A smart wireless sound and light alarm device
By designing limiting and detection structures, the problem of easy displacement of intelligent wireless audible and visual alarm devices in wellhead environments has been solved, achieving stable installation and efficient detection, extending the service life of the device and optimizing the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI OUSHEN TECH CO LTD
- Filing Date
- 2025-08-15
- Publication Date
- 2026-05-26
AI Technical Summary
Existing intelligent wireless audible and visual alarm devices are prone to displacement or tipping during well logging operations due to the complex environment at the wellhead. The inflexible fixing methods also affect detection efficiency and the service life of the device.
The device employs a limiting structure and a detection structure, including components such as a first limiting frame plate, a second limiting frame plate, a limiting plate, a threaded sleeve, a threaded rod, and a knob rod. These components are fixed to the bracket via threaded connections and snap-fit methods, adapting to brackets of different sizes and improving the device's fixing strength and flexibility.
This achieves stable installation of the device, reduces damage, improves testing efficiency and frequency, extends service life, optimizes user experience, and reduces the pressure on testing personnel.
Smart Images

Figure CN224282623U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of sound and light alarm devices, specifically, it relates to an intelligent wireless sound and light alarm device. Background Technology
[0002] Currently, the detection of chloride ions in well logging operations mostly relies on traditional manual titration methods, which suffer from problems such as low detection efficiency, large human error, and reagents that may affect human health.
[0003] Utility model CN220064904U relates to the field of audible and visual alarm technology, specifically an explosion-proof audible and visual alarm for a gas detector. It includes a mounting base, a protective shell, and a bearing seat. The alarm body is fixedly mounted on the top of the mounting base. The protective shell limits the top of the mounting base outside the alarm body. A connecting rod is connected to the top of the protective shell, and a rainproof canopy is fixedly connected to the top of the connecting rod. This utility model, through the cooperation of the protective shell, rainproof canopy, drainage channel, and connecting rod, can conveniently protect the mounting base with the protective shell, effectively preventing external dust from damaging the alarm body. The rainproof canopy provides convenient protection in rainy or snowy environments, and the drainage channel effectively guides rainwater from the top of the rainproof canopy, preventing accumulation and making it more convenient to use, thus effectively increasing its service life.
[0004] However, the above-mentioned patents still have the following problems: When the intelligent wireless audible and visual alarm device is placed directly near the wellhead for chloride ion detection during the process of detecting chloride ions in logging mud, the complex environment at the wellhead, such as vibration and wind, can easily cause the alarm device to shift or even tip over, thereby damaging the detection instrument and affecting the normal progress of the detection work. The fixing method of the intelligent wireless audible and visual alarm device is often relatively fixed and cannot be flexibly adjusted to adapt to different sizes of brackets, thus limiting the use of the device.
[0005] In view of this, this utility model is proposed. Utility Model Content
[0006] To address the aforementioned technical problem of poor placement effect of intelligent wireless sound and light alarm devices, the basic concept of the technical solution adopted by this utility model is as follows:
[0007] A smart wireless sound and light alarm device includes: a first limiting frame plate, the first limiting frame plate being annular, and a hollow opening being provided inside the first limiting frame plate;
[0008] The second limiting frame plate is disposed outside the first limiting frame plate. The second limiting frame plate is annular and has a hollow opening inside.
[0009] The limiting structure includes two sets of first limiting plates, which are disposed outside the first limiting frame plate;
[0010] The detection structure includes a first explosion-proof box, which is fixedly installed inside the first limiting frame plate.
[0011] The bracket is fixedly installed on the wall.
[0012] The central control unit is electrically connected to each device via wires.
[0013] In a preferred embodiment of the present invention, the limiting structure further includes two sets of C-shaped limiting plates disposed inside the first limiting plate. Anti-slip patches are attached to the inner wall of one side of the C-shaped limiting plate. A set of threaded sleeves is disposed inside both the first limiting plate and the C-shaped limiting plate. A set of threaded rods is screwed into the interior of each of the two sets of threaded sleeves. A set of connecting rods is rotatably installed between the two sets of threaded rods.
[0014] In a preferred embodiment of the present invention, the limiting structure further includes a knob rod fixedly installed at one end of a set of threaded rods, the top of the C-shaped limiting plate is in close contact with the inner top of the first limiting plate, and the inner wall of the C-shaped limiting plate is in close contact with the outer wall of the support rod of the bracket.
