High abrupt slope online monitoring device convenient to install
By designing an online monitoring device with fixed rods, universal balls and monitoring mechanisms on steep slopes, the problems of traditional monitoring being labor-intensive and difficult to install are solved, convenient installation and timely loosening detection are achieved, and monitoring efficiency is improved.
Patent Information
- Application Number
- CN202423276043.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Traditional high and steep slope monitoring consumes a lot of manpower and cannot detect looseness in time, and is difficult to install.
An online monitoring device consisting of a fixed rod, a universal ball and a monitoring mechanism was designed. The fixed rod was rotated and inserted into the slope surface. The universal ball and limit ring were used to facilitate the installation of the device. When the soil was loose, the induction switch emitted a signal to alert the monitoring personnel.
It realizes convenient installation and timely loosening detection of high and steep slope monitoring devices, and improves the practicality and efficiency of monitoring.
Smart Images

Figure CN223483850U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of slope monitoring technology, specifically to an online monitoring device for steep slopes that is easy to install. Background Technology
[0002] Steep slopes have a certain gradient. Traditionally, steep slopes are monitored manually, which is not only labor-intensive but also fails to detect slope loosening in a timely manner. The gradient of steep slopes also increases the difficulty of installing monitoring devices. Therefore, an online monitoring device for steep slopes that is easy to install is proposed. Utility Model Content
[0003] The purpose of this utility model is to address the shortcomings and deficiencies of existing technologies by providing an easy-to-install online monitoring device for steep slopes. The fixing rod is rotatably inserted into the slope, allowing the base to be fixed on the slope. This makes the monitoring device easy to install on the slope and improves its practicality. When the soil in the slope becomes loose, the top ball disengages from the induction switch, and the induction switch sends a signal to constantly remind the monitoring personnel that the slope has become loose.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: it includes a base;
[0005] It also includes:
[0006] The fixing rods are of several kinds and are threaded in a ring on the base;
[0007] Connecting rod number one, which is fixed to the left side of the upper surface of the base;
[0008] The omnidirectional ball is rotatably embedded in the first connecting rod;
[0009] Second connecting rod, which is fixed to the universal ball;
[0010] The adjustment plate is fixed to the second connecting rod on its bottom left side;
[0011] The fixing tubes are two in number, and are respectively located at the front and rear of the bottom of the adjusting plate;
[0012] Two adjusting screws are provided, each screwed onto the base via bearings; the adjusting screws are threaded into the bottom of the fixed tube.
[0013] Two No. 1 limiting rings are provided, and each ring is fitted and fixed onto a fixed tube.
[0014] The monitoring mechanism is connected to the regulating plate.
[0015] Preferably, the bottom of the fixing rod is a cone, and the upper end of the fixing rod is provided with a slot.
[0016] Preferably, the hand-tightened bolt passes through the upper end of the annular wall of the first connecting rod via a threaded connection, and its inner end rests against the universal ball.
[0017] Preferably, the two limiting screws are fixed on the fixed pipe respectively; a second limiting ring is provided on the limiting screw through a threaded connection.
[0018] Preferably, the monitoring agency comprises:
[0019] A connecting column is fixed to an adjusting plate; a connecting plate is fixed to the upper right side wall of the connecting column; a sensor switch is connected to the bottom of the connecting plate, the sensor switch is connected to an external power supply, and the sensor switch has a built-in signal transmitter.
[0020] A connecting ball is located at the lower part of the inductive switch. A first connecting ring is rolled in the middle of the connecting ball. There is a third connecting rod on the left side of the ring wall of the first connecting ring. The third connecting rod has an "L" shaped structure and is fixed to the connecting plate.
[0021] The fourth connecting rod is fixed on the connecting ball. A connecting tube is movably sleeved on the upper end of the fourth connecting rod. A top ball is fixed on the upper end of the connecting tube and abuts against the bottom of the inductive switch. A spring is sleeved on the fourth connecting rod. One end of the spring is fixed on the connecting ball and the other end of the spring is fixed on the connecting tube.
