Terminal device for remotely controlling agricultural machinery
By designing insect-proof heat dissipation components in the terminal equipment of remotely controlled agricultural machinery, the problems of low efficiency of air convection channels and heat accumulation are solved, achieving stable operation and efficient heat dissipation of the equipment, and preventing performance degradation or failure caused by overheating.
Patent Information
- Application Number
- CN202520434106.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-03-13
AI Technical Summary
In existing remote control terminal equipment for agricultural machinery, unreasonable design of air inlets and outlets leads to low efficiency of air convection channels, improper fan installation causes heat accumulation, and loose connection between heat dissipation components and the server body results in low heat transfer efficiency, leading to excessively high equipment temperature, performance degradation, or malfunction.
The design includes an insect-proof heat dissipation component, comprising a first insect-proof component and a second insect-proof component arranged symmetrically. The component contains an insect-proof mesh frame, an insect-proof mesh body, louvers, and a fan, forming an air inlet and outlet partition. Together with the fan, it forms an air circulation channel. The heat dissipation component is connected to the internal heat conduction structure of the server, and the heat dissipation effect is enhanced by horizontal heat sinks.
It effectively blocks insects from entering, ensures stable equipment operation, creates good air circulation, removes heat, prevents equipment overheating, and guarantees equipment performance stability and reliability.
Smart Images

Figure CN223872650U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of agricultural machinery equipment, and particularly relates to a terminal device for remotely controlling agricultural machinery. BACKGROUND
[0002] With the rapid development of science and technology, the process of agricultural modernization is accelerating, and remote control of agricultural machinery has gradually become an important development direction in the field of agriculture. The traditional agricultural operation mode relies on a large amount of manpower, and is obviously restricted by geographical conditions, weather and other factors, and has low efficiency. Remote control of agricultural machinery can break these restrictions, realize remote operation of agricultural equipment, improve operation efficiency, reduce labor costs, and provide strong support for large-scale and precision agricultural production.
[0003] For the related technologies in the above, the inventor finds that the existing device has the following defects: the air inlet and air outlet of the existing device are designed unreasonably, and cannot form an efficient air convection channel. The installation and rotation mode of the fan also has problems, and cannot effectively promote air circulation, resulting in accumulation of heat inside the device. In addition, the heat dissipation assembly may not be closely connected with the heat conduction structure of the server body, and the heat conduction efficiency is low, so that the temperature of the device is too high after long-time operation, and problems such as performance decline, slow operation speed and the like occur. Even the device may be overheated and fail. CONTENT OF THE UTILITY MODEL
[0004] In view of the defects of the prior art, in order to solve the problems mentioned in the background, the present application provides a terminal device for remotely controlling agricultural machinery.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: a terminal device for remotely controlling agricultural machinery, comprising a terminal control cabinet body, a cabinet door is arranged on one side of the terminal control cabinet body, a server assembly is arranged in the terminal control cabinet body, and an anti-insect heat dissipation assembly is arranged on one side of the server assembly.
[0006] The application discloses a server assembly and a terminal control cabinet.
[0007] Optionally, the server assembly comprises a support block, an inner cabinet body and a server body, the support block is fixedly installed at the bottom of the inner part of the terminal control cabinet body, the top of the support block is fixedly installed with the inner cabinet body, and the inner part of the inner cabinet body is provided with the server body.
[0008] Optionally, the first insect-proof assembly and the second insect-proof assembly further comprise a first heat dissipation assembly and a second heat dissipation assembly, the first heat dissipation assembly and the second heat dissipation assembly are fixedly connected with the heat conduction structure in the inner part of the server body, and the first heat dissipation assembly and the second heat dissipation assembly each comprise a plurality of transverse heat dissipation fins.
[0009] Optionally, the left side and the right side of the terminal control cabinet body are each provided with a heat dissipation opening, and the louvers in the inner part of the first insect-proof assembly and the second insect-proof assembly are fixedly connected in the inner part of the heat dissipation opening, wherein the louver in the inner part of the first insect-proof assembly is an air inlet baffle, and the louver in the inner part of the second insect-proof assembly is an air outlet baffle.
[0010] Optionally, the transverse heat dissipation fins in the inner part of the first heat dissipation assembly and the second heat dissipation assembly are arranged between the inner cabinet body and the terminal control cabinet body, and the terminal control cabinet body, the cabinet door, the first heat dissipation assembly, the second heat dissipation assembly, the first insect-proof assembly and the second insect-proof assembly jointly form an air heat dissipation channel.
