, and the problems that a traditional slope detection sensor is fixedly installed in a slope through an installation support, linkage is lacked between adjacent sensors, and the detection efficiency is poor are solved. And if local small-range collapse occurs on the side slope between the two detection sensors, detection by the sensors is not easy, the detection sensitivity on the small-range collapse of the side slope is low, and if the detection sensitivity is improved, the installation density of the sensors needs to be improved, so that the engineering cost is increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to road safety detection technical field especially, relates to a road side slope stability monitoring sensor mounting bracket. BACKGROUND

[0002] Road side slope stability monitoring is an important link to ensure the safe operation of traffic facilities, and the sensor plays a crucial role in this process, which is used to measure the change of the inclination angle of the slope. When the slope is inclined, the inclination sensor can sense and output the corresponding signal in real time, helping the monitoring personnel to judge the deformation trend of the slope and the risk of landslide that may occur.

[0003] For the traditional slope detection sensor, it is fixedly installed in the slope through a mounting bracket, and a certain range of slopes is monitored by multiple detection sensors. There is a lack of linkage between adjacent sensors. If the slope between two detection sensors collapses locally in a small range, it is not easy to be detected by the sensor. The detection sensitivity of the small range of collapse in the slope is low, and it cannot play a good early warning effect. If the detection sensitivity is improved, the sensor installation density needs to be improved, which will increase the engineering cost. SUMMARY

[0004] The present disclosure relates to a road side slope stability monitoring sensor mounting bracket to solve the problem that the traditional slope detection sensor is fixedly installed in the slope through a mounting bracket, and a certain range of slopes is monitored by multiple detection sensors. There is a lack of linkage between adjacent sensors. If the slope between two detection sensors collapses locally in a small range, it is not easy to be detected by the sensor. The detection sensitivity of the small range of collapse in the slope is low, and it cannot play a good early warning effect.

[0005] In a first aspect, the present disclosure provides a road side slope stability monitoring sensor mounting bracket, which specifically comprises: a mounting seat, a positioning insert shaft is fixedly arranged on the lower surface of the mounting seat, the positioning insert shaft is perpendicular to the lower surface of the mounting seat, a photovoltaic panel is fixedly connected to the upper side of the mounting seat through a support, a storage battery is arranged below the photovoltaic panel, a multidirectional assembly seat is fixedly connected to the upper surface of the mounting seat, four movable trigger seats are movably connected to the upper side of the multidirectional assembly seat, a positioning rotary plate is hingedly connected to the upper side of the movable trigger seat, a rope is clamped and connected between the movable trigger seat and the positioning rotary plate, four slope detection sensors are fixedly connected to the upper surface of the mounting seat, the slope detection sensors are connected to the movable trigger seat through flexible wires, an alarm is fixedly connected to the center of the upper surface of the mounting seat, and the alarm is connected to the storage battery through an electrical connection line.

[0006] Further, the upper surface of the multidirectional assembly seat is fixedly connected with two directional guide rails, and a buffer tension spring is fixedly connected to the upper side of the multidirectional assembly seat.

[0007] Further, the lower surface of the movable trigger seat is fixedly connected with two directional guide rods, the directional guide rods are slidingly connected above the directional guide rails, and the upper surface of the movable trigger seat is provided with a lower annular locking groove in a U-shaped structure.

[0008] Further, the movable trigger seat is longitudinally provided with a lower butt joint through hole in a circular hole structure, and the upper surface of the movable trigger seat is fixedly connected with a trigger seat connecting plate, which is fixedly connected with the buffer tension spring.

[0009] Further, the lower surface of the positioning rotary plate is provided with an upper annular locking groove in a U-shaped structure, and the center of the positioning rotary plate is provided with an upper butt joint through hole, which is connected with the lower butt joint through hole through bolts.

[0010] Further, in the state that the positioning rotary plate is horizontally attached to the movable trigger seat, the lower annular locking groove is aligned with the upper annular locking groove, and the rope is located in the gap formed by the lower annular locking groove and the upper annular locking groove.

[0011] The utility model provides a kind of roadside slope stability monitoring sensor mounting rack, with following beneficial effects:

[0012] The stability detection sensor support in the utility model is used for the stability detection of roadside slope surface, when the support is installed, the surrounding sensor support is connected by rope, forms net structure and covers on the slope surface, if small range collapse occurs between adjacent detection sensors, can trigger rope, makes sensor in rope trigger sensor support, alarm is carried out by sensor, effectively improve the sensitivity of slope collapse detection, reduce the installation density of sensor while guaranteeing detection sensitivity, saves engineering cost.

