Fan assembly and computer device

CN224624986UActive Publication Date: 2026-08-11深圳市磐鼎科技有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

然而,在计算机设备的日常维护或维修过程中,散热风扇的拆装成为一个显著的问题

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224624986U_ABST
    Figure CN224624986U_ABST
Patent Text Reader

Abstract

This utility model discloses a fan assembly and a computer device, relating to the fields of computer hardware and heat dissipation technology. The fan assembly includes a fan body, a housing, and a connector. The housing has an internal receiving groove, and the side wall of the receiving groove has a guide groove. One end of the connector is disposed on the fan body, and the other end of the connector can slide along the guide groove, allowing the fan body to be detachably disposed within the receiving groove. The technical solution provided by this utility model improves the ease of assembling and disassembling the fan body.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of computer hardware and heat dissipation technology, and in particular to a fan assembly and computer equipment. Background Technology

[0002] With the rapid development of computer technology and the continuous improvement of computer equipment performance, heat dissipation has become an increasingly important issue. As a core component of a computer's cooling system, the cooling fan primarily dissipates heat from the device's interior to the external environment through airflow. However, the disassembly and reassembly of cooling fans has become a significant problem during the routine maintenance and repair of computer equipment.

[0003] Existing cooling fans often require multiple tools to install, making disassembly and assembly cumbersome and inconvenient for maintenance. Utility Model Content

[0004] The main purpose of this utility model is to provide a fan assembly and computer equipment, which aims to improve the ease of disassembly and assembly of the fan body.

[0005] To achieve the above objectives, the fan assembly proposed in this utility model includes:

[0006] Fan body;

[0007] The housing has an internal receiving groove, and the sidewall of the receiving groove has a guide groove; and,

[0008] A connector is provided at one end on the fan body, and the other end of the connector can slide along the guide groove, so that the fan body can be detachably disposed in the receiving groove.

[0009] In one embodiment, one end of the guide groove is provided with an opening, which is connected to the opening of the receiving groove.

[0010] In one embodiment, the connector includes:

[0011] The support shaft has a sliding section and a fixed section, the sliding section being movably disposed in the guide groove, and the fixed section being connected to the fan body;

[0012] The first limiting plate protrudes from the outer periphery of the support shaft and is located on the side of the sliding section away from the fixed section;

[0013] The second limiting plate protrudes from the outer periphery of the support shaft and is located on the side of the sliding section near the fixed section. The first limiting plate and the second limiting plate cooperate to restrict the sliding section within the guide groove.

[0014] In one embodiment, the connector further includes:

[0015] An elastomer is disposed on the side of the fixed section away from the sliding section. The fan body is provided with a mounting hole. The elastomer can deform radially along the support shaft to detachably pass through the mounting hole. The second limiting plate cooperates with the elastomer to restrict the fixed section within the mounting hole.

[0016] In one embodiment, the elastomer is configured as a conical structure and disposed away from the fixed section, wherein the outer diameter of the bottom of the conical structure is larger than the diameter of the mounting hole.

[0017] In one embodiment, the elastomer has an operating shaft on the side opposite to the fixed section 312, and the outer diameter of the operating shaft is smaller than the inner diameter of the mounting hole.

[0018] In one embodiment, the connector is configured as rubber.

[0019] In one embodiment, the guide groove is provided on both opposite sidewalls of the receiving groove, and the connecting member is provided on both opposite sides of the fan body. Each guide groove is slidably connected to at least one connecting member.

[0020] In one embodiment, the housing includes a first fixing plate and a second fixing plate connected to each other, the first fixing plate and the second fixing plate being disposed opposite each other to form the receiving groove, and the first fixing plate and / or the second fixing plate being provided with the guide groove.

[0021] This utility model also proposes a computer device including the fan assembly described in any of the above embodiments.

