Remote intelligent monitoring device for blasting vibration

By combining the design of brackets, protective boxes, and vibration monitoring devices with installation, reinforcement, and limiting mechanisms, the problems of difficult installation and disassembly of existing devices have been solved, enabling rapid installation and disassembly and improving the operating efficiency and reliability of the device.

CN121782482BActive Publication Date: 2026-05-05福建省新华都工程有限责任公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
福建省新华都工程有限责任公司
Filing Date
2026-03-05
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing vibration monitoring devices are difficult to install and fix in the field of mining blasting, and are prone to corrosion and loosening, which makes disassembly and maintenance difficult and reduces monitoring efficiency.

Method used

The remote intelligent monitoring device for blasting vibration, consisting of a bracket, protective box, solar panel, and vibration monitoring device, enables rapid installation and disassembly through an installation mechanism, reinforcement mechanism, and limiting mechanism, avoiding rusting and disassembly difficulties caused by bolt installation.

Benefits of technology

It enables rapid installation and disassembly of vibration monitoring devices, improves installation and disassembly efficiency, and ensures the stability and reliability of the device during operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of remote intelligent vibration monitoring equipment, and discloses a remote intelligent monitoring device for blasting vibration, including a limiting rod. A limiting ring is fixedly connected to the end of the limiting rod, and a force-bearing spring is fixedly connected to the surface of the limiting rod. By setting a limiting mechanism, when the vibration monitoring device needs to be disassembled, simply press the button and move it towards the support ring. At this time, the expansion plate will pull the limiting rod away from each other, and simultaneously, the limiting rod will pull the limiting ring away from each other, thus separating the limiting ring from the limiting groove. At this point, the driven column no longer has limiting force, and the installation mechanism and reinforcement mechanism will return to their original positions. The vibration monitoring device can then be removed, effectively enabling rapid disassembly of the vibration monitoring device, avoiding the difficulties of disassembly due to rusting of bolts, and improving the efficiency of installation and disassembly.
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Description

Technical Field

[0001] This invention relates to the field of remote intelligent vibration monitoring equipment, specifically a remote intelligent monitoring device for blasting vibration. Background Technology

[0002] Vibration intensity monitoring devices are specialized equipment used for measuring and real-time monitoring of the vibration state of objects. They are widely used in various fields such as industrial production, construction engineering, and transportation. The core value of this device lies in its ability to accurately collect vibration data, predict potential safety risks, and provide data support for the early formulation of prevention and control measures.

[0003] In the field of mining blasting, the vibration load generated by blasting operations can have adverse effects on the stability of open-pit slopes, surrounding important facilities, building foundations and main structures. Therefore, it is necessary to carry out targeted vibration monitoring.

[0004] Currently, existing vibration monitoring technologies still have shortcomings in engineering applications: monitoring instruments are mostly installed and fixed using a bolt-nut combination structure, which is prone to problems such as corrosion and loosening after long-term service. This not only increases the difficulty of disassembling and maintaining the device, but also significantly reduces the overall efficiency of monitoring work. Summary of the Invention

[0005] The purpose of this invention is to provide a remote intelligent monitoring device for blasting vibration, so as to solve the problems mentioned in the background art.

[0006] To solve the above-mentioned technical problems, the present invention is achieved through the following technical solution:

[0007] This invention relates to a remote intelligent monitoring device for blasting vibration, comprising a support frame, a protective box fixedly connected to the top of the support frame, a solar panel fixedly connected to the top of the protective box, a sliding plate fixedly connected inside the protective box, a vibration monitoring device disposed inside the protective box, and mounting plates fixedly connected to both sides of the vibration monitoring device. The invention is characterized by further comprising:

[0008] The installation mechanism includes a push plate, the end of which is hinged to a limit frame, and a return spring is fixedly connected to the surface of the limit frame.

[0009] A reinforcement mechanism, comprising a U-shaped push rod, wherein an elastic plate is fixedly connected to the surface of the U-shaped push rod;

[0010] A limiting mechanism includes a limiting rod, with a limiting ring fixedly connected to the end of the limiting rod, and a force-bearing spring fixedly connected to the surface of the limiting rod.

