An early warning triggering structure for monitoring abnormal states of industrial IoT devices

By designing an early warning trigger structure that includes a base plate, a fixing mechanism, a protective mechanism, and a detection mechanism, the problem of damage to monitoring equipment under open flame conditions is solved. This achieves effective protection and rapid disassembly of the detection mechanism, improving the safety and ease of maintenance of the equipment.

CN224319375UActive Publication Date: 2026-06-02JIANGSU HONGCHENG INTELLIGENT TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU HONGCHENG INTELLIGENT TECH CO LTD
Filing Date
2025-05-15
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing monitoring and early warning equipment lacks protection against open flames or other hazards in industrial IoT devices, leading to equipment damage and increased losses.

Method used

An early warning triggering structure was designed, comprising a base plate, a fixing mechanism, a protective mechanism, a moving mechanism, and a detection mechanism. By utilizing the cooperation of a motor and a closed cover, the detection mechanism is protected and can be quickly disassembled. Heat-insulating and fire-resistant materials are used to prevent high-temperature deformation.

Benefits of technology

In the event of an open flame or other similar incidents, the protective mechanism can effectively protect the testing unit, facilitate subsequent inspection of the specific situation, and allow for quick disassembly of the protective mechanism, avoiding disassembly difficulties caused by high-temperature deformation.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses an early warning trigger structure for monitoring abnormal states of industrial IoT devices, relating to the field of IoT device abnormality monitoring technology. It includes a base plate, with a fixed mechanism rotatably connected to the upper center of the base plate. A protective mechanism is fixedly connected to the outer side of the fixed mechanism, and a moving mechanism is slidably connected to the lower inner surface of the protective mechanism. A detection mechanism is movably mounted on the upper side of the moving mechanism. The protective mechanism includes a first motor, with a rotating cover fixedly connected to the output end of the first motor. The early warning trigger structure for monitoring abnormal states of industrial IoT devices, as described in this utility model, uses an electric push rod to move the detection mechanism inside or out of the first motor. A second motor drives the closed cover to rotate, causing the first motor to close or open. This allows the IoT device to protect the detection mechanism in various situations such as open flames, facilitating subsequent verification of the specific situation at the time.
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Description

Technical Field

[0001] This utility model relates to the field of IoT device anomaly monitoring technology, and in particular to an early warning triggering structure for monitoring abnormal states of industrial IoT devices. Background Technology

[0002] Industrial Internet of Things (IIoT) devices are a crucial component of the Industrial Internet of Things (IIoT). Their primary function is to collect, transmit, and analyze data through sensors, controllers, adapters, and network tools, thereby driving the intelligentization and automation of industrial production processes. These devices are widely used in manufacturing, energy, transportation, and other industries, providing technical support for improving production efficiency, reducing operating costs, and optimizing production processes. Existing IIoT devices require monitoring and early warning equipment to monitor their operational status.

[0003] The existing technology has the following problems:

[0004] Existing monitoring and early warning equipment is usually exposed on the outside when it is monitoring. When the equipment is exposed to open flames or other situations, it is not equipped with protective components, which causes the monitoring equipment and IoT devices to be damaged together, resulting in increased equipment losses. Utility Model Content

[0005] This invention provides an early warning triggering structure for monitoring abnormal states of industrial IoT devices, in order to solve the problems mentioned in the background art.

[0006] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:

[0007] An early warning triggering structure for monitoring abnormal states of industrial IoT devices includes a base plate, a fixing mechanism rotatably connected to the upper middle part of the base plate, a protective mechanism fixedly connected to the outer side of the fixing mechanism, a moving mechanism slidably connected to the lower inner surface of the protective mechanism, and a detection mechanism movably mounted on the upper side of the moving mechanism.

[0008] The protective mechanism includes a first motor, the output end of which is fixedly connected to a rotating cover, a second motor fixedly connected to the inner upper surface of the rotating cover, the output end of which is fixedly connected to a sealing cover, and the inner side of the sealing cover is movably sleeved on the outer side of the rotating cover.

