Mine geological disaster monitoring and early warning equipment

By designing the connecting end, rigid connecting rod, orifice suspension component, and cleaning component, the problems of sensor collision and mud influence were solved, the sensor was protected and the mounting slot was cleaned, and the accuracy and stability of mine geological disaster monitoring were improved.

CN223956153UActive Publication Date: 2026-02-27LIAONING LVKE ENVIRONMENTAL ENG CO LTD
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Patent Information

Application Number
CN202520614837.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-02-27
Estimated Expiration
2035-04-03

AI Technical Summary

Technical Problem

Existing fixed inclinometers are prone to collisions with walls during sensor lowering, affecting performance, and lack a cleaning function for the mounting slot, resulting in mud affecting detection accuracy.

Method used

A mine geological disaster monitoring and early warning device was designed, including a connecting end, a rigid connecting rod, an orifice suspension component, and a cleaning component, equipped with a protective cover and a sponge body for protecting the sensor and cleaning the mounting slot.

Benefits of technology

It effectively protects the sensor from collision damage, and the sponge absorbs mud to keep the installation tank clean, thereby improving detection accuracy and equipment stability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223956153U_ABST
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Abstract

The utility model provides mine geological disaster monitoring and early warning equipment, and particularly relates to the technical field of mine slope monitoring equipment, which comprises a connecting end connected with an inclination sensor, a rigid connecting rod arranged above the connecting end and in threaded connection with the connecting end, and an orifice suspension piece connected with the rigid connecting rod, a cleaning part is slidably connected to the orifice suspension part and comprises two communicating holes formed in the orifice suspension part, rod bodies connected with the communicating holes and a top plate arranged at the tops of the two rod bodies, the bottoms of the two rod bodies are connected with a first annular body connected with the rigid connecting rod in a sleeving mode, and a clamping groove is formed in the bottom of the first annular body; a sponge body is arranged on the outer surface of the first annular body, and a protective cover for protecting the inclinometer is slidably connected outside the connecting end; a first annular body and a sponge body are arranged and can be used for cleaning the mounting groove of the equipment, and the sponge body is arranged to adsorb slurry in the position.
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Description

TECHNICAL FIELD

[0001] The utility model relates to mine slope monitoring technical field especially relates to a mine geological disaster monitoring and early warning equipment. BACKGROUND

[0002] The safety of the slope is particularly important in the open pit mine, but the landslide of the slope is a common geological disaster, directly influences production, operation, and even leads to personnel casualty and major property loss, therefore the monitoring and early warning of the slope play an important role to production, operation, so as to prevent the security risk and guarantee the safety of life and property.

[0003] Among them, the fixed inclinometer is an advanced engineering monitoring instrument, mainly used for measuring the inclination change of the structure, to help engineers understand the stability and safety of the building;

[0004] However, the existing fixed inclinometer does not have a sensor protection device, so that the sensor is collided with the wall during the lowering process, thereby affecting the performance of the sensor, and the existing fixed inclinometer does not have a cleaning function for the installation slot, so that the fixed inclinometer is easily affected by the mud during use after installation.

[0005] Therefore, it is necessary to design a monitoring and early warning device with sensor installation protection and fixed inclinometer installation slot cleaning function. UTILITY MODEL CONTENTS

[0006] In order to solve the above problems, the utility model provides a mine geological disaster monitoring and early warning equipment to more exactly solve the above problems.

[0007] The utility model realizes the following technical scheme:

[0008] The utility model provides a mine geological disaster monitoring and early warning equipment, which comprises a connecting end connected with an inclination sensor, a rigid connecting rod arranged above the connecting end and threadedly connected with the connecting end, and an orifice suspension piece connected with the rigid connecting rod, wherein the orifice suspension piece is slidably connected with a cleaning piece, the cleaning piece comprises two communication holes opened on the orifice suspension piece, rod bodies connected with the communication holes, and a top plate arranged on the top of the two rod bodies, the bottom of the two rod bodies is connected with a first annular body sleeved with the rigid connecting rod, the bottom of the first annular body is provided with a clamping block, the outer surface of the first annular body is provided with a sponge body, and the connecting end is slidably connected with a protective cover for protecting the inclinometer.

[0009] The utility model further, the connecting end includes the cylinder, and the intercommunication groove set up on the cylinder, and two pulley spare of setting in the intercommunication groove, two the pulley spare between setting has the spring body, the lower end surface of the cylinder sets up the adjusting groove, the adjusting groove is connected with the protective cover of sliding, the top of protective cover, and the setting of first magnet spare is located on the circumference of the card groove, the top of protective cover, and the first magnet spare is located with the second magnet spare of setting of matching of the card groove above.

