Host with heat dissipation device and heat dissipation method thereof
By designing heat dissipation slots, heat dissipation holes, support mechanisms, and cooling mechanisms on the main unit, and utilizing hydraulic components and pulley mechanisms to achieve quick disassembly of the cooling mechanism, the problem of inconvenient disassembly of existing main unit heat dissipation devices is solved, improving heat dissipation efficiency and maintenance convenience.
Patent Information
- Application Number
- CN202511115857.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-11
- Publication Date
- 2025-11-18
AI Technical Summary
The external structure of the heat dissipation device of the existing host is fixed to the host casing, which is inconvenient to disassemble and increases the difficulty of maintenance.
A main unit structure including heat dissipation grooves, heat dissipation holes, support mechanism and cooling mechanism is designed. The cooling mechanism can be quickly disassembled and installed through hydraulic components and pulley mechanism. Dustproof net and non-slip grip are used to improve the convenience and stability of operation.
It enables rapid cooling and heat dissipation of the host, and facilitates quick disassembly and repair in case of cooling mechanism failure, reducing the difficulty of maintenance.
Smart Images

Figure CN120973199A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to a host computer technology field, in particular to a host computer with a heat dissipation device and a heat dissipation method thereof. BACKGROUND
[0002] It is known that a host computer (English: Host) generally refers to a main part of a computer system for data processing and operation, including all internal hardware components and certain software systems, and the host computer generally comprises a heat dissipation mechanism, so as to facilitate internal cooling of the host computer. In order to enhance the heat dissipation effect of the existing host computer, an external heat dissipation structure is generally added to the host computer, so as to improve the heat dissipation efficiency.
[0003] However, the external heat dissipation mechanism of the existing host computer with a heat dissipation device is generally fixed on the host shell and is inconvenient to disassemble. When the heat dissipation mechanism on the host shell fails, it is inconvenient to disassemble the heat dissipation mechanism for individual maintenance, and the subsequent maintenance difficulty is easily increased. SUMMARY
[0004] (I) Technical problems solved
[0005] In view of the deficiencies in the prior art, the application provides a host computer with a heat dissipation device and a heat dissipation method thereof.
[0006] (II) Technical solutions
[0007] To achieve the above objectives, the present invention provides the following technical solution: a host with a heat dissipation device, comprising a body, a heat dissipation groove, heat dissipation holes, a first support mechanism, a second support mechanism, and a cooling mechanism. The heat dissipation groove is formed on the body, and the heat dissipation holes are formed on the body. The first support mechanism and the second support mechanism are both disposed at the bottom of the body. The first support mechanism includes a first hydraulic component, a first support plate, and a first locking block. One end of the first hydraulic component is connected to the bottom of the body, and the other end of the first hydraulic component is connected to the first support plate. One end of the first locking block is connected to the first support plate. The second support mechanism includes a second hydraulic component, a second support plate, and a second locking block. One end of the second hydraulic component is connected to the body. The bottom is connected, the other end of the second hydraulic component is connected to the second support plate, one end of the second locking block is connected to the second support plate, the cooling mechanism includes a slide groove, a slider, a connecting plate, a cold air generator, a pulley mechanism, an iron frame, an electromagnet and an electric push rod. The slide groove is opened at the bottom of the machine body, one end of the slider is slidably connected to the slide groove, and the other end of the slider is connected to the connecting plate. The pulley mechanism is located at the bottom of the connecting plate, and there are several pulley mechanisms. The cold air generator is located on the connecting plate. One end of the electromagnet is connected to the first support plate, and the other end of the electromagnet is attracted to the iron frame. One end of the electric push rod is connected to the iron frame. The tops of the first locking block and the second locking block both extend into the connecting plate.
[0008] To improve the dustproof and heat dissipation effect, the present invention is improved in that a plurality of heat dissipation holes are provided, and a dustproof mesh is provided on the plurality of heat dissipation holes; a heat dissipation groove is provided on the plurality of heat dissipation holes, and a dustproof mesh is provided on the plurality of heat dissipation grooves.