[0022] The technical solution of this utility model involves a fan assembly comprising a fan body, a housing, and a connector. The housing has an internal receiving groove, and the side wall of the receiving groove has a guide groove. One end of the connector is located on the fan body, and the other end can slide along the guide groove, allowing the fan body to be detachably mounted in the receiving groove. Compared to existing fans that require external tools for installation, this utility model's technical solution, with its connector and guide groove, allows the connector to move relative to the guide groove, enabling the fan body to enter or leave the receiving groove without tools, thus improving the ease of assembly and disassembly of the fan body. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0024] Figure 1A schematic diagram of the structure of an embodiment of the fan assembly provided by this utility model;

[0025] Figure 2 for Figure 1 A partial exploded view of one embodiment;

[0026] Figure 3 for Figure 1 A cross-sectional view of one embodiment;

[0027] Figure 4 for Figure 1 A schematic diagram of the structure of one embodiment of the connecting member;

[0028] Figure 5 for Figure 1 A schematic diagram of one embodiment of the fan body and connecting parts.

[0029] Explanation of icon numbers:

[0030] 100. Fan body; 120. Mounting hole;

[0031] 200, housing; 210, receiving groove; 220, guide groove; 230, opening; 250, first fixing plate; 251, air inlet; 260, second fixing plate; 261, air outlet;

[0032] 300, Connector; 310, Support shaft; 311, Sliding section; 312, Fixed section; 320, First limiting plate; 330, Second limiting plate; 340, Elastic body; 350, Operating shaft.

[0033] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0034] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0035] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0036] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0037] With the rapid development of computer technology and the continuous improvement of computer equipment performance, heat dissipation has become an increasingly important issue. As a core component of a computer's cooling system, the cooling fan primarily dissipates heat from the device's interior to the external environment through airflow. However, the disassembly and reassembly of cooling fans has become a significant problem during the routine maintenance and repair of computer equipment.

[0038] Existing cooling fans often require multiple tools to install, making disassembly and assembly cumbersome and inconvenient for maintenance.

[0039] This utility model proposes a fan assembly to improve the ease of disassembly and assembly of the fan body.

[0040] Please see Figure 1 and Figure 2 In one embodiment, the fan assembly includes a fan body 100, a housing 200, and a connector 300. The housing 200 has an internal receiving groove 210, and the side wall of the receiving groove 210 has a guide groove 220. One end of the connector 300 is disposed on the fan body 100, and the other end of the connector 300 can slide along the guide groove 220, so that the fan body 100 can be detachably disposed in the receiving groove 210.

[0041] The fan body 100 is used to dissipate heat for external devices. The fan body 100 can be an axial fan, a centrifugal fan, etc., and the external device can be a computer device such as a server or computer; no limitation is made here. In one embodiment, the fan body 100 has an extension around its periphery to facilitate installation.

[0042] The housing 200 provides a mounting base and support for the fan body 100. In one embodiment, the housing 200 is located on an external device, and its interior has a receiving groove 210 for mounting the fan body 100. In one embodiment, the housing 200 has an air inlet 251 and an air outlet 261 communicating with the receiving groove 210. The air inlet 251 and the air outlet 261 are located on two opposite side walls of the receiving groove 210. The air inlet 251 is positioned opposite the air intake of the fan body 100, and the air outlet 261 is positioned opposite the air outlet of the fan body 100. The structures of the air inlet 251 and the air outlet 261 can be the same or different; no limitation is imposed here.

[0043] The connector 300 is used to move the fan body 100 and connect the fan body 100 to the housing 200. In one embodiment, the connector 300 is located on the extension of the fan body 100, and the guide groove 220 extends from the opening of the receiving groove 210 to the bottom of the receiving groove 210, that is, the extension direction of the guide groove 220 is consistent with the direction of the depth of the receiving groove 210, so as to ensure that the fan body 100 can enter or leave the receiving groove 210 by sliding the connector 300 along the guide groove 220. Thus, when it is necessary to install the fan body 100, one end of the connector 300 is first connected to the fan body 100; then the other end of the connector 300 is placed in the guide groove 220. Under the action of gravity or external force, the connector 300 slides along the guide groove 220 toward the bottom of the receiving groove 210 until the connector 300 abuts against the end of the guide groove 220, thereby realizing the installation of the fan body 100. When it is necessary to disassemble the fan, simply remove the fan. Under the action of external force, the connector 300 moves along the guide groove 220 toward the opening of the receiving groove 210 until the connector 300 and the fan body 100 are completely removed from the receiving groove 210, thus completing the disassembly.

