Energy-saving and environment-friendly data acquisition equipment

By introducing an energy-saving auxiliary heat dissipation mechanism into the data acquisition equipment and using heat transfer plates and heat pipes to quickly transfer heat to the heat dissipation cover, the problem of rapid temperature rise inside the data acquisition box is solved, and more efficient heat dissipation and energy consumption reduction are achieved.

CN223364448UActive Publication Date: 2025-09-19JIANGXI YONGYUAN ENERGY SAVING ENVIRONMENTAL PROTECTION TECH
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Patent Information

Application Number
CN202422784832.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-09-19
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

The existing data acquisition box has many data acquisition modules and electrical equipment installed inside, which causes the internal temperature to rise quickly. The fan needs to be started for a long time to dissipate heat, which consumes a lot of energy and has poor heat dissipation effect.

Method used

An energy-saving auxiliary heat dissipation mechanism is adopted, including a heat transfer plate, a heat pipe and a heat dissipation cover. The heat is transferred to the heat dissipation cover through the heat transfer plate for heat dissipation, reducing dependence on the heat dissipation fan.

Benefits of technology

The heat dissipation effect is improved, the use frequency of the heat dissipation equipment is reduced, and the effect of energy saving and environmental protection is achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses energy-saving and environment-friendly data acquisition equipment, which comprises a data acquisition cabinet, the cabinet door is arranged on the front side of the data acquisition cabinet; the data acquisition module is fixedly arranged on the rear side of the inner cavity of the data acquisition cabinet; the PLC is fixedly arranged at the top end of the front side of the cabinet door; the temperature measurement detector is fixedly arranged on one side of the inner cavity of the data acquisition cabinet, and the PLC is electrically connected with the temperature measurement detector; and the heat dissipation fan is fixedly arranged at the top end of the rear side of the data acquisition cabinet, and the heat dissipation fan is electrically connected with the PLC. According to the energy-saving and environment-friendly data acquisition equipment, by arranging the energy-saving auxiliary heat dissipation mechanism, heat generated by the data acquisition module can be transferred into the heat dissipation cover through the heat transfer plate and the heat conduction pipe for heat dissipation, the heat dissipation effect is good, internal heat can be quickly transferred to the surface of the cabinet body to be dissipated, the requirement for additional heat dissipation equipment is reduced, and the energy-saving and environment-friendly data acquisition equipment is convenient to use. Therefore, the energy-saving and environment-friendly effects are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of energy-saving and environmentally friendly equipment, in particular to an energy-saving and environmentally friendly data acquisition device. Background Art

[0002] The data collection box set can monitor the operating parameters of various devices in real time, and will immediately issue an alarm if an abnormal situation occurs. It can also realize remote operation. It has functions such as equipment parameter collection, equipment status monitoring, network transmission monitoring, data storage and transmission. The existing data collection box has many data collection modules and electrical equipment installed in the data collection box, and the temperature inside the data collection box rises quickly, so it is necessary to start the fan for a long time to dissipate heat, which consumes a lot of energy and has poor heat dissipation effect. Summary of the Invention

[0003] The purpose of the utility model is to provide an energy-saving and environmentally friendly data acquisition device to solve the problem in the prior art that the data acquisition box has a large number of data acquisition modules and electrical equipment installed in the data acquisition box, the temperature inside the data acquisition box rises quickly, and the fan needs to be started for a long time for heat dissipation, resulting in high energy consumption and poor heat dissipation effect.

[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solution: an energy-saving and environmentally friendly data acquisition device, comprising:

[0005] Data collection cabinet;

[0006] A cabinet door is arranged on the front side of the data acquisition cabinet;

[0007] A data acquisition module is fixedly arranged on the rear side of the inner cavity of the data acquisition cabinet;

[0008] A PLC controller is fixedly arranged on the front top of the cabinet door;

[0009] A temperature measuring detector is fixedly arranged on one side of the inner cavity of the data acquisition cabinet, and the PLC controller is electrically connected to the temperature measuring detector;

[0010] A heat dissipation fan is fixedly arranged at the top rear side of the data acquisition cabinet, and the heat dissipation fan is electrically connected to the PLC controller;

[0011] The energy-saving auxiliary heat dissipation mechanism is arranged in the inner cavity of the data acquisition cabinet.