[0013] In addition, the rope connecting structure of adjacent sensor supports is provided with compensation distance, which can avoid the situation that sensor is triggered and false alarm occurs due to animal touching rope, avoid false triggering while ensuring the sensitivity of collapse detection, photovoltaic panel and battery are provided, which can provide electric energy for sensor and alarm, without connecting power supply line to sensor. BRIEF DESCRIPTION OF DRAWINGS

[0014] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the drawings of the embodiments will be briefly introduced below.

[0015] The drawings described below only relate to some embodiments of the utility model, and are not limited to the utility model.

[0016] In the drawings:

[0017] Figure 1 The schematic diagram of the overall structure of the present application is shown.

[0018] Figure 2 The structure diagram of the bottom of the application is shown;

[0019] Figure 3 The structure diagram of the mounting seat of the application is shown when the mounting seat is combinedly installed;

[0020] Figure 4 The structure diagram of the multi-directional assembly seat of the application is shown;

[0021] Figure 5 The structure diagram of the positioning rotary plate of the application is shown;

[0022] Figure 6 The structure diagram of the multi-directional assembly seat and the movable trigger seat in a separated state is shown.

[0023] List of reference signs

[0024] 1, mounting seat; 2, positioning insertion shaft; 3, photovoltaic panel; 4, storage battery; 5, multi-directional assembly seat; 501, directional guide rail; 502, buffer tension spring; 6, movable trigger seat; 601, directional guide rod; 602, lower annular locking groove; 603, lower butt joint through hole; 604, trigger seat connecting plate; 7, positioning rotary plate; 701, upper annular locking groove; 702, upper butt joint through hole; 8, slope detection sensor; 9, alarm. DETAILED DESCRIPTION

[0025] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme of the embodiments of the present application will be described clearly and completely below in combination with the drawings of the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] Embodiment one: please refer to Figures 1 to 6 :

[0027] The utility model provides a kind of roadside slope stability monitoring sensor mounting rack, comprising: mounting seat 1, the lower surface of mounting seat 1 is fixedly understood to have positioning insert shaft 2, positioning insert shaft 2 is perpendicular to the lower surface of mounting seat 1, the upper portion of mounting seat 1 is fixedly connected with photovoltaic panel 3 by support, the lower portion of photovoltaic panel 3 is equipped with battery 4, the upper surface of mounting seat 1 is fixedly connected with multidirectional assembly seat 5, the upper portion of multidirectional assembly seat 5 is movably connected with four active trigger seat 6, active trigger seat 6 upper hinged has positioning rotary plate 7, active trigger seat 6 and positioning rotary plate 7 are clamped and connected with rope, the upper surface of mounting seat 1 is fixedly connected with four side slope detection sensors 8, side slope detection sensor 8 is connected active trigger seat 6 by flexible wiring, the upper surface of mounting seat 1 is fixedly connected with alarm 9, alarm 9 and side slope detection sensor 8 are connected battery 4 by electric connection line;The electrical energy generated by photovoltaic panel 3 is stored by battery 4, and side slope detection sensor 8, alarm 9 is continuously powered, so that monitoring sensor continuously operates, so that monitoring sensor does not need to connect power supply line, reduce the construction amount of project, reduce the consumption of electrical energy.

[0028] In the embodiment of the present disclosure, the upper surface of the multidirectional assembly seat 5 is fixedly connected with two directional guide rails 501, the upper surface of the multidirectional assembly seat 5 is fixedly connected with a buffer tension spring 502, the lower surface of the active trigger seat 6 is fixedly connected with two directional guide rods 601, the directional guide rods 601 are slidingly connected above the directional guide rails 501, the upper surface of the active trigger seat 6 is provided with a "U"-shaped lower annular lock groove 602, the active trigger seat 6 is longitudinally provided with a lower butt joint aperture 603 of a circular hole structure, the upper surface of the active trigger seat 6 is fixedly connected with a trigger seat connecting plate 604, and the trigger seat connecting plate 604 is fixedly connected with the buffer tension spring 502; the active trigger seat 6 is slidingly connected to the multidirectional assembly seat 5, so that the active trigger seat 6 can move horizontally, the trigger distance is increased, and the situation that the sensor is triggered by the animal touching the rope to cause false alarm can be avoided, while the sensitivity of the collapse detection is ensured.