[0011] Furthermore, the surface of the mounting slide plate is slidably connected to the inner wall of the slide plate, the surface of the mounting slide plate is provided with mounting holes, and the top and bottom of the inner wall of the protective box are provided with slide grooves.

[0012] Furthermore, the installation mechanism includes a grooved plate, a sliding plate slidably connected to the inner wall of the grooved plate, a curved plate fixedly connected to the surface of the sliding plate, a contact rod fixedly connected to the surface of the curved plate, a driven column fixedly connected to the surface of the contact rod, and a support telescopic rod fixedly connected to the surface of the limiting frame.

[0013] Furthermore, the end of the supporting telescopic rod away from the limiting frame is fixedly connected to the top of the slide plate, the end of the return spring contacts the top of the slide plate, limiting holes are opened at both the top and bottom of the slide plate, the top and bottom of the inner wall of the protective box are fixedly connected to the surface of the groove plate, the end of the push plate away from the limiting frame is hinged to the surface of the slide plate, the contact rod is close to the end of the protective box, penetrates the surface of the protective box and extends into the interior of the slide plate, and a limiting groove is opened on the surface of the driven column.

[0014] Furthermore, the reinforcement mechanism includes an extended elastic rod, the end of which is fixedly connected to a reinforcement plate, a push rod is hinged to the surface of the reinforcement plate, and a moving block is hinged to the end of the push rod away from the reinforcement plate.

[0015] Furthermore, the inner wall of the chute is slidably connected to the surface of the moving block, the top and bottom of the inner wall of the protective box are fixedly connected to the end of the extended elastic rod, the end of the U-shaped push rod away from the elastic plate is fixedly connected to the end of the moving block, and the end of the elastic plate is fixedly connected to the surface of the slide plate and the end of the groove plate.

[0016] Furthermore, the limiting mechanism includes a right-angle plate, a support ring is fixedly connected to the end of the right-angle plate, a support plate is fixedly connected to the surface of the support ring, a force-bearing telescopic rod is fixedly connected to the end of the support ring, a pressing plate is fixedly connected to the end of the force-bearing telescopic rod away from the support ring, and expansion plates are hinged to both ends of the pressing plate.

[0017] Furthermore, the end of the expansion plate away from the pressing plate is hinged to the end of the limiting rod, the end of the right-angle plate away from the support ring is fixedly connected to the surface of the protective box, both ends of the force-bearing spring are in contact with the surface of the support ring and the inner wall of the support plate, and the limiting groove is adapted to the limiting ring.

[0018] The present invention has the following beneficial effects:

[0019] This invention, through the installation mechanism, allows workers to push a vibration monitoring device towards a contact rod. As the device moves, it causes a mounting slide to slide along the inner wall of a grooved plate towards the contact rod, bringing its end into contact with the end of the contact rod. After contact, the slide pushes the contact rod towards a curved plate, which in turn pushes the curved plate towards a support ring. Simultaneously, the movement of the contact rod pushes a driven column towards the support ring. The movement of the curved plate pulls the slide along the inner wall of the grooved plate towards the support ring. This sliding motion of the slide causes the end of a push plate to move towards the curved plate. During this movement, the push plate... During the process, the angle between the end of the push plate and the other end of the push plate changes, causing the other end of the push plate to push the limiting frame to move closer to each other. At the same time as the limiting frame moves, the mounting slide and vibration monitoring device have already moved into place. During the movement of the limiting frame, it will pass through the mounting hole on the surface of the slide plate and finally insert into the mounting hole on the surface of the mounting slide plate, thereby limiting the mounting slide plate and installing the vibration monitoring device. At the same time as the limiting frame moves, it will compress the return spring and the support telescopic rod to retract closer to each other. The four limiting frames effectively limit the mounting hole on the surface of the mounting slide plate, thereby achieving the effect of rapid installation of the vibration monitoring device and replacing the low efficiency caused by bolt installation.