[0009] Preferably, the fixing mechanism includes a rotating ring, the bottom of which is rotatably connected to the upper side of the base plate. Three annularly distributed fixing sleeves are fixedly connected to the upper side of the rotating ring. A mechanism sleeve is movably fitted onto the outer side of each of the three fixing sleeves. An insert sleeve is fixedly connected to the inner side of each of the three mechanism sleeves. The outer side of the insert sleeve is movably fitted onto the inner side of the fixing sleeve. A ball bearing is movably fitted onto the inner side of each of the three insert sleeves. A limit post is movably fitted onto the inner side of each of the three limit posts. A screw is threaded onto the inner side of each limit post. The bottom of the screw is rotatably connected to the bottom of the inner side of the insert sleeve.

[0010] Preferably, a positioning block is fixedly connected to the lower side of the first motor, and the outer side of the positioning block is movably sleeved in the groove in the middle of the upper surface of the base plate.

[0011] Preferably, the moving mechanism includes a mounting plate, the lower side of which is slidably connected to the lower inner surface of the first motor. Two vertical plates are fixedly connected to the lower left and right sides of the mounting plate near the front side. Two electric push rods are fixedly connected to the lower inner surface of the first motor near the left and right sides. The front sides of the two electric push rods are fixedly connected to a locking rod by a round shaft, and the locking rod is located in front of the vertical plate.

[0012] Preferably, the front sides of both vertical plates are rotatably connected to a fixing component, the fixing component including a rotating sleeve, the rear side of the rotating sleeve being rotatably connected to the front side of the vertical plate, and the outer side of the locking rod being movably sleeved in a transmission groove opened on the rear side of the rotating sleeve.

[0013] Preferably, a transmission plate is movably sleeved on the inner side of the rotating sleeve, and a baffle is fixedly connected to the front side of the transmission plate by a round rod. Two L-shaped grooves are provided on the upper left and right sides of the mounting plate near the front side.

[0014] Preferably, a spring is movably sleeved on the inner side of the rotating sleeve, and the spring is located on the front side of the transmission plate.

[0015] Due to the adoption of the above technical solution, the technological progress achieved by this utility model compared to the prior art is as follows:

[0016] 1. This utility model provides an early warning trigger structure for monitoring abnormal states of industrial IoT devices. It adopts a base plate, a protective mechanism, a first motor, a rotating cover, a second motor, a closed cover, a positioning block, a moving mechanism, a mounting plate, a vertical plate, a locking rod, an electric push rod, and a detection mechanism. The electric push rod drives the detection mechanism to move in or out of the inner side of the first motor, and the second motor drives the closed cover to rotate, so that the first motor is closed or opened. In this way, the IoT device can protect the detection mechanism in various situations such as open flames, making it convenient to check the specific situation at that time.

[0017] 2. This utility model provides an early warning trigger structure for monitoring abnormal states of industrial IoT devices. It adopts a base plate, a fixing mechanism, a rotating ring, a fixing sleeve, a mechanism sleeve, a plug sleeve, a ball bearing, a limit post, a screw, a protective mechanism, a moving mechanism, a mounting plate, a vertical plate, a locking rod, an electric push rod, a fixing component, a rotating sleeve, a transmission plate, a spring, a baffle, an L-shaped groove, and a detection mechanism. Through this and the hybrid rotating sleeve, the mounting plate and the detection mechanism can be quickly removed from the protective mechanism. Tightening the screws allows the protective mechanism to be removed from the base plate, thereby quickly recycling the structure and avoiding the problem of disassembly difficulties caused by high temperature deformation and other conditions. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0019] Figure 2 This is a partial cross-sectional three-dimensional structural schematic diagram of the present invention;

[0020] Figure 3 This is a partial cross-sectional three-dimensional structural diagram of the fixing mechanism part of this utility model;

[0021] Figure 4 This is a partial cross-sectional three-dimensional structural diagram of the moving mechanism part of this utility model;

[0022] Figure 5 This utility model Figure 4 Enlarged structural diagram of part A in the middle;

[0023] Figure 6 This is a three-dimensional structural diagram of the protective mechanism of this utility model.

[0024] In the diagram: 1. Base plate; 2. Fixing mechanism; 21. Rotary ring; 22. Fixing sleeve; 23. Mechanism sleeve; 24. Insert sleeve; 25. Ball bearing; 26. Limiting post; 27. Screw; 3. Protective mechanism; 31. First motor; 32. Rotating cover; 33. Second motor; 34. Enclosed cover; 35. Positioning block; 4. Moving mechanism; 41. Mounting plate; 42. Vertical plate; 43. Clamping rod; 44. Electric push rod; 45. Fixing assembly; 451. Rotating sleeve; 452. Transmission plate; 453. Spring; 454. Baffle; 46. L-shaped groove; 5. Detection mechanism. Detailed Implementation

[0025] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0026] like Figures 1-6As shown, an early warning triggering structure for monitoring abnormal states of industrial Internet of Things (IoT) devices includes a base plate 1, a fixing mechanism 2 rotatably connected to the upper middle part of the base plate 1, a protective mechanism 3 fixedly connected to the outer side of the fixing mechanism 2, a moving mechanism 4 slidably connected to the lower inner surface of the protective mechanism 3, and a detection mechanism 5 movably installed on the upper side of the moving mechanism 4.

