Wireless communication equipment cabinet for industrial Internet of Things
By designing adjustment and cleaning mechanisms in the wireless communication equipment cabinet for the industrial Internet of Things, the problem that the heat dissipation hole cannot adjust the cold air entry according to the heat magnitude is solved, and a more efficient heat dissipation effect is achieved.
Patent Information
- Application Number
- CN202510071292.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2025-05-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the prior art, the heat dissipation hole cannot adjust the inlet amount of cold air outside according to the heat magnitude, resulting in the uncontrollable heat dissipation efficiency.
A wireless communication equipment cabinet for industrial Internet of Things is designed, including a regulating mechanism and a cleaning mechanism. The adjustment mechanism adjusts the opening degree of the second flow through hole by driving the opening and closing plate, and the cleaning mechanism cleans the fourth flow through hole by pushing the cylinder and cleaning bumps to ensure the effective opening and cleaning of the heat dissipation hole.
By adjusting the opening degree of the second flow through hole, the heat dissipation efficiency can be controlled according to different heat; the cleaning mechanism quickly cleans the fourth flow through hole to avoid dust blockage and improve heat dissipation efficiency.
Smart Images

Figure CN119947041A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of wireless communication cabinets for Internet of Things, and in particular to a wireless communication equipment cabinet for industrial Internet of Things. Background Art
[0002] The Internet of Things originated in the field of media and is the third revolution in the information technology industry. The Internet of Things refers to connecting any object to the network through information sensing devices according to agreed protocols. Objects exchange and communicate information through information dissemination media to achieve intelligent identification, positioning, tracking, supervision and other functions.
[0003] The existing technology mostly adopts a dual-communication adaptive industrial Internet of Things terminal disclosed in announcement number CN115397045B. This technology enables the dual-signal receiving terminal to switch between wireless transmission and wired transmission functions through the cooperation of dual communication subsystems, dual signal receiving terminals and inductive temperature insulation strips. While effectively meeting the signal transmission efficiency and diffusion of the industrial Internet of Things terminal body and reducing the difficulty of using and constructing the industrial Internet of Things terminal body, it can also effectively meet the security guarantee of signal transmission, so that it can safely protect the effectively requested signal data, thereby effectively improving the adaptability of the industrial Internet of Things terminal body, promoting its application to diversified industrial needs, and facilitating the development and popularization of the industrial Internet of Things terminal body. However, the above technology still has problems in use due to structural limitations: The above technology opens heat dissipation holes to discharge the heat generated by the communication equipment when it is working. However, since the aperture of the heat dissipation holes in the above technology is fixed and the above technology lacks components for adjusting the degree of opening of the heat dissipation holes, the heat dissipation holes cannot adjust the amount of external cold air entering according to the amount of heat, and thus cannot control the heat dissipation efficiency. Summary of the invention
[0004] The purpose of the present invention is to solve the problem in the prior art that the heat dissipation holes cannot adjust the amount of external cold air entering according to the amount of heat, and to propose a wireless communication equipment cabinet for industrial Internet of Things.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions: A wireless communication equipment cabinet for industrial Internet of Things, comprising a cabinet body, wherein the cabinet body is provided with: A first chamber, a second chamber, a third chamber, a placement frame and a vent, wherein one of the first chambers is opened at the middle end of the cabinet, two of the second chambers are symmetrically opened at the left and right ends of the cabinet, two of the third chambers are symmetrically opened at the upper and lower ends of the cabinet, a plurality of the placement frames are installed in the first chamber in a straight line and equidistantly, and a group of the vents is opened on one placement frame; A first flow hole, a second flow hole, a third flow hole and a fourth flow hole, one of the third chambers is connected to the first chamber through a group of first flow holes, and one of the third chambers is connected to the outer end of the cabinet through a group of second flow holes, one of the second chambers is connected to the first chamber through a group of third flow holes, and one of the second chambers is connected to the outer end of the cabinet through a group of fourth flow holes; An adjusting mechanism, wherein the adjusting mechanism is disposed in the third chamber and is used to adjust the opening degree of the second flow hole; The cleaning mechanism is disposed in the second chamber and is used for cleaning the fourth flow hole.
[0006] Preferably, a first inlet fan is installed in the third chamber at the lower end, a first outlet fan is installed in the third chamber at the upper end, a second inlet fan is installed in the second chamber at the left end, and a second outlet fan is installed in the second chamber at the right end, and the cabinet body is installed with a rotating cabinet door for opening and closing the first chamber.
