Automation cabinet

By designing a convenient radiator installation and disassembly system in an automated cabinet, the problem of inconvenient disassembly and replacement of radiators in the prior art is solved, and the rapid disassembly and assembly of radiators and the normal heat dissipation status of the cabinet are achieved.

CN115460847BActive Publication Date: 2025-05-06BEIJING SHOUXIN YUANFANG MOTOR EQUIP CO LTD
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Patent Information

Application Number
CN202211158568.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-22
Publication Date
2025-05-06
Estimated Expiration
2042-09-22

AI Technical Summary

Technical Problem

The existing cabinet radiator is not convenient for disassembly and replacement, and it is easy to adhere to dust during use, affecting the heat dissipation efficiency.

Method used

An automated cabinet is designed to facilitate installation and disassembly of the radiator by setting up installation holes and arc-shaped strips on the cabinet door and combining the driving mechanism. The arc-shaped bars can slide radially along the mounting seat and are embedded in the installation slot on the radiator. The driving mechanism controls the slippage of the arc-shaped bars to achieve rapid disassembly and assembly of the radiator.

Benefits of technology

It realizes the convenient disassembly and assembly of the radiator, facilitates staff to clean and replace, ensures the normal heat dissipation state of the cabinet, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to an automated cabinet, and to the technical field of a control cabinet, which includes a cabinet body, a cabinet door, and a radiator. The cabinet body top wall, the bottom wall, and the two side walls near the cabinet door are all provided with a plurality of strip-shaped air inlets. The cabinet door is provided with a circular mounting hole, and a mounting seat connected to the mounting hole is provided on the inner side wall of the cabinet door. The radiator is embedded in the mounting hole, and a mounting groove is provided on the radiator along its circumference, and a plurality of arc-shaped strips that can slide along the radial direction of the mounting seat are provided on the inner side of the mounting seat along its circumferential direction. The arc-shaped strips are used to be embedded in the mounting groove, and when the plurality of arc-shaped strips are embedded in the mounting groove, the plurality of arc-shaped strips conflict with each other, and a driving mechanism for driving the arc-shaped strips to slide radially is provided on the mounting seat. The present application provides an automated cabinet that can conveniently disassemble and assemble the radiator, which is convenient for the staff to clean and replace the radiator, and ensures the normal heat dissipation state of the cabinet.
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Description

Technical Field

[0001] The present application relates to the field of control cabinets, and in particular to automation cabinets. Background Art

[0002] Because the cabinet can be equipped with various electrical equipment, it can be widely used in power, communication, petroleum, water supply, mining and other industries. The equipment inside the cabinet usually generates a lot of heat during use. If the heat inside the cabinet cannot be quickly dissipated in time, the heat inside the cabinet will gather together to form high temperature, which may cause damage to the related equipment in the cabinet in serious cases.

[0003] Existing cabinets usually have radiators on them, which speed up the circulation of air inside and outside the cabinet, thereby speeding up the heat dissipation inside the cabinet to achieve a cooling effect. However, the existing radiators are fixedly connected to the cabinets, which is inconvenient to disassemble. In addition, a lot of dust will inevitably adhere to the radiators during use, which affects the working efficiency of the radiators and needs to be improved. Summary of the invention

[0004] In order to realize convenient disassembly of the radiator and the cabinet, and then realize convenient replacement of the radiator, the present application provides an automated cabinet.

[0005] The automated cabinet provided in this application adopts the following technical solutions:

[0006] An automated cabinet comprises a cabinet body, a cabinet door and a radiator, wherein a plurality of strip-shaped air inlets are arranged on the top wall, the bottom wall and the two side walls close to the cabinet door, a circular mounting hole is arranged on the cabinet door, and a mounting seat connected to the mounting hole is arranged on the inner side wall of the cabinet door, the radiator is embedded in the mounting hole, a mounting groove is arranged on the radiator along its circumference, and a plurality of arcuate strips which can slide along the radial direction of the mounting seat are arranged on the inner side of the mounting seat along its circumferential direction, the arcuate strip is used to be embedded in the mounting groove, and when a plurality of the arcuate strips are embedded in the mounting groove, the plurality of the arcuate strips conflict with each other, and a driving mechanism for driving the arcuate strip to slide radially is arranged on the mounting seat.