[0009] To facilitate pushing the device, the present invention is improved by providing a handle on the connecting plate, the handle being fixedly connected to the connecting plate, and two handles being provided.
[0010] To achieve an anti-slip effect, the present invention is improved by providing an anti-slip layer on the outer wall of the grip, and the anti-slip layer is fixedly connected to the outer wall of the grip.
[0011] To facilitate operation of the equipment, the present invention is improved by providing a controller on the connecting plate, which is electrically connected to the cold air generator.
[0012] To improve stability, the present invention is improved by having several pulley mechanisms arranged symmetrically.
[0013] The present invention further provides a heat dissipation method for a host computer with a heat dissipation device, characterized by comprising the following steps:
[0014] Step 1: First, as shown in the figure, the pulley mechanism can place the equipment in the designated position. Then, start the first and second hydraulic components to drive the first and second support plates to descend, so that the first and second support plates contact the ground. This separates the pulley mechanism at the bottom of the connecting plate from the ground, and the first and second locking blocks on the first and second support plates will separate from the connecting plate. After the first support plate contacts the ground, the iron frame will also descend. The electric push rod on the iron frame and the slider are in a straight line. Then, start the electric push to make the electric push rod abut against the slider in the slide groove and limit its movement. Then, connect the external connecting line to the machine body. By starting the cold air generator, the cold air generator blows out cold air. The cold air enters the machine body through the heat dissipation slot, which can cool and dissipate heat inside the machine body. The heat dissipation holes can play an auxiliary heat dissipation role, making it easy to quickly dissipate the heat in the machine body.
[0015] Step 2: When the cold air generator malfunctions after prolonged use and requires repair, control the first and second support mechanisms to support the equipment, separating the pulley mechanism from the ground. Then, activate the electric push rod to retract it to its shortest position, and then deactivate the electromagnet to prevent it from adhering to the iron frame, separating the iron frame from the first support plate. Next, pull the connecting plate to separate the slider from the slide groove. After the slider and slide groove are separated, the pulley mechanism will contact the ground. At least two workers are required to pull the connecting plate to separate the cold air generator from the equipment, which can then be sent to the designated repair location for repair.
[0016] (III) Beneficial Effects
[0017] Compared with the prior art, the present invention provides a host computer with a heat dissipation device and a heat dissipation method thereof, which has the following beneficial effects:
[0018] This main unit with a heat dissipation device and its heat dissipation method can quickly cool the main unit by setting a cooling mechanism on the outside of the main unit, and then using heat dissipation grooves and heat dissipation holes. This avoids the situation where the heat dissipation efficiency of the heat dissipation mechanism built into the main unit is poor. When the cooling mechanism fails after long-term use and needs to be repaired, the cooling mechanism can be quickly separated from the main unit by controlling the first support mechanism, the second support mechanism and the cooling mechanism. Then it can be sent to the designated repair location for repair. This avoids the situation where the subsequent repair is more difficult due to the inconvenience of disassembly, as is the case with traditional structures. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of the present invention;
[0020] Figure 2 For the present invention Figure 1 A magnified schematic diagram of the local structure at point A;
[0021] Figure 3 This is a schematic diagram of the axial structure of the present invention;
[0022] Figure 4 For the present invention Figure 1 Side view;
[0023] In the diagram: 1. Body; 2. Heat dissipation groove; 3. Heat dissipation hole; 4. First support mechanism; 5. First hydraulic component; 6. First support plate; 7. Second support mechanism; 8. Second hydraulic component; 9. Second support plate; 10. Second locking block; 11. Cooling mechanism; 12. Slider; 13. Connecting plate; 14. Cold air generator; 15. Pulley mechanism; 16. Iron frame; 17. Electromagnet; 18. Electric push rod; 19. Handle; 20. Controller; 21. First locking block. Detailed Implementation
