Heat dissipation type computer
By designing a heat dissipation structure with round holes, inserts, and surrounding water channels on the bottom of the laptop, effective coolant circulation and heat dissipation are achieved, solving the problem of heat leakage, extending the computer's lifespan, and providing convenient angle adjustment.
Patent Information
- Application Number
- CN202422948278.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing heat-dissipating computers are prone to heat dissipation device leakage during prolonged operation, which can cause coolant to damage internal electronic components and affect the computer's lifespan.
A heat dissipation structure was designed, including a circular hole at the bottom of the laptop, a plug, a rotating component, a protective shell, a surrounding water channel, and a power component. It absorbs and cools heat through coolant circulation, prevents leakage, and uses a fan to assist in heat dissipation.
Effective heat dissipation extends the computer's lifespan, prevents coolant leaks from damaging internal components, and provides convenient angle adjustment for easy operation.
Smart Images

Figure CN223679605U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of heat dissipation device technology, and in particular to heat-dissipating computers. Background Technology
[0002] A thermally cooled computer is a computer system specifically designed for handling high-power, heat-generating computing tasks, particularly in computers and laptops. The computer's thermal design is intended to manage the heat generated by components such as the central processing unit (CPU), graphics processing unit (GPU), memory, hard disk drive (HDD), or solid-state drive (SSD) during operation, ensuring stable system operation and extending its lifespan.
[0003] In the existing technology, some heat-dissipating computers have one or more fans installed in the chassis to help cool down, carrying away heat through airflow. They usually work together with heat sinks to ensure computer performance and stability and extend the lifespan of computer hardware. However, in some heat-dissipating computers, the cooling device cannot dissipate some of the heat generated by the computer under long-term operation. In such cases, additional cooling structures are often installed. These cooling structures are prone to leakage problems, which can cause the coolant to damage the electronic components inside the computer, rendering the computer unusable. Utility Model Content
[0004] The heat-dissipating computer proposed in this utility model aims to improve the problem of some existing heat-dissipating computers where installing additional heat dissipation structures causes damage to the internal electronic components of the computer during cable unloading.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] A heat-dissipating computer, including a laptop, has multiple circular holes on both sides of its bottom. A plug is slidably connected inside each hole. A connecting rod is fixedly connected to the bottom of each plug. A rotating assembly for rotating the connecting rod is fixedly connected to the outside of the connecting rod. A protective shell is fixedly connected to the outside of the rotating assembly. A pressing rod is slidably connected inside the protective shell. A spring assembly for providing elasticity to allow a sliding plate to slide is fixedly connected to the bottom of the pressing rod. A surrounding water channel is fixedly connected inside the protective shell. An output pipe is fixedly connected to one end of the surrounding water channel. A power assembly for providing power to draw coolant from the surrounding water channel is fixedly connected to one end of the output pipe. An input pipe is fixedly connected to the output end of the power assembly. A base plate is fixedly connected to the bottom of the power assembly.
[0007] The insertion rod can be inserted into the round hole to fix the protective shell on the notebook computer, the protective shell is used to connect the insertion rod and the rotating assembly, the rotating assembly allows the insertion rod to rotate, the pressing rod is used to push the sliding plate, the elastic assembly provides elastic force for the sliding plate, and the sliding plate can be pressed against the connecting rod, the heat conduction plate is tightly surrounded by the water channel, the cooling liquid in the water channel is circulated, the heat conduction plate absorbs the heat transferred by the heat conduction plate, the power assembly provides power to extract and input the cooling liquid, the input pipe inputs the cooling liquid into the power assembly, and the bottom plate is used to support the power assembly.
[0008] As a further description of the above technical solutions:
[0009] The rotating assembly comprises a rotating shaft one, and the outer portion of the rotating shaft one is fixedly connected with a fixed block.
[0010] The rotating shaft one and the fixed block are rotationally connected, and the connecting rod connected with the rotating shaft one can rotate.
[0011] As a further description of the above technical solutions:
[0012] The elastic assembly comprises a telescopic rod, and the inner wall of the telescopic rod is fixedly connected with a spring.