[0044] The technical solution of this utility model involves a fan body 100, a housing 200, and a connector 300 arranged in a fan assembly. The housing 200 has an internal receiving groove 210, and the side wall of the receiving groove 210 has a guide groove 220. One end of the connector 300 is attached to the fan body 100, and the other end can slide along the guide groove 220, allowing the fan body 100 to be detachably mounted in the receiving groove 210. Compared to existing fans that require external tools for installation, the technical solution of this utility model, with its connector 300 and guide groove 220, allows the connector 300 to move relative to the guide groove 220, enabling the fan body 100 to enter or leave the receiving groove 210 without tools, thus improving the ease of assembly and disassembly of the fan body 100.

[0045] Please see Figure 2In one embodiment, one end of the guide groove 220 is provided with an opening 230, which is connected to the groove opening of the receiving groove 210.

[0046] Specifically, in one embodiment, the wall of the receiving groove 210 is provided with a through hole communicating with the receiving groove 210. The through hole extends from the opening of the receiving groove 210 to the bottom of the groove, forming a guide groove 220. The guide groove 220 is a non-closed hole, and one end of the guide groove 220 near the opening of the receiving groove 210 is provided with an opening 230, so that one end of the guide groove 220 is formed as an open end, so as to facilitate the entry or exit of the connector 300 into the guide groove 220. The opening 230 is connected to the opening of the receiving groove 210 to ensure that after the connector 300 is connected to the fan body 100, the connector 300 and the fan body 100 can still smoothly enter the receiving groove 210. Of course, in other embodiments, the wall of the receiving groove 210 may also be recessed to form the guide groove 220, which is not limited here.

[0047] Thus, by setting the opening 230, the connecting piece 300 can drive the fan body 100 into or out of the receiving groove 210. The fan body 100 can be quickly installed and removed from the receiving groove 210 simply by sliding the connecting piece 300, which improves the ease of installation and removal of the fan body 100.

[0048] Please see Figures 3 to 5 In one embodiment, the connector 300 includes a support shaft 310, a first limiting plate 320, and a second limiting plate 330. The support shaft 310 has a sliding section 311 and a fixed section 312. The sliding section 311 is movably disposed in the guide groove 220, and the fixed section 312 is connected to the fan body 100. The first limiting plate 320 protrudes from the outer periphery of the support shaft 310 and is located on the side of the sliding section 311 away from the fixed section 312. The second limiting plate 330 protrudes from the outer periphery of the support shaft 310 and is located on the side of the sliding section 311 closer to the fixed section 312. The first limiting plate 320 and the second limiting plate 330 cooperate to restrict the sliding section 311 within the guide groove 220.

[0049] In one embodiment, the outer diameter of the sliding segment 311 of the support shaft 310 is smaller than the width of the guide groove 220 to ensure that the sliding segment 311 can pass through the guide groove 220. In another embodiment, the outer diameters of the first limiting plate 320 and the second limiting plate 330 are both larger than the width of the guide groove 220. When the sliding segment 311 is disposed in the guide groove 220, the first limiting plate 320 and the second limiting plate 330 are respectively located on opposite sides of the guide groove 220. The first limiting plate 320 and the second limiting plate 330 can abut against the two opposite outer walls of the guide groove 220 to confine the sliding segment 311 within the guide groove 220, thereby limiting the position of the support shaft 310. The size of the first limiting plate 320 can be flexibly set according to the size of the guide groove 220, and is not limited here.

[0050] Please see Figures 3 to 5 In one embodiment, the connector 300 further includes an elastic body 340 disposed on the side of the fixed section 312 away from the sliding section 311. The fan body 100 is provided with a mounting hole 120. The elastic body 340 can deform radially along the support shaft 310 to detachably pass through the mounting hole 120. The second limiting plate 330 cooperates with the elastic body 340 to restrict the fixed section 312 to the mounting hole 120.