[0007] By adopting the above technical solution, when installing the radiator, first embed the radiator into the mounting hole, and then the driving mechanism controls the multiple arc bars to slide inward and embed into the mounting groove, so that the radiator can be conveniently installed. When disassembling the radiator, the driving mechanism controls the multiple arc bars to slide outward and disengage the arc bars from the mounting groove, and then the radiator can be disassembled. The automated cabinet that can conveniently disassemble and assemble the radiator makes it easy for the staff to clean and replace the radiator, ensuring the normal heat dissipation state of the cabinet, which helps to ensure the normal working state of the cabinet.

[0008] Optionally, the driving mechanism includes an end face gear ring, multiple sleeves, multiple screws and multiple driving gears, the multiple sleeves are evenly arranged along the circumferential direction of the mounting seat and are connected to the arc strip after passing through the mounting seat, and the sleeve and the mounting seat are radially slidingly connected, the multiple screws are sequentially inserted into the multiple sleeves and threadedly connected to the screws, and the screws are rotatably connected to the mounting seat through a connecting frame, and the multiple driving gears are sequentially arranged at the ends of the screws, the end face gear ring is sleeved on the mounting seat and is located on the inner side of the multiple driving gears, and the end face gear ring is rotatably connected to the cabinet door, and the multiple driving gears are all meshed with the end face gear ring for transmission.

[0009] By adopting the above technical solution, when driving multiple arc strips to slide radially synchronously, it is only necessary to drive the end face gear ring, which controls multiple screws to rotate synchronously through multiple driving gears, and multiple screws synchronously drive the sleeve to slide radially along the sleeve, thereby controlling multiple arc strips to slide radially synchronously, thereby realizing radial sliding drive of multiple arc strips. By setting a driving mechanism with a simple structure and stable operation, convenient driving of radial sliding of arc strips is realized, thereby facilitating the disassembly and assembly of the radiator by the staff, thereby realizing convenient replacement of the radiator.

[0010] Optionally, a limiting rod is provided on one end of the radiator facing away from the mounting groove, and a limiting groove connected to the mounting groove is provided on the outer wall of the cabinet, the limiting groove is used for the limiting rod to be embedded, and when the limiting rod conflicts with the bottom of the limiting groove, the mounting groove and the arc strip are connected.

[0011] By adopting the above technical solution and setting the limit rod, the connection and positioning of the installation groove and the arc strip are achieved, which makes it easier for workers to install the radiator.

[0012] Optionally, the top wall, bottom wall and two side walls close to the cabinet door are slidably connected with a cover plate for covering the air inlet, and the cover plate is provided with a plurality of auxiliary holes for connecting the air inlet, and a control mechanism for driving the four cover plates to slide synchronously is provided in the cabinet.

[0013] By adopting the above technical solution and setting a slidable cover, convenient opening and closing control of the air inlet is achieved, which not only ensures the normal heat dissipation of the cabinet, but also ensures the convenient conversion of the air inlet to the non-working state, effectively avoids the entry of external dust, and ensures the normal working state of the components in the cabinet.

[0014] Optionally, the control mechanism includes a control chain, four control racks, four control shafts, four control sprockets and four control gears, the four control racks are respectively arranged on the four cover plates, the four control sprockets and the four control gears are respectively arranged at both ends of the four control shafts in sequence, the four control shafts are horizontally arranged beside the four cover plates in sequence and are rotatably connected to the cabinet body, and the four control gears are respectively meshed with the four control racks for transmission, the control chain is sleeved on the four control sprockets and meshed with the control chain for transmission, a control motor is arranged in the cabinet, and a transmission sprocket meshing with the control chain is arranged on the control motor.

[0015] By adopting the above technical solution and setting a control mechanism with a simple structure and stable operation, the synchronous sliding drive of multiple cover plates is achieved, thereby achieving the synchronous opening and closing of the air inlet.

