Monitoring rack for field mobile monitoring room

By introducing shock absorption design with buffer springs and dampers in the monitoring rack, as well as heat dissipation system with air supply plate and fan, the instability problem of monitoring equipment caused by vibration and overheating in the field environment is solved, realizing stable operation of the equipment and extending its service life.

CN224150077UActive Publication Date: 2026-04-21SHENZHEN YINGKE ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN YINGKE ELECTRONICS CO LTD
Filing Date
2025-05-28
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing monitoring racks lack effective buffering design in the field environment, and cannot effectively absorb and reduce external vibrations and impacts, resulting in equipment instability, excessive vibration and failure, and affecting equipment lifespan.

Method used

The system employs a combination of buffer springs and dampers. By sliding the slide rod within the fixed plate and damper, combined with the extension and contraction of the buffer springs, external forces are buffered. Simultaneously, an air supply plate and fan system are designed to dissipate heat from the equipment through air ducts and filters.

Benefits of technology

It effectively absorbs external vibrations, prevents excessive equipment shaking, extends equipment life, and dissipates heat through air circulation, ensuring equipment stability and operating efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of monitoring racks, and discloses a monitoring rack for a field mobile monitoring room, which comprises a wall-mounted rack, the outer wall of the wall-mounted rack is slidably connected with a connecting plate, the outer wall of the connecting plate is fixedly connected with a mounting rack, the inner wall of the wall-mounted rack is fixedly connected with a fixing plate, and the fixing plate is fixedly connected with the mounting rack. A sliding rod is slidably connected into the fixing plate, and a buffering assembly is arranged on the outer wall of the sliding rod. The buffering assembly comprises a first buffering spring and a second buffering spring, the first buffering spring is arranged on the upper side of the outer wall of the sliding rod in a sleeving mode, and the second buffering spring is arranged on the lower side of the outer wall of the sliding rod in a sleeving mode. According to the mobile monitoring room, external force is effectively buffered through the telescopic effect of the buffer springs, external vibration can be effectively absorbed and weakened through cooperation of the connecting plate, the buffer springs and the dampers, excessive vibration of monitoring equipment caused by shaking of the mobile monitoring room is prevented, and therefore the stability and the working effect of the equipment are guaranteed; and the service life of equipment is prolonged.
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Description

Technical Field

[0001] This utility model relates to the field of monitoring rack technology, and in particular to a monitoring rack for a mobile monitoring room in the field. Background Technology

[0002] With continuous social development and technological advancements, the application scenarios of surveillance technology are becoming increasingly widespread, especially in outdoor environments. As a special type of monitoring equipment, mobile outdoor monitoring stations require long-term stable operation in complex outdoor environments to fulfill their monitoring function. To ensure the stable operation of monitoring equipment in harsh environments, designing a monitoring rack that can effectively support and protect the equipment is particularly important. To cope with the unavoidable vibrations and external interference in outdoor environments, designing a monitoring rack that combines buffering, shock resistance, and heat dissipation has become an urgent problem to be solved.

[0003] Currently, most field monitoring equipment uses traditional fixed support frame structures. These frames are typically made of metal materials such as steel or aluminum alloys, capable of supporting the weight of the equipment and providing a certain degree of stability. However, these traditional support frames often lack effective cushioning, failing to absorb vibrations or reduce the impact of external forces when the monitoring equipment is subjected to external vibrations or sudden impacts. Furthermore, many existing monitoring frame structures do not consider effective heat dissipation design, potentially leading to overheating and performance degradation during long-term operation. Although some products achieve heat dissipation through external fans or heat sinks, these designs often cannot effectively guarantee stable operation of the equipment over extended periods.

