Server

By installing heat exchange mounting plates and cooling components in the server and utilizing a combination of coolant and air cooling, the problem of low heat dissipation efficiency at the server terminal is solved, achieving efficient cooling and stable operation, and extending the service life.

CN223320819UActive Publication Date: 2025-09-09INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202521316437.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-25
Publication Date
2025-09-09
Estimated Expiration
2035-06-25

AI Technical Summary

Technical Problem

Existing server terminals have low heat dissipation efficiency, resulting in excessively high internal temperatures, affecting performance and shortening service life.

Method used

A heat exchange mounting plate and a cooling component are set between the server's support component and the terminal body. The coolant flowing through the cooling pipe is used to remove heat. Combining liquid cooling and air cooling heat dissipation methods, the coolant circulation is driven by the pump body and the temperature is adjusted by the semiconductor refrigerator.

Benefits of technology

It improves the heat dissipation efficiency of the server terminal, reduces the operating temperature, reduces the failure rate, enhances the stability and mechanical strength, and is suitable for long-term stable operation in complex environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a server, and relates to the technical field of servers, and the server comprises a supporting assembly which is arranged on a supporting base surface; the heat exchange mounting plate is arranged on the side, away from the supporting base plane, of the supporting assembly; the terminal body is arranged on the side, away from the supporting assembly, of the heat exchange mounting plate and makes contact with the heat exchange mounting plate so as to transfer heat to the heat exchange mounting plate; the cooling assembly is arranged between the supporting assembly and the heat exchange mounting plate and connected with the supporting assembly and the heat exchange mounting plate, and the cooling assembly comprises a cooling pipe which makes contact with the heat exchange mounting plate to take away heat on the heat exchange mounting plate. The technical effect that the server can keep the low operation temperature under the high load condition is achieved.
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Description

Technical Field

[0001] The present application relates to the technical field of servers, and in particular to a server. Background Art

[0002] In the fields of big data processing and cloud computing, server terminals are core components, responsible for the crucial tasks of data storage, processing, and transmission. With the surge in data volumes and continuous technological advancements, server terminal performance requirements are increasing, including requirements for heat dissipation efficiency and stability. Currently, there are already some improved designs for big data server terminals, such as the use of suction cups, adjustment components, and dustproof components to improve server terminal placement stability and protection levels.

[0003] However, the server configured as above has low heat dissipation efficiency for the server terminal. Since the big data server terminal generates a large amount of heat when running at high load, and the heat dissipation structure in the server is often difficult to dissipate heat effectively, this leads to excessively high internal temperature of the server terminal, which not only affects the performance of the server terminal, but also shortens its service life. This has become a key factor restricting the performance of the big data server terminal. Utility Model Content

[0004] The present application provides a server to at least solve the problem of low heat dissipation efficiency of the server for the server terminal in the related art.

[0005] The present application provides a server, comprising: a support assembly, arranged on a support base; a heat exchange mounting plate, arranged on a side of the support assembly away from the support base; a terminal body, arranged on a side of the heat exchange mounting plate away from the support assembly and in contact with the heat exchange mounting plate to transfer heat to the heat exchange mounting plate; a cooling assembly, arranged between the support assembly and the heat exchange mounting plate and connected to the support assembly and the heat exchange mounting plate respectively, the cooling assembly comprising a cooling pipe in contact with the heat exchange mounting plate to take away heat from the heat exchange mounting plate.

[0006] Furthermore, the cooling component also includes: a liquid storage tank, which is arranged on a side of the support component away from the support base and connected to the support component; a liquid extraction pipe, the inlet of the liquid extraction pipe is connected to the outlet of the liquid storage tank; a pump body, the inlet of the pump body is connected to the outlet of the liquid extraction pipe; a connecting pipe, the inlet of the connecting pipe is connected to the outlet of the pump body, and the outlet of the connecting pipe is connected to the inlet of the cooling pipe; a return pipe, the inlet of the return pipe is connected to the outlet of the cooling pipe, and the outlet of the return pipe is connected to the inlet of the liquid storage tank; a semiconductor refrigerator, which is arranged on one side of the liquid storage tank, the heating end of the semiconductor refrigerator is located outside the liquid storage tank, and the cooling end of the semiconductor refrigerator is located inside the liquid storage tank to take away the heat of the refrigerant in the liquid storage tank.

[0007] Furthermore, the server also includes an installation frame, which is arranged on a side of the heat exchange mounting plate close to the support assembly and connected to the heat exchange mounting plate, so that the heat exchange mounting plate is connected to the cooling assembly through the installation frame, and the cooling pipe is arranged in the installation frame.

[0008] Furthermore, the cooling component also includes a plurality of fixed columns, which are spaced apart between the liquid storage tank and the mounting frame. Each fixed column is respectively connected to the liquid storage tank and the mounting frame so that the liquid storage tank and the mounting frame form a storage space for accommodating the liquid extraction pipe, pump body, connecting pipe and return pipe.

[0009] Furthermore, the terminal body includes a terminal shell, on which a shell air inlet and a shell air outlet are arranged at intervals; the cooling component includes: a fan, which is installed at the bottom of the mounting frame, and the bottom of the mounting frame is provided with a mounting frame air inlet corresponding to the fan; an air outlet duct, a mounting frame air outlet is opened on one side of the mounting frame, and both ends of the air outlet duct are respectively connected to the mounting frame air outlet and the shell air inlet.

[0010] Furthermore, the support assembly includes: a base; a support frame, the support frame is located on the side of the base away from the support base surface, and the support frame is connected to the heat exchange mounting plate; a plurality of buffer mechanisms, the plurality of buffer mechanisms are arranged at intervals between the base and the support frame, and each buffer mechanism is respectively connected to the base and the support frame.

[0011] Furthermore, the support assembly also includes a bearing mechanism, which includes: a piston rod and a piston, both of which are located below the bearing frame, the first end of the piston rod is connected to the bearing frame, and the second end of the piston rod is connected to the piston; an air cylinder, an inflatable air cushion and a delivery pipe, the piston is slidably inserted in the air cylinder, the air cylinder is arranged on the base and located below the base, the inflatable air cushion is arranged on the base and located between the base and the bearing frame, and the air cylinder and the inflatable air cushion are connected through a delivery pipe.