[0016] Optionally, the top wall, bottom wall and outer sides of the two side walls close to the cabinet door of the cabinet body are provided with an air intake plate for covering the air intake port, and the air intake plate is provided with multiple rows of air intake holes. The air intake port is arranged in a tapered shape from the outside to the inside, and the air intake holes correspond to the air intake port, and the outer side of the cabinet door is provided with an auxiliary groove for the air intake plate to be embedded and clamped.

[0017] By adopting the above technical solution and providing a tapered air inlet hole, automatic cooling is achieved when air flows from the outside to the inside of the cabinet, thereby effectively enhancing the heat dissipation efficiency of the cabinet.

[0018] Optionally, a plurality of slots are evenly arranged on the inner side wall of the auxiliary seat along its circumferential direction, and hooks are evenly arranged on the side wall of the air intake plate along its circumferential direction, and the slots are used for the hooks to be embedded and hooked.

[0019] By adopting the above technical solution and providing a hook and a matching slot, a movable connection between the air intake plate and the cabinet is achieved, thereby making it easier for staff to replace the air intake plate.

[0020] Optionally, a protective cover for covering the driving mechanism is provided on the inner wall of the cabinet door, a pair of driving rods are provided on the side of the end face gear ring, and the protective cover is provided with driving grooves for the pair of driving rods to pass through and rotate respectively.

[0021] By adopting the above technical solution, by setting a protective cover, the driving mechanism is covered, which helps to ensure the normal working state of the driving mechanism. At the same time, by setting a driving rod, convenient driving of the end face gear ring is achieved.

[0022] Optionally, a temperature sensor and a control receiver are provided in the cabinet, and the temperature sensor, the radiator and the control motor are all electrically connected to the control receiver, and the temperature sensor is used to transmit temperature information to the control receiver, and the control receiver controls the radiator and the control motor to perform corresponding actions.

[0023] By adopting the above technical solution and setting sensors and control receivers, linkage control of the radiator and the control motor is achieved, thereby realizing automatic opening and closing control of the cabinet cooling working state.

[0024] In summary, the present application includes at least one of the following beneficial technical effects:

[0025] The automated cabinet that can conveniently disassemble and assemble the radiator makes it easy for the staff to clean and replace the radiator, ensuring the normal heat dissipation state of the cabinet, which in turn helps to ensure the normal working state of the cabinet;

[0026] By setting a driving mechanism with a simple structure and stable operation, convenient driving of the arc strip radial sliding is achieved, thereby facilitating the disassembly and assembly of the radiator by the staff, and realizing convenient replacement of the radiator;

[0027] By setting the limit rod, the connection and positioning of the installation groove and the arc strip are achieved, which makes it easier for workers to install the radiator. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application.

[0029] Figure 2 It is a schematic diagram of the connection relationship between the driving mechanism and the mounting seat in the embodiment of the present application.

[0030] Figure 3 It is a schematic diagram of the connection relationship between the cabinet door and the protective cover in the embodiment of the present application.

[0031] Figure 4 It is a schematic diagram of the internal structure of the cabinet in the embodiment of the present application.

[0032] Figure 5 It is a schematic diagram of the connection between the cover plate, the cabinet and the air intake plate in the embodiment of the present application.

[0033] Figure 6 yes Figure 5 A partial enlarged schematic diagram of area A in the middle.

[0034] Explanation of the reference numerals: 1. cabinet; 11. air inlet; 12. cover plate; 121. auxiliary hole; 14. control motor; 141. transmission sprocket; 15. temperature sensor; 16. control receiver; 17. auxiliary slot; 171. slot; 18. air inlet plate; 181. hook; 182. air inlet; 2. cabinet door; 21. mounting hole; 22. protective cover; 221. drive slot; 23. limit slot; 3. radiator; 31. mounting slot; 32. limit rod; 4. mounting seat; 41. arc strip; 42. connecting frame; 5. driving mechanism; 51. end gear ring; 511. driving rod; 52. sleeve; 53. screw; 54. driving gear; 6. control mechanism; 61. control chain; 62. control rack; 63. control shaft; 64. control sprocket; 65. control gear. DETAILED DESCRIPTION

[0035] The present application is further described in detail below in conjunction with the accompanying drawings.