[0051] In one embodiment, the mounting hole 120 is located in the extension of the fan body 100, and the elastic body 340 has good elastic deformation capability. In one embodiment, the outer diameter of the elastic body 340 is larger than the diameter of the mounting hole 120, so that the elastic body 340 can deform through the mounting hole 120 and abut against the outer wall of the mounting hole 120, so that the fixing section 312 is opposite to the inner circumference of the mounting hole 120. In one embodiment, the outer diameter of the second limiting plate 330 is larger than the diameter of the mounting hole 120. The second limiting plate 330 and the elastic body 340 are located on both sides of the fixing section 312, and the second limiting plate 330 and the elastic body 340 abut against the two opposite outer walls of the mounting hole 120, so as to restrict the fixing section 312 within the mounting hole 120. The outer diameter of the elastic body 340 can be flexibly set according to the size of the mounting hole 120; the outer diameter of the second limiting plate 330 can be flexibly set according to the size of the guide groove 220 and the mounting hole 120, and is not limited here. Specifically, in one embodiment, the elastic body 340 is configured as a conical structure and is positioned away from the fixed section 312. The outer diameter of the bottom of the conical structure is larger than the diameter of the mounting hole 120 to ensure that the elastic body 340 can abut against the outer wall of the mounting hole 120. In one embodiment, an operating shaft 350 is provided on the side of the elastic body 340 away from the fixed section 312. The outer diameter of the operating shaft 350 is smaller than the inner diameter of the mounting hole 120 to ensure that the operating shaft 350 can pass through. Specifically, in one embodiment, the operating shaft 350 is located at the tip of the conical structure to guide the elastic body 340 through the mounting hole 120. Of course, in other embodiments, the elastic body 340 may also be configured as an elliptical structure, with the operating shaft 350 provided at one end of the elliptical structure; or, the elastic body 340 may be configured as a conical structure without the operating shaft 350. No limitation is imposed here.

[0052] When installing the fan body 100, first pass the operating shaft 350 through the mounting hole 120 and pull the operating shaft 350 so that the elastic body 340 passes through the mounting hole 120 to connect the support shaft 310 to the fan body 100. Then, insert the sliding section 311 into the guide groove 220 through the opening 230. Under the action of gravity or external force, the support shaft 310 slides along the guide groove 220 toward the bottom of the receiving groove 210 until the sliding section 311 abuts against the end of the guide groove 220, thus installing the fan body 100. When disassembling the fan, simply remove the fan. Under the action of external force, the connector 300 moves along the guide groove 220 toward the opening of the receiving groove 210 until the connector 300 and the fan body 100 are completely disengaged from the receiving groove 210. Pull the sliding section 311 of the support shaft 310 so that the elastic body 340 passes through the mounting hole 120 to separate the support shaft 310 from the fan body 100, thus completing the disassembly.

[0053] The technical solution of this utility model embodiment, by setting the first limiting plate 320 and the second limiting plate 330, can ensure that the moving direction of the fan body 100 is always parallel to the extending direction of the guide groove 220, preventing the fan body 100 from deviating from the installation position; and can restrict the support shaft 310 to the housing 200, thereby restricting the fan body 100 to the receiving groove 210, avoiding the use of external tools to restrict the fan body 100 to the housing 200, realizing tool-free installation, and improving the installation accuracy and reliability of the fan body 100. By setting the elastic body 340, a detachable connection between the support shaft 310 and the fan body 100 is realized, further improving the convenience of disassembling and assembling the fan body 100. By setting the elastic body 340 as a conical structure, the elastic body 340 can pass more easily through the mounting hole 120 to restrict the fixed section 312 to the mounting hole 120, facilitating installation and disassembly, and improving the ease of use of the elastic body 340. By setting the operating shaft 350, it is easy to apply force to the elastic body 340, further improving the ease of use of the connecting rod.

[0054] In one embodiment, the connector 300 is configured as rubber.