[0007] Preferably, the adjustment mechanism comprises: A driving motor, a rotating shaft and a starting rod, wherein the two driving motors are symmetrically installed on the inner wall of a third chamber, the two rotating shafts are respectively fixedly connected to the output ends of the two driving motors, and one end of the two starting rods is respectively fixedly sleeved on the two rotating shafts.
[0008] Preferably, the adjustment mechanism further comprises: A connecting rod, a first guide slot and an opening and closing circular plate, one end of the two connecting rods are respectively rotatably connected to the other end of the two starting rods, the two first guide slots are symmetrically opened on the inner wall of a third chamber, the two opening and closing circular plates are slidably sleeved in the two first guide slots, the other end of the two connecting rods are respectively rotatably connected to the two opening and closing circular plates, and the two opening and closing circular plates are both semi-disc plate structures.
[0009] Preferably, the cleaning mechanism comprises: A second guide slot, a first pushing cylinder and a movable slide rail, wherein two of the second guide slots are symmetrically opened on the inner wall of a second chamber, two of the first pushing cylinders are respectively fixedly installed in the two second guide slots, and two of the movable slide rails are respectively slidably mounted in the two second guide slots, and the output ends of the two first pushing cylinders are respectively fixedly connected to the two movable slide rails.
[0010] Preferably, the cleaning mechanism further comprises: A second pushing cylinder, a movable circular plate and a cleaning protrusion, the two second pushing cylinders are respectively fixedly installed in the two movable slide rails, the two movable circular plates are respectively slidably sleeved in the two movable slide rails, the output ends of the two second pushing cylinders are respectively fixedly connected to the two movable circular plates, and a group of cleaning protrusions are integrally formed on a movable circular plate.
[0011] Preferably, the two movable circular plates are both semi-disc plate structures, and the two groups of cleaning protrusions are movably sleeved in a group of fourth flow holes.
[0012] Compared with the prior art, the present invention has the following advantages: 1. When the present invention drives the two opening and closing circular plates to move relatively close to each other, the two opening and closing circular plates gradually approach and cover a group of second flow holes, and then gradually close a group of second flow holes. When the two opening and closing circular plates are driven to move away from each other in the opposite direction, the two opening and closing circular plates gradually move away from a group of second flow holes, and then gradually open a group of second flow holes, and then control the opening degree of the second flow holes according to different heat, so as to control the heat dissipation efficiency.
[0013] 2. The present invention first drives the two movable circular plates to move relatively close to each other until the two movable circular plates are closed to form a complete disc structure, and then drives the movable circular plates to move toward a group of fourth flow holes until the two groups of cleaning protrusions enter the group of fourth flow holes and push out the dust in the group of fourth flow holes, thereby quickly cleaning the group of fourth flow holes to prevent the group of fourth flow holes from being blocked and affecting the heat dissipation efficiency.
[0014] 3. The present invention first starts the first inlet fan and the first outlet fan to allow the outside cold air to carry the heat upwards, and finally the hot air is discharged from the cabinet from the second flow hole at the upper end. At the same time, the second inlet fan and the second outlet fan are started to allow the outside cold air to carry the heat to the right, and finally the hot air is discharged from the cabinet from the fourth flow hole at the right end. Then, by setting a two-way air duct, the heat dissipation efficiency of the cabinet is improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a structural schematic diagram of a wireless communication equipment cabinet for industrial Internet of Things proposed by the present invention; Figure 2 A schematic cross-sectional view of a wireless communication equipment cabinet for industrial Internet of Things proposed by the present invention Figure 1 ; Figure 3 A cross-sectional view of a wireless communication equipment cabinet for industrial Internet of Things proposed by the present invention Figure 1 ; Figure 4 A right cross-sectional view of a wireless communication equipment cabinet for industrial Internet of Things proposed by the present invention Figure 1 ; Figure 5A right cross-sectional view of a wireless communication equipment cabinet for industrial Internet of Things proposed by the present invention Figure 2 ; Figure 6 This is a wireless communication flow chart of a wireless communication equipment cabinet for industrial Internet of Things proposed by the present invention.