[0012] Furthermore, the buffer mechanism includes: a fixing ear, the fixing ear is connected to the supporting frame; a first mounting head, the first mounting gasket of the first mounting head is installed on the side of the fixing ear close to the base, and the first threaded section of the first mounting head passes through the fixing ear to reach the side of the fixing ear away from the base; an assembly frame, the assembly frame is connected to the base; a second mounting head, the second mounting gasket of the second mounting head is installed on the side of the assembly frame close to the supporting frame, and the second threaded section of the second mounting head passes through the assembly frame to reach the side of the assembly frame close to the base; two limiting nuts, one of the two limiting nuts is located on the side of the fixing ear away from the base and threadedly connected to the first threaded section, and the other of the two limiting nuts is located on the side of the assembly frame close to the base and threadedly connected to the second threaded section; a damping rod, the damping rod is located between the first mounting head and the second mounting head; a first elastic member, the first elastic member is sleeved on the damping rod, and the two ends of the first elastic member are respectively connected to the first mounting head and the second mounting head.

[0013] Furthermore, the support assembly includes a base and a pull-out mechanism located on a side of the base close to the support base surface, the base is located on a side of the cooling assembly close to the support base surface, the pull-out mechanism includes a bottom frame and a pull-out component, the bottom frame is used to be fixed on the support base surface, the base is connected to the pull-out component to move with the pull-out component; the bottom frame includes an installation cavity, and the pull-out component includes: a pull-out frame, the pull-out frame is arranged relative to the installation cavity to be inserted into the installation cavity or pulled out from the installation cavity; a handle, the handle is arranged on one side of the pull-out frame; a connecting rod transmission structure, at least part of the connecting rod transmission structure is located in the pull-out frame, and the connecting rod transmission structure The first end passes through the pull-out frame and is connected to or separated from the bottom frame; a pressing component, the first end of the pressing component is located on the side of the handle away from the pull-out frame, and the second end of the pressing component passes through the handle and the pull-out frame and is connected to the second end of the connecting rod transmission structure; a fixing ring, the fixing ring is fixedly sleeved on the pressing component and is located in the pull-out frame; a second elastic member, the second elastic member is sleeved on the pressing component and is located between the pull-out frame and the fixing ring; wherein, the connecting rod transmission structure is driven to move by pressing or releasing the pressing component, so that the connecting rod transmission structure is connected to or separated from the bottom frame, thereby realizing locking and unlocking between the bottom frame and the pull-out frame.

[0014] Furthermore, the bottom frame includes a socket connected to the mounting cavity, the socket is located on the side panel of the frame of the bottom frame, and a through hole corresponding to the socket is provided on the side panel of the frame of the pull-out frame. The connecting rod transmission structure includes: a connecting rod and an insertion rod, the first end of the connecting rod is connected to the second end of the pressing component, the second end of the connecting rod is connected to the first end of the insertion rod, and the second end of the insertion rod is slidably provided in the through hole; wherein, the connecting rod is driven to move by pressing or releasing the pressing component to drive the insertion rod to slide along the through hole to connect or separate with the socket.

[0015] Since the server of the present application sets a heat exchange mounting plate and a cooling assembly between the support assembly and the terminal body, and uses the coolant flowing through the cooling pipe to take away the heat transferred from the terminal body to the heat exchange mounting plate, the purpose of cooling the terminal body by liquid cooling heat exchange is achieved, thereby reducing the temperature of the terminal body of the server, improving the operating stability of the server, and enabling the server to maintain a low operating temperature under high load conditions, solving the problem of low heat dissipation efficiency of the server terminal in the related art, reducing the failure rate caused by overheating of the server, and improving the stability and service life of the big data server terminal. In addition, the overall structure of the server of the present application is compact and reasonable, which not only improves the heat dissipation efficiency of the terminal body of the server, but also enhances the mechanical strength and durability of the server, and is suitable for long-term stable operation in various complex environments. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0017] Figure 1 A schematic diagram of the structure of a server provided in an embodiment of the present application;

[0018] Figure 2 for Figure 1 A schematic diagram of the structure of a portion of the server shown in the first direction;

[0019] Figure 3 for Figure 2 A schematic diagram of the structure of a portion of the server shown in the second direction;

[0020] Figure 4 for Figure 2 A schematic diagram of the structure of a portion of the server shown in the third direction;

[0021] Figure 5 for Figure 1 The schematic diagram of the structure of the heat exchange mounting plate and cooling component of the server shown;

[0022] Figure 6 for Figure 1 The main view of the server is shown;

[0023] Figure 7 for Figure 2 A front view of a portion of the server structure shown;

[0024] Figure 8 for Figure 1 A side view of the server is shown;

[0025] Figure 9 for Figure 2 A side view of a portion of the server structure shown;

[0026] Figure 10 for Figure 2 The schematic diagram of the structure of the partial structure of the server after the buffer mechanism is disassembled;

[0027] Figure 11 for Figure 1 The structure diagram of the server's supporting mechanism after disassembly is shown;

[0028] Figure 12 for Figure 1 The structure diagram of the server shown is after the base and the pull-out mechanism are separated.

[0029] The above drawings include the following reference numerals:

[0030] 1. Base;

[0031] 2. Carrying mechanism; 201. Piston rod; 202. Air cylinder; 203. Piston; 204. Inflatable air cushion; 205. Delivery pipe;

[0032] 3. Buffer mechanism; 301. Fixing ear; 302. First mounting head; 303. Assembly frame; 304. Second mounting head; 305. Limit nut; 306. Damping rod; 307. First elastic member;

[0033] 4. Installation frame; 401. Installation frame air inlet; 402. Installation frame air outlet;

[0034] 5. Heat exchange mounting plate;

[0035] 6. Cooling assembly; 601. Liquid storage tank; 602. Fixing column; 603. Cooling pipe; 604. Return pipe; 605. Pump body; 606. Connecting pipe; 607. Liquid extraction pipe; 608. Semiconductor refrigerator; 609. Fan; 6010. Air outlet pipe;

[0036] 7. Terminal body; 701. Terminal housing; 702. Housing air inlet; 703. Housing air outlet; 704. First filter; 705. Second filter;

[0037] 8. Support components;

[0038] 9. Positioning block;

[0039] 10. Carrying frame;

[0040] 11. Pull-out mechanism; 1101. Bottom frame; 1102. Pull-out frame; 1103. Base bolt; 1104. Base nut; 1105. Handle; 1106. Pressing component; 1107. Connecting rod transmission structure; 1108. Fixing ring; 1109. Second elastic member; 1110. Connecting rod; 1111. Insert rod; 1112. Guide cylinder; 1113. Insertion hole; 1114. Through hole. DETAILED DESCRIPTION