[0012] Preferably, a dust removal net is fixedly provided at the front bottom end of the cabinet door, and the dust removal net is communicated with the inner cavity of the data acquisition cabinet.

[0013] Preferably, the energy-saving auxiliary heat dissipation mechanism includes: a support frame, which is fixedly arranged on the left and right sides of the inner cavity of the data acquisition cabinet from top to bottom in sequence, and the top of the support frame is provided with a strip hole along the left and right directions; a positioning block, a plurality of positioning block heat transfer plates are provided on the top of the support frame, which are fixedly arranged on one side of the positioning block; a bolt, which is screwed to the top of the positioning block; and a nut, the bottom end of the bolt extends out of the bottom end of the strip hole and is screwed with a nut.

[0014] Preferably, the energy-saving auxiliary heat dissipation mechanism also includes: a heat dissipation cover, a through hole is provided on the left and right sides of the data acquisition cabinet, and a heat dissipation cover is fixedly provided on the left and right sides of the data acquisition cabinet, and the heat dissipation cover is located on the outside of the through hole; a heat conduction bend pipe, a plurality of heat conduction bend pipes are fixedly provided in the inner cavity of the heat dissipation cover from top to bottom; a joint, fixedly provided at one end of the heat conduction bend pipe; a heat conduction pipe, adapted to be plugged into the inner side of the joint, a groove is provided on the front side of the heat transfer plate, and the heat conduction pipe is plugged into the inner cavity of the groove; a stud, fixedly connected to one end of one of the heat conduction pipes, and screwed to one end of the other heat conduction pipe.

[0015] Preferably, the heat transfer plate, the heat conduction elbow and the heat conduction pipe are made of a material with good thermal conductivity, and the heat dissipation cover is made of a material with good heat dissipation effect.

[0016] Preferably, a plurality of heat sinks are fixedly provided on the outer side of the heat dissipation cover from top to bottom.

[0017] Compared with the existing technology, the beneficial effect of the present invention is that the energy-saving and environmentally friendly data acquisition equipment can transfer the heat generated by the data acquisition module to the heat dissipation cover through the heat transfer plate and the heat pipe for heat dissipation by providing an energy-saving auxiliary heat dissipation mechanism. The heat dissipation effect is better, and the internal heat can be quickly transferred to the surface of the cabinet for dissipation, reducing the need for additional heat dissipation equipment, thereby achieving energy-saving and environmental protection effects. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a structural diagram of the utility model;

[0019] Figure 2 This is a front sectional view of the data acquisition cabinet of the utility model;

[0020] Figure 3 For this utility model Figure 2 A magnified view of point A in the figure;

[0021] Figure 4 This is a structural diagram of the energy-saving auxiliary heat dissipation mechanism of the utility model.

[0022] In the figure: 1. Data acquisition cabinet; 2. Cabinet door; 3. Data acquisition module; 4. PLC controller; 5. Temperature detector; 6. Cooling fan; 7. Energy-saving auxiliary heat dissipation mechanism; 71. Support frame; 72. Strip hole; 73. Positioning block; 74. Heat transfer plate; 75. Bolt; 76. Nut; 77. Heat dissipation cover; 78. Through hole; 79. Thermal elbow; 710. Joint; 711. Heat pipe; 712. Groove; 713. Stud; 714. Heat sink; 8. Dust removal net. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] See also Figure 1-4 , the utility model provides a technical solution: an energy-saving and environmentally friendly data acquisition device, comprising: a data acquisition cabinet 1, a cabinet door 2, a data acquisition module 3, a PLC controller 4, a temperature detector 5, a heat dissipation fan 6 and an energy-saving auxiliary heat dissipation mechanism 7;

[0025] The cabinet door 2 is set on the front side of the data acquisition cabinet 1, the data acquisition module 3 is fixedly set on the rear side of the inner cavity of the data acquisition cabinet 1, the PLC controller 4 is fixedly set on the front top of the cabinet door 2, the temperature detector 5 is fixedly set on one side of the inner cavity of the data acquisition cabinet 1, and the PLC controller 4 is electrically connected to the temperature detector 5, the heat dissipation fan 6 is fixedly set on the rear top of the data acquisition cabinet 1, the heat dissipation fan 6 is electrically connected to the PLC controller 4, and the energy-saving auxiliary heat dissipation mechanism 7 is set in the inner cavity of the data acquisition cabinet 1.