[0022] Connecting rod No. 5, which is fixed to the bottom of the connecting ball;
[0023] The insertion rod is movably sleeved on the No. 5 connecting rod, and the insertion rod has threads and a cone-shaped bottom.
[0024] Preferably, a second connecting ring is fixedly fitted onto the upper end of the insertion rod, and several rotating rods are distributed in a ring on the ring wall of the second connecting ring.
[0025] Compared with the prior art, the beneficial effects of the present invention are:
[0026] 1. A fixing rod is provided, which is rotatably inserted into the slope so that the base can be fixed on the slope;
[0027] 2. Equipped with a universal ball and a No. 1 limit ring, the monitoring device is easy to install on a slope, improving its practicality;
[0028] 3. A monitoring mechanism is installed. When the soil on the slope becomes loose, the top ball disengages from the induction switch, and the induction switch sends a signal to remind the monitoring personnel that the slope has become loose. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the structure of this utility model.
[0030] Figure 2 yes Figure 1 Enlarged view of part A in the image.
[0031] Figure 3 This is the southwest isometric view of this utility model.
[0032] Figure 4 yes Figure 3 Enlarged view of part B in the image.
[0033] Explanation of reference numerals in the attached figures:
[0034] 1. Base; 2. Fixing rod; 2-1. Slot; 3. Connecting rod 1; 4. Universal ball; 5. Hand-tightening bolt; 6. Connecting rod 2; 7. Adjusting plate; 8. Fixing tube; 9. Adjusting screw; 10. Limiting ring 1; 11. Limiting screw 1; 12. Limiting ring 2; 13. Monitoring mechanism; 13-1. Connecting column; 13-2. Connecting plate; 13-3. Induction switch; 13-4. Connecting ball 1; 13-5. Connecting rod 3; 13-6. Connecting rod 4; 13-7. Connecting tube; 13-8. Top ball; 13-9. Spring; 13-10. Connecting rod 5; 13-11. Insert rod; 13-12. Connecting ring 2; 13-13. Rotating rod; 13-14. Detailed Implementation
[0035] The technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. The preferred embodiments described are only examples. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0036] The specific implementation method adopts the following technical solution:
[0037] Please see Figure 1-4 This embodiment includes a base 1;
[0038] It also includes:
[0039] The fixing rod 2 is a plurality of rods, which are threaded in a ring on the base 1; the bottom of the fixing rod 2 is a cone and the upper end of the fixing rod 2 is provided with a slot 2-1.
[0040] Connecting rod 3 is fixed to the left side of the upper surface of base 1 by bolts.
[0041] The universal ball 4 is rolled and embedded on the first connecting rod 3; the hand-tightening bolt 5 passes through the upper end of the annular wall of the first connecting rod 3 by threading, and its inner end abuts against the universal ball 4.
[0042] Second connecting rod 6, which is fixed on the universal ball 4;
[0043] Adjusting plate 7, the bottom left side of which is fixed to the second connecting rod 6 by bolts;
[0044] There are two fixing tubes 8, which are respectively located at the bottom front and rear of the adjusting plate 7.
[0045] Two adjusting screws 9 are provided, each screwed onto the base 1 via bearings; the adjusting screws 9 are threaded into the bottom of the fixed tube 8.
[0046] Two No. 1 limiting rings 10 are provided, and each is respectively fitted and fixed on the fixing tube 8.
[0047] There are two limiting screws 11, which are respectively fixed on the fixing tube 8; a second limiting ring 12 is provided on the limiting screw 11 by threaded connection;
[0048] Monitoring mechanism 13, which is connected to adjustment plate 7; monitoring mechanism 13 includes:
[0049] The connecting column 13-1 is fixed to the adjusting plate 7 by bolts; the upper right side wall of the connecting column 13-1 is fixed to the connecting plate 13-2 by bolts; the bottom of the connecting plate 13-2 is connected to the induction switch 13-3, which is connected to an external power supply. The induction switch 13-3 has a built-in signal transmitter. The specific model of the induction switch 13-3 is purchased and installed directly from the market according to the actual use requirements.