[0041] The following will be combined with the accompanying drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0042] It should be noted that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like, indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely for ease of description and simplification of the present application. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limiting the present application. The terms "mounted," "connected," and "connected" should be interpreted broadly, and may include, for example, fixed, removable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; and internal communication between two components. The terms "parallel," "perpendicular," and "equal" encompass the described conditions and conditions similar to the described conditions, provided that the range of the similar conditions is within an acceptable range of deviation, as determined by a person of ordinary skill in the art taking into account the measurement in question and the errors associated with the measurement of the particular quantity (i.e., the limitations of the measurement system). For example, "parallel" includes both absolute parallelism and approximate parallelism, where the acceptable deviation range for approximate parallelism may be, for example, within 5°; "perpendicular" includes both absolute perpendicularity and approximate perpendicularity, where the acceptable deviation range for approximate perpendicularity may also be, for example, within 5°. "Equal" includes both absolute equality and approximate equality, where the acceptable deviation range for approximate equality may be, for example, that the difference between the two is less than or equal to 5% of either. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.

[0043] In order to enable those skilled in the art to better understand the present application, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0044] Current big data server terminals generate a large amount of heat during operation. If the heat dissipation is poor, the temperature inside the server terminal will rise sharply, which may cause hardware failure and performance degradation, and further lead to a decrease in the stability of data transmission on the server terminal. However, the performance of the heat dissipation devices of current big data server terminals is poor and cannot effectively dissipate heat for the server terminal.

[0045] like Figures 1 to 12As shown, the present application provides a server, including: a support assembly 8, which is arranged on a support base; a heat exchange mounting plate 5, which is arranged on a side of the support assembly 8 away from the support base; a terminal body 7, which is arranged on a side of the heat exchange mounting plate 5 away from the support assembly 8 and is in contact with the heat exchange mounting plate 5 to transfer heat to the heat exchange mounting plate 5; a cooling assembly 6, which is arranged between the support assembly 8 and the heat exchange mounting plate 5 and is respectively connected to the support assembly 8 and the heat exchange mounting plate 5, and the cooling assembly 6 includes a cooling pipe 603 that is in contact with the heat exchange mounting plate 5 to take away the heat on the heat exchange mounting plate 5.

[0046] The server of the present application sets a heat exchange mounting plate 5 and a cooling component 6 between the support component 8 and the terminal body 7, and uses the cooling liquid flowing through the cooling pipe 603 to take away the heat transferred from the terminal body 7 to the heat exchange mounting plate 5, thereby achieving the purpose of cooling the terminal body 7 by liquid cooling heat exchange, thereby reducing the temperature of the terminal body 7 of the server, improving the operating stability of the server, and enabling the server to maintain a low operating temperature under high load conditions, solving the problem of low heat dissipation efficiency of the server terminal in the related art, reducing the failure rate caused by overheating of the server, and improving the stability and service life of the big data server terminal. In addition, the overall structure of the server of the present application is compact and reasonable, which not only improves the heat dissipation efficiency of the terminal body 7 of the server, but also enhances the mechanical strength and durability of the server, and is suitable for long-term stable operation in various complex environments.

[0047] like Figure 5 As shown, the cooling component 6 also includes: a liquid storage tank 601, which is arranged on a side of the support component 8 away from the support base and connected to the support component 8; a liquid extraction pipe 607, the inlet of the liquid extraction pipe 607 is connected to the outlet of the liquid storage tank 601; a pump body 605, the inlet of the pump body 605 is connected to the outlet of the liquid extraction pipe 607; a connecting pipe 606, the inlet of the connecting pipe 606 is connected to the outlet of the pump body 605, and the outlet of the connecting pipe 606 is connected to the inlet of the cooling pipe 603; a return pipe 604, the inlet of the return pipe 604 is connected to the outlet of the cooling pipe 603, and the outlet of the return pipe 604 is connected to the inlet of the liquid storage tank 601.

[0048] The cooling component 6 of the server of the present application uses a pump body 605 to drive the coolant to circulate between the liquid storage tank 601, the liquid extraction pipe 607, the connecting pipe 606, the cooling pipe 603 and the return pipe 604. The coolant absorbs heat from the terminal body 7 through the cooling pipe 603, and then brings the heat back to the liquid storage tank 601 for heat dissipation, thereby improving the cooling efficiency of the terminal body 7, making the temperature control of the server more stable, and ensuring that the server can continue to operate stably under high load.

[0049] Specifically, the pump body 605 is a micro water pump.

[0050] like Figures 5 to 7 As shown, the cooling component 6 also includes a semiconductor refrigerator 608, which is arranged on one side of the liquid storage tank 601. The heating end of the semiconductor refrigerator 608 is located outside the liquid storage tank 601, and the cooling end of the semiconductor refrigerator 608 is located inside the liquid storage tank 601 to take away the heat of the refrigerant in the liquid storage tank 601.

[0051] The cooling component 6 of the server of the present application combines a pump body 605 and a semiconductor refrigerator 608, and the liquid storage tank 601 is filled with coolant. The Peltier effect of the semiconductor refrigerator 608 (also known as the Peltier effect, which is a type of thermoelectric phenomenon. It describes the phenomenon that when current passes through the contact point of two different conductors or semiconductor materials, heat absorption or heat release will occur at the contact point due to the difference in the thermoelectric properties of the materials) is utilized. By converting electrical energy into thermal energy and generating a temperature difference between the cooling end and the heat dissipation end, the heat of the coolant in the liquid storage tank 601 is taken away. The operating state of the cooling component 6 can be automatically adjusted according to the load and temperature of the terminal body 7 of the server, thereby improving the cooling capacity and efficiency of the cooling component 6 on the terminal body 7, so that the terminal body 7 of the server can maintain a good operating state even in an extremely high temperature environment, can effectively cope with high temperature challenges, ensure the stability and reliability of the terminal body 7 of the server, and achieve the dual goals of energy saving and efficient operation.

[0052] Specifically, the cooling component 6 of the server of the present application includes two semiconductor refrigerators 608 , and the two semiconductor refrigerators 608 are symmetrically and spaced apart at the bottom of the liquid storage tank 601 .

[0053] like Figures 1 to 10 As shown, the server also includes an installation frame 4, which is arranged on a side of the heat exchange mounting plate 5 close to the support assembly 8 and connected to the heat exchange mounting plate 5, so that the heat exchange mounting plate 5 is connected to the cooling assembly 6 through the installation frame 4, and the cooling pipe 603 is arranged in the installation frame 4.