[0013] The telescopic rod cooperates with the spring to provide elastic force and press against the sliding plate.
[0014] As a further description of the above technical solutions:
[0015] The power assembly comprises a water extractor, and the outer portion of the water extractor is fixedly connected with a water cooler.
[0016] The water extractor provides power to extract and input the cooling liquid, and the water cooler cools the cooling liquid.
[0017] As a further description of the above technical solutions:
[0018] The bottom of the notebook computer is fixedly connected with a supporting rod, the bottom of the protective shell is provided with a plurality of heat dissipation holes, and the top of the protective shell is slidably connected with a heat conduction plate.
[0019] The supporting rod is used to support the notebook computer, the heat dissipation holes are used to dissipate heat in the protective shell and keep air circulation, and the heat conduction plate is used to transfer heat generated by the notebook computer.
[0020] As a further description of the above technical solutions:
[0021] The bottom of the protective shell is fixedly connected with a sliding groove plate, the bottom of the sliding groove plate is slidably connected with a sliding rod, one end of the sliding rod is fixedly connected with a sliding block, and the outer portion of the sliding rod is fixedly connected with a handle.
[0022] The sliding groove plate is provided with a sliding groove, and simultaneously has the effects of storage and support.
[0023] Further description of the above technical scheme is as follows:
[0024] The inner portion of the sliding groove plate is rotatably connected with a rotating shaft two, the outer portion of the rotating shaft two is fixedly connected with a resisting rod, the inner wall of one end of the resisting rod is rotatably connected with a rotating shaft two, and the outer portion of the rotating shaft two is fixedly connected with an insertion block.
[0025] The resisting rod is rotatably connected with the sliding groove plate through the rotating shaft two, and is used for abutting against the multi-hole plate.
[0026] Further description of the above technical scheme is as follows:
[0027] One end of the inner wall of the sliding groove plate is rotatably connected with a rotating shaft one, the outer portion of the rotating shaft one is fixedly connected with a multi-hole plate, the inner wall of the multi-hole plate is provided with a plurality of insertion holes, and the bottom of the multi-hole plate is provided with a slotted hole.
[0028] The multi-hole plate is rotatable through the rotating shaft one and is used for supporting the notebook computer.
[0029] The utility model has the advantages of the following beneficial effects:
[0030] 1、 the utility model discloses when the notebook computer is operated, the protective shell is placed under the notebook computer, the heat-conducting plate is attached to the bottom of the notebook computer, the insertion rod is inserted into the round hole by pressing the pressing rod, and the protective shell is fixed, the heat generated by the notebook computer is absorbed by the cooling liquid in the surrounding water channel, the cooling liquid is circulated by the water extractor, the cooling liquid that absorbs heat is cooled by the water cooler, the effect that the external computer radiator is cooled is achieved, the service life of the computer is prolonged, and leakage is avoided, and the cooling liquid is prevented from damaging the inside of the notebook computer.
[0031] 2、 the utility model discloses holding the handle, sliding the sliding block, the resisting rod is rotatable through the rotating shaft two, the sliding block is slid against the resisting rod, the multi-hole plate is lifted by adjusting the angle, and the insertion block can be inserted into the corresponding insertion hole, the computer is supported, the computer can be adjusted to the suitable angle, and personnel can operate the computer conveniently. DRAWINGS
[0032] Figure 1 The utility model discloses a three -dimensional view of heat dissipation type computer is provided for the utility model discloses a three -dimensional view of heat dissipation type computer;
[0033] Figure 2 The utility model discloses a support rod structure schematic view of heat dissipation type computer is provided for the utility model discloses a support rod structure schematic view of heat dissipation type computer;
[0034] Figure 3 The utility model discloses a water cooler structure schematic view of heat dissipation type computer is provided for the utility model discloses a water cooler structure schematic view of heat dissipation type computer;
[0035] Figure 4 The utility model discloses a fixed block structure schematic view of heat dissipation type computer is provided for the utility model discloses a fixed block structure schematic view of heat dissipation type computer;
[0036] Figure 5 The utility model discloses a spring structure schematic view of heat dissipation type computer is provided for the utility model discloses a spring structure schematic view of heat dissipation type computer;
[0037] Figure 6 The utility model discloses a handle structure schematic view of heat dissipation type computer is provided for the utility model discloses a handle structure schematic view of heat dissipation type computer;
[0038] Figure 7 The utility model discloses a perforated plate structure schematic view of heat dissipation type computer is provided for the utility model discloses a perforated plate structure schematic view of heat dissipation type computer;
[0039] Figure 8 The utility model discloses an insert block structure schematic view of heat dissipation type computer is provided for the utility model discloses an insert block structure schematic view of heat dissipation type computer.