[0016] In the figure: 1. cabinet body; 2. first chamber; 3. second chamber; 4. third chamber; 5. placement frame; 6. vent; 7. first circulation hole; 8. second circulation hole; 9. third circulation hole; 10. fourth circulation hole; 11. first fan inlet; 12. first fan outlet; 13. second fan inlet; 14. second fan outlet; 15. driving motor; 16. rotating shaft; 17. starting rod; 18. connecting rod; 19. first guide slide; 20. opening and closing circular plate; 21. second guide slide; 22. first push cylinder; 23. moving slide rail; 24. second push cylinder; 25. moving circular plate; 26. cleaning bump; 27. rotating cabinet door. DETAILED DESCRIPTION
[0017] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0018] Reference Figure 1-Figure 6 A wireless communication equipment cabinet for industrial Internet of Things, comprising a cabinet body 1, wherein the cabinet body 1 is provided with a first chamber 2, a second chamber 3, a third chamber 4, a placement frame 5 and a vent 6, as shown in the attached Figure 2 As shown, a first chamber 2 is opened at the middle end of the cabinet 1, two second chambers 3 are symmetrically opened at the left and right ends of the cabinet 1, and two third chambers 4 are symmetrically opened at the upper and lower ends of the cabinet 1, and the four sides of the first chamber 2 are wrapped by the two second chambers 3 and the third chamber 4, and a plurality of placement frames 5 are installed in the first chamber 2 in a straight line and equidistantly, and the wireless communication device is placed in the plurality of placement frames 5, and a group of vents 6 are opened on a placement frame 5 to allow the heat generated by the wireless communication device when working to flow out of the placement frame 5, and a temperature sensor can be built in the first chamber 2 to sense the heat size in the first chamber 2 at any time, and the cabinet 1 is installed with a rotating cabinet door 27 for opening and closing the first chamber 2; In particular, the attached Figure 6 As shown, when driving the industrial equipment, the control panel located at the rotating cabinet door 27 is pressed first, and the control panel transmits the control signal to the signal receiver of the wireless communication device, and then the signal receiver transmits the control signal to the signal processor, and the signal processor allows the signal transmitter to transmit the driving signal and transmit it to the industrial equipment, thereby driving the industrial equipment; The cabinet 1 is also provided with a first flow hole 7, a second flow hole 8, a third flow hole 9 and a fourth flow hole 10. A third chamber 4 is connected to the first chamber 2 through a group of first flow holes 7, and a third chamber 4 is connected to the outer end of the cabinet 1 through a group of second flow holes 8. A second chamber 3 is connected to the first chamber 2 through a group of third flow holes 9, and a second chamber 3 is connected to the outer end of the cabinet 1 through a group of fourth flow holes 10; an adjusting mechanism is arranged in the third chamber 4, and the adjusting mechanism is used to adjust the opening degree of the second flow hole 8, thereby controlling the amount of external cold air entering the second flow hole 8, so as to control the heat dissipation efficiency according to the heat amount of the first chamber 2; a cleaning mechanism is arranged in the second chamber 3, and the cleaning mechanism is used to clean the fourth flow hole 10 to prevent the fourth flow hole 10 from being blocked by dust and affecting the heat dissipation efficiency.
[0019] Preferably, as attached Figure 2 As shown, a first inlet fan 11 is installed in the third chamber 4 at the lower end, and a first outlet fan 12 is installed in the third chamber 4 at the upper end. When the first inlet fan 11 and the first outlet fan 12 are started, the external cold air is allowed to flow from bottom to top, and the hot air is discharged from the second flow hole 8 at the upper end. A second inlet fan 13 is installed in the second chamber 3 at the left end, and a second outlet fan 14 is installed in the second chamber 3 at the right end. When the second inlet fan 13 and the second outlet fan 14 are started, the external cold air is allowed to flow from left to right, and the hot air is discharged from the fourth flow hole 10 at the right end. Then, a two-way air duct is set in the first chamber 2 to improve the heat dissipation efficiency of the cabinet 1; and the above-mentioned fan component is provided with a built-in motor at the inner wall of the corresponding chamber, and the fan component is rotated by the built-in motor.
[0020] The adjusting mechanism includes a driving motor 15, a rotating shaft 16 and a starting rod 17. The two driving motors 15 are symmetrically installed on the inner wall of a third chamber 4. The two rotating shafts 16 are respectively fixedly connected to the output ends of the two driving motors 15. One end of the two starting rods 17 is respectively fixedly mounted on the two rotating shafts 16, and the rotating shaft 16 and the starting rod 17 are driven by the output end of the driving motor 15 to perform continuous unidirectional rotation.
[0021] Preferably, the adjustment mechanism also includes a connecting rod 18, a first guide slot 19 and an opening and closing circular plate 20, one end of the two connecting rods 18 is rotatably connected to the other end of the two starting rods 17, the two first guide slots 19 are symmetrically opened on the inner wall of a third chamber 4, the two opening and closing circular plates 20 are slidably sleeved in the two first guide slots 19, and the other ends of the two connecting rods 18 are rotatably connected to the two opening and closing circular plates 20. When the starting rod 17 rotates continuously in one direction, the starting rod 17 drives the opening and closing circular plate 20 to move reciprocatingly along the first guide slot 19 through the connecting rod 18. Since the two opening and closing circular plates 20 are both semi-disc plate structures, when the two opening and closing circular plates 20 move relatively close to each other and close, the two opening and closing circular plates 20 form a complete disc structure and completely close the second flow hole 8; when the two opening and closing circular plates 20 move away from each other in the opposite direction, the two opening and closing circular plates 20 gradually move away from the second flow hole 8 and gradually open the second flow hole 8.