[0015] In a preferred embodiment of the present invention, the limiting structure further includes four sets of second limiting plates fixedly installed on one side of the outer wall of the first limiting frame plate and the second limiting frame plate. The second limiting plate has a first threaded groove inside, and a first limiting bolt is screwed into the first threaded groove. Four sets of first threaded grooves are opened on one side of the outer wall of the first limiting plate, and the first limiting bolt is screwed into the first threaded groove inside the first limiting plate.
[0016] In a preferred embodiment of this utility model, the detection structure further includes a first data box fixedly installed on one side of the outer wall of the first explosion-proof box. The bottom of the first data box is provided with three sets of first snap-fit slots, and a first dustproof pad is fixedly installed at the bottom of the first snap-fit slot. The second explosion-proof box is fixedly installed inside the second limiting frame plate. The second data box is fixedly installed on one side of the outer wall of the second explosion-proof box. The bottom of the second data box is provided with a second snap-fit slot, and a set of first dustproof pads is fixedly installed at the bottom of the second snap-fit slot.
[0017] In a preferred embodiment of the present invention, the detection structure further includes a first guide pipe fixedly installed on the outer wall of the other side of the second explosion-proof box, a mud pump is provided outside the first limiting frame plate, one end of the first guide pipe is fixedly connected to the outer wall of the mud pump, a second handle is fixedly installed on one side of the outer wall of the second explosion-proof box, and a first discharge pipe is fixedly installed on the other side of the outer wall of the second explosion-proof box.
[0018] In a preferred embodiment of this utility model, a power indicator light is fixedly installed on the front side of the first explosion-proof box, a fault indicator light is fixedly installed on the front side of the first explosion-proof box, a main switch is fixedly installed on the front side of the first explosion-proof box, a working mode knob is provided on the front side of the first explosion-proof box, a first handle is fixedly installed on the front side of the first explosion-proof box, and three sets of data cables are provided at the bottom of the first limiting frame plate. A first plug and a second plug are fixedly installed at both ends of the data cables, respectively. The first plug is snapped into the inside of the first snap-fit slot, and the second plug is snapped into the inside of the second snap-fit slot.
[0019] Compared with the prior art, the present invention has the following advantages:
[0020] 1. To achieve the purpose of limiting and fixing the device, the position of the limiting structure is adjusted according to the different sizes of the bracket, thereby improving the flexibility of the device in use, increasing the fixing strength of the device, improving the installation environment of the testing device, reducing the damage to the testing instrument, and extending the service life of the device.
[0021] 2. To achieve the purpose of sampling and detecting gas in logging mud, improve the efficiency of chloride ion detection, increase the detection efficiency and frequency of the device, and improve the ease of use of the device.
[0022] 3. To achieve the purpose of signal transmission and feedback of detection data, improve the detection efficiency of the device, optimize the user experience of the device, facilitate the assembly and use of the device, and reduce the workload of detection personnel.
[0023] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description
[0024] In the attached diagram:
[0025] Figure 1 This is an installation diagram of the present invention;
[0026] Figure 2 This is a schematic diagram of the first explosion-proof box structure of this utility model;
[0027] Figure 3 This is a schematic diagram of the first limiting plate structure of this utility model;
[0028] Figure 4 This is a schematic diagram of the second limiting plate structure of this utility model;
[0029] Figure 5 This is a schematic diagram of the first data box structure of this utility model;
[0030] Figure 6 This is a schematic diagram of the second explosion-proof box structure of this utility model;
[0031] Figure 7 This is a schematic diagram of the data cable structure of this utility model;
[0032] Figure 8 This is a schematic diagram of the second data box structure of this utility model;
[0033] Figure 9 This is a schematic diagram of the first threaded groove structure of this utility model.
[0034] In the diagram: 10. First limiting frame plate; 11. First explosion-proof box; 12. Power indicator light; 13. Fault indicator light; 14. Main switch; 15. Working mode knob; 16. First grip; 17. First limiting plate; 18. Second limiting plate; 19. First threaded groove; 20. First limiting bolt; 21. C-type limiting plate; 22. Anti-slip patch; 23. Threaded sleeve; 24. Connecting rod; 25. Threaded rod; 26. Knob rod; 27. First data box; 28. First snap-fit slot; 29. First dustproof pad; 30. Second limiting frame plate; 31. Second explosion-proof box; 32. Second grip; 33. First guide pipe; 34. First discharge pipe; 35. Second data box; 36. Second snap-fit slot; 37. Data cable; 38. First plug; 39. Second plug; 40. Mud pump; 41. Bracket; 42. Main control. Detailed Implementation
[0035] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. The following embodiments are used to illustrate this utility model.