[0054] The server of the present application realizes a fixed connection between the heat exchange mounting plate 5 and the cooling component 6 by setting up an installation frame 4, and forms a closed cooling space. The cooling pipe 603 is covered in a corresponding cooling space, which is beneficial to the effective heat dissipation of the heat exchange mounting plate 5 and protects the cooling pipe 603, thereby improving the integration and maintainability of the cooling component 6, making the cooling component 6 of the server more stable, reliable and not easy to damage.

[0055] like Figures 4 and 5As shown, the cooling component 6 also includes a plurality of fixed columns 602, which are spaced apart between the liquid storage tank 601 and the mounting frame 4. Each fixed column 602 is respectively connected to the liquid storage tank 601 and the mounting frame 4, so that the liquid storage tank 601 and the mounting frame 4 form a receiving space for accommodating the liquid extraction pipe 607, the pump body 605, the connecting pipe 606 and the return pipe 604.

[0056] The cooling component 6 of the server of the present application fixes the liquid storage tank 601 and the mounting frame 4 in a relatively stable position through the support of multiple fixed columns 602, and at the same time forms a channel for accommodating the liquid extraction pipe 607, the pump body 605, the connecting pipe 606, the cooling pipe 603 and the return pipe 604 to facilitate the circulation of the coolant, thereby improving the structural stability of the cooling system and the circulation efficiency of the coolant.

[0057] like Figures 1 to 8 As shown, the terminal body 7 includes a terminal shell 701, and the terminal shell 701 is provided with a shell air inlet 702 and a shell air outlet 703 at intervals; the cooling component 6 includes: a fan 609, the fan 609 is installed at the bottom of the installation frame 4, and the bottom of the installation frame 4 is provided with an installation frame air inlet 401 corresponding to the fan 609; an air outlet duct 6010, and an installation frame air outlet 402 is opened on one side of the installation frame 4, and the two ends of the air outlet duct 6010 are respectively connected to the installation frame air outlet 402 and the shell air inlet 702.

[0058] The present application sets a fan 609 and an air outlet duct 6010 between the terminal body 7 and the installation frame 4. The forced airflow generated by the fan 609 enters the installation frame 4 from the installation frame air inlet 401 and is cooled into a cooling airflow by the cooling pipe 603. The cooling airflow then passes through the installation frame air outlet 402 and the air outlet duct 6010 in sequence and enters the terminal shell 701 from the outer shell air inlet 702 to take away the heat in the terminal shell 701 and become a hot air flow. Finally, the hot air flow is discharged from the outer shell air outlet 703, further reducing the temperature of the terminal body 7 of the server and improving the heat dissipation efficiency of the server, so that the server can maintain a low temperature even under high load conditions, and can achieve rapid heat dissipation of the terminal body 7 of the server, thereby improving the computing efficiency and stability of the terminal body 7 of the server.

[0059] Specifically, the cooling component 6 of the present application achieves the purpose of liquid cooling and air cooling of the server terminal body 7 by combining liquid cooling and air cooling, effectively reducing the operating temperature of the server terminal body, improving the working stability of the server and extending its service life.

[0060] Among them, the fan 609 is set at the center of the bottom of the installation frame 4, and the installation frame air inlet 401 is set at the center of the bottom of the installation frame 4; the two installation side panels set opposite to each other of the installation frame 4 are respectively provided with an installation frame air outlet 402, and the two installation side panels set opposite to each other of the terminal shell 701 are respectively provided with a shell air inlet 702, and the shell air outlet 703 is located at the center of the top of the terminal shell 701; the number of the air outlet ducts 6010 is also two, and the two air outlet ducts 6010 are respectively connected to the two installation frame air outlets 402 and respectively connected to the two shell air inlets 702. In this way, the circulation of the air flow can be accelerated, and the cooling air flow can be efficiently guided to pass through the terminal shell 701 directly to the core area of ​​heat generation, and it is conducive to the natural rise and discharge of the hot air flow, forming a smooth air flow path, improving the overall operating efficiency and reliability of the terminal body 7, preventing unstable data transmission caused by overheating of the terminal body 7, and also extending the service life of the server.

[0061] like Figure 2 and Figure 3 As shown, the terminal body 7 includes a first filter 704, which is arranged at the air inlet 702 of the shell; and / or the terminal body 7 includes a second filter 705, which is arranged at the air outlet 703 of the shell; and / or the server also includes a positioning block 9, which is arranged on the heat exchange mounting plate 5 to be connected to the terminal shell 701 to position the terminal body 7.

[0062] The terminal body 7 of the server of the present application prevents external dust and impurities from entering the interior of the terminal body 7 by setting a first filter 704 and a second filter 705, while maintaining air circulation inside and outside the terminal body 7, improving the cleanliness and operational stability of the terminal body 7, effectively preventing the adverse effects of dust on the terminal body 7, reducing the maintenance cost of the terminal body 7, and extending the service life of the server.

[0063] Specifically, the outer shell air inlet 702 is a rectangular air inlet, the first filter 704 is a rectangular filter arranged corresponding to the corresponding rectangular air inlet, and a plurality of first filter holes are arranged at intervals on the rectangular filter; the outer shell air outlet 703 is a circular air outlet, the second filter 705 is a circular filter arranged corresponding to the corresponding circular air outlet, and a plurality of second filter holes are arranged at intervals on the circular filter.

[0064] The server's heat exchange mounting plate 5 is symmetrically and spaced apart on its upper end surface. At least a portion of the terminal body 7 is positioned between the two positioning blocks 9. Two connecting plates on the terminal housing 701 correspond to the two positioning blocks 9 and are connected to the two positioning blocks 9 via two housing fastening assemblies, which can be bolt and nut assemblies. This ensures a stable connection between the terminal body 7 and the heat exchange mounting plate 5, improving the server's stability and reliability.

[0065] like Figures 1 to 10 As shown, the support assembly 8 includes: a base 1; a support frame 10, the support frame 10 is located on the side of the base 1 away from the supporting base surface, and the support frame 10 is connected to the heat exchange mounting plate 5; a plurality of buffer mechanisms 3, the plurality of buffer mechanisms 3 are arranged at intervals between the base 1 and the support frame 10, and each buffer mechanism 3 is respectively connected to the base 1 and the support frame 10.