[0026] As a preferred solution, further, a dust removal net 8 is fixedly provided at the front bottom end of the cabinet door 2, and the dust removal net 8 is communicated with the inner cavity of the data acquisition cabinet 1. The dust removal net 8 is provided to filter the air entering the data acquisition cabinet 1.

[0027] As a preferred solution, further, the energy-saving auxiliary heat dissipation mechanism 7 includes: a support frame 71, a strip hole 72, a positioning block 73, a heat transfer plate 74, a bolt 75, a nut 76, a heat dissipation cover 77, a through hole 78, a heat conduction elbow 79, a joint 710, a heat conduction pipe 711, a groove 712, a stud 713 and a heat sink 714;

[0028] In order to support the heat transfer plate 74, support frames 71 are fixedly arranged on the left and right sides of the inner cavity of the data acquisition cabinet 1 from top to bottom. A strip hole 72 is opened at the top of the support frame 71 along the left and right directions. A plurality of positioning blocks 73 are provided at the top of the support frame 71. The heat transfer plate 74 is fixedly arranged on one side of the positioning block 73. An appropriate number of heat transfer plates 74 can be installed according to the number of data acquisition modules 3. The heat transfer plate 74 is installed on the side in contact with the data acquisition module 3. The bolt 75 is screwed to the top of the positioning block 73. The bottom end of the bolt 75 extends out of the bottom end of the strip hole 72 and is screwed with a nut 76. The positioning block 73 can be fixed to the support frame 71 through the cooperation of the bolt 75 and the nut 76.

[0029] In order to dissipate the heat from the heat transfer plate 74, through holes 78 are provided on the left and right sides of the data acquisition cabinet 1. Heat dissipation covers 77 are fixedly provided on the left and right sides of the data acquisition cabinet 1, and the heat dissipation covers 77 are located on the outside of the through holes 78. The inner cavity of the heat dissipation cover 77 is fixedly provided with several heat conduction elbows 79 from top to bottom. The joint 710 is fixedly provided at one end of the heat conduction elbow 79, and the heat conduction pipe 711 is adapted to be plugged into the inner side of the joint 710. A groove 712 is provided on the front side of the heat transfer plate 74, and the heat conduction pipe 711 is plugged into the inner cavity of the groove 712. The stud 713 is fixedly connected to one end of one of the heat conduction pipes 711 and is screwed to one end of the other heat conduction pipe 711. Rotating the heat conduction pipes 711 on both sides can move the heat conduction pipes 711 inward, thereby separating the heat conduction pipes 711 from the joints 710 on both sides, so that the heat conduction pipes 711 can be removed for easy operation.

[0030] As a preferred solution, further, the heat transfer plate 74, the heat conduction elbow 79 and the heat conduction pipe 711 are made of materials with good thermal conductivity, and the heat dissipation cover 77 is made of materials with good heat dissipation effect. The use of materials with good heat dissipation performance can quickly transfer the internal heat to the cabinet surface and dissipate it.

[0031] As a preferred solution, further, a plurality of heat sinks 714 are fixedly provided on the outer side of the heat dissipation cover 77 from top to bottom to accelerate the heat dissipation effect of the heat dissipation cover 77.

[0032] The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process. The specific operations are as follows.

[0033] When in use, the PLC controller 4 is turned on to start the temperature detector 5 and the heat dissipation fan 6. When the temperature detector 5 detects that the temperature inside the data acquisition cabinet 1 is high, it transmits an electrical signal to the PLC controller 4. The PLC controller 4 then controls the heat dissipation fan 6 to start, thereby accelerating the air flow through the air inlet of the dust removal net 8 to dissipate heat inside the data acquisition cabinet 1.