[0010] The utility model further, the bottom of the cylinder sets up first inner hole for the lead of tilt sensor passes, first inner hole is linked together with the intercommunication groove, one side of the cylinder sets up second inner hole with intercommunication groove intercommunication, and with first inner hole cooperation.

[0011] The utility model further, the pulley spare includes the two groups of sliding slot of setting up in the intercommunication groove both sides, and the mounting bracket of setting between a group sliding slot, and recessed setting, and the pulley of setting in mounting bracket, two groups of sliding slot, mounting bracket and pulley all adopt mirror image setting, the both sides of mounting bracket are provided with the sliding block with sliding slot cooperation, two mounting bracket between setting has the spring body.

[0012] The utility model further, the hole mouth suspension piece includes recessed frame, and two inner through -hole of setting up in the recessed frame, and the universal connecting rod of setting on the recessed frame, the universal connecting rod with rigid connecting rod screw joint, the adjusting rod of movable joint in two inner through -hole, and the inverted wedge block of setting at the bottom of adjusting rod.

[0013] The utility model further still includes the installation groove for installing connecting end and rigid connecting rod.

[0014] The utility model discloses the beneficial effect:

[0015] The setting of connecting end can facilitate the installation of the tilt sensor, and the setting of the rigid connecting rod can facilitate the installation of the connecting end and the tilt sensor in the installation groove, thereby ensuring the detection of the tilt sensor, and the setting of the hole mouth suspension piece can fix the upper end of the rigid connecting rod, thereby facilitating the dismounting of the device by the worker.

[0016] The setting of the first annular body and the sponge body can be used for cleaning the installation groove of the device, and the setting of the sponge body can adsorb the mud in the position, thereby ensuring the cleanliness of the installation groove of the device. DRAWINGS

[0017] Figure 1 It is the overall structure schematic drawing in the utility model.

[0018] Figure 2 It is the split structure schematic view of the connecting end and the rigid connecting rod in the utility model;

[0019] Figure 3 It is the split structure schematic view of the connecting end and the rigid connecting rod in the utility model;

[0020] Figure 4 It is the split structure schematic view of the connecting end and the rigid connecting rod in the utility model;

[0021] Figure 5 It is the split structure schematic view of the connecting end and the rigid connecting rod in the utility model;

[0022] Figure 6 It is the split structure schematic view of the connecting end and the rigid connecting rod in the utility model;

[0023] Figure 7 It is the split structure schematic view of the connecting end and the rigid connecting rod in the utility model;

[0024] Figure 8 It is the split structure schematic view of the connecting end and the rigid connecting rod in the utility model.

[0025] In the drawing, 1, connecting end;11, column body;111, first inner hole;112, second inner hole;12, communication groove;13, pulley piece;131, sliding groove;132, mounting frame;133, pulley;134, sliding block;14, spring body;15, adjusting groove;16, protective cover;17, clamping groove;18, first magnet piece;19, second magnet piece;2, rigid connecting rod;3, hole suspension piece;31, recess frame;32, inner through hole;33, universal connecting rod;34, adjusting rod;35, inverted wedge-shaped block;4, cleaning piece;41, communication hole;42, rod body;43, top plate;44, first annular body;45, sponge body;46, clamping block;5, inclination sensor;6, mounting groove. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme and advantage of the utility model embodiment more clear, the following will be combined with the technical scheme in the utility model embodiment to make clear and complete description, obviously, the described embodiment is part of the utility model, rather than all the embodiments. Based on the embodiment of the utility model, all other embodiments obtained by the person skilled in the art without creative labor are within the protection scope of the utility model. EMBODIMENT

[0027] REFERENCE Figures 1-8The utility model relates to a mine geological disaster monitoring and early warning equipment, including the connecting end 1 that is connected with tilt sensor 5, and the rigid connecting rod 2 that sets up in the upper connecting end 1 and is connected with the threaded connection of connecting end 1, and with the orifice suspension 3 that is connected with rigid connecting rod 2, the cleaning piece 4 that is connected with the orifice suspension 3 on the sliding is connected, and the cleaning piece 4 includes two communicating holes 41 that are opened in the orifice suspension 3, and the rod body 42 that is connected with communicating hole 41, and the top plate 43 that sets up at the top of two rod bodies 42, the bottom of two rod bodies 42 is connected with the first annular body 44 that is sleeved with rigid connecting rod 2, and the bottom of first annular body 44 is provided with the clamping block 46, and the outer surface of first annular body 44 is provided with the sponge body 45, and the protective cover 16 for protecting clinometer is connected with the outer sliding of connecting end 1;

[0028] The setting of the connecting end 1 can facilitate the installation of the tilt sensor by the staff, and the setting of the rigid connecting rod 2 can facilitate the installation of the connecting end 1 and the tilt sensor at the predetermined position by the staff, so as to ensure the detection of the tilt sensor, and the setting of the orifice suspension 3 can fix the upper end of the rigid connecting rod, thereby facilitating the dismounting of the equipment by the staff.