[0066] The support assembly 8 of the present application arranges multiple buffer mechanisms 3 between the base 1 and the support frame 10, and utilizes the elastic deformation of the buffer mechanism 3 to absorb and disperse the external impact force exerted on the server, thereby protecting the hardware inside the terminal body 7 from damage, improving the shock resistance and operating stability of the terminal body 7, and effectively reducing the impact of vibration on the terminal body 7, so that the server can still maintain normal operation when subjected to slight vibration.

[0067] like Figure 1 、 Figure 6 、 Figure 8 as well as Figure 11 As shown, the support assembly 8 also includes a bearing mechanism 2, which includes: a piston rod 201 and a piston 203, both of which are located below the bearing frame 10, the first end of the piston rod 201 is connected to the bearing frame 10, and the second end of the piston rod 201 is connected to the piston 203; an air cylinder 202, an inflatable air cushion 204 and a delivery pipe 205, the piston 203 is slidably inserted in the air cylinder 202, the air cylinder 202 is arranged on the base 1 and is located below the base 1, the inflatable air cushion 204 is arranged on the base 1 and is located between the base 1 and the bearing frame 10, and the air cylinder 202 and the inflatable air cushion 204 are connected via a delivery pipe 205.

[0068] The terminals of current big data servers lack effective buffering and shock absorption mechanisms. The servers may be subject to various external physical vibrations, which may cause data transmission interruptions or errors at the terminals, ultimately affecting the integrity and stability of data transmission.

[0069] The support assembly 8 of the server of the present application is also equipped with a support mechanism 2, so as to utilize the cooperation of the piston rod 201, the piston 203, the air cylinder 202, the inflatable air cushion 204 and the delivery pipe 205 to convert the impact force received by the support frame 10 into air flow. When the support frame 10 is impacted, the piston rod 201 pushes the piston 203 to slide in the air cylinder 202, so that the gas in the air cylinder 202 is sent into the inflatable air cushion 204 through the delivery pipe 205, causing the inflatable air cushion 204 to expand to absorb and disperse the impact force and high-frequency micro-vibration from the support frame 10, and realize secondary buffering on the basis of multiple buffer mechanisms 3, thereby avoiding the loosening of the terminal body 7 due to vibration during operation, further improving the shock resistance and operation stability of the terminal body 7, so that the terminal body 7 can still maintain normal operation when subjected to large vibrations, further ensuring the integrity and stability of the data transmission of the terminal body 7, effectively reducing the impact of vibration on the server, and protecting the safe operation of the server.

[0070] like Figure 11 As shown, the supporting mechanism 2 includes a piston rod 201, a piston 203, an air cylinder 202, multiple inflatable air cushions 204 and multiple delivery pipes 205. A piston rod 201 includes multiple first rod bodies and a second rod body. The multiple first rod bodies are arranged at intervals and are all connected to the second rod body. Each first rod body contacts different positions of the bottom of the supporting frame 10 respectively, and the second rod body is connected to a piston 203; a piston 203 is slidably inserted in an air cylinder 202; multiple inflatable air cushions 204 are arranged at intervals around an air cylinder 202 on the base 1, and the multiple inflatable air cushions 204 are connected to an air cylinder 202 one by one through multiple delivery pipes 205; wherein, the supporting mechanism 2 includes a piston rod 201, a piston 203, an air cylinder 202, two inflatable air cushions 204 and two delivery pipes 205.

[0071] Specifically, the supporting assembly 8 of the server of the present application includes a plurality of support mechanisms 2 arranged at intervals; wherein the number of the plurality of support mechanisms 2 may be two.

[0072] like Figures 1 to 10As shown, the buffer mechanism 3 includes: a fixing ear 301, the fixing ear 301 is connected to the carrier 10; a first mounting head 302, the first mounting gasket of the first mounting head 302 is installed on the side of the fixing ear 301 close to the base 1, and the first thread section of the first mounting head 302 passes through the fixing ear 301 and reaches the side of the fixing ear 301 away from the base 1; an assembly rack 303, the assembly rack 303 is connected to the base 1; a second mounting head 304, the second mounting gasket of the second mounting head 304 is installed on the side of the assembly rack 303 close to the carrier 10, and the second thread section of the second mounting head 304 passes through the assembly rack 303 and reaches One side of the assembly bracket 303 close to the base 1; two limiting nuts 305, one of the two limiting nuts 305 is located on the side of the fixing ear 301 away from the base 1 and is threadedly connected to the first threaded segment, and the other of the two limiting nuts 305 is located on the side of the assembly bracket 303 close to the base 1 and is threadedly connected to the second threaded segment; the damping rod 306, the damping rod 306 is located between the first mounting head 302 and the second mounting head 304; the first elastic member 307, the first elastic member 307 is sleeved on the damping rod 306, and the two ends of the first elastic member 307 are respectively connected to the first mounting head 302 and the second mounting head 304.

[0073] The buffer mechanism 3 of the support assembly 8 of the server of the present application utilizes a combination of a fixing ear 301, a first mounting head 302, an assembly frame 303, a second mounting head 304, two limit nuts 305, a damping rod 306 and a first elastic member 307. Through the damping effect of the damping rod 306 and the elastic deformation of the first elastic member 307, it can absorb and disperse the external impact force exerted on the server, prevent the terminal body 7 from being damaged, improve the shock resistance and operating stability of the server, and enable the precision components inside the terminal body 7 to maintain normal operation when subjected to impact, thereby ensuring the integrity and stability of data transmission of the terminal body 7 and protecting the safe operation of the server.

[0074] Specifically, the first elastic member 307 may be a compression spring.

