Integrated throwing type ground disaster warning device
By designing a combination of anchoring and inserting components on the spill-type geological disaster alarm terminal, the problem of the device loosening due to gravity on the slope was solved, achieving a more stable monitoring effect.
Patent Information
- Application Number
- CN202423085361.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Existing landslide alarm terminals are prone to soil loosening due to gravity during installation, which affects the monitoring effect.
An integrated, spray-type geological disaster alarm device is adopted, which includes a measurement and communication mechanism and an installation mechanism. It is fixed to the slope through an anchoring assembly to reduce loosening. The device includes an inserting assembly and an anchoring assembly, and uses the cooperation of anchor rods and insert plates to form an anchoring joint to stabilize the device.
The stability of the spray-type geological disaster warning terminal on the slope was improved, the loosening between the terminal and the soil due to gravity was reduced, and the monitoring effect was enhanced.
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Figure CN223651067U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of alarm devices, and in particular to an integrated, spill-type geological disaster alarm device. Background Technology
[0002] The spill-type landslide alarm terminal is a terminal box with a factory-set fixed angle threshold. It can monitor slope conditions daily and provide tilt alarms and location functions in the event of a sudden landslide. The spill-type landslide alarm terminal can be installed on the slope of the tower pole, is ready to use immediately, has a battery life of more than three years, and achieves maintenance-free monitoring.
[0003] Existing installation fixtures for scattered geological disaster alarm terminals typically use integrated plug-in rods. When the plug-in rod is inserted into the slope, the scattered geological disaster alarm terminal will loosen from the soil due to gravity, affecting the monitoring effect of the scattered geological disaster alarm terminal. Utility Model Content
[0004] To address the aforementioned issues, this application provides an integrated, spray-type geological disaster alarm device.
[0005] The integrated, spray-type geological disaster alarm device provided in this application adopts the following technical solution:
[0006] An integrated, spray-type geological disaster alarm device includes a measurement and communication mechanism installed inside the device body and an installation mechanism installed outside the device body. The measurement and communication mechanism includes a signal processing terminal, a first ball switch, a second ball switch, and a third ball switch, with the angles of the first, second, and third ball switches increasing sequentially. The signal processing terminal is communicatively connected to the first, second, and third ball switches. When the tilt angle of the device body at the measurement point does not exceed the angle of the third ball switch, the device body uploads the current angle range to the platform via the signal processor. When the tilt angle of the device body at the measurement point is greater than the angle of the third ball switch but less than the angle of the fourth ball switch, the device body initiates an early warning through the signal processor, reporting the current angle range to the platform periodically. When the tilt angle of the device body at the measurement point is greater than the angle of the fourth ball switch, the device body sends an alarm to the platform via the signal processor.
[0007] The installation mechanism includes an installation plate, on which an installation component for installing the device body is provided, and below the installation plate is a first soil insertion component. A second soil insertion component is fitted over the first soil insertion component, and an anchoring component is provided between the first soil insertion component and the second soil insertion component.
[0008] Furthermore, the first soil insertion assembly includes an insertion plate and an insertion rod. One end of the insertion plate is fixedly connected to the bottom wall of the mounting plate, and the other end of the insertion plate is fixedly connected to the insertion rod. The end of the insertion rod facing away from the insertion plate is provided with a tapered first insertion part.
[0009] Furthermore, the second soil insertion assembly includes a plug plate and a plug connector. The plug plate has a groove for accommodating the plug plate to slide vertically. The plug connector and the end of the plug plate opposite to the mounting plate are fixedly connected. The plug connector is provided with a tapered second insertion part and a through hole for the insertion rod to pass through.
[0010] Furthermore, the anchoring assembly includes an anchor rod and a connecting plate. The connecting plate has a receiving groove for accommodating the anchor rod and the connecting plate. The receiving groove is connected to the wall of the chute. The anchor rod is rotatably connected to the wall of the receiving groove. The connecting plate is fixedly connected to the end of the anchor rod near the connecting plate. A groove is formed on the side wall of the connecting plate. The projection of the top wall of the groove coincides with the end portion of the connecting plate opposite to the anchor rod.
[0011] Furthermore, the plug plate is provided with a first pressure plate, the first pressure plate is provided with a handle, and the plug plate is provided with a slot for accommodating the first pressure plate.
[0012] Furthermore, a second pressure plate is provided on the plug-in plate, and a fixing plate is provided on the second pressure plate.
[0013] In summary, this application includes the following beneficial technical effects:
[0014] When positioning the spill-type geological disaster alarm terminal on a slope, firstly, insert the second connector of the connector into the slope, and apply downward pressure to the fixing plate on the second pressure plate, causing the connector to drive the connector plate into the slope. Then, apply downward pressure to the handle on the first pressure plate, causing the rod to drive the connector plate to move. The connector plate slides in the groove, and the rod slides in the perforation, finally causing the first pressure plate to insert into the slot. At the same time, the top wall of the groove moves downward against the end of the connecting plate away from the anchor rod, and relative movement occurs between the anchor rod and the receiving groove. The anchor rod extends out of the receiving groove, and the anchor rod and the connector plate enclose to form an anchoring part, minimizing the loosening of the spill-type geological disaster alarm terminal between itself and the soil due to gravity, which is beneficial to improving the monitoring effect of the spill-type geological disaster alarm terminal. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of the slope clamp of the spill-type geological disaster alarm terminal in this application embodiment.