[0050] Connecting ball 13-4 is located at the lower part of inductive switch 13-3. A first connecting ring 13-5 is rolled in the middle of the connecting ball 13-4. A third connecting rod 13-6 is bolted to the left side of the ring wall of the first connecting ring 13-5. The third connecting rod 13-6 has an "L" shaped structure and is fixed to the connecting plate 13-2.
[0051] Connecting rod 13-7 is fixed to connecting ball 13-4 by bolts. Connecting tube 13-8 is movably sleeved on the upper end of connecting rod 13-7. Top ball 13-9 is fixed on the upper end of connecting tube 13-8 and abuts against the bottom of inductive switch 13-3. Spring 13-10 is sleeved on connecting rod 13-7. One end of spring 13-10 is fixed to connecting ball 13-4 and the other end of spring 13-10 is fixed to connecting tube 13-8.
[0052] Connecting rod 13-11, which is fixed to the bottom of connecting ball 13-4 by bolts;
[0053] Insert rod 13-12 is movably sleeved on connecting rod 13-11. Insert rod 13-12 is threaded and has a conical bottom. Connecting ring 13-13 is fixedly sleeved on the upper end of insert rod 13-12. Several rotating rods 13-14 are distributed in a ring on the ring wall of connecting ring 13-13.
[0054] When using this utility model, the fixing rod 2 is rotatably inserted into the slope. The fixing rod 2 is rotated using the tool box slot 2-1 to fix the base 1. Loosen the hand-tightening bolt 5, unscrew the second limiting ring 12, rotate the fixing tube 8 to lower it, so that the adjusting plate 7 can rotate along the universal ball 4. After adjusting the position of the adjusting plate 7 to a horizontal position, tighten the hand-tightening bolt 5 to position the universal ball 4. Rotate the fixing tube 8 to raise the first limiting ring 10 to abut against the bottom of the adjusting plate 7. Screw the second limiting ring 12 onto the limiting screw 11. The second limiting ring 12 lowers to abut against the adjusting plate 7, so that the adjusting plate 7 is fixed.
[0055] Rotate the rotating rod 13-14 to make the insertion rod 13-12 rotate and be inserted into the soil. When the soil on the slope becomes loose, the insertion rod 13-12 shifts, causing the fifth connecting rod 13-11 to drive the connecting ball 13-4 to rotate, which in turn causes the fourth connecting rod 13-7 to rotate, causing the top ball 13-9 to move on the induction switch 13-3. When the top ball 13-9 disengages from the induction switch 13-3, the induction switch 13-3 sends a signal to constantly remind the monitoring personnel that the slope has become loose.
[0056] Compared with the prior art, the beneficial effects of the present invention are:
[0057] 1. A fixing rod 2 is provided. The fixing rod 2 is rotatably inserted into the slope. The fixing rod 2 is rotated using the slot 2-1 of the tool box so that the base 1 can be fixed on the slope.
[0058] 2. The device is equipped with a universal ball 4 and a first limiting ring 10. The adjusting plate 7 can rotate along the universal ball 4. After adjusting the position of the adjusting plate 7 to a horizontal position, the fixing tube 8 is rotated so that the first limiting ring 10 rises and abuts against the bottom of the adjusting plate 7. The second limiting ring 12 is screwed onto the limiting screw 11 and descends and abuts against the adjusting plate 7, thus fixing the adjusting plate 7. This makes it easier to install the monitoring device on the slope and improves its practicality.
[0059] 3. A hand-tightening bolt 5 is provided. Tightening the hand-tightening bolt 5 will position the universal ball 4, which will facilitate the initial fixation of the adjusting plate 7.
