A separate computer structure
The separate computer structure and liquid leakage protection system solve the problems of small hardware connection operation space and liquid cooling system leakage, achieving efficient assembly and safe heat dissipation, and reducing the risk of computer damage.
Patent Information
- Application Number
- CN202411784261.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2044-12-06
AI Technical Summary
In the existing technology, the hardware connection operation space is small and the wiring is complicated. The liquid cooling system has the risk of leakage, which may cause large-scale damage to the computer interior.
It adopts a separate computer structure, including a bottom mechanism, a main frame mechanism, a front side panel mechanism and a rear side panel mechanism. It is designed with a water-cooling pump head, a heat conduction plate, a heat dissipation fan and a leakage protection system. The spring telescopic rod and electromagnet achieve tight fit and quick separation to ensure the heat dissipation effect and protect the computer in case of leakage.
It improves hardware assembly efficiency, simplifies the wiring process, enhances heat dissipation, and quickly separates the water cooling system in the event of leakage, reducing the risk of damage to the computer.
Smart Images

Figure CN119718015B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of computer technology, and in particular to a separate computer structure. Background Art
[0002] A computer is an electronic device that can receive, store, process, and output data. Its main functions include performing arithmetic and logical operations, processing information, and conducting data analysis. The basic components of a computer include hardware: the physical components of the computer, such as the central processing unit (CPU), memory (RAM), hard drive, motherboard, monitor, keyboard, and mouse; and software: the series of programs and operating system responsible for controlling the hardware and performing specific tasks. Software is categorized as system software (such as the operating system) and application software (such as text processing and graphic design software). Computers are primarily used for data processing, information management, scientific computing, network communications, entertainment, and education, playing a vital role in modern society. With technological advancements, the functions and applications of computers are constantly expanding, including artificial intelligence, cloud computing, and big data analysis.
[0003] Current technology generally uses standardized computer cases to assemble the required hardware components. To reduce the chassis' footprint, the chassis design is often only adapted to the dimensions of the installed hardware. This limits the operating space for hardware connections and complicates the wiring process. Furthermore, for computers with high computing power requirements, the central processing unit (CPU) generates high temperatures during operation, often requiring a liquid cooling system to maintain this temperature. However, liquid cooling systems carry the risk of leakage during use, and in traditional designs, the liquid cooling system is installed directly between the motherboard and the CPU. If a leak occurs, it can cause extensive damage to the computer's internals. Summary of the Invention
[0004] (1) Technical problems solved
[0005] In response to the shortcomings of the existing technology, the present invention provides a separate computer structure, which solves the problems of small operating space during hardware connection, complex wiring process, and the risk of leakage of traditional liquid cooling systems during use, which may cause large-scale damage to the computer interior.
[0006] (2) Technical solution
[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: a split computer structure, comprising a bottom mechanism, a main frame mechanism being clamped and provided at the upper end of the bottom mechanism, a plurality of connecting bolts being provided between the upper end of the bottom mechanism and the lower end of the main frame mechanism, a front side panel mechanism being hingedly provided at the front end of the main frame mechanism, and a rear side panel mechanism being hingedly provided at a side of the main frame mechanism away from the front side panel mechanism;
[0008] The front side panel mechanism includes a front panel, an adjustment frame is fixedly provided on one side of the front panel close to the main frame mechanism, a water-cooling pump head is slidably provided inside the adjustment frame through a spring telescopic rod, a heat conduction sheet is fixedly provided at one end of the water-cooling pump head, transmission pipes are fixedly provided at both the output and input ends of the water-cooling pump head, one end of the two transmission pipes is connected to a heat dissipation pipe, a heat dissipation fan is fixedly provided at the front end of the heat dissipation pipe, and the heat dissipation fan is arranged throughout the interior of the front panel;
[0009] A graphics card frame is fixedly provided near the middle position inside the front panel, a sensing surface is embedded in the upper end of the graphics card frame, a graphics card interface is fixedly provided at the upper end inside the graphics card frame, a graphics card extension cable is fixedly provided at the rear end of the graphics card frame, the graphics card extension cable is connected to the graphics card interface, and a metal block is embedded in the side of the front panel close to the main frame mechanism.
[0010] Preferably, the rear side panel mechanism includes a rear side panel, which is hingedly arranged on the rear side of the main frame mechanism, a first ventilation hole is provided through the rear side panel, a first filter slot is provided on the rear side panel near the first ventilation hole, and a side door knob is rotatably provided on one side of the rear side panel.