[0034] When the cooling fan 6 is not working, the heat generated by the data acquisition module 3 can be transferred to the heat transfer plate 74 in contact with it, and the heat is distributed to the heat dissipation cover 77 through the heat pipe 711 and the heat bending pipe 79. The heat dissipation of the data acquisition module 3 is accelerated by the heat dissipation cover 77 and the heat sink 714, thereby slowing down the heat rise speed in the data acquisition cabinet 1 and reducing the frequency of use of the cooling fan 6, thereby achieving energy saving and environmental protection effects. When the cooling fan 6 is started, the heat transfer plate 74 and the heat pipe 711 are supported to accelerate the heat dissipation of the heat transfer plate 74 and the heat pipe 711, thereby further improving the heat dissipation effect of the data acquisition module 3, which is conducive to wide promotion.

[0035] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An energy-saving and environmentally friendly data acquisition device, characterized in that: include: Data acquisition cabinet (1); A cabinet door (2) is arranged on the front side of the data acquisition cabinet (1); A data acquisition module (3) is fixedly arranged on the rear side of the inner cavity of the data acquisition cabinet (1); A PLC controller (4) fixedly arranged on the front top of the cabinet door (2); A temperature measuring detector (5) is fixedly arranged on one side of the inner cavity of the data acquisition cabinet (1), and the PLC controller (4) is electrically connected to the temperature measuring detector (5); A heat dissipation fan (6) is fixedly arranged on the top rear side of the data acquisition cabinet (1), and the heat dissipation fan (6) is electrically connected to the PLC controller (4); An energy-saving auxiliary heat dissipation mechanism (7) is arranged in the inner cavity of the data acquisition cabinet (1).

2. The energy-saving and environmentally friendly data acquisition device according to claim 1, characterized in that: A dust removal net (8) is fixedly provided at the front bottom end of the cabinet door (2), and the dust removal net (8) is in communication with the inner cavity of the data acquisition cabinet (1).

3. The energy-saving and environmentally friendly data acquisition device according to claim 1, characterized in that: The energy-saving auxiliary heat dissipation mechanism (7) comprises: Support frames (71), the support frames (71) are fixedly provided on the left and right sides of the inner cavity of the data acquisition cabinet (1) from top to bottom, and the top of the support frame (71) is provided with a strip-shaped hole (72) in the left and right directions; Positioning blocks (73), a plurality of positioning blocks (73) are provided on the top of the support frame (71); A heat transfer plate (74) is fixedly arranged on one side of the positioning block (73); A bolt (75) is screwed to the top end of the positioning block (73); The bottom end of the bolt (75) extends out of the bottom end of the strip-shaped hole (72) and is screwed with the nut (76).

4. The energy-saving and environmentally friendly data acquisition device according to claim 3, characterized in that: The energy-saving auxiliary heat dissipation mechanism (7) further includes: A heat dissipation cover (77), wherein both left and right sides of the data acquisition cabinet (1) are provided with through holes (78), and both left and right sides of the data acquisition cabinet (1) are fixedly provided with heat dissipation covers (77), and the heat dissipation covers (77) are located outside the through holes (78); Heat-conducting curved pipes (79), wherein the inner cavity of the heat dissipation cover (77) is fixedly provided with a plurality of heat-conducting curved pipes (79) from top to bottom; A joint (710) is fixedly arranged at one end of the heat-conducting curved pipe (79); The heat conducting pipe (711) is adapted to be plugged into the inner side of the joint (710); a groove (712) is provided on the front side of the heat transfer plate (74), and the heat conducting pipe (711) is plugged into the inner cavity of the groove (712); The stud (713) is fixedly connected to one end of one of the heat conducting pipes (711) and is screwed to one end of the other heat conducting pipe (711).

5. The energy-saving and environmentally friendly data acquisition device according to claim 4, characterized in that: The heat transfer plate (74), the heat conduction elbow (79), and the heat conduction pipe (711) are made of a material with good thermal conductivity, and the heat dissipation cover (77) is made of a material with good heat dissipation effect.

6. The energy-saving and environmentally friendly data acquisition device according to claim 5, characterized in that: A plurality of heat sinks (714) are fixedly provided on the outer side of the heat dissipation cover (77) from top to bottom.