[0060] 4. A monitoring mechanism 13 is provided. When the soil on the slope becomes loose, the insertion rod 13-12 shifts, causing the fifth connecting rod 13-11 to rotate the connecting ball 13-4, which in turn causes the fourth connecting rod 13-7 to rotate, causing the top ball 13-9 to move on the induction switch 13-3. When the top ball 13-9 disengages from the induction switch 13-3, the induction switch 13-3 sends a signal to constantly remind the monitoring personnel that the slope has become loose.
[0061] For those skilled in the art, modifications can be made to the technical solutions described in the foregoing embodiments, and equivalent substitutions can be made to some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. An easy-to-install online monitoring device for steep slopes, comprising a base (1); It is characterized in that It also includes: The number of fixed rods (2) is several, and they are threaded in a ring on the base (1). Connecting rod No. 1 (3) is fixed on the left side of the upper surface of the base (1); The omnidirectional ball (4) is rotatably embedded in the first connecting rod (3); Second connecting rod (6), which is fixed on the universal ball (4); Adjustment plate (7), the bottom left side of which is fixed to the second connecting rod (6); Two fixed tubes (8) are provided, one at the bottom and one at the bottom of the adjusting plate (7). Two adjusting screws (9) are provided, and each is screwed onto the base (1) via bearings. The adjusting screws (9) are threaded into the bottom of the fixed tube (8). Two No. 1 limiting rings (10) are provided and fixed on the fixing tube (8) respectively. The monitoring mechanism (13) is connected to the regulating plate (7).
2. The online monitoring device for steep slopes that is easy to install according to claim 1, characterized in that: The bottom of the fixing rod (2) is a cone, and the upper end of the fixing rod (2) is provided with a slot (2-1).
3. The online monitoring device for steep slopes that is easy to install according to claim 1, characterized in that: After the hand-tightened bolt (5) passes through the upper end of the annular wall of the first connecting rod (3) by threading, its inner end abuts against the universal ball (4).
4. The online monitoring device for steep slopes that is easy to install according to claim 1, characterized in that: Two limiting screws (11) are fixed on the fixed tube (8) respectively; a second limiting ring (12) is provided on the limiting screw (11) by threaded connection.
5. The online monitoring device for steep slopes that is easy to install according to claim 1, characterized in that: The monitoring agency (13) includes: A connecting column (13-1) is fixed on an adjusting plate (7); a connecting plate (13-2) is fixed to the upper right side wall of the connecting column (13-1); a sensor switch (13-3) is connected to the bottom of the connecting plate (13-2), the sensor switch (13-3) is connected to an external power supply, and the sensor switch (13-3) has a built-in signal transmitter; A connecting ball (13-4) is located at the lower part of the induction switch (13-3). A first connecting ring (13-5) is rolled in the middle of the connecting ball (13-4). There is a third connecting rod (13-6) on the left side of the ring wall of the first connecting ring (13-5). The third connecting rod (13-6) has an "L" shaped structure and is fixed to the connecting plate (13-2). The fourth connecting rod (13-7) is fixed on the connecting ball (13-4). The upper end of the fourth connecting rod (13-7) is movably fitted with a connecting tube (13-8). The upper end of the connecting tube (13-8) is fixed with a top ball (13-9), which abuts against the bottom of the induction switch (13-3). A spring (13-10) is fitted on the fourth connecting rod (13-7). One end of the spring (13-10) is fixed on the connecting ball (13-4), and the other end of the spring (13-10) is fixed on the connecting tube (13-8). Connecting rod No. 5 (13-11), which is fixed to the bottom of connecting ball (13-4); Insert rod (13-12), which is movably sleeved on the fifth connecting rod (13-11), has threads on the insert rod (13-12), and the bottom of the insert rod (13-12) is conical.
6. The online monitoring device for steep slopes that is easy to install according to claim 5, characterized in that: The upper end of the insertion rod (13-12) is fitted with a second connecting ring (13-13), and several rotating rods (13-14) are distributed in a ring on the ring wall of the second connecting ring (13-13).