[0036] Example 1: An intelligent wireless sound and light alarm device, specifically as follows Figure 1 , Figure 2 and Figure 6 As shown, the system includes a first limiting frame plate 10, which is annular and has a hollow opening inside; a second limiting frame plate 30, which is located outside the first limiting frame plate 10 and is also annular, with a hollow opening inside; a limiting structure, which includes two sets of first limiting plates 17, located outside the first limiting frame plate 10; a detection structure, which includes a first explosion-proof box 11, fixedly installed inside the first limiting frame plate 10; a bracket 41, fixedly installed on a wall; and a central control unit 42, which is electrically connected to each device via wires. The limiting structure secures the device to the bracket, and the detection structure detects chloride ions in the logging mud. The bracket 41 is fixedly installed on the wall with screws, and the central control unit 42 controls the operation of each device.
[0037] Specifically, such as Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the limiting structure also includes two sets of C-shaped limiting plates 21 disposed inside the first limiting plate 17. Anti-slip patches 22 are attached to one inner wall of each C-shaped limiting plate 21. Both the first limiting plate 17 and the C-shaped limiting plate 21 have a set of threaded sleeves 23 inside. A set of threaded rods 25 are screwed into each of the two sets of threaded sleeves 23, and a connecting rod 24 is rotatably installed between the two sets of threaded rods 25. The first limiting plate 17 is placed on the inner rod of the bracket 41, and the two sets of C-shaped limiting plates 21 are placed on the inner rod of the bracket 41 (in the opposite direction to the placement of the first limiting plate 17), so that the first limiting plate 17 and the C-shaped limiting plates 21 clamp the inner rod of the bracket 41.
[0038] Specifically, such as Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the limiting structure also includes a knob rod 26 fixedly installed at one end of a set of threaded rods 25. The top of the C-shaped limiting plate 21 is in close contact with the inner top of the first limiting plate 17, and the inner wall of the C-shaped limiting plate 21 is in close contact with the outer wall of the support rod of the bracket 41. Rotating the knob rod 26 screws a set of threaded rods 25 into the threaded sleeve 23 inside the 17. Rotating the connecting rod 24 screws another set of threaded rods 25 into the threaded sleeve 23 inside the 21.
[0039] Specifically, such as Figure 2 , Figure 3 , Figure 4 and Figure 9 As shown, the limiting structure also includes four sets of second limiting plates 18 fixedly installed on one side of the outer wall of the first limiting frame plate 10 and the second limiting frame plate 30. The second limiting plate 18 has a first threaded groove 19 inside, and a first limiting bolt 20 is screwed into the first threaded groove 19. Four sets of first threaded grooves 19 are also opened on one side of the outer wall of the first limiting plate 17, and the first limiting bolt 20 is screwed into the first threaded groove 19 inside the first limiting plate 17. The second limiting plate 18 is snapped onto the outer wall of the first limiting plate 17, and the first threaded groove 19 is rotated to screw the first threaded groove 19 into the first limiting bolt 20 and the first limiting plate 17 in sequence. The first limiting frame plate 10 and the second limiting frame plate 30 are then fixedly installed on the outer wall of the first limiting plate 17.
[0040] Based on the above, the structure of the first limiting plate 17, the second limiting plate 18, the first threaded groove 19, the first limiting bolt 20, the C-shaped limiting plate 21, the anti-slip patch 22, the threaded sleeve 23, the connecting rod 24, the threaded rod 25, and the knob rod 26 achieves the purpose of limiting and fixing the device. The position of the limiting structure can be adjusted according to the size of the bracket, which improves the flexibility of the device, increases the fixing strength of the device, improves the installation environment of the detection device, reduces the damage to the detection instrument, and extends the service life of the device.
[0041] Example 2: Based on Example 1, specifically as follows... Figure 1 , Figure 3 and Figure 5 As shown, the detection structure also includes a first data box 27 fixedly installed on one side of the outer wall of the first explosion-proof box 11. The bottom of the first data box 27 is provided with three sets of first snap-fit slots 28. A first dustproof pad 29 is fixedly installed at the bottom of the first snap-fit slots 28. A second explosion-proof box 31 is fixedly installed inside the second limiting frame plate 30. A second data box 35 is fixedly installed on one side of the outer wall of the second explosion-proof box 31. The bottom of the second data box 35 is provided with a second snap-fit slot 36. A set of first dustproof pads 29 is fixedly installed at the bottom of the second snap-fit slot 36. The first dustproof pads 29 protect the first snap-fit slots 28 and the second snap-fit slots 36.