[0011] Preferably, the main frame mechanism includes a main frame, an inner isolation frame is fixedly provided near the middle of the main frame, a mainboard connecting frame is fixedly provided on the side of the inner isolation frame close to the front side panel mechanism, a plurality of isolation columns are fixedly provided on the side of the mainboard connecting frame close to the front side panel mechanism, a plurality of wire threading holes are opened on the side of the mainboard connecting frame, and a mainboard wiring port is opened on one side of the main frame close to the position of the mainboard connecting frame.
[0012] Preferably, a graphics card wiring frame is provided on the main frame near the graphics card frame, a chassis panel is embedded in the main frame away from the mainboard wiring port, and a second filter slot is provided on the main frame near the chassis panel.
[0013] Preferably, a connecting drum is fixedly provided on one side of the main frame close to the front side panel mechanism, a connecting shaft is fixedly provided on one side of the front panel, and the connecting shaft is rotatably mounted inside the connecting drum.
[0014] Preferably, a sliding column is slidably connected to the inside of the main frame near the front side plate mechanism through a spring, and an electromagnet is embedded in the inside of the main frame near a fixed position of the sliding column.
[0015] Preferably, the bottom mechanism includes a bottom connecting frame, four sliding rods are slidably provided inside the bottom connecting frame, a power supply bracket is fixedly provided at one end of the four sliding rods, and a positioning knob is rotatably provided inside the power supply bracket.
[0016] Preferably, a fan slot is provided on one side of the bottom connecting frame, a third filter slot is provided on one side of the fan slot, a fan frame is slidingly provided inside the fan slot, a plurality of fan connection ports are fixedly provided inside the fan frame, support feet are fixedly provided at the lower end of the bottom connecting frame near the four corners, and a fourth filter slot is provided at the lower end of the bottom connecting frame.
[0017] Working Principle: When assembling computer hardware using this computer structure, first install the computer power supply on the power supply bracket. During the installation process, the power supply bracket can be driven by the sliding rod and the power supply bracket to slide to the outside of the bottom connection frame, thereby providing enough space for the power connection line to be connected. Then, install the fan into the fan frame and insert the fan frame into the fan slot. At this time, the installation of the bottom mechanism is completed.
[0018] Then, snap the main frame onto the upper end of the bottom mechanism and secure it with the connecting bolts. Install the computer motherboard onto the motherboard connection bracket and the isolation column. Connect the power cord to the corresponding interface on the motherboard. Pass the power cord through the threading hole during wiring to facilitate cable management. Connect the graphics card extension cable to the motherboard. The connection between the motherboard and the main frame is now complete. Arrange the power cord inside the main frame and close the rear and front side panels to complete the assembly of the computer host.
[0019] When closing the front side panel mechanism, the water-cooling pump head is first adjusted to the position corresponding to the CPU on the motherboard, so that the heat transfer plate can be attached to the CPU after closing. During the closing process, the spring telescopic rod provided on the water-cooling pump head is compressed, thereby making the water-cooling pump head fit more closely to the CPU, facilitating heat dissipation. During the heat dissipation process, the water-cooling pump head continuously transfers coolant from the heat pipe and the transmission pipe, so that the coolant can continuously remove the heat of the CPU through the heat transfer plate. The coolant is dissipated by the heat dissipation fan as it passes through the cooling pipe, thereby improving the heat dissipation effect for the CPU. In the event of leakage during the heat dissipation process, the coolant will drip onto the sensor surface. At this time, the sensor surface receives the leakage information and transmits it to the CPU, which quickly controls the electromagnet in the main frame mechanism to close. When the electromagnet is closed, the adsorption connection between the main frame mechanism and the front side panel mechanism is invalidated, and the sliding column also springs open the front side panel mechanism under the action of the spring. At this time, the water cooling system is separated from the computer motherboard, thereby realizing the leakage protection function and greatly reducing the scope of damage caused by the leakage to the computer.