[0011] Optionally, the insect-proof net body is fixedly installed on one side of the insect-proof net frame through bolts, and the mesh size of the insect-proof net body is 40 meshes.
[0012] Optionally, the fan fixing frame is fixedly connected between the terminal control cabinet body and the inner cabinet body, and the fan fixing frames in the inner part of the first insect-proof assembly and the second insect-proof assembly divide the cavity in the inner part of the terminal control cabinet body and the inner cabinet body into two cavities in the upper and lower parts, wherein the upper cavity is a heat dissipation cavity.
[0013] In summary, the present application includes the following beneficial technical effects:
[0014] 1、The utility model discloses in using, through the anti -insect heat dissipation subassembly contains first anti -insect subassembly and second anti -insect subassembly, they are equipped with anti -insect net frame and anti -insect net body, and the anti -insect net body is screened mesh number 40 mesh, can effectively block insects and enter the equipment inside, avoid the damage of insects to equipment internal parts, guarantee equipment stable operation. The air inlet baffle and the air outlet baffle are arranged respectively on the both sides of the subassembly, cooperate fan body, can form good air circulation channel, make air can effectively circulate in the equipment inside, take away heat.
[0015] 2、The utility model discloses in using, through first heat dissipation subassembly and second heat dissipation subassembly are constituted by multiple horizontal radiating fins, and are connected with the heat conduction structure inside server body, set up between inner cabinet and terminal control cabinet body, with other components common air heat dissipation passage, further enhance the heat dissipation effect, ensure that the equipment keeps suitable temperature in the operation process, prevent the performance decline or breakdown due to overheating. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the whole structure schematic diagram of equipment in the embodiment of the application;
[0017] Figure 2 It is the local structure schematic diagram of equipment in the embodiment of the application;
[0018] Figure 3 It is the local structure schematic diagram of anti -insect heat dissipation subassembly in the embodiment of the application;
[0019] Figure 4 It is the local structure installation schematic diagram of anti -insect heat dissipation subassembly in the embodiment of the application.
[0020] Fig. 1 is a terminal control cabinet body;2, cabinet door;3, server assembly;301, support block;302, inner cabinet;303, server body;4, anti -insect heat dissipation subassembly;41, first anti -insect subassembly;42, second anti -insect subassembly;401, anti -insect net frame;402, anti -insect net body;403, louver;404, fan fixing frame;405, fan body;406, first heat dissipation subassembly;407, second heat dissipation subassembly. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings Figures 1-4 The present application is further described in detail.
[0022] The embodiment of the application discloses a terminal device for remotely controlling agricultural machinery.
[0023] Please refer to Figure 1The utility model provides a kind of terminal equipment for remote control agricultural machinery, including terminal control cabinet 1, the side of terminal control cabinet 1 is provided with cabinet door 2, the inside of terminal control cabinet 1 is provided with server component 3, the side of server component 3 is provided with anti-insect heat dissipation assembly 4.
[0024] Please refer to Figures 2 to 4 Anti-insect heat dissipation assembly 4, anti-insect heat dissipation assembly 4 includes first anti-insect component 41 and second anti-insect component 42, first anti-insect component 41 and second anti-insect component 42 are symmetrically arranged with server component 3 as center, first anti-insect component 41 and second anti-insect component 42 all include anti-insect screen frame 401, anti-insect screen body 402, louver 403, fan fixing bracket 404 and fan body 405, anti-insect screen frame 401 is fixedly installed in the inside of terminal control cabinet 1, the side of anti-insect screen frame 401 is fixedly connected with anti-insect screen body 402, the side of anti-insect screen body 402 is provided with louver 403, the top of anti-insect screen frame 401 is provided with fan fixing bracket 404, and the top of fan fixing bracket 404 is provided with fan body 405, and the rotating direction of fan body 405 inside first anti-insect component 41 is opposite to that of fan body 405 inside second anti-insect component 42.
[0025] Server component 3 includes support block 301, inner cabinet 302 and server body 303, support block 301 is fixedly installed at the bottom in the inside of terminal control cabinet 1, the top of support block 301 is fixedly installed with inner cabinet 302, and the inside of inner cabinet 302 is provided with server body 303.
[0026] First anti-insect component 41 and second anti-insect component 42 further include first heat dissipation assembly 406 and second heat dissipation assembly 407, first heat dissipation assembly 406 and second heat dissipation assembly 407 are all fixedly connected with heat conduction structure inside server body 303, and first heat dissipation assembly 406 and second heat dissipation assembly 407 are all composed of multiple transverse radiating fins.