[0036] The embodiments of the present application disclose an automated cabinet.

[0037] Reference Figure 1 , Figure 2 The automated cabinet comprises a cabinet body 1, a cabinet door 2 and a radiator 3. The cabinet door 2 is hinged to the cabinet body 1, and a circular mounting hole 21 is provided on the cabinet door 2, and the mounting hole 21 is used for the radiator 3 to be embedded and connected, and at the same time, an annular mounting seat 4 connected to the mounting hole 21 is provided on the inner side wall of the cabinet door 2, and a plurality of arc-shaped arc bars 41 are evenly provided on the inner side of the mounting seat 4 along its circumferential direction, and the arc bars 41 can slide along the radial direction of the mounting seat 4, and a mounting groove 31 is provided on the radiator 3 along its circumferential direction, and the mounting groove 31 is used for the plurality of arc bars 41 to be embedded and connected, and when the plurality of arc bars 41 are embedded in the mounting groove 31, the plurality of arc bars 41 conflict with each other, so that the radiator 3 and the cabinet door 2 are stably connected through the cooperation of the arc bars 41 and the arc bars 41.

[0038] Reference Figure 2 The mounting seat 4 is provided with a driving mechanism 5, which is used to drive the plurality of arc-shaped bars 41 to synchronously slide along the radial direction of the mounting seat 4. The driving mechanism 5 includes an end face gear ring 51, a plurality of sleeves 52, a plurality of screws 53 and a plurality of driving gears 54.

[0039] Reference Figure 2, multiple sleeves 52 are evenly arranged along the circumferential direction of the mounting seat 4, multiple sleeves 52 all penetrate the mounting seat 4 and are connected to multiple arc strips 41 in sequence, and the sleeves 52 are radially slidably connected to the mounting seat 4, multiple screws 53 are sequentially penetrated at one end of the multiple sleeves 52 away from the arc strip 41 and are threadedly connected to the sleeves 52, and multiple connecting frames 42 are evenly arranged on the mounting seat 4 along its circumferential direction, and the multiple connecting frames 42 are used to support the multiple screws 53, and the ends of the screws 53 away from the sleeves 52 are rotatably connected to the connecting frames 42. Dynamic connection, multiple driving gears 54 are sequentially arranged at the ends of the multiple screws 53 away from the end of the sleeve 52, the end face gear ring 51 is sleeved on the mounting seat 4 and is located on the inner side of the driving gear 54, the end face gear ring 51 is rotationally connected to the cabinet door 2, and the multiple driving gears 54 are all meshed with the end face gear ring 51 for transmission, so that the multiple driving gears 54 are controlled to rotate synchronously through the end face gear ring 51, and then the multiple sleeves 52 are driven to slide synchronously along the radial direction of the mounting seat 4 through the screw 53, thereby realizing the synchronous driving of the radial sliding of multiple arc strips 41.

[0040] Reference Figure 2 and Figure 3 A protective cover 22 is provided on the inner wall of the cabinet door 2, and the protective cover 22 is used to cover the driving mechanism 5 to ensure the normal working state of the driving mechanism 5. At the same time, a pair of driving rods 511 are provided on the side of the end face gear ring 51, and the pair of driving rods 511 are separated from each other, and a driving groove 221 for the pair of driving rods 511 to pass through and rotate and slide is provided on the protective cover 22, so as to realize the convenient driving of the end face gear ring 51.

[0041] Reference Figure 2 A limiting rod 32 is provided on one end of the radiator 3 away from the mounting groove 31, and a limiting groove 23 connected with the mounting hole 21 is provided on the outer wall of the cabinet door 2. The limiting groove 23 is used for the limiting rod 32 to be embedded, and when the limiting rod 32 is completely embedded in the limiting groove 23, the arc strip 41 is connected with the mounting groove 31, so that the arc strip 41 is embedded in the mounting groove 31, thereby realizing convenient installation of the radiator 3.