[0020] (3) Beneficial effects
[0021] The present invention provides a split computer structure, which has the following beneficial effects:
[0022] 1. The present invention provides a separate computer structure. During installation, before closing the front side panel mechanism, the water-cooling pump head must first be adjusted to the corresponding position of the mainboard CPU. This ensures that the heat transfer plate fits tightly against the CPU when the front side panel is closed. During the closing process, the spring-loaded extension rod on the water-cooling pump head is compressed, ensuring a tight fit between the water-cooling pump head and the CPU, thereby optimizing heat dissipation. During the heat dissipation process, the water-cooling pump head continuously circulates coolant within the transmission tube, continuously removing heat generated by the CPU through the heat transfer plate. Simultaneously, the coolant is dissipated by the heat dissipation fan as it flows through the cooling tube, further improving CPU cooling efficiency. If leakage occurs during the heat dissipation process, the coolant will land on a sensor surface, which detects the leak and immediately transmits the information to the CPU. The CPU then quickly instructs the electromagnet to disconnect, deactivating the suction connection between the main frame mechanism and the front side panel mechanism. Under the action of the spring, the sliding column pushes the front side panel mechanism open, separating the water cooling system from the computer mainboard, implementing a leak protection function and effectively reducing potential damage to the computer caused by leakage.
[0023] 2. The present invention provides a split computer structure. During the assembly process of this computer structure, the computer power supply is first installed on the power supply bracket. During installation, the power supply bracket slides to the outside of the bottom connection frame via a sliding rod, providing ample space for the power connection cable. Subsequently, the fan is installed inside the fan frame and the fan frame is inserted into the fan slot. After the installation of the bottom mechanism is completed, the main frame mechanism is snapped onto the upper end of the bottom mechanism and secured with connecting bolts. Next, the computer motherboard is installed on the motherboard connection frame and isolation column, and the power cable is then connected to the corresponding interface on the motherboard and passed through the wire hole to simplify the cable management process. After that, the graphics card extension cable is connected to the motherboard to complete the connection between the motherboard and the main frame mechanism. Finally, the power cables inside the main frame mechanism are arranged, and the rear and front side panels on both sides are closed to complete the assembly of the computer host. This process greatly simplifies the assembly of computer hardware and allows the graphics card to be connected to the outside of the computer, which not only facilitates heat dissipation but also facilitates upgrading and replacing the graphics card. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is an axial side schematic diagram of the present invention;
[0025] Figure 2 It is an explosion diagram of the present invention;
[0026] Figure 3 This is an axial schematic diagram of the main frame mechanism of the present invention after it is unfolded;
[0027] Figure 4This is a schematic axial view of the main frame mechanism of the present invention;
[0028] Figure 5 It is an axial schematic diagram of the front side plate mechanism of the present invention;
[0029] Figure 6 It is an axial side schematic diagram of the bottom mechanism of the present invention.
[0030] Among them, 1. Rear side panel mechanism; 2. Main frame mechanism; 3. Front side panel mechanism; 4. Bottom mechanism; 5. Connecting bolts; 101. Side door knob; 102. First vent; 103. Rear side panel; 104. First filter slot; 201. Main frame; 202. Threading hole; 203. Motherboard connection frame; 204. Isolation column; 205. Motherboard connection port; 206. Sliding column; 207. Graphics card connection frame; 208. Connecting drum; 209. Chassis panel; 210. Inner isolation frame; 211. Second filter slot; 212. Electromagnet; 301 , metal block; 302, front panel; 303, heat pipe; 304, transmission pipe; 305, adjustment frame; 306, water-cooled pump head; 307, heat conduction plate; 308, connecting shaft; 309, sensing surface; 310, graphics card frame; 311, graphics card extension cable; 312, cooling fan; 401, fan frame; 402, fan connection port; 403, fan slot; 404, third filter slot; 405, fourth filter slot; 406, bottom connecting frame; 407, support foot; 408, sliding rod; 409, power supply bracket; 410, positioning knob. DETAILED DESCRIPTION
[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0032] Example:
[0033] like Figure 1 and 2 As shown, an embodiment of the present invention provides a split computer structure, including a bottom mechanism 4, a main frame mechanism 2 is clamped and provided at the upper end of the bottom mechanism 4, a plurality of connecting bolts 5 are provided between the upper end of the bottom mechanism 4 and the lower end of the main frame mechanism 2, a front side panel mechanism 3 is hingedly provided at the front end of the main frame mechanism 2, and a rear side panel mechanism 1 is hingedly provided at a side of the main frame mechanism 2 away from the front side panel mechanism 3;
[0034] Specifically, in the above-mentioned specific embodiment, during the hardware assembly process, the computer structure sequentially installs the bottom mechanism 4, the main frame mechanism 2, the front side panel mechanism 3 and the rear side panel mechanism 1, thereby reserving sufficient space during the hardware connection and wiring process, greatly facilitating the computer's combined assembly work and improving assembly efficiency.