[0022] The cleaning mechanism includes a second guide groove 21, a first pushing cylinder 22 and a movable slide rail 23. The two second guide grooves 21 are symmetrically opened on the inner wall of a second chamber 3. The two first pushing cylinders 22 are respectively fixedly installed in the two second guide grooves 21. The two movable slide rails 23 are respectively slidably sleeved in the two second guide grooves 21. The output ends of the two first pushing cylinders 22 are respectively fixedly connected to the two movable slide rails 23, and the movable slide rails 23 are allowed to move linearly along the second guide grooves 21 through the output ends of the first pushing cylinders 22.
[0023] Preferably, the cleaning mechanism also includes a second pushing cylinder 24, a movable circular plate 25 and a cleaning protrusion 26. The two second pushing cylinders 24 are respectively fixedly installed in the two movable slide rails 23, and the two movable circular plates 25 are respectively slidably sleeved in the two movable slide rails 23. The output ends of the two second pushing cylinders 24 are respectively fixedly connected to the two movable circular plates 25, and a group of cleaning protrusions 26 are integrally formed on a movable circular plate 25. Since the two movable circular plates 25 are both semi-disc plate structures, the two movable circular plates 25 are first closed to form a complete disc structure through the first pushing cylinder 22, and then the movable circular plate 25 is moved linearly along the movable slide rail 23 through the output end of the second pushing cylinder 24, so that the two groups of cleaning protrusions 26 are movably sleeved in a group of fourth flow holes 10, and dust is pushed out to avoid blockage of the fourth flow holes 10.
[0024] The present invention can be explained by the following operation mode: First, place the wireless communication device in the placement frame 5, push and rotate the cabinet door 27 to close the first chamber 2, and then start the first inlet fan 11 and the first outlet fan 12, so that the outside cold air is drawn from the second flow hole 8 at the lower end to the third chamber 4 at the lower end by the first inlet fan 11, and the cold air enters the first chamber 2 from the first flow hole 7 at the lower end. At the same time, the cold air takes away the heat generated by the wireless communication device when it is working upward through the vent 6 of the placement frame 5, and the first outlet fan 12 draws the hot air to the third chamber 4 at the upper end through the first flow hole 7 at the upper end, and finally the hot air is discharged from the cabinet 1 from the second flow hole 8 at the upper end; At the same time, the second inlet fan 13 and the second outlet fan 14 are started, so that the external cold air is drawn into the second chamber 3 at the left end through the fourth circulation hole 10 at the left end by the second inlet fan 13, and the cold air enters the first chamber 2 through the third circulation hole 9 at the left end. At the same time, the cold air takes away the heat generated by the wireless communication device when it is working to the right through the vent 6 of the placement frame 5, and the second outlet fan 14 draws the hot air into the second chamber 3 at the right end through the third circulation hole 9 at the right end, and finally the hot air is discharged from the cabinet 1 through the fourth circulation hole 10 at the right end; If the opening degree of one group of second flow holes 8 needs to be adjusted, the two driving motors 15 are started, and the output end of the driving motor 15 drives the starting rod 17 to continuously rotate in one direction through the rotating shaft 16, and the starting rod 17 drives the opening and closing circular plate 20 to move back and forth along the first guide slot 19 through the connecting rod 18, and the two opening and closing circular plates 20 are respectively moved closer to each other or moved away from each other in the opposite direction; When the two opening and closing circular plates 20 move relatively close to each other, the two opening and closing circular plates 20 gradually approach and cover a group of second flow holes 8, and then gradually close a group of second flow holes 8; and when the two opening and closing circular plates 20 move away from each other in the opposite direction, the two opening and closing circular plates 20 gradually move away from a group of second flow holes 8, and then gradually open a group of second flow holes 8; If one group of fourth flow holes 10 needs to be cleaned, the two first push cylinders 22 are started, and the output ends of the first push cylinders 22 drive the moving circular plate 25 to move toward a group of fourth flow holes 10 through the moving slide rail 23 until the two moving circular plates 25 are closed to form a complete disc structure, and then the two second push cylinders 24 are started, and the output ends of the second push cylinders 24 drive the moving circular plate 25 to move toward a group of fourth flow holes 10 until the two groups of cleaning protrusions 26 enter a group of fourth flow holes 10 and push out the dust in the group of fourth flow holes 10.