[0016] Figure 2 for Figure 1A cross-sectional view of plane AA.
[0017] Explanation of reference numerals in the attached drawings: 1. Device body; 2. Mounting plate; 3. Mounting assembly; 31. U-shaped plate; 4. First soil insertion assembly; 41. Insertion plate; 42. Insertion rod; 5. Second soil insertion assembly; 51. Insertion plate; 52. Insertion joint; 6. Soil anchoring assembly; 61. Anchor rod; 62. Connecting plate; 7. Support leg; 8. Receiving space; 9. Connecting bolt; 10. Mounting bolt; 11. First insertion part; 12. Slide groove; 13. Second insertion part; 14. Perforation; 15. Receiving groove; 16. Groove; 17. First pressure plate; 18. Handle; 19. Second pressure plate; 20. Fixing plate; 21. Slot. Detailed Implementation
[0018] The following is in conjunction with the appendix Figure 1-2 This application will be described in further detail.
[0019] This application discloses an integrated, spray-type geological disaster alarm device.
[0020] Reference Figure 1 and Figure 2 The integrated, spray-type geological disaster alarm device includes a measurement and communication mechanism installed inside the device body 1 and an installation mechanism installed outside the device body 1. The measurement and communication mechanism includes a signal processing terminal, a first ball switch, a second ball switch, and a third ball switch. In this embodiment, the first ball switch has an angle of 10°, the second ball switch has an angle of 15°, the third ball switch has an angle of 20°, and the fourth ball switch has an angle of 30°. The angles of the first, second, and third ball switches increase sequentially. The signal processing terminal communicates with the first, second, and third ball switches. Next, when the tilt angle of the device body 1 at the measurement point does not exceed the angle of the third ball switch (not exceeding 20°), the device body 1 uploads the current angle range to the platform through the signal processor; when the tilt angle of the device body 1 at the measurement point is greater than the angle of the third ball switch but less than the angle of the fourth ball switch (more than 20° but less than 30°), the device body 1 enters an early warning state through the signal processor, and reports the current angle range to the platform through the signal processor at regular intervals; when the tilt angle of the device body 1 at the measurement point is greater than the angle of the fourth ball switch, the device body 1 sends an alarm to the platform through the signal processor.
[0021] The installation mechanism includes an installation plate 2, on which an installation component 3 for installing a spill-type geological disaster alarm terminal is provided. A first soil insertion component 4 is provided below the installation plate 2. A second soil insertion component 5 is provided over the first soil insertion component 4. An anchoring component 6 is provided between the first soil insertion component 4 and the second soil insertion component 5.
[0022] The mounting assembly 3 includes a U-shaped plate 31. Two legs 7 of the U-shaped plate 31 are fixedly connected to the top wall of the mounting plate 2 by connecting bolts 9. The U-shaped plate 31 and the mounting plate 2 enclose a receiving space 8 for accommodating the slope clamp of the spill-type geological disaster alarm terminal. The slope clamp of the spill-type geological disaster alarm terminal is fixedly connected to the top wall of the receiving space 8 by mounting bolts 10 and the U-shaped plate 31.
[0023] The first soil insertion assembly 4 includes an insertion plate 41 and an insertion rod 42. One end of the insertion plate 41 is fixedly connected to the bottom wall of the mounting plate 2, and the other end of the insertion plate 41 is fixedly connected to the insertion rod 42. The end of the insertion rod 42 facing away from the insertion plate 41 is provided with a tapered first insertion part 11. The second soil insertion assembly 5 includes an insertion plate 51 and an insertion joint 52. The insertion plate 51 is provided with a groove 12 for accommodating the insertion plate 41 to slide in the vertical direction. The insertion joint 52 is fixedly connected to the end of the insertion plate 51 facing away from the mounting plate 2. The insertion joint 52 is provided with a tapered second insertion part 13 and a through hole 14 for the insertion rod 42 to pass through.
[0024] Reference Figure 2 The anchoring assembly 6 includes an anchor rod 61 and a connecting plate 62. The insertion plate 51 has a receiving groove 15 for accommodating the anchor rod 61 and the connecting plate 62. The receiving groove 15 and the groove wall of the sliding groove 12 are connected. The anchor rod 61 and the groove wall of the receiving groove 15 are rotatably connected. The connecting plate 62 and the end of the anchor rod 61 near the insertion plate 41 are fixedly connected. The side wall of the insertion plate 41 has a groove 16. The projection of the top wall of the groove 16 coincides with the end of the connecting plate 62 away from the anchor rod 61. The insertion plate 41 is provided with a first pressure plate 17, and the first pressure plate 17 is provided with a handle 18. The insertion plate 51 is provided with a slot 21 for accommodating the first pressure plate 17. The insertion plate 51 is provided with a second pressure plate 19, and the second pressure plate 19 is provided with a fixing plate 20.