[0042] Reference Figure 1 Figure 4 and Figure 5 A plurality of strip-shaped air inlets 11 are arranged on the top wall, the bottom wall and the two side walls near the cabinet door 2 of the cabinet body 1, so as to realize heat dissipation of the cabinet body 1 through the cooperation of the radiator 3 and the air inlets 11. At the same time, a cover plate 12 is arranged on the inner side of the top wall, the inner side of the bottom wall and the inner side of the two side walls near the cabinet door 2 of the cabinet body 1, and the cover plate 12 is slidably connected to the cabinet body 1, and a plurality of auxiliary holes 121 connected to the air inlets 11 are arranged on the cover plate 12, so as to realize the opening and closing control of the air inlets 11 during the sliding process of the cover plate 12.

[0043] Reference Figure 4A control mechanism 6 is provided in the cabinet 1, and the control mechanism 6 is used to drive the multiple cover plates 12 to slide synchronously to realize the synchronous opening and closing control of the air inlet 11. The control mechanism 6 includes a control chain 61, four control racks 62, four control shafts 63, four control sprockets 64 and four control gears 65.

[0044] Reference Figure 4 , four control racks 62 are respectively arranged at the middle part of the side of the four cover plates 12 away from the cabinet door 2 and are arranged along the length direction thereof, four control sprockets 64 and four control gears 65 are respectively arranged at the two ends of the four control shafts 63 in sequence, the four control shafts 63 are horizontally arranged in sequence at the middle part of the side of the four cover plates 12 away from the cabinet door 2 and are rotatably connected with the side wall of the cabinet body 1 relative to the cabinet door 2, and the control gear 65 is arranged at one end of the control shaft 63 close to the cabinet door 2 and meshes with the control rack 62 for transmission, the control sprocket 64 is arranged at one end of the control shaft 63 away from the cabinet door 2, and the control chain 61 is sleeved on multiple control sprockets 64 and meshes with the control sprockets 64 for transmission, so as to drive multiple control shafts 63 to rotate synchronously through the control chain 61, thereby realizing the synchronous sliding drive of multiple cover plates 12, thereby realizing the synchronous opening and closing control of the air inlet 11.

[0045] Reference Figure 4 A control motor 14 is arranged on the inner wall of the cabinet, and a transmission sprocket 141 is arranged on the output shaft of the control motor 14 . The transmission sprocket 141 and the control chain 61 are meshed and driven to realize convenient driving of the control chain 61 .

[0046] Reference Figure 4 A temperature sensor 15 and a control receiver 16 are provided in the cabinet 1. The temperature sensor 15, the radiator 3 and the control motor 14 are all electrically connected to the control receiver 16, so that the temperature information is transmitted to the control receiver 16 through the temperature sensor 15, and then the control receiver 16 controls the radiator 3 and the control motor 14 to perform corresponding actions, thereby realizing automatic control of the heat dissipation state of the cabinet 1.

[0047] Therefore, when the temperature in the cabinet 1 is too high, the temperature sensor 15 transmits the high temperature information to the control receiver 16. The control receiver 16 receives the high temperature information and controls the radiator 3 and the control motor 14 to operate. At this time, the control motor 14 drives the control chain 61 to rotate through the transmission sprocket 141, and then the control chain 61 drives multiple control sprockets 64 to rotate synchronously, so that the control shaft 63 drives the cover plate 12 to slide through the control gear 65 and the control rack 62 during rotation. At this time, the air inlet holes 182 arranged on the cover plate 12 are connected with the air inlet 11 in sequence, thereby accelerating the circulation rate of the outside air in the cabinet 1 through the radiator 3, and realizing rapid cooling of the temperature in the cabinet 1.