[0020] This invention employs a reinforcement mechanism. As the sliding plate slides, it causes the end of an elastic plate to move towards the driven column. During this movement, the middle section of the elastic plate bends, pushing a U-shaped push rod towards each other. This movement further pushes a moving block along the inner wall of the groove, causing the end of the push rod to move towards the same direction. As the push rod moves, the angle between its end and the other end changes, causing the other end to push the reinforcement plate towards the same direction, contacting the top and bottom of the vibration monitoring device and thus reinforcing it. Simultaneously, the movement of the reinforcement plate pulls the extension elastic rod towards the same direction, effectively reinforcing the device through contact with it, making the vibration monitoring device more stable during operation.

[0021] This invention employs a limiting mechanism. During the movement of the driven column, it contacts and compresses the surface of the limiting ring. When the limiting ring is compressed, it moves away from the driven column. This movement pushes the limiting rod away from the driven column, which in turn pushes the end of the expansion plate away from the driven column. The other end of the expansion plate pulls the pressing plate towards the support ring. The pressing plate's movement pushes the tension rod towards the support ring. When the limiting groove on the driven column surface reaches the center of the limiting ring, the limiting ring is no longer compressed. The limiting rod then returns to its original position due to the elasticity of the spring. Simultaneously, the limiting rod pushes the limiting ring towards the driven column, bringing it closer to the limiting groove. The inner wall of the device fits snugly, thus limiting the driven column. Simultaneously, the entire installation and reinforcement mechanisms are also limited. At this point, the push plate and the force-bearing telescopic rod will return to their original positions along with the limiting rod. When disassembling the vibration monitoring device, simply press the push plate and move it towards the support ring. The expansion plate will then pull the limiting rod away from each other, and the limiting rod will pull the limiting ring away from each other, thus separating the limiting ring from the limiting groove. At this point, the driven column is no longer limited, and the entire installation and reinforcement mechanisms will return to their original positions. The vibration monitoring device can then be removed. This effectively allows for quick disassembly of the vibration monitoring device, avoiding the problem of rust and disassembly difficulties caused by bolt installation, and improving the efficiency of installation and disassembly.

[0022] Of course, any product implementing this invention does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0023] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0025] Figure 2 This is a schematic cross-sectional view of the overall structure of the present invention;

[0026] Figure 3 This is a schematic diagram of the overall structure of the installation mechanism of the present invention;

[0027] Figure 4 This is a schematic diagram of the contact rod structure of the present invention;

[0028] Figure 5 This is a schematic diagram of the overall structure of the reinforcement mechanism of the present invention;

[0029] Figure 6 This is a schematic diagram of the elastic plate structure of the present invention;

[0030] Figure 7 This is a schematic diagram of the overall structure of the limiting mechanism of the present invention;

[0031] Figure 8 This is a schematic diagram of the plate structure of the present invention;

[0032] Figure 9 This is a schematic diagram of the force-bearing spring structure of the present invention.

[0033] The attached diagram lists the components represented by each number as follows:

[0034] In the diagram: 1. Bracket; 2. Protective box; 10. Mounting mechanism; 11. Groove plate; 12. Slide plate; 13. Push plate; 14. Limiting frame; 15. Return spring; 16. Bend plate; 17. Contact rod; 18. Driven column; 19. Support telescopic rod; 30. Reinforcing mechanism; 31. Extension elastic rod; 32. Reinforcing plate; 33. Push rod; 34. Moving block; 35. U-shaped push rod; 36. Elastic plate; 50. Limiting mechanism; 51. Right angle plate; 52. Support ring; 53. Support plate; 54. Force-bearing telescopic rod; 55. Press plate; 56. Expansion plate; 57. Limiting rod; 58. Limiting ring; 59. Force-bearing spring; 3. Solar panel; 4. Slide plate; 5. Vibration monitoring device; 6. Mounting slide plate. Detailed Implementation