[0075] like Figure 12As shown, the support assembly 8 includes a base 1 and a pulling mechanism 11 located on one side of the base 1 close to the supporting base surface. The base 1 is located on the side of the cooling assembly 6 close to the supporting base surface. The pulling mechanism 11 includes a bottom frame 1101 and a pulling component. The bottom frame 1101 is used to be fixed on the supporting base surface. The base 1 is connected to the pulling component to move with the pulling component; the bottom frame 1101 includes an installation cavity, and the pulling component includes: a pulling frame 1102, the pulling frame 1102 is arranged opposite to the installation cavity to be inserted into the installation cavity or pulled out from the installation cavity; a handle 1105, the handle 1105 is arranged on one side of the pulling frame 1102; a connecting rod transmission structure 1107, at least a part of the connecting rod transmission structure 1107 is located in the pulling frame 1102, and the first end of the connecting rod transmission structure 1107 passes through the pulling frame 1102 and is plugged into the bottom frame 1101 Or separation; pressing component 1106, the first end of the pressing component 1106 is located on the side of the handle 1105 away from the pull-out frame 1102, and the second end of the pressing component 1106 passes through the handle 1105 and the pull-out frame 1102 and is connected to the second end of the connecting rod transmission structure 1107; fixing ring 1108, the fixing ring 1108 is fixedly sleeved on the pressing component 1106 and located in the pull-out frame 1102; second elastic member 1109, the second elastic member 1109 is sleeved on the pressing component 1106 and located between the pull-out frame 1102 and the fixing ring 1108; wherein, by pressing or releasing the pressing component 1106, the connecting rod transmission structure 1107 is driven to move, so that the connecting rod transmission structure 1107 is plugged into or separated from the bottom frame 1101, so as to realize locking and unlocking between the bottom frame 1101 and the pull-out frame 1102.

[0076] The pulling and pulling mechanism 11 of the server of the present application utilizes the cooperation of the pressing component 1106 and the connecting rod transmission structure 1107. By pressing and releasing the pressing component 1106, the connecting rod transmission structure 1107 is driven to move relative to the bottom frame 1101, thereby realizing rapid locking and unlocking between the bottom frame 1101 and the pulling and pulling frame 1102, making it convenient to quickly pull out the terminal body 7, etc., thereby improving the maintainability and operational convenience of the server, making the maintenance, inspection and replacement of the terminal body 7 simpler and faster, without the need to disassemble the server as a whole, and being able to ensure the stability of the terminal body 7 when stationary, thereby greatly improving the work efficiency and convenience of engineers and reducing maintenance costs.

[0077] The current big data server terminal is not convenient to pull out after being installed in the cabinet. The space inside the cabinet is small. When the server terminal needs to be repaired, it is inconvenient to pull it out and the entire server needs to be disassembled, which makes maintenance inconvenient.

[0078] Specifically, the pull-out component also includes multiple base fastening components, and the base 1 and the pull-out frame 1102 are connected by multiple base fastening components. Each base fastening component connection includes a base bolt 1103 and a base nut 1104. The nut end of the base bolt 1103 is located on the side of the pull-out frame 1102 away from the base 1, and the threaded end of the base bolt 1103 passes through the pull-out frame 1102 and the base 1 and is threadedly connected to the base nut 1104.

[0079] The second elastic member 1109 may be a compression spring.

[0080] like Figure 12 As shown, the base frame 1101 includes a socket 1113 connected to the installation cavity, the socket 1113 is located on the side panel of the frame of the base frame 1101, and a through hole 1114 corresponding to the socket 1113 is provided on the side panel of the frame of the pull-out frame 1102. The connecting rod transmission structure 1107 includes: a connecting rod 1110 and an insertion rod 1111, the first end of the connecting rod 1110 is connected to the second end of the pressing component 1106, the second end of the connecting rod 1110 is connected to the first end of the insertion rod 1111, and the second end of the insertion rod 1111 is slidably penetrated into the through hole 1114; wherein, the connecting rod 1110 is driven to move by pressing or releasing the pressing component 1106, so as to drive the insertion rod 1111 to slide along the through hole 1114 to be plugged into or separated from the socket 1113.

[0081] The support assembly 8 of the present application includes a pull-out mechanism 11 that utilizes the cooperation of the insertion rod 1111 and the socket 1113 to achieve rapid locking and unlocking of the pull-out frame 1102 and the bottom frame 1101, thereby improving the maintainability and operational convenience of the server, making the maintenance and replacement of the server simpler and faster, and facilitating troubleshooting and repairs for engineers.

[0082] Specifically, the support assembly 8 of the server of the present application includes two pulling-out mechanisms 11, each pulling-out mechanism 11 includes a connecting rod 1110 and an insertion rod 1111 that are hinged to each other, and the pressing component 1106 can be slidably inserted in the middle of the handle 1105. The two pulling-out mechanisms 11 are symmetrically arranged on the opposite sides of the pressing component 1106, and the two oppositely arranged frame side panels of the bottom frame 1101 are provided with insertion holes 1113, and the two oppositely arranged frame side panels of the pulling-out frame 1102 are provided with through holes 1114; wherein, the first end of the connecting rod 1110 of the connecting rod transmission structure 1107 of each pulling-out mechanism 11 is hinged to the pressing component 1106, and the second end of the insertion rod 1111 of the connecting rod transmission structure 1107 of each pulling-out mechanism 11 can be slidably inserted into the corresponding through hole 1114 to be connected or separated with the corresponding insertion hole 1113.

[0083] like Figure 12As shown, the connecting rod transmission structure 1107 includes a guide cylinder 1112, which is located in the pull-out frame 1102 and fixedly connected to the frame side panel or handle 1105. The guide inner hole of the guide cylinder 1112 is connected to the through hole 1114, and the second end of the insertion rod 1111 can be slidably inserted into the guide inner hole.

[0084] In this way, the connecting rod transmission structure 1107 of the pulling and pulling mechanism 11 of the present application utilizes the guiding effect of the guide cylinder 1112 on the insertion rod 1111 to ensure the accurate reciprocating motion of the insertion rod 1111 in the through hole 1114, thereby realizing the accurate connection and separation between the insertion rod 1111 and the insertion hole 1113, improving the reliability and operation accuracy of the pulling and pulling mechanism 11, and making the locking and unlocking between the bottom frame 1101 and the pulling and pulling frame 1102 more accurate and reliable.

[0085] Specifically, the guide cylinder 1112 includes a sleeve portion and a connecting portion. The sleeve portion is sleeved on the insertion rod 1111 , one end of the connecting portion is connected to the sleeve portion, and the other end of the connecting portion is connected to the handle 1105 .

[0086] like Figure 12 As shown, the pressing component 1106 includes a pressing column and a pressing plate arranged at the first end of the pressing column. The pressing plate is located on the side of the handle 1105 away from the pull-out frame 1102. The second end of the pressing column passes through the pull-out frame 1102 and is connected to the second end of the connecting rod transmission structure 1107.