[0004] Existing support frames often lack effective cushioning designs to cope with field vibrations and external interference. This results in the monitoring equipment being unable to effectively absorb and mitigate external forces when encountering vibrations or impacts, easily leading to excessive vibration or malfunction. This lack of cushioning not only affects the stability and performance of the equipment but also accelerates aging and failure, shortening its lifespan. Therefore, achieving effective cushioning and vibration absorption in monitoring frames has become a key issue in improving the stability and lifespan of field monitoring equipment. Utility Model Content

[0005] To overcome the above shortcomings, this utility model provides a monitoring rack for a mobile monitoring room in the field, which aims to improve the existing support frame, which often lacks an effective buffer design in dealing with field vibration and external force interference. This results in the monitoring equipment being unable to effectively absorb and reduce these external forces when it encounters external vibration or impact, which can easily lead to excessive vibration or failure of the equipment.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a monitoring rack for a mobile monitoring room in the field, including a wall-mounted frame, a connecting plate slidably connected to the outer wall of the wall-mounted frame, an installation frame fixedly connected to the outer wall of the connecting plate, a fixing plate fixedly connected to the inner wall of the wall-mounted frame, a sliding rod slidably connected inside the fixing plate, and a buffer assembly provided on the outer wall of the sliding rod;

[0007] The buffer assembly includes a first buffer spring and a second buffer spring. The first buffer spring is sleeved on the upper side of the outer wall of the slide rod, and the second buffer spring is sleeved on the lower side of the outer wall of the slide rod. A damper is slidably connected inside the slide rod, and a limit plate is fixedly connected to the top of the slide rod.

[0008] Furthermore, an air supply plate is fixedly connected to one side of the outer wall of the mounting frame, and a ventilation plate is fixedly connected to the outer wall of the air supply plate. Air ducts are opened inside both the ventilation plate and the air supply plate. A fan is fixedly connected to the top of the air supply plate, and a filter assembly is provided on the upper surface of the air supply plate.

[0009] Furthermore, the filter assembly includes a mounting frame, the lower surface of which is attached to the lower surface of the air supply plate, a filter screen is fixedly connected to the inner wall of the mounting frame, and a fixing bolt is fixedly connected to the outer wall of the mounting frame.

[0010] Furthermore, the outer wall of the damper is fixedly connected to the inner wall of the wall mount, and the damper is used to reduce the vibration of the slide bar.

[0011] Furthermore, one end of the buffer spring is fixedly connected to the upper surface of the fixed plate, and the other end of the buffer spring is fixedly connected to the inner wall of the connecting plate.

[0012] Furthermore, one end of the second buffer spring is fixedly connected to the lower surface of the connecting plate, and the other end of the second buffer spring is fixedly connected to the upper surface of the fixed plate.

[0013] Furthermore, the outer wall of the slide rod is fixedly connected to the inside of the connecting plate.

[0014] Furthermore, the lower outer wall of the fixing bolt is threaded to the inside of the air supply plate, and the fixing bolt is used to fix and release the fixing frame.

[0015] This utility model has the following beneficial effects:

[0016] 1. In this utility model, the shaking of the mounting frame causes the connecting plate to slide, which in turn drives the slide rod to slide inside the fixed plate and the damper. In conjunction with the extension and contraction of the buffer spring, the external force is effectively buffered. Through the cooperation of the connecting plate, the buffer spring, and the damper, the external vibration can be effectively absorbed and weakened, preventing excessive vibration of the monitoring equipment caused by the shaking of the mobile monitoring room, thereby ensuring the stability and working effect of the equipment and extending the service life of the equipment.

[0017] 2. In this utility model, the start-up fan drives the external air to flow, and after being filtered by the filter screen, the air is sent into the interior of the air supply plate, and then blown to the front of the monitoring equipment through the set air duct. The synergistic effect of the air supply plate and the ventilation plate effectively realizes the circulation of air, ensuring the heat dissipation requirements of the equipment. At the same time, the design of the drive fixing bolts and fixing brackets makes it easy to disassemble, clean or replace the filter screen, further improving the reliability of heat dissipation and the convenience of maintenance during long-term use, effectively preventing the equipment from overheating, and improving the stability and operating efficiency of the equipment. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural diagram of a monitoring rack for a mobile monitoring room in the field, as proposed in this utility model.

[0019] Figure 2 This is a schematic diagram of one side of the wall-mounted frame structure of a mobile monitoring room for outdoor use proposed in this utility model;

[0020] Figure 3 This is a schematic diagram of the internal structure of the wall-mounted frame for a mobile monitoring room in the field, as proposed in this utility model.

[0021] Figure 4 This is a schematic diagram of one side of the air supply plate of a monitoring rack for a mobile monitoring room in the field, as proposed in this utility model.