[0055] Specifically, in one embodiment, the connector 300 is a rubber nail structure, and the support shaft 310, the first limiting plate 320, the second limiting plate 330, the elastomer 340, and the operating shaft 350 are integrally formed to ensure the overall strength of the connector 300. Of course, in other embodiments, the connector 300 can also be configured with materials such as silicone or polyurethane elastomer 340, which have good wear resistance and elasticity; this is not a limitation. In another embodiment, the support shaft 310, the first limiting plate 320, the second limiting plate 330, the elastomer 340, and the operating shaft 350 can also be separately arranged, and the support shaft 310, the first limiting plate 320, the second limiting plate 330, the elastomer 340, and the operating shaft 350 are connected by bonding or snap-fitting. The elastomer 340 is configured as a material with good elasticity, such as rubber or silicone, while the support shaft 310, the first limiting plate 320, the second limiting plate 330 and the operating shaft 350 can be configured as rubber, plastic or metal materials, etc., without specific restrictions.

[0056] The technical solution of this utility model embodiment, by configuring the connector 300 as rubber, can reduce the impact of external vibration on the fan body 100 and provide protection for the fan body 100; and the rubber has good wear resistance, which can improve the service life of the connector 300.

[0057] Please see Figure 1 and Figure 2 In one embodiment, the two opposite sidewalls of the receiving groove 210 are provided with guide grooves 220, and the opposite sides of the fan body 100 are provided with connectors 300, and each guide groove 220 is slidably connected to at least one connector 300.

[0058] In one embodiment, the fan body 100 has four mounting holes 120 on both the air outlet and air inlet sides. The mounting holes 120 are evenly distributed around the fan body 100, and each mounting hole 120 is used to mount a connector 300. A guide groove 220 is provided on both sides of the air inlet 251 and air outlet 261 of the housing 200, and all guide grooves 220 are arranged parallel to each other. The gap between two adjacent mounting holes 120 located on the same horizontal line is equal to the gap between two adjacent guide grooves 220, and each guide groove 220 is opposite to two mounting holes 120 located on the same vertical line. In one embodiment, the gap between two adjacent mounting holes 120 located on the same vertical line is equal to the length of the groove opening of the guide groove 220. This allows one connector 300 to abut against the end of the guide groove 220 after the connector 300 drives the fan body 100 completely into the receiving groove 210, preventing the fan body 100 from colliding with the housing 200. The other connector 300 is located at the opening 230 to position both ends of the fan body 100. Of course, in other embodiments, the gap between two adjacent mounting holes 120 located on the same vertical line may be smaller than the length of the groove opening of the guide groove 220; this is not a limitation. Of course, in other embodiments, only one guide groove 220 may be provided, and one or more mounting holes 120 located on the same vertical line may be provided on the fan body 100; or, multiple guide grooves 220 may be provided on both side walls of the receiving groove 210, and multiple mounting holes 120 may be provided on both sides of the fan body 100; or, multiple guide grooves 220 may be located on the same side wall, and multiple mounting holes 120 may be provided on one side of the fan body 100. There are no restrictions here.

[0059] The technical solution of this utility model embodiment, by providing connectors 300 and guide grooves 220 on both sides of the fan body 100, can further limit the movement path and installation position of the fan body 100, and can improve the stability of the fan body 100 driven by the connectors 300, thereby improving the reliability of the fan body 100 assembly and disassembly.

[0060] Please see Figure 1 and Figure 2 In one embodiment, the housing 200 includes a first fixing plate 250 and a second fixing plate 260 connected to each other. The first fixing plate 250 and the second fixing plate 260 are disposed opposite each other to form the receiving groove 210. The first fixing plate 250 and / or the second fixing plate 260 are provided with guide grooves 220.