[0024] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0025] Please see Figures 1-4A main unit with a heat dissipation device includes a body 1, a heat dissipation groove 2, heat dissipation holes 3, a first support mechanism 4, a second support mechanism 7, and a cooling mechanism 11. The heat dissipation groove 2 and the heat dissipation holes 3 are formed on the body 1. The first support mechanism 4 and the second support mechanism 7 are both located at the bottom of the body 1. The first support mechanism 4 includes a first hydraulic component 5, a first support plate 6, and a first locking block 21. One end of the first hydraulic component 5 is connected to the bottom of the body 1, and the other end of the first hydraulic component 5 is connected to the first support plate 6. One end of the first locking block 21 is connected to the first support plate 6. The second support mechanism 7 includes a second hydraulic component 8, a second support plate 9, and a second locking block 10. One end of the second hydraulic component 8 is connected to the bottom of the machine body 1, and the other end of the second hydraulic component 8 is connected to the second support plate 9. One end of the second locking block 10 is connected to the second support plate 9. The cooling mechanism 11 includes a slide groove, a slider 12, a connecting plate 13, a cooling generator, a pulley mechanism 15, an iron frame 16, an electromagnet 17, and an electric push rod 18. The slide groove is located at the bottom of the machine body 1. One end of the slider 12 is slidably connected to the slide groove, and the other end of the slider 12 is connected to the connecting plate 13. The pulley mechanism 15 is located at the bottom of the connecting plate 13, and there are several pulley mechanisms 15. The cooling generator is located on the connecting plate 13, and one end of the electromagnet 17 is connected to the first support plate 6. The other end of the electromagnet 17 is attracted to the iron frame 16. One end of the electric push rod 18 is connected to the iron frame 16. The tops of the first locking block 21 and the second locking block 10 both extend into the connecting plate 13. In this embodiment, the equipment can be placed in a designated position through the pulley mechanism 15. Then, the first hydraulic component 5 and the second hydraulic component 8 are activated to drive the first support plate 6 and the second support plate 9 to descend, so that the first support plate 6 and the second support plate 9 contact the ground. The first locking block 21 and the second locking block 10 on the first support plate 6 and the second support plate 9 will separate from the connecting plate 13. After the first support plate 6 contacts the ground, the iron frame 16 will also descend. Then, the electric push is activated to make the electric push rod 18 abut against the slider 12 in the slide groove, limiting its movement. By activating the cold air generator, cold air is blown out and enters the unit 1 through the heat dissipation slot 2, thus cooling the interior of the unit 1. When the cold air generator malfunctions after prolonged use and requires maintenance, the first support mechanism 4 and the second support mechanism 7 are controlled to support the equipment, separating the pulley mechanism 15 from the ground. Then, the electric push rod 18 is activated, retracting to its shortest position. The electromagnet 17 is then deactivated, preventing it from adhering to the iron frame 16, thus separating the iron frame 16 from the first support plate 6. Next, the connecting plate 13 is pulled, separating the slider 12 from the slide groove. After separation, the pulley mechanism 15 contacts the ground, thus separating the cold air generator from the equipment. It can then be transported to the designated maintenance location for repair.The main unit described in this article uses standard commercial technology. Internally, it includes a processor, cooling mechanism 11, motherboard, controller 20, power supply mechanism, etc., which will not be described in detail here. The connection plate 13 houses a battery that powers the cooling generator and has a charging port for charging the battery. This structure can also be connected to external AC power to supply power to the device. The slider 12 and slide rail in this article are both T-shaped. The hydraulic components described are also standard commercial technology; their specific structure and drive method will not be described in detail here. The electromagnet 17 in this article is also standard commercial technology and will not be described in detail here. The electric actuator 18 mentioned in this article is a conventional technology available on the market, comprising two cylinders of different sizes, a motor, a lead screw drive structure, a switch, and other components. The specific working principle is well understood by those skilled in the art and will not be described in detail here. The cool air generator mentioned in this article is a conventional small cool air generator available on the market, comprising a fan, cooling system, water tank, casing, filter mechanism, and other structures. Its specific working principle will not be described in detail here. The control method of this invention is through manual start and stop of the switch. The wiring diagram of the power components and the power supply are common knowledge in the field. Furthermore, this invention is primarily intended to protect mechanical devices; therefore, the control method and wiring layout will not be explained in detail here.