[0035] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0036] Please see Figures 1-9 As shown, this invention is a remote intelligent monitoring device for blasting vibration, comprising a support 1, a protective box 2 fixedly connected to the top of the support 1, a solar panel 3 fixedly connected to the top of the protective box 2, a sliding plate 4 fixedly connected inside the protective box 2, a vibration monitoring device 5 disposed inside the protective box 2, and mounting plates 6 fixedly connected to both sides of the vibration monitoring device 5. The invention is characterized by further comprising:

[0037] The mounting mechanism 10 includes a push plate 13, with a limit frame 14 hinged to the end of the push plate 13. During the movement of the end of the push plate 13, the angle between the end of the push plate 13 and the other end of the push plate 13 changes, thereby causing the other end of the push plate 13 to push the limit frame 14 to move closer to each other. At the same time as the limit frame 14 moves, the mounting slide 6 and the vibration monitoring device 5 have moved into place. During the movement of the limit frame 14, it will pass through the mounting hole on the surface of the slide plate 4 and finally insert into the mounting hole on the surface of the mounting slide 6, thereby limiting the mounting slide 6 and installing the vibration monitoring device 5. A return spring 15 is fixedly connected to the surface of the limit frame 14.

[0038] The reinforcement mechanism 30 includes a U-shaped push rod 35, and an elastic plate 36 is fixedly connected to the surface of the U-shaped push rod 35. When the slide plate 12 slides, it will drive the end of the elastic plate 36 to move towards the driven column 18. During the movement of the elastic plate 36, the middle part will bend. When the middle part of the elastic plate 36 bends, it will push the U-shaped push rod 35 to move towards each other.

[0039] The limiting mechanism 50 includes a limiting rod 57, which contacts the surface of the limiting ring 58 during the movement of the driven column 18 and compresses the limiting ring 58. When the limiting ring 58 is compressed, it moves away from each other. When the limiting ring 58 moves, it pushes the limiting rod 57 to move away from each other. The end of the limiting rod 57 is fixedly connected to the limiting ring 58, and a force spring 59 is fixedly connected to the surface of the limiting rod 57.

[0040] The surface of the mounting plate 6 is slidably connected to the inner wall of the slide plate 4. The surface of the mounting plate 6 is provided with mounting holes, and the top and bottom of the inner wall of the protective box 2 are provided with slide grooves.

[0041] The mounting mechanism 10 includes a grooved plate 11, a sliding plate 12 slidably connected to the inner wall of the grooved plate 11, a curved plate 16 fixedly connected to the surface of the sliding plate 12, a contact rod 17 fixedly connected to the surface of the curved plate 16, and a driven column 18 fixedly connected to the surface of the contact rod 17. An operator can push the vibration monitoring device 5 towards the contact rod 17. When the vibration monitoring device 5 moves, it causes the mounting sliding plate 6 to slide along the inner wall of the grooved plate 4 towards the contact rod 17, bringing the end of the mounting sliding plate 6 into contact with the end of the contact rod 17. After the mounting sliding plate 6 contacts the contact rod 17, it pushes the contact rod 17 towards the curved plate 16. As the contact rod 17 moves, it pushes the curved plate 16 towards the support... The movement of the support ring 52, while the contact rod 17 moves, pushes the driven column 18 toward the support ring 52. When the bending plate 16 moves, it pulls the slide plate 12 to slide along the inner wall of the groove plate 11 toward the support ring 52. When the slide plate 12 slides, it drives the end of the push plate 13 to move toward the bending plate 16. The surface of the limiting frame 14 is fixedly connected to the support telescopic rod 19. When the limiting frame 14 moves, it squeezes the return spring 15 and the support telescopic rod 19 to retract toward each other. The four limiting frames 14 effectively limit the mounting holes on the surface of the mounting slide plate 6, thereby achieving the effect of quick installation of the vibration monitoring device 5 and replacing the low efficiency caused by bolt installation.