[0042] Specifically, such as Figure 1 , Figure 6 and Figure 8 As shown, the detection structure also includes a first guide pipe 33 fixedly installed on the outer wall of the other side of the second explosion-proof box 31. A mud pump 40 is provided outside the first limiting frame plate 10. One end of the first guide pipe 33 is fixedly connected to the outer wall of the mud pump 40. A second handle 32 is fixedly installed on one outer wall of the second explosion-proof box 31, and a first discharge pipe 34 is fixedly installed on the other outer wall of the second explosion-proof box 31. The mud pump 40 performs gas sampling and detection of chloride ions in the mud. The sample is transported to the inside of the second explosion-proof box 31 for detection through the first guide pipe 33, and the exhaust gas is discharged through the first discharge pipe 34.
[0043] Based on the above, the structure of the first data box 27, the first snap-fit slot 28, the first dustproof pad 29, the second limiting frame 30, the second explosion-proof box 31, the second handle 32, the first guide pipe 33, the first discharge pipe 34, the second data box 35, the second snap-fit slot 36, and the mud pump 40 achieves the purpose of sampling and detecting gas in logging mud, improving the efficiency of chloride ion detection, increasing the detection efficiency and frequency of the device, and improving the ease of use of the device.
[0044] Example 3: Based on Examples 1 and 2, specifically as follows... Figure 1 , Figure 2 and Figure 7 As shown, a power indicator light 12, a fault indicator light 13, a main switch 14, a working mode knob 15, and a first handle 16 are fixedly installed on the front of the first explosion-proof box 11. Three sets of data cables 37 are located at the bottom of the first limiting frame plate 10. A first plug 38 and a second plug 39 are fixedly installed at each end of the data cables 37. The first plug 38 is snapped into the inside of the first snap-fit slot 28, and the second plug 39 is snapped into the inside of the second snap-fit slot 36. The first plug 38 and the second plug 39 are inserted into the first snap-fit slot 28 and the second snap-fit slot 36, respectively. Data from the second explosion-proof box 31 is transmitted to the inside of the first limiting frame plate 10 via the data cables 37. The first limiting frame plate 10 is controlled by the first explosion-proof box 11, the power indicator light 12, the fault indicator light 13, and the main switch 14.
[0045] In summary, the structure of the first limiting frame plate 10, the first explosion-proof box 11, the working power indicator light 12, the fault indicator light 13, the main switch 14, the working mode knob 15, the first grip 16, the first snap-fit slot 28, the second snap-fit slot 36, the data cable 37, the first plug 38 and the second plug 39 achieves the purpose of signal transmission and feedback of detection data, improves the detection efficiency of the device, optimizes the user experience of the device, facilitates the assembly and use of the device, and reduces the workload of the testing personnel.
[0046] The second explosion-proof box 31 detects chloride ions using membrane permeation, and can detect chloride ions, conductivity, temperature, and density, and automatically plot ion curves. The mud pump 40 can continuously pump mud and can be connected to a comprehensive logging instrument to record well depth.
[0047] Working principle: Fix bracket 41 to the wall with screws. Place the first limiting plate 17 on the inner rod of bracket 41. Place two sets of C-shaped limiting plates 21 on the inner rod of bracket 41 in the opposite direction to the first limiting plate 17, clamping the inner rod of bracket 41. Rotate knob rod 26 to screw one set of threaded rods 25 into the threaded sleeve 23 inside the first limiting plate 17. Rotate connecting rod 24 to screw the other set of threaded rods 25 into the threaded sleeve 23 inside the C-shaped limiting plate 21. Snap the second limiting plate 18 onto the outer wall of the first limiting plate 17. Rotate the first threaded groove 19 to screw it into the first limiting bolt 20 and the inside of the first limiting plate 17. Fix the first limiting frame plate 10 and the second limiting frame plate 30 to the outer wall of the first limiting plate 17. Fix the first explosion-proof box 11 inside the first limiting frame plate 10 and the second explosion-proof box 31 inside the second limiting frame plate 30. The first explosion-proof box 11 has a first data box 27 on one side, and three sets of first snap-fit slots 28 and a first dustproof pad 29 on the bottom. The second explosion-proof box 31 has a second data box 35 on one side, and a second snap-fit slot 36 and a set of first dustproof pads 29 on the bottom. The outer wall of the other side of the second explosion-proof box 31 has a first material guide pipe 33, which is fixedly connected to the outer wall of the mud pump 40. There is also a second handle 32 on one side and a first discharge pipe 34 on the other side. The bottom of the first limiting frame plate 10 has three sets of data cables 37, with a first plug 38 and a second plug 39 at each end. The first plug 38 and the second plug 39 are inserted into the first snap-fit slot 28 and the second snap-fit slot 36, respectively. The detection data of the second explosion-proof box 31 is transmitted to the inside of the first limit frame plate 10 through the data cable 37. The slurry pump 40 performs gas sampling and detection of chloride ions in the slurry. The sample is transported to the inside of the second explosion-proof box 31 for detection through the first guide pipe 33. The exhaust gas is discharged through the first discharge pipe 34. The front of the first explosion-proof box 11 has a working power indicator light 12, a fault indicator light 13, a main switch 14, a working mode knob 15, and a first handle 16. The main control 42 is electrically connected to the wires of each device to start and control each device. The first limit frame plate 10 is controlled through the first explosion-proof box 11 and related indicator lights and switches.