[0026] The heat dissipation holes 3 and heat dissipation grooves 2 mentioned above have poor dust prevention and heat dissipation effects. In order to solve this problem, in this embodiment, a plurality of heat dissipation holes 3 are provided, and a dustproof mesh is provided on the plurality of heat dissipation holes 3. The heat dissipation grooves 2 are provided on the plurality of heat dissipation holes 3, and a dustproof mesh is provided on the plurality of heat dissipation grooves 2.
[0027] The aforementioned device is inconvenient to move. To solve this problem, in this embodiment, the connecting plate 13 is provided with a handle 19, which is fixedly connected to the connecting plate 13. There are two handles 19.
[0028] The aforementioned grip 19 has poor anti-slip effect on its outer wall. When the worker's hand comes into contact with the outer wall of the grip 19, it is easy for the hand to slip. In order to solve this problem, in this embodiment, the outer wall of the grip 19 is provided with an anti-slip layer, and the anti-slip layer is fixedly connected to the outer wall of the grip 19.
[0029] The above-mentioned equipment is inconvenient to operate. In order to solve this problem, in this embodiment, the connecting plate 13 is provided with a controller 20, which is electrically connected to the cold air generator.
[0030] The stability of the pulley mechanism 15 is poor. To solve this problem, in this embodiment, several pulley mechanisms 15 are symmetrically arranged.
[0031] The present invention further provides a heat dissipation method for a host computer with a heat dissipation device, characterized by comprising the following steps:
[0032] Step 1, firstly as follows Figure 1 As shown, the pulley mechanism 15 can place the equipment in a designated position. Then, the first hydraulic component 5 and the second hydraulic component 8 are activated to drive the first support plate 6 and the second support plate 9 to descend, so that the first support plate 6 and the second support plate 9 contact the ground. This causes the pulley mechanism 15 at the bottom of the connecting plate 13 to separate from the ground. The first locking block 21 and the second locking block 10 on the first support plate 6 and the second support plate 9 will separate from the connecting plate 13. After the first support plate 6 contacts the ground, the iron frame 16 will also descend. The electric push rod 18 on the iron frame 16 is in the same straight line as the slider 12. Then, the electric push is activated to make the electric push rod 18 abut against the slider 12 in the slide groove and limit its movement. Then, the external connecting line is connected to the machine body 1. By activating the cold air generator, the cold air generator blows out cold air. The cold air enters the machine body 1 through the heat dissipation slot 2, which can cool and dissipate heat inside the machine body 1. The heat dissipation hole 3 can play an auxiliary heat dissipation role, which facilitates the rapid discharge of heat from the machine body 1.
[0033] Step 2: When the cold air generator malfunctions after prolonged use and requires repair, control the first support mechanism 4 and the second support mechanism 7 to support the equipment, separating the pulley mechanism 15 from the ground. Then, activate the electric push rod 18 to retract it to its shortest position, and then turn off the electromagnet 17 so that it no longer attracts the iron frame 16, separating the iron frame 16 from the first support plate 6. Then, pull the connecting plate 13 to separate the slider 12 from the slide groove. After the slider 12 is separated from the slide groove, the pulley mechanism 15 will contact the ground. At least two workers are required to pull the connecting plate 13 to separate the cold air generator from the equipment, which can then be sent to the designated repair location for repair.