[0029] In the embodiment of the present disclosure, the upper surface of the multidirectional assembly seat 5 is fixedly connected with two directional guide rails 501, the upper surface of the multidirectional assembly seat 5 is fixedly connected with a buffer tension spring 502, the lower surface of the active trigger seat 6 is fixedly connected with two directional guide rods 601, the directional guide rods 601 are slidingly connected above the directional guide rails 501, the upper surface of the active trigger seat 6 is provided with a "U"-shaped lower annular lock groove 602, the active trigger seat 6 is longitudinally provided with a lower butt joint aperture 603 of a circular hole structure, the upper surface of the active trigger seat 6 is fixedly connected with a trigger seat connecting plate 604, and the trigger seat connecting plate 604 is fixedly connected with the buffer tension spring 502; the active trigger seat 6 is slidingly connected to the multidirectional assembly seat 5, so that the active trigger seat 6 can move horizontally, the trigger distance is increased, and the situation that the sensor is triggered by the animal touching the rope to cause false alarm can be avoided, while the sensitivity of the collapse detection is ensured.

[0030] The working principle of the embodiment is as follows: first, the installation position and installation density of the monitoring sensor are reasonably planned, the positioning shaft 2 is inserted into the installation area ground, the mounting seat 1 is fixed in the monitored ground, the positioning rotary plate 7 is opened, the rope is placed above the movable trigger seat 6 along the lower annular locking groove 602, and the positioning rotary plate 7 is rotated to cover above the movable trigger seat 6, so that the upper annular locking groove 701 and the lower annular locking groove 602 are jointly attached to the rope, the movable trigger seat 6 and the positioning rotary plate 7 are reinforced through the bolt passing through the lower butt joint opening 603 and the upper butt joint opening 702, the rope is fixed, the adjacent sensor mounting racks are connected through the rope, when local collapse occurs, the collapse triggers the rope, the rope pulls the movable trigger seat 6 outward, the movable trigger seat 6 moves outward, the movable trigger seat 6 pulls the slope detection sensor 8 through the flexible wire to trigger it, and the alarm 9 sends an alarm signal to alarm the relevant departments, so as to handle the collapse accident in time.

[0031] In this paper, the following points need attention:

[0032] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.

[0033] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined to obtain new embodiments.

[0034] The above is only a specific embodiment of the present disclosure, but the protection scope of the present disclosure is not limited to this, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. A roadside slope stability monitoring sensor mounting bracket comprising: The utility model provides a mounting seat (1), the lower surface of mounting seat (1) is fixed to understand the positioning plug axle (2), it is characterized in that, the positioning plug axle (2) is perpendicular to the lower surface of mounting seat (1), the upper of mounting seat (1) is fixedly connected with photovoltaic board (3) through support, the lower of photovoltaic board (3) is installed with battery (4), the upper surface of mounting seat (1) is fixedly connected with multidirectional assembly seat (5), the upper of multidirectional assembly seat (5) is movably connected with four movable trigger seat (6), the upper of movable trigger seat (6) is hinged with positioning rotary plate (7), the rope is clampedly connected between movable trigger seat (6) and positioning rotary plate (7), the upper surface of mounting seat (1) is fixedly connected with four side slope detection sensor (8), side slope detection sensor (8) is connected movable trigger seat (6) through flexible wiring, the upper surface center of mounting seat (1) is fixedly connected with alarm (9), and alarm (9) is connected battery (4) through electric connection line with side slope detection sensor (8).

2. The road slope stability monitoring sensor mounting rack according to claim 1, wherein, the upper surface of the multidirectional assembly seat (5) is fixedly connected with two directional guide rails (501), and the upper of the multidirectional assembly seat (5) is fixedly connected with a buffer tension spring (502).

3. The road slope stability monitoring sensor mounting rack according to claim 2, wherein, the lower surface of the movable trigger seat (6) is fixedly connected with two directional guide rods (601), the directional guide rods (601) are slidingly connected above the directional guide rails (501), and the upper surface of the movable trigger seat (6) is provided with a "U"-shaped lower annular locking groove (602).

4. The road slope stability monitoring sensor mounting rack according to claim 3, wherein, the movable trigger seat (6) is longitudinally provided with a lower butt joint through hole (603) of a circular hole structure, the upper surface of the movable trigger seat (6) is fixedly connected with a trigger seat connecting plate (604), and the trigger seat connecting plate (604) is fixedly connected with the buffer tension spring (502).

5. The road slope stability monitoring sensor mounting rack according to claim 4, wherein, the lower surface of the positioning rotary plate (7) is provided with an "U"-shaped upper annular locking groove (701), the center of the positioning rotary plate (7) is provided with an upper butt joint through hole (702), and the upper butt joint through hole (702) is connected with the lower butt joint through hole (603) through a bolt.

6. The road slope stability monitoring sensor mounting rack according to claim 5, wherein, in the state that the positioning rotary plate (7) is horizontally attached to the movable trigger seat (6), the lower annular locking groove (602) is aligned with the upper annular locking groove (701), and the rope is located in the gap formed by the lower annular locking groove (602) and the upper annular locking groove (701).