[0040] Legend:
[0041] 1, notebook computer, 2, round hole, 3, insert rod, 4, connecting rod, 5, rotating shaft one, 6, fixed block, 7, protective shell, 8, sliding plate, 9, press rod, 10, telescopic rod, 11, spring, 12, heat dissipation hole, 13, heat conduction plate, 14, encircle water channel, 15, output pipe, 16, water extractor, 17, water cooler, 18, input pipe, 19, bottom plate, 20, support rod, 21, sliding groove plate, 22, rotating shaft one, 23, perforated plate, 24, insert hole, 25, slotted hole, 26, rotating shaft two, 27, resist rod, 28, rotating shaft two, 29, insert block, 30, sliding rod, 31, sliding block, 32, handle. Specific implementation
[0042] The technical scheme in the embodiments of the utility model will be apparently and completely described below with reference to the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative work belong to the range of protection of the utility model.
[0043] Reference Figure 1 , Figure 4 and Figure 5The utility model provides an embodiment: heat dissipation type computer, including notebook 1, a small, portable personal computer is the important tool of modern digital office and electronic game entertainment, is also personal portable office, study and entertainment equipment, the bottom both sides of notebook 1 are provided with multiple round holes 2, the round hole 2 is used for the hole of the insertion of plug rod 3, is used for connecting protective housing 7 and notebook 1, the inside sliding connection of multiple round holes 2 has plug rod 3, the bottom fixed connection of plug rod 3 has connecting rod 4, is used for connecting plug rod 3 and rotating assembly, the outside fixed connection of connecting rod 4 has rotating assembly, is used for letting connecting rod 4 rotate, the outside fixed connection of rotating assembly has protective housing 7, in order to protect the inside encircle water channel 14, the inside sliding connection of protective housing 7 has pressing rod 9, the bottom fixed connection of pressing rod 9 has elastic component, pressing rod 9 is connected with sliding plate 8, provides the elastic force of elastic component and lets sliding plate 8 slide, lets sliding plate 8 unbind to connecting rod 4 and let plug rod 3 can move, the inside fixed connection of protective housing 7 has encircle water channel 14, and the inside flows cooling liquid, is used for absorbing the heat that heat conduction plate 13 passes, and one end outside fixed connection of encircle water channel 14 has output pipe 15, and cooling liquid is output to encircle water channel 14, and one end fixed connection of output pipe 15 has power component, is used for providing power to extract and input cooling liquid in encircle water channel 14, and the output end fixed connection of power component has input pipe 18, transports the cooling liquid in encircle water channel 14 to water cooler 17, and the bottom fixed connection of power component has bottom plate 19, is used for supporting water cooler 17 and water pump 16.
[0044] Referring to Figure 4 , Figure 5 Rotating assembly includes rotating shaft one 5, the outside fixed connection of rotating shaft one 5 has fixed block 6, rotating shaft one 5 and fixed block 6 form the effect of hinge, let connecting rod 4 can rotate, elastic component includes telescopic link 10, the inner wall fixed connection of telescopic link 10 has spring 11, one end fixed connection of spring 11 has sliding plate 8, telescopic link 10 cooperates spring 11 and provides elastic force, to let sliding plate 8 resist connecting rod 4, power component includes water pump 16, provides power, is used for the extraction and output of cooling liquid, the outside fixed connection of water pump 16 has water cooler 17, and the cooling liquid with heat is cooled.