[0027] The protective mechanism 3 includes a first motor 31, the output end of the first motor 31 is fixedly connected to a rotating cover 32, the inner upper surface of the rotating cover 32 is fixedly connected to a second motor 33, the output end of the second motor 33 is fixedly connected to a closed cover 34, and the inner side of the closed cover 34 is movably sleeved on the outer side of the rotating cover 32.

[0028] It should be noted that the detection mechanism 5 integrates a humidity sensor, a temperature sensor, an infrared camera, a battery module, and a Bluetooth module. The detection mechanism 5 is powered from the outside through the first motor 31. When the external circuit is damaged, the Bluetooth module and the battery module control the various electrical components on the device. The rotating cover 32 is a cylindrical protective cover with a fan-shaped notch, and the closed cover 34 is a semi-cylindrical protective cover. Both the rotating cover 32 and the closed cover 34 are provided with heat-insulating and fireproof materials on their outer sides. The first motor 31 can drive the rotating cover 32 to rotate. When the rotating cover 32 rotates, it drives the detection mechanism 5 to revolve, so that the detection mechanism 5 can detect the surrounding environment. The second motor 33 is used to drive the closed cover 34 to rotate. When the closed cover 34 rotates, it closes or opens the rotating cover 32.

[0029] like Figure 3 As shown, the fixing mechanism 2 includes a rotating ring 21. The bottom of the rotating ring 21 is rotatably connected to the upper side of the base plate 1. Three annularly distributed fixing sleeves 22 are fixedly connected to the upper side of the rotating ring 21. Mechanism sleeves 23 are movably sleeved on the outer side of each of the three fixing sleeves 22. Insert sleeves 24 are fixedly connected to the inner side of each of the three mechanism sleeves 23. The outer side of the insert sleeves 24 is movably sleeved on the inner side of the fixing sleeves 22. Ball bearings 25 are movably sleeved on the inner side of each of the three insert sleeves 24. Limiting posts 26 are movably sleeved on the inner side of each of the three insert sleeves 24. Screws 27 are threadedly connected to the inner side of each of the three limiting posts 26. The bottom of the screws 27 is rotatably connected to the bottom of the inner side of the insert sleeves 24.

[0030] It should be noted that the outer side of the mechanism sleeve 23 is fixedly connected to the bottom inner side of the first motor 31 near the side. Rotating the screw 27 causes the screw 27 to drive the limiting post 26 to move up and down. When the limiting post 26 moves down and moves to the side of the ball 25, the ball 25 is movably inserted into the ball groove opened on the inner side of the fixed sleeve 22. The outer sides of the fixed sleeve 22, mechanism sleeve 23 and insert sleeve 24 are all made of heat-insulating and fireproof material to avoid the problem that the screw 27 is difficult to remove after heat deformation due to direct fixing with screw 27.

[0031] like Figure 6 As shown, a positioning block 35 is fixedly connected to the lower side of the first motor 31, and the outer side of the positioning block 35 is movably sleeved in the groove in the middle of the upper surface of the base plate 1.

[0032] It should be noted that the positioning block 35 is used to fix the bottom of the first motor 31 so that the first motor 31 cannot move.

[0033] like Figure 4 , Figure 5 As shown, the moving mechanism 4 includes a mounting plate 41. The lower side of the mounting plate 41 is slidably connected to the lower inner surface of the first motor 31. Two vertical plates 42 are fixedly connected to the lower left and right sides of the mounting plate 41 near the front side. Two electric push rods 44 are fixedly connected to the lower inner surface of the first motor 31 near the left and right sides. The front side of each of the two electric push rods 44 is fixedly connected to a locking rod 43 by a round shaft, and the locking rod 43 is located in front of the vertical plate 42.