[0029] The setting of the first annular body 44 and the sponge body 45 can be used for cleaning the installation slot 6 of the equipment, and the setting of the sponge body 45 can adsorb the mud in the position, thereby ensuring the cleanliness of the inside of the installation slot 6 of the equipment.

[0030] Specifically, the staff can push the top plate 43 up and down to drive the first annular body 44 and the sponge body 45 to move up and down, thereby completing the cleaning and adsorption of the mud.

[0031] In the embodiment, the setting of the protective cover 16 can wrap the tilt sensor 5, thereby protecting the sensor during placement.

[0032] As shown in Figs. Figure 3 and Figure 5 The connecting end 1 includes a column body 11, a communicating groove 12 opened in the column body 11, two pulley pieces 13 arranged in the communicating groove 12, a spring body 14 arranged between the two pulley pieces 13, an adjusting groove 15 opened in the lower end surface of the column body 11, a protective cover 16 slidably connected with the adjusting groove 15, a clamping groove 17 opened in the top of the protective cover 16 and matched with the clamping block 46, a first magnet piece 18 arranged on the top of the protective cover 16 and located in the circumferential direction of the clamping groove 17, and a second magnet piece 19 arranged above the adjusting groove 15 and matched with the first magnet piece 18.

[0033] The setting of the pulley piece 13 can facilitate the installation work of the connecting end 1 and the rigid connecting rod 2, the setting of the spring body 14 can provide the basis for the position adjustment work of the pulley piece 13, thereby ensuring the movement of the pulley piece 13 to the installation groove work, the setting of the adjusting groove 15 can provide the basis for the sliding work of the protective cover 16;

[0034] In the embodiment, the adjusting groove 15 is arranged in a concave shape.

[0035] As shown in Figure 5 The bottom of the column 11 is provided with a first inner hole 111 for the lead wire of the tilt sensor 5 to pass through, the first inner hole 111 is communicated with the communication groove 12, and the side of the column 11 is provided with a second inner hole 112 communicated with the communication groove 12 and matched with the first inner hole 111; the first inner hole 111 and the second inner hole 112 can be used for installing the tilt sensor 5, thereby ensuring the monitoring work of the tilt sensor 5.

[0036] As shown in Figure 5 The pulley piece 13 includes two groups of sliding grooves 131 arranged on both sides of the communication groove 12, two mounting frames 132 arranged between the two sliding grooves 131 and arranged in a concave shape, and a pulley 133 arranged in the mounting frame 132, the two groups of mounting frames 132 and the two groups of sliding grooves 131 are arranged in a mirror image, the two sides of the mounting frame 132 are provided with sliding blocks 134 matched with the sliding grooves 131, and the spring body 14 is arranged between the two mounting frames 132.

[0037] The setting of the sliding groove 131 and the sliding block 134 can provide the basis for the sliding work of the pulley 133, thereby ensuring the position adjustment work of the pulley 133.

[0038] As shown in Figure 2 The hole suspension piece 3 includes a concave frame 31, two inner through holes 32 arranged on the concave frame 31, a universal connecting rod 33 arranged on the concave frame 31, the universal connecting rod 33 is screwed with the rigid connecting rod 2, two adjusting rods 34 movably connected in the two inner through holes 32, and an inverted wedge-shaped block 35 arranged at the bottom of the adjusting rod 34, the worker can complete the fixing work of the concave frame 31 by pressing the two adjusting rods 34 downward and making the inverted wedge-shaped block 35 engaged with the inner wall of the installation groove, thereby ensuring the stability of the tilt sensor 5 during use.

[0039] In the embodiment, the inverted wedge-shaped block 35 is a rubber body.

[0040] The utility model further further includes installation groove 6 for installing connecting end 1 and rigid connecting rod 2, installation groove 6 sets up in the side slope that needs to carry out test.