[0042] The end of the support telescopic rod 19 away from the limit frame 14 is fixedly connected to the top of the slide plate 4. The end of the return spring 15 contacts the top of the slide plate 4. Limiting holes are opened at the top and bottom of the slide plate 4. The top and bottom of the inner wall of the protective box 2 are fixedly connected to the surface of the groove plate 11. The end of the push plate 13 away from the limit frame 14 is hinged to the surface of the slide plate 12. The contact rod 17 is close to one end of the protective box 2, and passes through the surface of the protective box 2 and extends into the interior of the slide plate 4. A limiting groove is opened on the surface of the driven column 18.

[0043] The reinforcement mechanism 30 includes an extension elastic rod 31, with a reinforcement plate 32 fixedly connected to the end of the extension elastic rod 31. A push rod 33 is hinged to the surface of the reinforcement plate 32. When the U-shaped push rod 35 moves, it pushes the moving block 34 to slide in a direction closer to each other on the inner wall of the groove. When the moving block 34 slides, it drives the end of the push rod 33 to move in a direction closer to each other. During the movement of the push rod 33, the angle between the end of the push rod 33 and the other end of the push rod 33 changes, thereby causing the other end of the push rod 33 to push the reinforcement plate 32 to move in a direction closer to each other and contact the top and bottom of the vibration monitoring device 5, thereby reinforcing the vibration monitoring device 5. A moving block 34 is hinged to the end of the push rod 33 away from the reinforcement plate 32. When the reinforcement plate 32 moves, it pulls the extension elastic rod 31 to extend in a direction closer to each other, effectively contacting and reinforcing the vibration monitoring device 5 through the reinforcement plate 32, making the vibration monitoring device 5 more stable during operation.

[0044] The inner wall of the chute is slidably connected to the surface of the moving block 34. The top and bottom of the inner wall of the protective box 2 are fixedly connected to the end of the extension elastic rod 31. The end of the U-shaped push rod 35 away from the elastic plate 36 is fixedly connected to the end of the moving block 34. The ends of the elastic plate 36 are fixedly connected to the surface of the slide plate 12 and the end of the groove plate 11.

[0045] The limiting mechanism 50 includes a right-angle plate 51, with a support ring 52 fixedly connected to one end of the right-angle plate 51. A support plate 53 is fixedly connected to the surface of the support ring 52, and a force-bearing telescopic rod 54 is fixedly connected to one end of the support ring 52. A pressing plate 55 is fixedly connected to one end of the force-bearing telescopic rod 54 away from the support ring 52. Expansion plates 56 are hinged to both ends of the pressing plate 55. When the limiting rod 57 moves, it pushes the ends of the expansion plates 56 to move away from each other, while the other end of the expansion plates 56 pulls the pressing plate 55 towards the support ring 52. When the pressing plate 55 moves, it pushes the force-bearing telescopic rod 54 to retract towards the support ring 52. When disassembling the vibration monitoring device 5, simply press and hold the push plate 55 and move it towards the support ring 52. At this time, the expansion plate 56 will pull the limit rod 57 to move away from each other, and the limit rod 57 will pull the limit ring 58 to move away from each other, thereby separating the limit ring 58 from the limit groove. At this time, the driven column 18 no longer has the limiting force, and the installation mechanism 10 and the reinforcement mechanism 30 will return to their original positions. Then the vibration monitoring device 5 can be taken out. This effectively allows for quick disassembly of the vibration monitoring device 5, avoids the phenomenon of rust and disassembly difficulties caused by bolt installation, and improves the efficiency of installation and disassembly.

[0046] The end of the expansion plate 56 away from the push plate 55 is hinged to the end of the limiting rod 57. When the limiting groove on the surface of the driven column 18 moves to the center position of the limiting ring 58, the limiting ring 58 is no longer under pressure. At this time, the limiting rod 57 will be elastically reset to its original position by the force spring 59. At the same time, the limiting rod 57 will push the limiting ring 58 to move closer to each other and fit against the inner wall of the limiting groove, thereby limiting the driven column 18. At the same time, the installation mechanism 10 and the reinforcement mechanism 30 will be limited as a whole. At this time, the push plate 55 and the force telescopic rod 54 will be reset to their original positions along with the limiting rod 57. The end of the right angle plate 51 away from the support ring 52 is fixedly connected to the surface of the protective box 2. Both ends of the force spring 59 are in contact with the surface of the support ring 52 and the inner wall of the support plate 53. The limiting groove and the limiting ring 58 are matched.