[0087] The pressing component 1106 of the pull-out mechanism 11 of the present application utilizes the cooperation of the pressing column and the pressing sheet to realize quick and convenient operation of the pressing component. By pressing or releasing the pressing sheet, the pressing column is driven to reciprocate, thereby driving the rapid movement of the connecting rod transmission structure to achieve the connection or separation of the connecting rod transmission structure 1107 and the bottom frame 1101, thereby improving the operational convenience and response speed of the pull-out mechanism 11, making the maintenance and replacement of the server simpler and faster. In addition, the cross-sectional area of ​​the pressing sheet is larger than the cross-sectional area of ​​the pressing column to prevent the pressing component 1106 from being completely pushed into the pull-out frame 1102 by the second elastic member 1109 and disengaged from the handle 1105, thereby ensuring the stable connection between the pressing component 1106 and the handle 1105.

[0088] The status of the server in use is as follows:

[0089] When the server is subjected to external vibration impact, the damping rod 306 and the first elastic member 307 can jointly absorb and disperse these forces. The damping rod 306 provides a certain damping effect, and the first elastic member 307 further cushions the vibration through its elastic properties, effectively protecting the precision components inside the server terminal from damage, and ensuring the stability of data transmission. While the first elastic member 307 is compressed, the piston rod 201 uses the piston 203 to send the gas in the air cylinder 202 into the inflatable air cushion 204 through the delivery pipe 205, so that the inflatable air cushion 204 expands to cushion the support frame 10, which is used to absorb high-frequency micro-vibrations and achieve a secondary buffering effect.

[0090] When the terminal body 7 of the server needs to be cooled, the pump body 605 extracts the coolant from the liquid storage tank 601 through the liquid extraction pipe 607, and then transports the coolant to the cooling pipe 603 through the connecting pipe 606. The coolant flows in the cooling pipe 603, thereby taking away the heat transferred from the terminal body 7 to the heat exchange mounting plate 5. At the same time, the cooling end of the semiconductor refrigerator 608 is located inside the liquid storage tank 601, continuously reducing the temperature of the coolant in the liquid storage tank 601, and the heat dissipation end of the semiconductor refrigerator 608 is located inside the liquid storage tank 601. On the outside of the liquid storage tank 601, heat can be dissipated into the external air. The cooling pipe 603 can also reduce the temperature of the airflow flowing through the installation frame 4. When the fan 609 is started to blow air to the cooling pipe 603 in the installation frame 4, the cooling airflow can be blown out through the air outlet pipe 6010. The cooling airflow passes through the first filter 704 and enters the interior of the terminal body 7, and then flows out to the outside of the terminal body 7 through the second filter 704, which can significantly reduce the operating temperature of the terminal body 7 and improve the stability of the server.

[0091] When the terminal body 7 needs to be repaired, it is necessary to hold the handle 1105 and then press the pressing piece of the pressing component 1106 to move the pressing column into the pull-out frame 1102. The movement of the pressing column will drive the fixing ring 1108 to move into the pull-out frame 1102 and cause the second elastic member 1109 to deform. At the same time, the movement of the pressing column will drive the connecting rod 1110 to move, thereby driving the insertion rod 1111 to move into the pull-out frame 1102, so that the insertion rod 1111 is separated from the insertion hole 1113, so as to unlock the bottom frame 1101 and the pull-out frame 1102, and then the pull-out frame 1102 can be removed from the bottom frame 1101. 101 is pulled outward, and then the terminal body 7, etc. are pulled outward, so as to facilitate the maintenance of the terminal body 7, etc.; when the maintenance of the terminal body 7, etc. is completed, it is necessary to push the pull-out frame 1102 into the bottom frame 1101, and then release the pressing piece to allow the second elastic member 1109 to drive the pressing column and the fixing ring 1108 to move outward of the pull-out frame 1102 to achieve reset, thereby driving the insertion rod 1111 to move outward of the pull-out frame 1102 at the same time through the connecting rod 1110, and then the insertion rod 1111 is plugged into the socket 1113 to lock the bottom frame 1101 and the pull-out frame 1102, so as to facilitate the use of the server.

[0092] To sum up, the server of this application is not only comprehensively optimized in terms of heat dissipation, shock absorption and maintenance, but also takes into account the needs of intelligence and energy saving, greatly improving the stability and maintenance efficiency of the server, and has broad application prospects and market potential.

[0093] It should be noted that the server of the present application can be applied to the stable operation of cloud computing, data centers and big data storage and processing, and has significant application prospects.

[0094] The above is a detailed introduction to a server provided by the present application. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only intended to help understand the method and core ideas of the present application. It should be noted that, for those skilled in the art, without departing from the principles of the present application, several improvements and modifications may be made to the present application, and such improvements and modifications also fall within the scope of protection of the claims of the present application.

Claims

1. A server, characterized in that: include: A support assembly (8) is arranged on a support base surface; A heat exchange mounting plate (5) is arranged on a side of the support assembly (8) away from the support base surface; A terminal body (7) is arranged on a side of the heat exchange mounting plate (5) away from the support assembly (8) and in contact with the heat exchange mounting plate (5) to transfer heat to the heat exchange mounting plate (5); a cooling assembly (6) disposed between the support assembly (8) and the heat exchange mounting plate (5) and connected to the support assembly (8) and the heat exchange mounting plate (5), respectively; the cooling assembly (6) includes a cooling pipe (603) in contact with the heat exchange mounting plate (5) to remove heat from the heat exchange mounting plate (5); The server further comprises a mounting frame (4), the mounting frame (4) being arranged on a side of the heat exchange mounting plate (5) close to the support assembly (8) and connected to the heat exchange mounting plate (5), so that the heat exchange mounting plate (5) is connected to the cooling assembly (6) through the mounting frame (4), and the cooling pipe (603) is arranged in the mounting frame (4); The terminal body (7) includes a terminal shell (701), and the terminal shell (701) is provided with a shell air inlet (702) and a shell air outlet (703) at intervals; the cooling component (6) includes: A fan (609), the fan (609) being installed at the bottom of the installation frame (4), and the bottom of the installation frame (4) being provided with an installation frame air inlet (401) corresponding to the fan (609); An air outlet pipe (6010) is provided on one side of the installation frame (4) with an installation frame air outlet (402), and two ends of the air outlet pipe (6010) are respectively connected to the installation frame air outlet (402) and the shell air inlet (702).