[0034] It should be noted that the lower side of the detection mechanism 5 is movably mounted on the upper side of the mounting plate 41. The clamping rod 43 is used to fix the vertical plate 42 on the electric push rod 44. The electric push rod 44 can drive the mounting plate 41 to move back and forth, so that the detection mechanism 5 moves out from the inside of the first motor 31.

[0035] like Figure 5 As shown, the front sides of the two vertical plates 42 are rotatably connected to a fixing component 45. The fixing component 45 includes a rotating sleeve 451. The rear side of the rotating sleeve 451 is rotatably connected to the front side of the vertical plate 42. The outer side of the locking rod 43 is movably sleeved in the transmission groove opened on the rear side of the rotating sleeve 451.

[0036] It should be noted that a first torsion spring is provided between the locking rod 43 and the electric push rod 44. In the initial state, the locking rod 43 is in a vertical state, so that the locking rod 43 cannot fix the vertical plate 42. A second torsion spring is provided between the rotating sleeve 451 and the vertical plate 42. In the initial state, the rotating sleeve 451 makes the locking rod 43 horizontal. After rotating the rotating sleeve 451, the locking rod 43 becomes vertical, and the vertical plate 42 can be removed from the electric push rod 44.

[0037] like Figure 5 As shown, a transmission plate 452 is movably sleeved on the inner side of the rotating sleeve 451. A baffle 454 is fixedly connected to the front side of the transmission plate 452 by a round rod. Two L-shaped grooves 46 are provided on the upper left and right sides of the mounting plate 41 near the front side.

[0038] It should be noted that rotating the baffle 454 causes it to slide into the L-shaped groove 46, which in turn fixes the rotating sleeve 451, preventing the second torsion spring from resetting the rotating sleeve 451.

[0039] like Figure 5 As shown, a spring 453 is movably sleeved on the inner side of the rotating sleeve 451, and the spring 453 is located on the front side of the transmission plate 452.

[0040] It should be noted that the spring 453 pushes the transmission plate 452, so that the baffle 454 is tightly attached to the rotating sleeve 451 in the initial state, preventing the baffle 454 from moving freely.

[0041] The working principle of this utility model is as follows: First, the rotating cover 32 is a cylindrical protective cover with a fan-shaped notch, and the closed cover 34 is a semi-cylindrical protective cover. Both the rotating cover 32 and the closed cover 34 are provided with heat-insulating and fireproof materials on their outer sides. The first motor 31 can drive the rotating cover 32 to rotate. When the rotating cover 32 rotates, it drives the detection mechanism 5 to revolve, so that the detection mechanism 5 can detect the surrounding environment. The second motor 33 is used to drive the closed cover 34 to rotate. When the closed cover 34 rotates, it closes or opens the rotating cover 32. The lower side of the detection mechanism 5 is movably mounted on the upper side of the mounting plate 41. The clamping rod 43 is used to fix the vertical plate 42 to the electric push rod. On 44, the electric push rod 44 can drive the mounting plate 41 to move back and forth, causing the detection mechanism 5 to move out from the inside of the first motor 31. The electric push rod 44 drives the detection mechanism 5 to move in or out from the inside of the first motor 31. The second motor 33 drives the enclosure 34 to rotate, causing the first motor 31 to close or open. This allows the IoT device to protect the detection mechanism 5 in various situations such as open flames, facilitating subsequent verification of the specific situation. Finally, the outer side of the mechanism sleeve 23 is fixedly connected to the bottom inner side of the first motor 31 near the side. Rotating the screw 27 causes the screw 27 to move the limit... The positioning post 26 moves up and down. When the positioning post 26 moves down and moves to the side of the ball 25, the ball 25 is movably inserted into the ball groove opened on the inner side of the fixed sleeve 22. The outer sides of the fixed sleeve 22, the mechanism sleeve 23, and the insert sleeve 24 are all made of heat-insulating and fireproof materials to avoid the problem of the screw 27 being difficult to remove after heat deformation due to direct fixation with screw 27. A first torsion spring is provided between the locking rod 43 and the electric push rod 44. In the initial state, the locking rod 43 is in a vertical state, so that the locking rod 43 cannot fix the vertical plate 42. A second torsion spring is provided between the rotating sleeve 451 and the vertical plate 42. In the initial state, the rotating sleeve 451 makes the vertical plate 42 more stable. With the lever 43 in a horizontal position, rotating the rotating sleeve 451 makes the lever 43 vertical, allowing the vertical plate 42 to be removed from the electric push rod 44. Rotating the baffle 454 causes it to slide into the L-shaped groove 46, which then fixes the rotating sleeve 451, preventing the second torsion spring from resetting the rotating sleeve 451. This, along with the rotating sleeve 451, allows the mounting plate 41 and the detection mechanism 5 to be quickly removed from the protective mechanism 3. Tightening the screw 27 removes the protective mechanism 3 from the base plate 1, enabling the structure to be quickly recycled and avoiding disassembly difficulties caused by high-temperature deformation or other conditions.