[0047] In use, the operator can push the vibration monitoring device 5 towards the contact rod 17. As the vibration monitoring device 5 moves, it causes the mounting slide plate 6 to slide along the inner wall of the slide plate 4 towards the contact rod 17, bringing the end of the mounting slide plate 6 into contact with the end of the contact rod 17. After the mounting slide plate 6 contacts the contact rod 17, it pushes the contact rod 17 towards the bent plate 16. As the contact rod 17 moves, it pushes the bent plate 16 towards the support ring 52. Simultaneously, the moving contact rod 17 pushes the driven column 18 towards the support ring 52. As the bent plate 16 moves, it pulls the slide plate 12 along the inner wall of the groove plate 11 towards the support ring 52. As the slide plate 12 slides, it causes the end of the push plate 13 to move towards the bent plate. As the push plate 13 moves in the direction of 16, the angle between the end of the push plate 13 and the other end of the push plate 13 changes, causing the other end of the push plate 13 to push the limiting frame 14 to move closer to each other. Simultaneously, the mounting plate 6 and vibration monitoring device 5 are in place. During the movement of the limiting frame 14, it passes through the mounting holes on the surface of the slide plate 4 and finally inserts into the mounting holes on the surface of the mounting plate 6, thus limiting the mounting plate 6 and installing the vibration monitoring device 5. Simultaneously, the limiting frame 14 compresses the return spring 15 and the support telescopic rod 19, causing them to contract towards each other. As the sliding plate 12 slides, it drives the end of the elastic plate 36 to move towards the driven column 18. During the movement of plate 36, the middle part will bend. When the middle part of the elastic plate 36 bends, it will push the U-shaped push rod 35 to move towards each other. When the U-shaped push rod 35 moves, it will push the moving block 34 to slide towards each other on the inner wall of the groove. When the moving block 34 slides, it will drive the end of the push rod 33 to move towards each other. During the movement of the push rod 33, the angle between the end of the push rod 33 and the other end of the push rod 33 will change, so that the other end of the push rod 33 will push the reinforcing plate 32 towards each other and contact the top and bottom of the vibration monitoring device 5, thereby reinforcing the vibration monitoring device 5. At the same time as the reinforcing plate 32 moves, it will pull the extension elastic rod 31 towards each other. As the driven column 18 moves, it contacts the surface of the limiting ring 58 and compresses it. When the limiting ring 58 is compressed, it moves away from the limiting ring. This movement pushes the limiting rod 57 away from the limiting ring, which in turn pushes the end of the expansion plate 56 away from the limiting ring. The other end of the expansion plate 56 pulls the pressing plate 55 towards the support ring 52. This movement pushes the force-bearing telescopic rod 54 towards the support ring 52. When the limiting groove on the surface of the driven column 18 moves to the center of the limiting ring 58, the limiting ring 58 is no longer compressed. At this point, the limiting rod 57 will return to its original position through the elasticity of the force-bearing spring 59.Simultaneously, the limiting rod 57 will push the limiting ring 58 to move closer together and fit against the inner wall of the limiting groove, thereby limiting the driven column 18. At the same time, the mounting mechanism 10 and the reinforcing mechanism 30 will be completely stopped. The push plate 55 and the force-bearing telescopic rod 54 will then return to their original positions along with the limiting rod 57. To disassemble the vibration monitoring device 5, simply press the push plate 55 and move it towards the support ring 52. The expansion plate 56 will then pull the limiting rod 57 to move further apart, and the limiting rod 57 will pull the limiting ring 58 to move further apart, thus separating the limiting ring 58 from the limiting groove. At this point, the driven column 18 will no longer be stopped, and the mounting mechanism 10 and the reinforcing mechanism 30 will return to their original positions. The vibration monitoring device 5 can then be removed.