[0034] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A mainframe with a heat dissipation device, comprising a main body (1), a heat dissipation groove (2), a heat dissipation hole (3), a first supporting mechanism (4), a second supporting mechanism (7) and a cooling mechanism (11), characterized in that: The heat dissipation groove (2) is opened on the machine body (1), the heat dissipation hole (3) is opened on the machine body (1), the first support mechanism (4) and the second support mechanism (7) are arranged on the bottom of the machine body (1), the first support mechanism (4) comprises a first hydraulic assembly (5), a first support plate (6) and a first clamping block (21), one end of the first hydraulic assembly (5) is connected with the bottom of the machine body (1), the other end of the first hydraulic assembly (5) is connected with the first support plate (6), one end of the first clamping block (21) is connected with the first support plate (6), the second support mechanism (7) comprises a second hydraulic assembly (8), a second support plate (9) and a second clamping block (10), one end of the second hydraulic assembly (8) is connected with the bottom of the machine body (1), the other end of the second hydraulic assembly (8) is connected with the second support plate (9), one end of the second clamping block (10) is connected with the second support plate (9), the cooling mechanism (11) comprises a chute, a sliding block (12), a connecting plate (13), a cold air generator, a pulley mechanism (15), an iron frame (16), an electromagnet (17) and an electric push rod (18), the chute is opened on the bottom of the machine body (1), one end of the sliding block (12) is connected with the chute in a sliding mode, the other end of the sliding block (12) is connected with the connecting plate (13), the pulley mechanism (15) is arranged on the bottom of the connecting plate (13), the pulley mechanism (15) is provided with a plurality of, the cold air generator is arranged on the connecting plate (13), one end of the electromagnet (17) is connected with the first support plate (6), the other end of the electromagnet (17) is adsorbed to the iron frame (16), one end of the electric push rod (18) is connected with the iron frame (16), the first clamping block (21) and the second clamping block (10) are arranged in the connecting plate (13).
2. The host computer with a heat dissipation device according to claim 1, characterized in that: The heat dissipation hole (3) is provided with a plurality of dustproof nets, the heat dissipation groove (2) is provided with a plurality of dustproof nets.
3. The host computer with a heat dissipation device according to claim 2, characterized in that: The connecting plate (13) is provided with a handle (19), the handle (19) is fixedly connected with the connecting plate (13), and the handle (19) is provided with two.
4. The host computer with a heat dissipation device according to claim 3, characterized in that: The outer wall of the handle (19) is provided with an anti-skid layer, and the anti-skid layer is fixedly connected with the outer wall of the handle (19).
5. The host computer with a heat dissipation device according to claim 4, characterized in that: The connecting plate (13) is provided with a controller (20), and the controller (20) is electrically connected with the cold air generator.
6. The host computer with a heat dissipation device according to claim 5, characterized in that: A plurality of pulley mechanisms (15) are symmetrically arranged.
7. The heat dissipation method of a host computer having a heat dissipation device according to claim 6, wherein: The method comprises the following steps: Step one, first as shown in FIG. 1, by pulley mechanism (15) can be placed in the designated location, then start the first hydraulic assembly (5) and the second hydraulic assembly (8), driven by the first support plate (6) and the second support plate (9) down, the first support plate (6) and the second support plate (9) with the ground contact, the connecting plate (13) bottom pulley mechanism (15) and the ground separation, the first support plate (6) and the second support plate (9) on the first block (21) and the second block (10) will be separated from the connecting plate (13), the first support plate (6) with the ground contact, iron frame (16) will also be lowered, the electric push rod (18) and the slider (12) in the same straight line on the iron frame (16), then start the electric push, make the electric push rod (18) and the slider (12) in the chute abutment, limit, then connect the external connecting line with the machine body (1), by starting the cold air generator, the cold air generator blows cold air, cold air through the heat sink (2) into the machine body (1), that is, the machine body (1) inside cooling, through the heat dissipation hole (3) can play the effect of auxiliary heat dissipation, facilitate the machine body (1) in the heat is quickly discharged; Step two, when the cold air generator is used for a long time, it needs to be repaired when it fails, control the first support mechanism (4) and the second support mechanism (7) to support the equipment, so that the pulley mechanism (15) is separated from the ground, then start the electric push rod (18), make the electric push rod (18) retract to the shortest position, then close the electromagnet (17), so that the electromagnet (17) is not in the adsorption iron frame (16), separate the iron frame (16) from the first support plate (6), then pull the connecting plate (13), so that the slider (12) is separated from the chute, after the slider (12) is separated from the chute, make the pulley mechanism (15) contact with the ground, when pulling the connecting plate (13), at least two workers are needed to pull, then the cold air generator can be separated from the equipment, then it can be sent to the designated repair site for repair.