[0027] The left and right sides of terminal control cabinet 1 are all provided with heat dissipation port, and the louver 403 inside first anti-insect component 41 and second anti-insect component 42 is all fixedly connected in the inside of heat dissipation port, wherein the louver 403 inside first anti-insect component 41 is air inlet baffle, and the louver 403 inside second anti-insect component 42 is air outlet baffle.
[0028] The transverse radiating fin inside first heat dissipation assembly 406 and second heat dissipation assembly 407 is arranged between inner cabinet 302 and terminal control cabinet 1, and terminal control cabinet 1, cabinet door 2, first heat dissipation assembly 406, second heat dissipation assembly 407, first anti-insect component 41 and second anti-insect component 42 jointly constitute air heat dissipation passage.
[0029] The insect-proof net body 402 is fixedly installed on one side of the insect-proof net frame 401 by bolts, and the mesh size of the insect-proof net body 402 is 40 meshes.
[0030] The fan fixing frame 404 is fixedly connected between the terminal control cabinet body 1 and the inner cabinet body 302, and the fan fixing frame 404 inside the first insect-proof assembly 41 and the second insect-proof assembly 42 divides the cavity inside the terminal control cabinet body 1 and the inner cabinet body 302 into two cavities in the upper and lower directions, wherein the upper cavity is a heat dissipation cavity.
[0031] It needs to be further explained that:
[0032] The server assembly 3 is the core operation and control center of the equipment, and bears the heavy responsibility of data processing and instruction transmission, wherein the No. 1 support block 301 is stably installed at the bottom inside the terminal control cabinet body 1, provides firm support for the No. 2 inner cabinet body 302, and ensures that the inner cabinet body 302 remains stable, the No. 2 inner cabinet body 302 is arranged on the No. 1 support block 301, and a relatively independent space is constructed to accommodate the No. 3 server body 303, and to provide a suitable environment for the stable operation of the server body 303, and the No. 3 server body 303 is responsible for processing and transmitting various data and instructions required for remote control of agricultural machinery, and is the core component for realizing the remote control function of the equipment.
[0033] The insect-proof and heat dissipation assembly 4 shoulders the important responsibility of protecting the stable operation environment of the equipment. In terms of insect prevention, it includes the first insect-proof assembly 41 and the second insect-proof assembly 42 which are symmetrically arranged around the server assembly 3, both of which are equipped with the No. 1 insect-proof net frame 401 and the No. 2 insect-proof net body 402, and the No. 2 insect-proof net body 402 with a 40-mesh sieve can effectively block insects from entering the inside of the equipment, avoid damage to internal components by insects, and ensure the stable operation of the equipment. In terms of heat dissipation, the assembly is provided with the No. 1 air inlet partition plate and the No. 2 air outlet partition plate on the two sides, cooperates with the No. 1 fan body 405 and the No. 2 fan body 405, and forms a good air circulation channel, so that air circulates in the equipment and carries away heat. At the same time, the No. 1 first heat dissipation assembly 406 and the No. 2 second heat dissipation assembly 407 are composed of a plurality of transverse heat dissipation fins, are connected with the heat conduction structure inside the No. 3 server body 303, are arranged between the No. 2 inner cabinet body 302 and the terminal control cabinet body 1, and together with other components form an air heat dissipation passage, further enhance the heat dissipation effect, and prevent the equipment from being overheated and causing performance degradation or failure.
[0034] The server assembly 3 and the insect-proof and heat dissipation assembly 4 cooperate with each other, the server assembly 3 is responsible for core operation control, and the insect-proof and heat dissipation assembly 4 provides a stable and suitable operating environment for it, and both of them together ensure that the terminal equipment for remote control of agricultural machinery operates efficiently and stably.
[0035] The working principle of the above embodiment is as follows: first, the core part server component 3 of the device starts to work, the No. 1 supporting block 301 is firmly fixed at the bottom inside the terminal control cabinet body 1, supports the No. 2 inner cabinet body 302, creates a stable installation environment for the No. 3 server body 303, and the server body 303 starts to receive various data information from the outside or the inside. These data may be operation parameters of agricultural machinery, geographic position information, etc.
[0036] Secondly, the server body 303 processes and analyzes the received data, converts the original data into instructions that can be used to control agricultural machinery according to the preset algorithm and program, such as instructions for controlling the travel speed of the agricultural machinery and the switching of the operation mode.
[0037] Then, the anti-insect heat dissipation component 4 works synchronously to ensure the stable operation of the server component 3. In terms of insect prevention, the No. 1 anti-insect net frame 401 and the No. 2 anti-insect net body 402 work cooperatively. The 40-mesh anti-insect net body 402 acts as a barrier to effectively block insects from entering the interior of the device and prevent insects from interfering with the normal operation of the device.