[0045] Referring to Figure 2 , Figure 3 and Figure 6The bottom of the laptop 1 is fixedly connected to a support rod 20 to support the laptop 1 and prevent the laptop 1 from touching the desktop, which would prevent the heat from being effectively dissipated. The bottom of the protective shell 7 has multiple heat dissipation holes 12 to dissipate the heat inside the protective shell 7. The top of the protective shell 7 is slidably connected to a heat conduction plate 13, which is attached to the bottom of the laptop 1. At the same time, the surrounding water channel is attached to the heat conduction plate 13 to allow the coolant to circulate. The heat generated by the laptop 1 is transferred to the surrounding water channel 14 and absorbed by the coolant circulating inside the surrounding water channel 14. The bottom of the protective shell 7 is fixedly connected to a sliding plate 21 with a sliding rail, which serves as both a connection and support. The bottom of the sliding plate 21 is slidably connected to a sliding rod 30. One end of the sliding rod 30 is fixedly connected to a slider 31. The outside of the sliding rod 30 is fixedly connected to a handle 32. By holding the handle 32 and pulling the sliding rod 30, the slider 31 is moved to slide against the abutment rod 27, allowing the abutment rod 27 to be lifted and its angle adjusted.
[0046] Reference Figure 7 , Figure 8 The slide plate 21 is internally connected to a rotating shaft 26, which allows the abutment 27 to be rotatably connected to the slide plate 21. The abutment 27 is externally fixedly connected to the rotating shaft 26 to hold the perforated plate 23 and provide support. The inner wall of one end of the abutment 27 is rotatably connected to a rotating shaft 28, which allows the insert 29 to rotate. The outer wall of the rotating shaft 28 is fixedly connected to the insert 29, which is used to insert into the hole opened in the perforated plate 23 to fix the perforated plate 23 and the rotated abutment 27. The inner wall of one end of the slide plate 21 is rotatably connected to a rotating shaft 22, which allows the perforated plate 23 to rotate. The outer wall of the rotating shaft 22 is fixedly connected to the perforated plate 23, which works with the abutment 27 to support the notebook 1. The inner wall of the perforated plate 23 has multiple insertion holes 24 for the insert 29 to be inserted. The bottom of the perforated plate 23 has a slotted hole 25 to accommodate the slider 31 and prevent the slider 31 from pushing up the abutment 27.
[0047] Working principle: Pressing the pressing lever 9 pushes the sliding plate 8 inward, compressing the spring 11 and causing it to deform, so that the sliding plate 8 no longer limits the connecting rod 4. Align the support rod 20 of the laptop 1 with the holes at the four corners of the protective shell 7, and insert the support rod 20 into these holes. Place the laptop 1 on the heat conduction plate 13, release the pressing lever 9, and let the spring 11 and the telescopic rod 10 provide elastic force to push the sliding plate 8 outward. Insert the insertion rod 3 into the round hole 2, so that the sliding plate 8 abuts against the connecting rod 4 to achieve a fixed effect. The laptop 1 is fixedly connected to the protective shell 7, allowing the cooling system to be externally connected to the laptop, avoiding coolant leakage that could damage the internal components of the laptop.
[0048] Hold the handle 32 and pull it to make the connected sliding rod 30 slide along the groove of the slide plate 21, so that the slider 31 stored in the slotted hole 25 can slide. As the slider 31 slides, its top will push up the abutment 27. The abutment 27 is rotatably connected to the slide plate 21 through the second rotating shaft 26. The closer to the second rotating shaft 26, the greater the rotation angle of the abutment 27. At the same time, the perforated plate 23 is rotatably connected to the slide plate 21 through the abutment 27. Since the perforated plate 23 is above the abutment 27, when the abutment 27 rotates, it will push up the perforated plate 23 and drive the adjustment angle of the perforated plate 23, so that the laptop 1 can be adjusted to the angle required by the office worker. Rotate the insertion block 29 through the second rotating shaft 28 so that the insertion block 29 is inserted into the insertion hole 24 of the perforated plate 23, and fix the abutment 27 and the perforated plate 23 after rotation.