[0048] It is understood that this utility model has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. Furthermore, under the teachings of this utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of this utility model.
Claims
1. An intelligent wireless sound and light alarm device, characterized in that, include: The first limiting frame plate (10) is annular and has a hollow opening inside. The second limiting frame plate (30) is located outside the first limiting frame plate (10). The second limiting frame plate (30) is annular and has a hollow opening inside. The limiting structure includes two sets of first limiting plates (17), which are disposed outside the first limiting frame plate (10); The detection structure includes a first explosion-proof box (11), which is fixedly installed inside the first limiting frame plate (10); Bracket (41) is fixedly installed on the wall; The main control unit (42) is electrically connected to each device via wires.
2. The intelligent wireless sound and light alarm device according to claim 1, characterized in that, The limiting structure also includes two sets of C-shaped limiting plates (21) disposed inside the first limiting plate (17). Anti-slip patches (22) are pasted on the inner wall of one side of the C-shaped limiting plate (21). A set of threaded sleeves (23) is disposed inside both the first limiting plate (17) and the C-shaped limiting plate (21). A set of threaded rods (25) is screwed into the interior of each of the two sets of threaded sleeves (23). A set of connecting rods (24) is rotatably installed between the two sets of threaded rods (25).
3. The intelligent wireless sound and light alarm device according to claim 1, characterized in that, The limiting structure also includes a knob rod (26) fixedly installed at one end of a set of threaded rods (25), the top of the C-shaped limiting plate (21) is in close contact with the inner top of the first limiting plate (17), and the inner wall of the C-shaped limiting plate (21) is in close contact with the outer wall of the support rod of the bracket (41).
4. The intelligent wireless sound and light alarm device according to claim 1, characterized in that, The limiting structure also includes four sets of second limiting plates (18) fixedly installed on one side of the outer wall of the first limiting frame plate (10) and the second limiting frame plate (30). The second limiting plate (18) has a first threaded groove (19) inside. The first limiting bolt (20) is screwed inside the first threaded groove (19). The first limiting plate (17) has four sets of first threaded grooves (19) on one side of the outer wall. The first limiting bolt (20) is screwed into the first threaded groove (19) inside the first limiting plate (17).
5. The intelligent wireless audible and visual alarm device according to claim 1, characterized in that, The detection structure also includes a first data box (27) fixedly installed on one side of the outer wall of the first explosion-proof box (11). The bottom of the first data box (27) is provided with three sets of first snap-fit slots (28). The bottom of the first snap-fit slots (28) is fixedly installed with a first dustproof pad (29). The second explosion-proof box (31) is fixedly installed inside the second limiting frame plate (30). The second data box (35) is fixedly installed on one side of the outer wall of the second explosion-proof box (31). The bottom of the second data box (35) is provided with a second snap-fit slot (36). The bottom of the second snap-fit slot (36) is fixedly installed with a set of first dustproof pads (29).
6. The intelligent wireless audible and visual alarm device according to claim 1, characterized in that, The detection structure also includes a first guide pipe (33) fixedly installed on the outer wall of the other side of the second explosion-proof box (31), a mud pump (40) is provided outside the first limiting frame plate (10), one end of the first guide pipe (33) is fixedly connected to the outer wall of the mud pump (40), a second handle (32) is fixedly installed on one side of the outer wall of the second explosion-proof box (31), and a first discharge pipe (34) is fixedly installed on the other side of the outer wall of the second explosion-proof box (31).
7. The intelligent wireless sound and light alarm device according to claim 1, characterized in that, The first explosion-proof box (11) is fixedly equipped with a power indicator light (12), a fault indicator light (13), a main switch (14), a working mode knob (15), a first handle (16), and three sets of data cables (37) are provided at the bottom of the first limit frame plate (10). A first plug (38) and a second plug (39) are fixedly installed at both ends of the data cable (37). The first plug (38) is snapped into the inside of the first snap-fit slot (28), and the second plug (39) is snapped into the inside of the second snap-fit slot (36).