[0035] like Figure 3 and 5 As shown, the front side panel mechanism 3 includes a front panel 302, an adjustment frame 305 is fixedly provided on the side of the front panel 302 close to the main frame mechanism 2, a water-cooling pump head 306 is slidably provided inside the adjustment frame 305 through a spring telescopic rod, one end of the water-cooling pump head 306 is fixedly provided with a heat conduction sheet 307, transmission pipes 304 are fixedly provided on the output and input ends of the water-cooling pump head 306, one end of the two transmission pipes 304 are connected to the heat dissipation pipe 303, a heat dissipation fan 312 is fixedly provided at the front end of the heat dissipation pipe 303, and the heat dissipation fan 312 is arranged throughout the front panel 302, a graphics card frame 310 is fixedly provided near the middle position inside the front panel 302, a sensing surface 309 is embedded in the upper end of the graphics card frame 310, a graphics card interface is fixedly provided on the upper end of the graphics card frame 310, a graphics card extension cable 311 is fixedly provided on the rear end of the graphics card frame 310, and the graphics card extension cable 311 is connected to the graphics card interface, and a metal block 301 is embedded on the side of the front panel 302 close to the main frame mechanism 2;
[0036] Specifically, in the above-described embodiment, when closing the front panel mechanism 3, the position of the water-cooled pump head 306 must first be precisely adjusted to correspond to the precise position of the CPU on the motherboard. This process ensures that after closing the front panel mechanism 3, the heat transfer plate 307 is perfectly aligned with the surface of the CPU. During the closing process, the pre-installed spring telescopic rod on the water-cooled pump head 306 is compressed, allowing the water-cooled pump head 306 to fit more tightly against the CPU, thereby significantly improving the efficiency and effectiveness of heat dissipation.
[0037] During the actual cooling process, the water-cooling pump head 306 continuously circulates the coolant within the heat pipe 303 and the transfer pipe 304. As the coolant flows, it continuously removes heat generated by the CPU through the heat transfer plate 307, effectively reducing the CPU's temperature. Simultaneously, as the coolant passes through the cooling pipe, it is dissipated by the heat dissipation fan 312, further enhancing the cooling effect on the CPU.
[0038] More importantly, during the heat dissipation process, if a leakage occurs, the coolant will drip onto the specially designed sensing surface 309. The sensing surface 309 can quickly capture the leakage information and immediately transmit this information to the central processing unit. After receiving the leakage information, the central processing unit will immediately take action and quickly control the electromagnet 212 in the main frame mechanism 2 to perform a closing operation. When the electromagnet 212 is closed, the adsorption connection between the main frame mechanism 2 and the front side panel mechanism 3 will immediately fail. At the same time, the sliding column 206 will bounce the front side panel mechanism 3 open under the action of the spring, so that the water cooling system is quickly separated from the computer motherboard. This series of actions ensures that in the event of a leakage, the leakage protection function can be quickly implemented, greatly reducing the risk of damage to the computer motherboard and other components caused by leakage;
[0039] In addition, the graphics card frame 310 provided on the front panel 302 allows the graphics card to be connected to the outside of the computer, which not only facilitates heat dissipation, but also facilitates upgrading and replacing the graphics card, while directly preventing water cooling leakage from affecting the graphics card.
[0040] like Figure 3 As shown, the rear side panel mechanism 1 includes a rear side panel 103, which is hingedly arranged on the rear side of the main frame mechanism 2. A first vent 102 is provided inside the rear side panel 103. A first filter slot 104 is provided near the first vent 102 on the rear side panel 103. A side door knob 101 is rotatably provided on one side of the rear side panel 103.
[0041] Specifically, in the above-mentioned specific embodiment, the rear panel 103 can be opened during the wiring process to facilitate wiring work on the rear side of the motherboard, which facilitates the wiring process, and multiple ventilation holes and filter slots are set in the rear panel 103. At the same time, a large number of ventilation holes and filter slots set in this computer structure can be installed with filters, thereby greatly ensuring the internal heat dissipation effect of the computer while preventing dust from entering the interior of the computer structure.