[0025] The implementation principle of the integrated spray-type geological disaster alarm device in this application embodiment is as follows: When the spray-type geological disaster alarm terminal is positioned on the slope, firstly, the second plug part 13 of the plug connector 52 is inserted into the slope, and downward pressure is applied to the fixing plate 20 on the second pressure plate 19, so that the plug connector 52 drives the plug plate 51 to be inserted into the slope. Then, downward pressure is applied to the handle 18 on the first pressure plate 17, so that the plug rod 42 drives the plug plate 41 to move. The plug plate 41 slides in the slide groove 12, and the plug rod... 42 slides within the perforation 14, eventually causing the first pressure plate 17 to insert into the slot 21. At the same time, the top wall of the groove 16 moves downwards from the end of the connecting plate 62 away from the anchor rod 61, and relative movement occurs between the anchor rod 61 and the receiving groove 15. The anchor rod 61 extends out of the receiving groove 15, and the anchor rod 61 and the plug-in plate 51 enclose each other to form an anchor joint. This minimizes the loosening of the sprinkler-type geological disaster alarm terminal between itself and the soil due to gravity, which is beneficial to improving the monitoring effect of the sprinkler-type geological disaster alarm terminal.
[0026] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. An integrated, spray-type geological disaster alarm device, characterized in that: The device includes a measurement and communication mechanism installed inside the device body (1) and an installation mechanism installed outside the device body (1). The measurement and communication mechanism includes a signal processing terminal, a first ball switch, a second ball switch, and a third ball switch. The angles of the first ball switch, the second ball switch, and the third ball switch increase sequentially. The signal processing terminal is communicatively connected to the first ball switch, the second ball switch, and the third ball switch. When the tilt angle of the device body (1) at the measurement point does not exceed the angle of the third ball switch, the device body (1) uploads the current angle range to the platform through the signal processor. When the tilt angle of the device body (1) at the measurement point is greater than the angle of the third ball switch but less than the angle of the fourth ball switch, the device body (1) enters an early warning state through the signal processor and reports the current angle range to the platform through the signal processor at regular intervals. When the tilt angle of the device body (1) at the measurement point is greater than the angle of the fourth ball switch, the device body (1) sends an alarm to the platform through the signal processor. The installation mechanism includes an installation plate (2), on which an installation component (3) for installing the device body (1) is provided. A first soil insertion component (4) is provided below the installation plate (2). A second soil insertion component (5) is provided on the outer sleeve of the first soil insertion component (4). An anchoring component (6) is provided between the first soil insertion component (4) and the second soil insertion component (5).
2. The integrated spray-type geological disaster alarm device according to claim 1, characterized in that: The first soil insertion assembly (4) includes an insertion plate (41) and an insertion rod (42). One end of the insertion plate (41) is fixedly connected to the bottom wall of the mounting plate (2), and the other end of the insertion plate (41) is fixedly connected to the insertion rod (42). The insertion rod (42) has a tapered first insertion part (11) at the end away from the insertion plate (41).
3. The integrated spray-type geological disaster alarm device according to claim 2, characterized in that: The second soil insertion assembly (5) includes a plug plate (51) and a plug connector (52). The plug plate (51) has a groove (12) for accommodating the vertical sliding of the plug plate (41). The plug connector (52) and the plug plate (51) are fixedly connected at the ends opposite to the mounting plate (2). The plug connector (52) is provided with a tapered second insertion part (13) and a through hole (14) for the insertion rod (42) to pass through.
4. The integrated spray-type geological disaster alarm device according to claim 3, characterized in that: The anchor assembly (6) includes an anchor rod (61) and a connecting plate (62). The plug plate (51) has a receiving groove (15) for accommodating the anchor rod (61) and the connecting plate (62). The receiving groove (15) is connected to the groove wall of the sliding groove (12). The anchor rod (61) and the groove wall of the receiving groove (15) are rotatably connected. The connecting plate (62) and the end of the anchor rod (61) near the plug plate (41) are fixedly connected. The side wall of the plug plate (41) has a groove (16). The projection of the top wall of the groove (16) coincides with the end of the connecting plate (62) away from the anchor rod (61).
5. The integrated spray-type geological disaster alarm device according to claim 3, characterized in that: The insert plate (41) is provided with a first pressure plate (17), the first pressure plate (17) is provided with a handle (18), and the insert plate (51) is provided with a slot (21) for accommodating the first pressure plate (17).
6. The integrated spray-type geological disaster alarm device according to claim 3, characterized in that: The plug plate (51) is provided with a second pressure plate (19), and the second pressure plate (19) is provided with a fixing plate (20).