[0025] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A wireless communication equipment cabinet for industrial Internet of Things, comprising a cabinet body (1), characterized in that: The cabinet (1) is provided with: A first chamber (2), a second chamber (3), a third chamber (4), a placement frame (5) and ventilation holes (6), wherein one of the first chambers (2) is opened at the middle end of the cabinet (1), two of the second chambers (3) are symmetrically opened at the left and right ends of the cabinet (1), two of the third chambers (4) are symmetrically opened at the upper and lower ends of the cabinet (1), a plurality of the placement frames (5) are installed in the first chamber (2) in a straight line and at equal distances, and a group of ventilation holes (6) is opened on one of the placement frames (5); a first circulation hole (7), a second circulation hole (8), a third circulation hole (9) and a fourth circulation hole (10); one of the third chambers (4) is connected to the first chamber (2) via a group of first circulation holes (7), and one of the third chambers (4) is connected to the outer end of the cabinet (1) via a group of second circulation holes (8); one of the second chambers (3) is connected to the first chamber (2) via a group of third circulation holes (9), and one of the second chambers (3) is connected to the outer end of the cabinet (1) via a group of fourth circulation holes (10); An adjusting mechanism, the adjusting mechanism being arranged in the third chamber (4) and being used to adjust the opening degree of the second flow hole (8); A cleaning mechanism is arranged in the second chamber (3), and is used to clean the fourth flow hole (10).
2. The wireless communication equipment cabinet for industrial Internet of Things according to claim 1, characterized in that: A first inlet fan (11) is installed in the third chamber (4) at the lower end, a first outlet fan (12) is installed in the third chamber (4) at the upper end, a second inlet fan (13) is installed in the second chamber (3) at the left end, and a second outlet fan (14) is installed in the second chamber (3) at the right end. The cabinet body (1) is provided with a rotating cabinet door (27) for opening and closing the first chamber (2).
3. The wireless communication equipment cabinet for industrial Internet of Things according to claim 1, characterized in that: The regulating mechanism comprises: A driving motor (15), a rotating shaft (16) and a starting rod (17), wherein the two driving motors (15) are symmetrically mounted on the inner wall of a third chamber (4), the two rotating shafts (16) are respectively fixedly connected to the output ends of the two driving motors (15), and one end of the two starting rods (17) is respectively fixedly sleeved on the two rotating shafts (16).
4. The wireless communication equipment cabinet for industrial Internet of Things according to claim 3, characterized in that: The regulating mechanism also includes: A connecting rod (18), a first guide slot (19) and an opening and closing circular plate (20), wherein one end of the two connecting rods (18) is rotatably connected to the other end of the two starting rods (17), the two first guide slots (19) are symmetrically arranged on the inner wall of a third chamber (4), the two opening and closing circular plates (20) are slidably sleeved in the two first guide slots (19), the other ends of the two connecting rods (18) are rotatably connected to the two opening and closing circular plates (20), and the two opening and closing circular plates (20) are both semi-disc plate structures.
5. The wireless communication equipment cabinet for industrial Internet of Things according to claim 1, characterized in that: The cleaning mechanism comprises: A second guide slot (21), a first pushing cylinder (22) and a movable slide rail (23), wherein the two second guide slots (21) are symmetrically arranged on the inner wall of a second chamber (3), the two first pushing cylinders (22) are respectively fixedly installed in the two second guide slots (21), the two movable slide rails (23) are respectively slidably mounted in the two second guide slots (21), and the output ends of the two first pushing cylinders (22) are respectively fixedly connected to the two movable slide rails (23).
6. The wireless communication equipment cabinet for industrial Internet of Things according to claim 5, characterized in that: The cleaning mechanism also includes: A second pushing cylinder (24), a movable circular plate (25) and a cleaning protrusion (26), wherein the two second pushing cylinders (24) are respectively fixedly mounted in the two movable slide rails (23), the two movable circular plates (25) are respectively slidably mounted in the two movable slide rails (23), the output ends of the two second pushing cylinders (24) are respectively fixedly connected to the two movable circular plates (25), and a group of the cleaning protrusions (26) are integrally formed on a movable circular plate (25).
7. The wireless communication equipment cabinet for industrial Internet of Things according to claim 6, characterized in that: The two movable circular plates (25) are both semi-circular plate structures, and the two groups of cleaning protrusions (26) are movably sleeved in a group of fourth flow holes (10).
Citation Information
Patent Citations
A dual-communication-adaptable industrial Internet of Things terminal
CN115397045B