[0048] When the temperature in the cabinet 1 drops to a suitable level, the temperature sensor 15 transmits the temperature information to the control receiver 16. The control receiver 16 receives the temperature information and controls the radiator 3 and the control motor 14 to operate. At this time, the control motor 14 drives the control chain 61 to rotate in the opposite direction through the transmission sprocket 141, and then the control chain 61 drives multiple control sprockets 64 to rotate in the opposite direction synchronously, so that during the rotation of the control shaft 63, the cover plate 12 is driven to slide in the opposite direction through the control gear 65 and the control rack 62. At this time, the cover plate 12 closes the air inlet 11 to effectively prevent the entry of dust.

[0049] Reference Figure 4 , Figure 5 and Figure 6 The cabinet 1 is provided with an auxiliary groove 17 on the outer wall of the air inlet 11, and the air inlet 11 is arranged in the auxiliary groove 17. The cabinet 1 is provided with an air inlet plate 18 embedded in the auxiliary groove 17 on the outer wall of the air inlet 11. The edge of the air inlet plate 18 is evenly provided with a plurality of hooks 181 along its circumferential direction, and the inner side of the auxiliary groove 17 is evenly provided with a plurality of slots 171 along its circumferential direction. The slots 171 are used for the hooks 181 to be embedded and connected, so as to realize the convenient disassembly and assembly of the air inlet plate 18. At the same time, the air inlet plate 18 is provided with multiple rows of air inlet holes 182, which correspond to the multiple air inlets 11 in sequence, and the air inlet holes 182 are arranged in a tapered shape from the outside to the inside, so as to realize the automatic cooling of the air in the process of the air passing through the air inlet holes 182, and ensure the heat dissipation efficiency of the cabinet 1.

[0050] The implementation principle of the automated cabinet in the embodiment of the present application is as follows: when replacing the radiator 3, first, the end face gear ring 51 is controlled to rotate by the driving rod 511, and the end face gear ring 51 drives multiple driving gears 54 to rotate, and the driving gears 54 control the rotation of the screw 53, and then the screw 53 drives the sleeve 52 to slide radially outward, and the arc strip 41 is disengaged from the mounting groove 31 set on the radiator 3. At this time, the staff can disassemble the old radiator 3.

[0051] Subsequently, the new radiator 3 is inserted into the mounting hole 21, and then the end face gear ring 51 is controlled to rotate in the opposite direction by the driving rod 511. The end face gear ring 51 drives multiple driving gears 54 to rotate in the opposite direction. The driving gear 54 controls the screw 53 to rotate in the opposite direction, and then the screw 53 drives the sleeve 52 to slide radially inward, so that the arc strip 41 is embedded in the mounting groove 31 set on the radiator 3, and the new radiator 3 is installed on the cabinet door 2, so that the radiator 3 can be easily replaced.

[0052] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. Automation cabinet, characterized by: The cabinet comprises a cabinet body (1), a cabinet door (2) and a radiator (3); a plurality of strip-shaped air inlets (11) are arranged on the top wall, the bottom wall and the two side walls close to the cabinet door (2) of the cabinet body (1); a circular mounting hole (21) is arranged on the cabinet door (2); a mounting seat (4) connected to the mounting hole (21) is arranged on the inner side wall of the cabinet door (2); the radiator (3) is embedded in the mounting hole (21); and a radiator (4) is arranged on the radiator (3) along its circumference. A mounting groove (31) is provided, and a plurality of arcuate strips (41) are arranged on the inner side of the mounting seat (4) along the circumferential direction thereof and can slide along the radial direction of the mounting seat (4); the arcuate strips (41) are used to be embedded in the mounting groove (31), and when the plurality of arcuate strips (41) are embedded in the mounting groove (31), the plurality of arcuate strips (41) are mutually abutted, and a driving mechanism (5) is arranged on the mounting seat (4) for driving the arcuate strips (41) to slide radially; The driving mechanism (5) comprises an end face gear ring (51), a plurality of sleeves (52), a plurality of screw rods (53) and a plurality of driving gears (54); the plurality of sleeves (52) are evenly arranged along the circumferential direction of the mounting seat (4) and penetrate the mounting seat (4) and are connected to the arc-shaped strip (41); the sleeves (52) and the mounting seat (4) are radially slidably connected; the plurality of screw rods (53) are sequentially penetrated in the plurality of sleeves (52) and are threadedly connected to the screw rods (53); the mounting seat (4) A plurality of connecting frames (42) are evenly arranged along the circumferential direction of the upper portion, and the screw rod (53) is rotatably connected to the mounting seat (4) through the connecting frame (42), a plurality of driving gears (54) are sequentially arranged at the ends of the screw rod (53), the end face gear ring (51) is sleeved on the mounting seat (4) and is located inside the plurality of driving gears (54), and the end face gear ring (51) is rotatably connected to the cabinet door (2), and the plurality of driving gears (54) are all meshed with the end face gear ring (51) for transmission.