[0041] Working principle:

[0042] Firstly, the staff takes the concave frame 31, and places the concave frame 31 above the equipment mounting slot 6, then the staff can push the top plate 43 up and down, and make the rod body 42 drive the first annular body 44 and the sponge body 45 to move into the mounting slot 6, and perform up and down movement work, the first annular body 44 and the sponge body 45 will perform adsorption cleaning work on the mud in the mounting slot 6 in the process of up and down movement, secondly, after the mud cleaning is completed, the staff takes the connecting end 1, and sequentially passes the cable of the tilt sensor 5 through the first inner hole 111 and the second inner hole 112, so as to install the tilt sensor 5 below the connecting end 1, then the staff pulls down the protective cover 16, and makes the protective cover 16 complete the wrapping work of the sensor, further, the staff connects the connecting end 1 with the rigid connecting rod 2, and synchronously extends the rigid connecting rod 2, the connecting end 1 and the tilt sensor 5 into the mounting slot 6, finally, the staff connects the universal connecting rod 33 with the rigid connecting rod 2, and synchronously places the concave frame 31 above the mounting slot 6, so as to press the two adjusting rods 34 downward to make the inverted wedge block engage with the mounting slot 6, and complete the fixing work of the concave frame 31;

[0043] After the tilt sensor 5 is installed, the staff synchronously pushes the first annular body 44 and the sponge body 45 downward, and makes the clamping groove 17 engage with the clamping block, secondly, the top plate 43 is pulled upward, and the protective cover 16 moves upward along the adjusting groove 15, and the first magnet piece 18 and the second magnet piece 19 are attracted to each other, so as to complete the exposure work of the tilt sensor 5, ensure the monitoring work of the tilt sensor 5, and the first annular body 44 and the sponge body 45 above the connecting end 1 can synchronously seal the upper end of the connecting end 1, which can effectively avoid the mud or external articles from contacting the tilt sensor 5, not only can protect the tilt sensor 5, but also can ensure the detection accuracy of the tilt sensor 5.

[0044] It should be noted that the utility model only protects the mechanical part, and the function realized by the software control part related thereto is not within the protection range of the utility model.

[0045] Of course, the utility model can also have other various implementation manners, and other implementation manners obtained by the ordinary skilled person in the art based on the implementation manner without any creative labor are within the protection range of the utility model.

Claims

1. A mine geological disaster monitoring and early warning device, characterized in that, The utility model provides an inclinometer protection device, including the connecting end that connects with the tilt sensor, and the rigid connecting rod that sets up above the connecting end and is screwed with the connecting end, and the orifice suspension piece that is connected with the rigid connecting rod, the cleaning piece that is slidably connected on the orifice suspension piece, the cleaning piece includes two communicating holes that are opened on the orifice suspension piece, and the rod body that is connected with the communicating hole, and the top plate that sets up at the top of two rod bodies, the bottom of two rod bodies is connected with the first annular body that is sleeved with the rigid connecting rod, the bottom of first annular body is provided with the clamping block, the outer surface of first annular body is provided with the sponge body, the connecting end outer slide is connected with the protective cover for protecting inclinometer.

2. The mine geological disaster monitoring and early warning device according to claim 1, characterized in that, The connecting end includes a column, a communication groove opened on the column, two pulley pieces arranged in the communication groove, a spring body arranged between the two pulley pieces, an adjusting groove opened on the lower end surface of the column, a protective cover slidably connected on the adjusting groove, a clamping groove opened on the top of the protective cover and matched with the clamping block, a first magnet arranged on the top of the protective cover and located on the circumferential direction of the clamping groove, and a second magnet arranged above the adjusting groove and matched with the first magnet.

3. The mine geological disaster monitoring and early warning device according to claim 2, characterized in that, The bottom of the column is provided with a first inner hole for the wire of the inclinometer to pass through, the first inner hole is communicated with the communication groove, and one side of the column is provided with a second inner hole communicated with the communication groove and matched with the first inner hole.

4. The mine geological disaster monitoring and early warning device according to claim 2, characterized in that, The pulley piece includes two groups of sliding grooves opened on both sides of the communication groove, a mounting bracket arranged between one group of the sliding grooves and recessed, and a pulley arranged in the mounting bracket, the two groups of sliding grooves, the mounting bracket and the pulley are mirror arranged, the two sides of the mounting bracket are provided with sliding blocks matched with the sliding grooves, and the spring body is arranged between the two mounting brackets.

5. The mine geological disaster monitoring and early warning device according to claim 1, characterized in that, The orifice suspension piece includes a recessed bracket, two inner through holes opened on the recessed bracket, a universal connecting rod arranged on the recessed bracket, the universal connecting rod is screwed with the rigid connecting rod, an adjusting rod movably connected in the two inner through holes, and an inverted wedge block arranged at the bottom of the adjusting rod.

6. The mine geological disaster monitoring and early warning device according to claim 1, characterized in that, The utility model also includes a mounting groove for mounting the connecting end and the rigid connecting rod.