[0038] Next, in terms of heat dissipation, the No. 1 air inlet partition and the No. 2 air outlet partition are respectively arranged on both sides of the component, cooperating with the No. 1 fan body 405 and the No. 2 fan body 405 to form an air circulation channel. The horizontal heat dissipation fins of the No. 1 first heat dissipation component 406 and the No. 2 second heat dissipation component 407 are connected to the heat conduction structure inside the server body 303, absorbing the heat generated by the server operation, and carrying the heat out of the device through air circulation.
[0039] Finally, the processed instructions are transmitted to the agricultural machinery through the server component 3 to realize remote control of the agricultural machinery. At the same time, the anti-insect heat dissipation component 4 continuously maintains the stable environment inside the device to ensure the smooth progress of the entire remote control process and guarantees the precise operation of the agricultural machinery according to the instructions.
[0040] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application. Therefore, any equivalent changes made on the basis of the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A terminal device for remote control of an agricultural machine, comprising a terminal control cabinet (1), characterized in that: The terminal control cabinet body (1) is provided with a cabinet door (2) on one side, and a server assembly (3) is arranged in the terminal control cabinet body (1); the server assembly (3) is provided with an anti-insect heat dissipation assembly (4) on one side; The anti-insect heat dissipation assembly (4) comprises first and second anti-insect assemblies (41, 42), which are symmetrically arranged with the server assembly (3) as the center; the first and second anti-insect assemblies (41, 42) each comprise an anti-insect net frame (401), an anti-insect net body (402), a louver (403), a fan fixing frame (404) and a fan body (405); the anti-insect net frame (401) is fixedly installed in the terminal control cabinet body (1); the anti-insect net frame (401) is fixedly connected with the anti-insect net body (402) on one side; the anti-insect net body (402) is provided with the louver (403) on one side; the anti-insect net frame (401) is provided with the fan fixing frame (404) on the top; the fan fixing frame (404) is provided with the fan body (405) on the top; and the rotating directions of the fan bodies (405) in the first and second anti-insect assemblies (41, 42) are opposite.
2. A terminal device for remotely controlling an agricultural machine according to claim 1, characterized in that: The server assembly (3) comprises a support block (301), an inner cabinet body (302) and a server body (303); the support block (301) is fixedly installed at the bottom of the terminal control cabinet body (1); the support block (301) is fixedly installed with the inner cabinet body (302) on the top; and the inner cabinet body (302) is provided with the server body (303) in the inside.
3. The terminal device for remotely controlling an agricultural machine according to claim 1, characterized by: The first and second anti-insect assemblies (41, 42) further comprise first and second heat dissipation assemblies (406, 407); the first and second heat dissipation assemblies (406, 407) are fixedly connected with the heat conduction structure in the server body (303); and the first and second heat dissipation assemblies (406, 407) each comprise a plurality of transverse heat dissipation fins.
4. The terminal device for remotely controlling an agricultural machine according to claim 1, characterized by: The terminal control cabinet body (1) is provided with heat dissipation openings on the left and right sides; and the louvers (403) in the first and second anti-insect assemblies (41, 42) are fixedly connected in the heat dissipation openings; the louver (403) in the first anti-insect assembly (41) is an air inlet baffle; and the louver (403) in the second anti-insect assembly (42) is an air outlet baffle.
5. A terminal device for remotely controlling an agricultural machine according to claim 3, characterized in that: The transverse heat dissipation fins in the first and second heat dissipation assemblies (406, 407) are arranged between the inner cabinet body (302) and the terminal control cabinet body (1); and the terminal control cabinet body (1), the cabinet door (2), the first and second heat dissipation assemblies (406, 407), the first and second anti-insect assemblies (41, 42) jointly form an air heat dissipation passage.
6. The terminal device for remotely controlling an agricultural machine according to claim 1, characterized by: The insect-proof net body (402) is fixedly installed on one side of the insect-proof net frame (401) through bolts, and the mesh size of the insect-proof net body (402) is 40 meshes.
7. The terminal device for remotely controlling an agricultural machine according to claim 1, characterized by: The fan fixing frame (404) is fixedly connected between the terminal control cabinet body (1) and the inner cabinet body (302), and the fan fixing frame (404) in the first insect-proof assembly (41) and the second insect-proof assembly (42) divides the cavity in the terminal control cabinet body (1) and the inner cabinet body (302) into two cavities in upper and lower positions, wherein the upper cavity is a heat dissipation cavity.