[0048] The preferred embodiments of the present invention disclosed above are merely illustrative of the invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the invention to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of the invention, thereby enabling those skilled in the art to better understand and utilize the invention. The invention is limited only by the claims and their full scope and equivalents.

Claims

1. A remote intelligent monitoring device for blasting vibration, comprising a support (1), a protective box (2) fixedly connected to the top of the support (1), a solar panel (3) fixedly connected to the top of the protective box (2), a sliding plate (4) fixedly connected inside the protective box (2), a vibration monitoring device (5) disposed inside the protective box (2), mounting plates (6) fixedly connected to both sides of the vibration monitoring device (5), the surface of the mounting plate (6) slidingly connected to the inner wall of the sliding plate (4), mounting holes being provided on the surface of the mounting plate (6), and sliding grooves being provided at the top and bottom of the inner wall of the protective box (2), characterized in that, Also includes: The mounting mechanism (10) includes a push plate (13) and a groove plate (11). The end of the push plate (13) is hinged to a limit frame (14), and a return spring (15) is fixedly connected to the surface of the limit frame (14). The inner wall of the groove plate (11) is slidably connected to a slide plate (12), the surface of the slide plate (12) is fixedly connected to a curved plate (16), the surface of the curved plate (16) is fixedly connected to a contact rod (17), the surface of the contact rod (17) is fixedly connected to a driven column (18), and the surface of the limiting frame (14) is fixedly connected to a supporting telescopic rod (19). The end of the support telescopic rod (19) away from the limit frame (14) is fixedly connected to the top of the slide plate (4), the end of the return spring (15) is in contact with the top of the slide plate (4), the top and bottom of the slide plate (4) are provided with limit holes, the top and bottom of the inner wall of the protective box (2) are fixedly connected to the surface of the groove plate (11), the end of the push plate (13) away from the limit frame (14) is hinged to the surface of the slide plate (12), the contact rod (17) is close to the end of the protective box (2), and penetrates the surface of the protective box (2) and extends into the interior of the slide plate (4), the surface of the driven column (18) is provided with a limit groove; The reinforcement mechanism (30) includes a U-shaped push rod (35) and an extended elastic rod (31), and an elastic plate (36) is fixedly connected to the surface of the U-shaped push rod (35). The end of the extended elastic rod (31) is fixedly connected to a reinforcing plate (32), and a push rod (33) is hinged to the surface of the reinforcing plate (32). A moving block (34) is hinged to the end of the push rod (33) away from the reinforcing plate (32). The inner wall of the chute is slidably connected to the surface of the moving block (34), the top and bottom of the inner wall of the protective box (2) are fixedly connected to the end of the extension elastic rod (31), the end of the U-shaped push rod (35) away from the elastic plate (36) is fixedly connected to the end of the moving block (34), and the end of the elastic plate (36) is fixedly connected to the surface of the slide plate (12) and the end of the groove plate (11). The limiting mechanism (50) includes a limiting rod (57), the end of which is fixedly connected to a limiting ring (58), and a force-bearing spring (59) is fixedly connected to the surface of the limiting rod (57).

2. The remote intelligent monitoring device for blasting vibration according to claim 1, characterized in that: The limiting mechanism (50) includes a right-angle plate (51), a support ring (52) is fixedly connected to the end of the right-angle plate (51), a support plate (53) is fixedly connected to the surface of the support ring (52), a force-bearing telescopic rod (54) is fixedly connected to the end of the force-bearing telescopic rod (54) away from the support ring (52), and an expansion plate (56) is fixedly connected to the two ends of the pressure plate (55).

3. The remote intelligent monitoring device for blasting vibration according to claim 2, characterized in that: The end of the expansion plate (56) away from the pressing plate (55) is hinged to the end of the limiting rod (57), the end of the right angle plate (51) away from the support ring (52) is fixedly connected to the surface of the protective box (2), both ends of the force spring (59) are in contact with the surface of the support ring (52) and the inner wall of the support plate (53), and the limiting groove is adapted to the limiting ring (58).

Citation Information

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