[0022] Legend:

[0023] 1. Wall mount; 2. Connecting plate; 3. Mounting frame; 4. Fixing plate; 5. Slide rod; 6. Damper; 7. Limiting plate; 8. Buffer spring one; 9. Buffer spring two; 10. Air supply plate; 11. Ventilation plate; 12. Air duct; 13. Fan; 14. Filter screen; 15. Fixing bracket; 16. Fixing bolts. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Reference Figure 1 - Figure 3 An embodiment of this utility model is provided: a monitoring rack for a mobile monitoring room in the field, including a wall-mounted frame 1, a connecting plate 2 slidably connected to the outer wall of the wall-mounted frame 1, an installation frame 3 fixedly connected to the outer wall of the connecting plate 2, a fixing plate 4 fixedly connected to the inner wall of the wall-mounted frame 1, a sliding rod 5 slidably connected inside the fixing plate 4, and a buffer component provided on the outer wall of the sliding rod 5.

[0026] The buffer assembly includes a first buffer spring 8 and a second buffer spring 9. The first buffer spring 8 is sleeved on the upper side of the outer wall of the slide rod 5, and the second buffer spring 9 is sleeved on the lower side of the outer wall of the slide rod 5. A damper 6 is slidably connected inside the slide rod 5, and a limit plate 7 is fixedly connected to the top of the slide rod 5.

[0027] Specifically, the shaking of the mounting frame 3 causes the connecting plate 2 to slide along the outer wall of the wall mount 1, which in turn drives the slide rod 5 to make corresponding sliding adjustments inside the fixed plate 4 and the damper 6, enabling the equipment to adapt to external vibration changes. At the same time, during the movement of the connecting plate 2, the buffer spring 8 and the buffer spring 9 generate a telescopic effect between the connecting plate 2 and the fixed plate 4. The elastic deformation of the springs absorbs part of the energy and effectively buffers the external force. In addition, the design of the damper 6 further optimizes the shock absorption effect. It can consume part of the vibration energy through hydraulic or pneumatic means, thereby reducing the impact of vibration on the monitoring equipment. This ensures that the monitoring frame remains stable when the monitoring room shakes, reduces the shaking impact on the equipment, effectively extends the service life of the monitoring equipment, ensures the stability of its monitoring screen, and improves the reliability of the monitoring equipment.

[0028] Reference Figure 1 and Figure 4An air supply plate 10 is fixedly connected to one side of the outer wall of the mounting frame 3. A ventilation plate 11 is fixedly connected to the outer wall of the air supply plate 10. Air ducts 12 are opened inside both the ventilation plate 11 and the air supply plate 10. A fan 13 is fixedly connected to the top of the air supply plate 10. A filter assembly, including a fixing frame 15, is provided on the upper surface of the air supply plate 10. The lower surface of the fixing frame 15 is attached to the lower surface of the air supply plate 10. A filter screen 14 is fixedly connected to the inner wall of the fixing frame 15. Fixing bolts 16 are fixedly connected to the outer wall of the fixing frame 15. The outer wall of the damper 6 is fixedly connected to... On the inner wall of the wall mount 1, the damper 6 is used to reduce the vibration of the slide rod 5; one end of the buffer spring 8 is fixedly connected to the upper surface of the fixing plate 4, and the other end of the buffer spring 8 is fixedly connected to the inner wall of the connecting plate 2; one end of the buffer spring 9 is fixedly connected to the lower surface of the connecting plate 2, and the other end of the buffer spring 9 is fixedly connected to the upper surface of the fixing plate 4; the outer wall of the slide rod 5 is fixedly connected to the inside of the connecting plate 2; and the lower side of the outer wall of the fixing bolt 16 is threadedly connected to the inside of the air supply plate 10. The fixing bolt 16 is used to fix and release the fixing frame 15.

[0029] Specifically, the fan 13 is activated, allowing external air to enter the interior of the air supply plate 10 after being filtered by the filter screen 14. This ensures that the air entering the rack is clean and dust-free, reducing the impact of dust on the monitoring equipment. Simultaneously, the filter screen 14 is fixed using a bracket 15 and drive bolts 16, allowing for easy disassembly, replacement, or periodic cleaning. This further improves the ease of maintenance and long-term stability of the heat dissipation equipment. During airflow, after entering the air supply plate 10, the air is guided through its internal pre-designed air ducts 12, allowing the cool air to be directly blown towards the monitoring equipment for rapid cooling. Furthermore, the ventilation plate 11 further optimizes the airflow path, evenly distributing air throughout the entire air supply plate 10. This ensures more uniform air circulation within the rack, preventing localized overheating and guaranteeing temperature stability during long-term operation. This improves the equipment's lifespan and operating efficiency, ensuring the monitoring equipment can function normally in various outdoor environments.