[0061] In one embodiment, two side plates are provided on both sides of the first fixing plate 250, and the two side plates are respectively connected to the two ends of the second fixing plate 260. A bottom plate is provided at the bottom of the second fixing plate 260, and the bottom plate is connected to the bottom of the first fixing plate 250. The first fixing plate 250, the two side plates, the bottom plate, and the second fixing plate 260 form a receiving groove 210. In one embodiment, the receiving groove 210 is used to accommodate multiple fan bodies 100. Multiple air inlets 251 are provided at intervals on the first fixing plate 250, and air outlets 261 are provided on the second fixing plate 260, which are one-to-one opposite to the multiple air inlets 251. Two guide grooves 220 are provided on both sides of each fan body 100, that is, each air inlet 251 and each air outlet 261 has a guide groove 220 on both sides. In one embodiment, the air inlets 251 and air outlets 261 are respectively connected to the grooves of the guide grooves 220, which simplifies the overall structure of the housing 200. Of course, in other embodiments, the receiving slot 210 may be used to receive only one fan body 100, and the guide slot 220 may be provided only on the first fixing plate 250 or the second fixing plate 260. There are no restrictions here.

[0062] The technical solution of this utility model embodiment, by setting the first fixing plate 250 and the second fixing plate 260, can provide an installation base and support for the fan body 100. When it is necessary to replace or repair the fan body 100, the fan body 100 can be disassembled simply by separating it from the first fixing plate 250 and the second fixing plate 260, thus improving ease of use. Furthermore, the first fixing plate 250 and the second fixing plate 260 can protect the fan body 100, thereby extending its service life.

[0063] This utility model also proposes a computer device including the fan assembly of the above embodiments. The specific structure of the fan assembly is as described in the above embodiments. Since this computer device adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be described in detail here.

[0064] The above description is merely an exemplary embodiment of the present utility model and does not limit the scope of protection of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the scope of protection of the present utility model.

Claims

1. A fan assembly, characterized in that, include: Fan body; The housing has an internal receiving groove, and the sidewall of the receiving groove has a guide groove; and, A connector is provided at one end on the fan body, and the other end of the connector can slide along the guide groove, so that the fan body can be detachably disposed in the receiving groove.

2. The fan assembly as claimed in claim 1, characterized in that, One end of the guide groove is provided with an opening, which is connected to the opening of the receiving groove.

3. The fan assembly as claimed in claim 1, characterized in that, The connector includes: The support shaft has a sliding section and a fixed section, the sliding section being movably disposed in the guide groove, and the fixed section being connected to the fan body; The first limiting plate protrudes from the outer periphery of the support shaft and is located on the side of the sliding section away from the fixed section; The second limiting plate protrudes from the outer periphery of the support shaft and is located on the side of the sliding section near the fixed section. The first limiting plate and the second limiting plate cooperate to restrict the sliding section within the guide groove.

4. The fan assembly as claimed in claim 3, characterized in that, The connector also includes: An elastomer is disposed on the side of the fixed section away from the sliding section. The fan body is provided with a mounting hole. The elastomer can deform radially along the support shaft to detachably pass through the mounting hole. The second limiting plate cooperates with the elastomer to restrict the fixed section within the mounting hole.

5. The fan assembly as claimed in claim 4, characterized in that, The elastomer is configured as a conical structure and is positioned away from the fixed section, wherein the outer diameter of the bottom of the conical structure is larger than the diameter of the mounting hole.

6. The fan assembly as claimed in claim 4, characterized in that, The elastic body has an operating shaft on the side opposite to the fixed section (312), and the outer diameter of the operating shaft is smaller than the inner diameter of the mounting hole.

7. The fan assembly as claimed in claim 1, characterized in that, The connector is made of rubber.

8. The fan assembly as claimed in claim 1, characterized in that, The guide groove is provided on both opposite sidewalls of the receiving groove, and the connecting member is provided on both opposite sides of the fan body. Each guide groove is slidably connected to at least one connecting member.

9. The fan assembly as claimed in claim 1, characterized in that, The housing includes a first fixing plate and a second fixing plate connected to each other. The first fixing plate and the second fixing plate are arranged opposite each other to form the receiving groove. The first fixing plate and / or the second fixing plate are provided with the guide groove.

10. A computer device, characterized in that, Includes the fan assembly as described in any one of claims 1 to 9.