2. The automation cabinet according to claim 1, characterized in that: A limiting rod (32) is provided on one end of the radiator (3) away from the mounting groove (31); a limiting groove (23) connected to the mounting groove (31) is provided on the outer wall of the cabinet (1); the limiting groove (23) is used for the limiting rod (32) to be embedded; and when the limiting rod (32) contacts the bottom of the limiting groove (23), the mounting groove (31) and the arc strip (41) are connected.

3. The automation cabinet according to claim 1, characterized in that: A cover plate (12) for covering the air inlet (11) is slidably connected to the top wall, the bottom wall and the two side walls close to the cabinet door (2) of the cabinet body (1), and the cover plate (12) is provided with a plurality of auxiliary holes (121) for connecting to the air inlet (11), and a control mechanism (6) for driving the four cover plates (12) to slide synchronously is provided in the cabinet body (1).

4. The automation cabinet according to claim 3, characterized in that: The control mechanism (6) comprises a control chain (61), four control racks (62), four control shafts (63), four control sprockets (64) and four control gears (65). The four control racks (62) are respectively arranged on the four cover plates (12). The four control sprockets (64) and the four control gears (65) are respectively arranged at the two ends of the four control shafts (63). The four control shafts (63) are arranged horizontally beside the four cover plates (12) and are rotatably connected to the cabinet body (1). The four control gears (65) are respectively meshed with the four control racks (62) for transmission. The control chain (61) is sleeved on the four control sprockets (64) and meshed with the control chain (61) for transmission. A control motor (14) is arranged in the cabinet, and a transmission sprocket (141) meshed with the control chain (61) is arranged on the control motor (14).

5. The automation cabinet according to claim 1, characterized in that: An air intake plate (18) for covering the air intake port (11) is arranged on the top wall, the bottom wall and the outer sides of the two side walls close to the cabinet door (2) of the cabinet body (1); a plurality of rows of air intake holes (182) are arranged on the air intake plate (18); the air intake port (11) is arranged in a tapered shape from the outside to the inside; the air intake holes (182) correspond to the air intake port (11); and an auxiliary groove (17) for the air intake plate (18) to be embedded and engaged is arranged on the outer side of the cabinet door (2).

6. The automation cabinet according to claim 5, characterized in that: A plurality of clamping grooves (171) are evenly arranged on the inner side wall of the auxiliary groove (17) along its circumferential direction, and a clamping hook (181) is evenly arranged on the side wall of the air intake plate (18) along its circumferential direction, and the clamping grooves (171) are used for the clamping hook (181) to be embedded and hooked.

7. The automated cabinet according to claim 1, characterized in that: A protective cover (22) for covering the driving mechanism (5) is arranged on the inner wall of the cabinet door (2), a pair of driving rods (511) are arranged on the side of the end face gear ring (51), and driving grooves (221) for the pair of driving rods (511) to pass through and rotate are arranged on the protective cover (22).

8. The automation cabinet according to claim 4, characterized in that: A temperature sensor (15) and a control receiver (16) are arranged in the cabinet (1); the temperature sensor (15), the radiator (3) and the control motor (14) are all electrically connected to the control receiver (16); the temperature sensor (15) is used to transmit temperature information to the control receiver (16); and the control receiver (16) controls the radiator (3) and the control motor (14) to perform corresponding actions.

Citation Information

Patent Citations

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