[0042] like Figure 3 and 4As shown, the main frame mechanism 2 includes a main frame 201, an inner isolation frame 210 is fixedly provided near the middle of the main frame 201, a mainboard connecting frame 203 is fixedly provided on the inner isolation frame 210 near the side of the front side plate mechanism 3, a plurality of isolation columns 204 are fixedly provided on the side of the mainboard connecting frame 203 near the side of the front side plate mechanism 3, a plurality of threading holes 202 are opened on the side of the mainboard connecting frame 203, a mainboard wiring port 205 is opened on one side of the main frame 201 near the mainboard connecting frame 203, a graphics card wiring frame 207 is opened on the main frame 201 near the graphics card frame 310, and the main frame 2 01 is embedded with a chassis panel 209 on the side away from the mainboard wiring port 205, and a second filter slot 211 is provided on the side of the main frame 201 close to the chassis panel 209. A connecting drum 208 is fixedly provided on the side of the main frame 201 close to the front side panel mechanism 3, and a connecting shaft 308 is fixedly provided on the side of the front panel 302. The connecting shaft 308 is rotatably arranged inside the connecting drum 208. A sliding column 206 is slidably connected to the inside of the main frame 201 close to the front side panel mechanism 3 through a spring, and an electromagnet 212 is embedded in a fixed position near the sliding column 206 inside the main frame 201;
[0043] Specifically, in the above-described embodiment, during the installation of the main frame mechanism 2, the main frame mechanism 2 is first cleverly snapped onto the upper end of the base mechanism 4, and then secured securely with a series of connecting bolts 5. Next, the computer motherboard is carefully mounted on the motherboard connecting bracket 203 and the isolation posts 204. This not only improves the stability of the computer motherboard but also effectively prevents it from being too tightly attached to the motherboard connecting bracket 203, which could compromise heat dissipation. Next, the power cord is precisely connected to the corresponding connector on the motherboard. During this process, the power cord is cleverly threaded through the threading holes 202, greatly simplifying the complexity of cable management and making the entire process more convenient. Next, the graphics card extension cable 311 is connected to the motherboard, completing the connection between the motherboard and the main frame mechanism 2. At this point, simply organize the power cord within the main frame mechanism 2, and then easily close the rear and front panel mechanisms 1 and 3, thus completing the entire assembly of the computer mainframe.
[0044] Furthermore, the front panel mechanism 3 is sleeved within the connecting drum 208 via a connecting shaft 308. This design allows the front panel mechanism 3 to be flexibly hinged to the main frame mechanism 2 while also being removable. This design not only facilitates wiring of the main frame mechanism 2 but also greatly simplifies maintenance of the front panel mechanism 3, making assembly and maintenance of the entire computer mainframe more efficient and convenient.
[0045] like Figure 6As shown, the bottom mechanism 4 includes a bottom connecting frame 406, four sliding rods 408 are slidably provided inside the bottom connecting frame 406, one end of the four sliding rods 408 is fixedly provided with a power supply bracket 409, a positioning knob 410 is rotatably provided inside the power supply bracket 409, a fan slot 403 is provided on one side of the bottom connecting frame 406, a third filter slot 404 is provided on one side of the fan slot 403, a fan frame 401 is slidably provided inside the fan slot 403, a plurality of fan connection ports 402 are fixedly provided inside the fan frame 401, support feet 407 are fixedly provided near the four corners of the lower end of the bottom connecting frame 406, and a fourth filter slot 405 is provided at the lower end of the bottom connecting frame 406;
[0046] Specifically, in the above-mentioned specific embodiment, in the process of assembling bottom connection frame 406, at first computer power supply is installed on power supply bracket 409.In the process of installing power supply, power supply bracket 409 can slide to the outside of bottom connection frame 406 by the driving of sliding rod 408 and power supply bracket 409. The purpose of doing so is to connect in order to give enough space of power connection line.Then fan is installed to the inside of fan frame 401, and then fan frame 401 is inserted into the inside of fan through groove 403. Such step design makes the combined work of bottom connection frame 406 and hardware become more convenient and quick.At last, after installation work is finished, power supply bracket 409 can be slid to bottom connection frame 406 inside, and be connected by positioning knob 410, strengthened stability.