[0030] Working principle: When a mobile monitoring room rack is needed, the mounting rack 3 can first be fixed to the outer wall of the mobile monitoring room through the wall mount 1. When the mobile monitoring room shakes, it will cause the mounting rack 3 to move and shake. At this time, the shaking of the mounting rack 3 will cause the connecting plate 2 to slide on the outer wall of the wall mount 1, thereby causing the slide rod 5 to slide inside the fixed plate 4 and the damper 6. At the same time, the movement of the connecting plate 2 will also cause the buffer spring 8 and the buffer spring 9 to extend and retract between the connecting plate 2 and the fixed plate 4, thereby buffering the external force. Together with the damper 6, it can reduce the shock of the external force and avoid excessive shaking of the monitoring equipment, which may have an impact.

[0031] In addition, the fan 13 drives the outside air to enter the interior of the air supply plate 10 after being filtered by the filter screen 14. The filter screen 14 can also be disassembled, cleaned or replaced by driving the fixing bolt 16 in conjunction with the fixing bracket 15. When the air enters the preset air duct 12 inside the air supply plate 10, it can be blown towards the monitoring equipment in front. Then, in conjunction with the ventilation plate 11, the air is sent to the interior of the air supply plate 10 next to it to achieve heat dissipation.

[0032] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A monitoring rack for a field mobile monitoring house, comprising a wall-mounted rack, characterized in that: The outer wall of the wall mount is slidably connected to a connecting plate, the outer wall of the connecting plate is fixedly connected to a mounting frame, the inner wall of the wall mount is fixedly connected to a fixing plate, the inside of the fixing plate is slidably connected to a slide rod, and the outer wall of the slide rod is provided with a buffer component. The buffer assembly includes a first buffer spring and a second buffer spring. The first buffer spring is sleeved on the upper side of the outer wall of the slide rod, and the second buffer spring is sleeved on the lower side of the outer wall of the slide rod. A damper is slidably connected inside the slide rod, and a limit plate is fixedly connected to the top of the slide rod.

2. The monitoring rack for a field mobile monitoring house according to claim 1, characterized in that: An air supply plate is fixedly connected to one side of the outer wall of the mounting frame. A ventilation plate is fixedly connected to the outer wall of the air supply plate. Air ducts are opened inside both the ventilation plate and the air supply plate. A fan is fixedly connected to the top of the air supply plate. A filter assembly is provided on the upper surface of the air supply plate.

3. The monitoring rack for a field mobile monitoring house according to claim 2, characterized in that: The filter assembly includes a mounting frame, the lower surface of which is attached to the lower surface of the air supply plate, a filter screen is fixedly connected to the inner wall of the mounting frame, and a fixing bolt is fixedly connected to the outer wall of the mounting frame.

4. The monitoring rack for a field mobile monitoring house according to claim 1, wherein: The outer wall of the damper is fixedly connected to the inner wall of the wall mount, and the damper is used to reduce the vibration of the slide bar.

5. The monitoring rack for a field mobile monitoring house according to claim 1, wherein: One end of the buffer spring is fixedly connected to the upper surface of the fixed plate, and the other end of the buffer spring is fixedly connected to the inner wall of the connecting plate.

6. The monitoring rack for a field mobile monitoring house according to claim 1, wherein: One end of the second buffer spring is fixedly connected to the lower surface of the connecting plate, and the other end of the second buffer spring is fixedly connected to the upper surface of the fixed plate.

7. The monitoring rack for a field mobile monitoring house according to claim 1, wherein: The outer wall of the slide bar is fixedly connected to the inside of the connecting plate.

8. The monitoring rack for a field mobile monitoring house according to claim 3, wherein: The lower outer wall of the fixing bolt is threaded to the inside of the air supply plate, and the fixing bolt is used to fix and release the fixing frame.