[0049] Finally, when the laptop 1 is working, the internal fan and the water pump 16 are activated simultaneously. The coolant in the water cooler 17 is delivered to the surrounding water channel 14 through the output pipe 15. The surrounding water channel 14 is fixedly connected to the heat conduction plate 13, allowing the coolant to flow in the surrounding water channel 14 and contact the heat conduction plate 13 to absorb the heat generated by the laptop 1 during operation. The coolant that has absorbed heat is then input into the water cooler 17 through the input pipe 18 for cooling. After cooling, the coolant returns to the surrounding water channel 14 through the output pipe 15 to circulate and absorb the heat generated by the laptop 1, thus achieving a cooling effect.
[0050] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A computer of the dissipative type comprising a notebook (1) characterised in that: The bottom of the notebook (1) is provided with a plurality of round holes (2), and the bottom of the notebook (1) is provided with holes at four corners, the inside of the plurality of round holes (2) is slidably connected with a plug rod (3), the bottom of the plug rod (3) is fixedly connected with a connecting rod (4), the outside of the connecting rod (4) is fixedly connected with a rotating assembly for rotating the connecting rod (4), the outside of the rotating assembly is fixedly connected with a protective shell (7), the inside of the protective shell (7) is slidably connected with a pressing rod (9), the bottom of the pressing rod (9) is fixedly connected with an elastic assembly for providing elastic force to enable the sliding plate (8) to slide, the inside of the protective shell (7) is fixedly connected with a surrounding water channel (14), one end of the outside of the surrounding water channel (14) is fixedly connected with an output pipe (15), one end of the output pipe (15) is fixedly connected with a power assembly for providing power to extract the coolant in the surrounding water channel (14), the output end of the power assembly is fixedly connected with an input pipe (18), and the bottom of the power assembly is fixedly connected with a bottom plate (19).
2. The heat dissipating computer according to claim 1, wherein: The rotating assembly comprises a rotating shaft one (5), and the outside of the rotating shaft one (5) is fixedly connected with a fixed block (6).
3. The heat dissipating computer of claim 1, wherein: The elastic assembly comprises a telescopic rod (10), and the inner wall of the telescopic rod (10) is fixedly connected with a spring (11).
4. The heat dissipating computer of claim 1, wherein: The power assembly comprises a water extractor (16), and the outside of the water extractor (16) is fixedly connected with a water cooler (17).
5. The heat dissipating computer of claim 1, wherein: The bottom of the notebook (1) is fixedly connected with a supporting rod (20), the bottom of the protective shell (7) is provided with a plurality of heat dissipation holes (12), and the top of the protective shell (7) is slidably connected with a heat conduction plate (13).
6. The heat dissipating computer of claim 1, wherein: The bottom of the protective shell (7) is fixedly connected with a sliding groove plate (21), the bottom of the sliding groove plate (21) is slidably connected with a sliding rod (30), one end of the sliding rod (30) is fixedly connected with a sliding block (31), and the outside of the sliding rod (30) is fixedly connected with a handle (32).
7. The heat dissipating computer of claim 6, wherein: The inside of the sliding groove plate (21) is rotatably connected with a rotating shaft two (26), the outside of the rotating shaft two (26) is fixedly connected with an abutting rod (27), one end of the inside of the abutting rod (27) is rotatably connected with a rotating shaft two (28), and the outside of the rotating shaft two (28) is fixedly connected with a plug block (29).
8. The heat dissipating computer of claim 6, wherein: One end of the inside of the sliding groove plate (21) is rotatably connected with a rotating shaft one (22), the outside of the rotating shaft one (22) is fixedly connected with a perforated plate (23), a plurality of insertion holes (24) are formed in the inner wall of the perforated plate (23), and a slotted hole (25) is formed in the bottom of the perforated plate (23).