[0047] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A split computer structure, comprising a bottom mechanism (4), characterized in that: The upper end of the bottom mechanism (4) is clamped with a main frame mechanism (2), a plurality of connecting bolts (5) are provided between the upper end of the bottom mechanism (4) and the lower end of the main frame mechanism (2), a front side plate mechanism (3) is hingedly provided at the front end of the main frame mechanism (2), and a rear side plate mechanism (1) is hingedly provided at a side of the main frame mechanism (2) away from the front side plate mechanism (3); The front side panel mechanism (3) includes a front panel (302), an adjustment frame (305) is fixedly provided on one side of the front panel (302) close to the main frame mechanism (2), a water-cooling pump head (306) is slidably provided inside the adjustment frame (305) via a spring telescopic rod, a heat conduction plate (307) is fixedly provided at one end of the water-cooling pump head (306), transmission tubes (304) are fixedly provided at both the output and input ends of the water-cooling pump head (306), one end of two of the transmission tubes (304) are connected to a heat dissipation tube (303), a heat dissipation fan (312) is fixedly provided at the front end of the heat dissipation tube (303), and the heat dissipation fan (312) is provided throughout the interior of the front panel (302); A graphics card frame (310) is fixedly provided near the middle position inside the front panel (302), a sensing surface (309) is embedded in the upper end of the graphics card frame (310), a graphics card interface is fixedly provided at the upper end of the graphics card frame (310), a graphics card extension cable (311) is fixedly provided at the rear end of the graphics card frame (310), and the graphics card extension cable (311) is connected to the graphics card interface, and a metal block (301) is embedded in the side of the front panel (302) close to the main frame mechanism (2).
2. The split computer structure according to claim 1, wherein: The rear side panel mechanism (1) comprises a rear side panel (103), the rear side panel (103) being hingedly arranged at the rear side of the main frame mechanism (2), a first vent (102) being provided through the rear side panel (103), a first filter screen slot (104) being provided near the first vent (102) on the rear side panel (103), and a side door knob (101) being provided through one side of the rear side panel (103) for rotation.
3. The split computer structure according to claim 1, wherein: The main frame mechanism (2) comprises a main frame (201), an inner isolation frame (210) is fixedly provided near the middle of the main frame (201), a mainboard connecting frame (203) is fixedly provided on one side of the inner isolation frame (210) close to the front side plate mechanism (3), a plurality of isolation columns (204) are fixedly provided on one side of the mainboard connecting frame (203) close to the front side plate mechanism (3), a plurality of threading holes (202) are provided on the side of the mainboard connecting frame (203), and a mainboard wiring port (205) is provided on one side of the main frame (201) close to the mainboard connecting frame (203).
4. The split computer structure according to claim 3, wherein: A graphics card wiring frame (207) is provided on the main frame (201) near the graphics card frame (310), a chassis panel (209) is embedded in the main frame (201) on a side away from the mainboard wiring port (205), and a second filter slot (211) is provided on a side of the main frame (201) near the chassis panel (209).
5. The split computer structure according to claim 3, wherein: A connecting drum (208) is fixedly provided on one side of the main frame (201) close to the front side panel mechanism (3), and a connecting shaft (308) is fixedly provided on one side of the front panel (302). The connecting shaft (308) is rotatably mounted inside the connecting drum (208).
6. The split computer structure according to claim 3, wherein: A sliding column (206) is slidably connected to the inside of the main frame (201) near the front side plate mechanism (3) via a spring, and an electromagnet (212) is embedded in a fixed position near the sliding column (206) inside the main frame (201).
7. The split computer structure according to claim 1, wherein: The bottom mechanism (4) comprises a bottom connecting frame (406), four sliding rods (408) are slidably provided inside the bottom connecting frame (406), a power supply bracket (409) is fixedly provided at one end of the four sliding rods (408), and a positioning knob (410) is rotatably provided inside the power supply bracket (409).
8. The split computer structure according to claim 7, wherein: A fan slot (403) is provided on one side of the bottom connecting frame (406), a third filter slot (404) is provided on one side of the fan slot (403), a fan frame (401) is slidably provided inside the fan slot (403), a plurality of fan connection ports (402) are fixedly provided inside the fan frame (401), support legs (407) are fixedly provided at the four corners of the lower end of the bottom connecting frame (406), and a fourth filter slot (405) is provided at the lower end of the bottom connecting frame (406).
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