[0042] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. An early warning triggering structure for monitoring abnormal states of industrial Internet of Things (IoT) devices, comprising a base plate (1), characterized in that: A fixing mechanism (2) is rotatably connected to the upper middle part of the base plate (1), a protective mechanism (3) is fixedly connected to the outer side of the fixing mechanism (2), a moving mechanism (4) is slidably connected to the lower inner surface of the protective mechanism (3), and a detection mechanism (5) is movably installed on the upper side of the moving mechanism (4). The protective mechanism (3) includes a first motor (31), the output end of the first motor (31) is fixedly connected to a rotating cover (32), the inner upper surface of the rotating cover (32) is fixedly connected to a second motor (33), the output end of the second motor (33) is fixedly connected to a closed cover (34), and the inner side of the closed cover (34) is movably sleeved on the outer side of the rotating cover (32).

2. The early warning triggering structure for monitoring abnormal states of industrial IoT devices according to claim 1, characterized in that: The fixing mechanism (2) includes a rotating ring (21). The bottom of the rotating ring (21) is rotatably connected to the upper side of the base plate (1). Three ring-shaped fixing sleeves (22) are fixedly connected to the upper side of the rotating ring (21). A mechanism sleeve (23) is movably sleeved on the outer side of each of the three fixing sleeves (22). A plug sleeve (24) is fixedly connected to the inner side of each of the three mechanism sleeves (23). The outer side of the plug sleeve (24) is movably sleeved on the inner side of the fixing sleeve (22). A ball bearing (25) is movably sleeved on the inner side of each of the three plug sleeves (24). A limit post (26) is movably sleeved on the inner side of each of the three plug sleeves (24). A screw (27) is threadedly connected to the inner bottom of each of the three limit posts (26). The bottom of the screw (27) is rotatably connected to the inner bottom of the plug sleeve (24).

3. The early warning triggering structure for monitoring abnormal states of industrial IoT devices according to claim 1, characterized in that: A positioning block (35) is fixedly connected to the lower side of the first motor (31), and the outer side of the positioning block (35) is movably sleeved in the groove in the middle of the upper surface of the base plate (1).

4. The early warning triggering structure for monitoring abnormal states of industrial IoT devices according to claim 1, characterized in that: The moving mechanism (4) includes a mounting plate (41). The lower side of the mounting plate (41) is slidably connected to the inner lower surface of the first motor (31). Two vertical plates (42) are fixedly connected to the lower left and right sides of the mounting plate (41) near the front side. Two electric push rods (44) are fixedly connected to the inner lower surface of the first motor (31) near the left and right sides. The front side of each of the two electric push rods (44) is fixedly connected to a locking rod (43) by a round shaft, and the locking rod (43) is located in front of the vertical plate (42).

5. The early warning triggering structure for monitoring abnormal states of industrial IoT devices according to claim 4, characterized in that: Both vertical plates (42) are rotatably connected to a fixing component (45) on their front sides. The fixing component (45) includes a rotating sleeve (451). The rear side of the rotating sleeve (451) is rotatably connected to the front side of the vertical plate (42). The outer side of the locking rod (43) is movably sleeved in the transmission groove opened on the rear side of the rotating sleeve (451).

6. The early warning triggering structure for monitoring abnormal states of industrial IoT devices according to claim 5, characterized in that: The inner side of the rotating sleeve (451) is movably sleeved with a transmission plate (452), and the front side of the transmission plate (452) is fixedly connected with a baffle (454) by a round rod. The upper left and right sides of the mounting plate (41) are provided with two L-shaped grooves (46) distributed on the left and right sides near the front side.

7. The early warning triggering structure for monitoring abnormal states of industrial IoT devices according to claim 6, characterized in that: A spring (453) is movably sleeved on the inner side of the rotating sleeve (451), and the spring (453) is located on the front side of the transmission plate (452).