2. The server according to claim 1, wherein: The cooling component (6) further includes: a liquid storage tank (601), the liquid storage tank (601) being arranged on a side of the support assembly (8) away from the support base surface and connected to the support assembly (8); a liquid extraction pipe (607), wherein the inlet of the liquid extraction pipe (607) is connected to the outlet of the liquid storage tank (601); A pump body (605), wherein the inlet of the pump body (605) is connected to the outlet of the liquid extraction tube (607); A connecting pipe (606), wherein the inlet of the connecting pipe (606) is connected to the outlet of the pump body (605), and the outlet of the connecting pipe (606) is connected to the inlet of the cooling pipe (603); A reflux pipe (604), the inlet of the reflux pipe (604) being connected to the outlet of the cooling pipe (603), and the outlet of the reflux pipe (604) being connected to the inlet of the liquid storage tank (601); A semiconductor cooler (608) is provided on one side of the liquid storage tank (601), a heating end of the semiconductor cooler (608) is located outside the liquid storage tank (601), and a cooling end of the semiconductor cooler (608) is located inside the liquid storage tank (601) to remove heat from the refrigerant in the liquid storage tank (601).

3. The server according to claim 2, wherein: The cooling assembly (6) further comprises a plurality of fixing columns (602), wherein the plurality of fixing columns (602) are arranged at intervals between the liquid storage tank (601) and the mounting frame (4), and each of the fixing columns (602) is respectively connected to the liquid storage tank (601) and the mounting frame (4), so that the liquid storage tank (601) and the mounting frame (4) form an accommodating space for accommodating the liquid extraction pipe (607), the pump body (605), the connecting pipe (606) and the return pipe (604).

4. The server according to claim 1, wherein: The support assembly (8) comprises: Base (1); A carrier frame (10), the carrier frame (10) is located on a side of the base (1) away from the supporting base surface, and the carrier frame (10) is connected to the heat exchange mounting plate (5); A plurality of buffer mechanisms (3) are provided at intervals between the base (1) and the carrier frame (10), and each of the buffer mechanisms (3) is connected to the base (1) and the carrier frame (10), respectively.

5. The server according to claim 4, wherein: The support assembly (8) further comprises a bearing mechanism (2), wherein the bearing mechanism (2) comprises: a piston rod (201) and a piston (203), wherein the piston rod (201) and the piston (203) are both located below the carrier (10), a first end of the piston rod (201) is connected to the carrier (10), and a second end of the piston rod (201) is connected to the piston (203); An air cylinder (202), an inflatable air cushion (204) and a delivery pipe (205), wherein the piston (203) is slidably inserted into the air cylinder (202), the air cylinder (202) is arranged on the base (1) and is located below the base (1), the inflatable air cushion (204) is arranged on the base (1) and is located between the base (1) and the supporting frame (10), and the air cylinder (202) and the inflatable air cushion (204) are connected via the delivery pipe (205).

6. The server according to claim 5, wherein: The buffer mechanism (3) comprises: A fixing ear (301), the fixing ear (301) being connected to the supporting frame (10); a first mounting head (302), wherein a first mounting gasket of the first mounting head (302) is mounted on a side of the fixing ear (301) close to the base (1), and a first threaded section of the first mounting head (302) passes through the fixing ear (301) and reaches a side of the fixing ear (301) away from the base (1); An assembly frame (303), the assembly frame (303) being connected to the base (1); a second mounting head (304), wherein a second mounting gasket of the second mounting head (304) is mounted on a side of the assembly frame (303) close to the carrier frame (10), and a second threaded section of the second mounting head (304) passes through the assembly frame (303) and reaches a side of the assembly frame (303) close to the base (1); Two limiting nuts (305), one of the two limiting nuts (305) is located on a side of the fixing ear (301) away from the base (1) and is threadedly connected to the first threaded segment, and the other of the two limiting nuts (305) is located on a side of the assembly frame (303) close to the base (1) and is threadedly connected to the second threaded segment; a damping rod (306), the damping rod (306) being located between the first mounting head (302) and the second mounting head (304); A first elastic member (307), wherein the first elastic member (307) is sleeved on the damping rod (306), and two ends of the first elastic member (307) are respectively connected to the first mounting head (302) and the second mounting head (304).

7. The server according to claim 1, wherein: The support assembly (8) comprises a base (1) and a drawer mechanism (11) located on a side of the base (1) close to the support base surface, the base (1) is located on a side of the cooling assembly (6) close to the support base surface, the drawer mechanism (11) comprises a bottom frame (1101) and a drawer component, the bottom frame (1101) is used to be fixed on the support base surface, and the base (1) is connected to the drawer component to move with the drawer component; The bottom frame (1101) comprises a mounting cavity, and the pull-out component comprises: A pull-out frame (1102), the pull-out frame (1102) being arranged opposite to the installation cavity so as to be inserted into the installation cavity or pulled out from the installation cavity; A handle (1105), the handle (1105) being arranged on one side of the pull-out frame (1102); a connecting rod transmission structure (1107), wherein at least a portion of the connecting rod transmission structure (1107) is located within the drawer frame (1102), and a first end of the connecting rod transmission structure (1107) passes through the drawer frame (1102) and is connected to or separated from the bottom frame (1101); a pressing component (1106), wherein a first end of the pressing component (1106) is located on a side of the handle (1105) away from the drawer frame (1102), and a second end of the pressing component (1106) passes through the handle (1105) and the drawer frame (1102) and is connected to a second end of the connecting rod transmission structure (1107); a fixing ring (1108), the fixing ring (1108) being fixedly sleeved on the pressing component (1106) and located inside the pull-out frame (1102); a second elastic member (1109), the second elastic member (1109) being sleeved on the pressing member (1106) and located between the drawer frame (1102) and the fixing ring (1108); The connecting rod transmission structure (1107) is driven to move by pressing or releasing the pressing component (1106), so that the connecting rod transmission structure (1107) and the bottom frame (1101) are plugged into or separated from each other, thereby achieving locking and unlocking between the bottom frame (1101) and the pull-out frame (1102).

8. The server according to claim 7, wherein: The bottom frame (1101) includes a socket (1113) connected to the installation cavity, the socket (1113) is located on the frame side panel of the bottom frame (1101), and the frame side panel of the pull-out frame (1102) is provided with a through hole (1114) corresponding to the socket (1113). The connecting rod transmission structure (1107) includes: A connecting rod (1110) and an inserting rod (1111), wherein the first end of the connecting rod (1110) is connected to the second end of the pressing component (1106), the second end of the connecting rod (1110) is connected to the first end of the inserting rod (1111), and the second end of the inserting rod (1111) is slidably disposed in the through hole (1114); The connecting rod (1110) is driven to move by pressing or releasing the pressing component (1106), thereby driving the insertion rod (1111) to slide along the through hole (1114) to be plugged into or separated from the insertion hole (1113).