Wind scooper device and server thereof
By designing the connection unit in the air guide hood device to extend into the limit notch and below the upper baffle, and using the connection module, the connection frame and the upper baffle to fix it, the problem of poor heat dissipation caused by the strong heat dissipation air flow is solved, and a more efficient heat dissipation effect is achieved.
Patent Information
- Application Number
- CN202420854586.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-23
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-04-23
AI Technical Summary
The existing air guide shield is easily blown up when facing a strong heat dissipation airflow, resulting in the inability to centrally direct the heat dissipation airflow to the high-heat electronic components, resulting in the problem of poor heat dissipation.
A wind guide hood device is designed, and its connection unit extends into the limit notch and below the upper baffle, so that the air guide hood can be pivotally fixed to the frame unit, and is fixed to the connecting frame and upper baffle through the connection module to avoid lifting due to strong wind flow.
Effectively ensure that the air guide shield will not rise due to strong airflow, ensure that the heat dissipation airflow can be centrally directed to the electronic components, and improve the overall heat dissipation efficiency.
Smart Images

Figure CN222883000U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an air guide cover, in particular to an air guide cover device and a server using the same. Background Art
[0002] In recent years, with the widespread application and vigorous development of servers, servers have been able to cope with the needs of huge data processing and high-speed data calculations. However, when servers perform high-energy processing operations, high-temperature heat energy is generated inside, which must be dissipated internally in real time to avoid the risk of internal overheating leading to system instability, reduced processing speed or downtime. At present, it is common to set up an air duct to guide the cooling airflow of the internal fan and concentrate the cooling airflow to blow to the electronic components that generate high heat, effectively ensuring the cooling efficiency and avoiding the risk of overheating inside the server, as well as stably maintaining the high-efficiency execution of the server. However, with the increasing demand for high-energy processing operations of servers, in order to solve the high-temperature heat energy generated by the high-energy electronic chips with high-efficiency processing inside the server, although it is currently possible to increase the configuration of fans and increase the fan operation efficiency to generate a strong cooling airflow that flows through the air duct and guides the cooling airflow to blow to the high-energy electronic chips, thereby ensuring the cooling efficiency. However, due to excessive vibration caused by high-energy operation of the fan and strong heat dissipation airflow passing through the air guide cover, the air guide cover is often blown up, resulting in the air guide cover being unable to centrally guide the heat dissipation airflow to the high-heat electronic components, causing poor heat dissipation problems. It is worth careful study and discussion by practitioners to improve it. Summary of the invention
[0003] Therefore, the purpose of the present invention is to provide an air guide cover device with good heat dissipation performance.
[0004] Therefore, the utility model air scoop device is installed in a server. The server includes a rack, a frame device arranged in the rack, and an electronic device. The air scoop device is detachably connected to the frame device and the electronic device. The frame device has a frame unit, and the frame unit has a frame body, and the frame body has an installation notch. The electronic device has a connecting frame. The connecting frame has a connecting plate, and the connecting plate has a limiting notch. The rack has a bottom plate, a side plate extending from the bottom plate away from the bottom plate and perpendicular to the bottom plate, and an upper baffle plate arranged on the side plate and extending from the side plate toward the connecting frame. The air scoop device includes an air scoop, a first fan fixing frame, and a connecting unit arranged on the air scoop.
[0005] The air guide cover includes a base plate parallel to and spaced from the bottom plate, and a combined frame module extending from the base plate toward the frame body of the frame unit and extending into the installation notch, and detachably fixed to the frame body. The first fan fixing frame can be used to install a first fan unit. The connecting unit extends from the base plate in a direction away from the first fan fixing frame. The connecting unit extends from the base plate in the direction of the limiting notch of the connection frame and the direction of the upper baffle. The lower part of the upper baffle is defined as a spatial position between the upper baffle and the bottom plate. The connecting unit extends into the limit notch and the bottom of the upper baffle, and the connecting unit at least partially abuts against the limit notch and the upper baffle to form a abutment portion, so that the air guide cover can be pivoted toward the bottom plate with the abutment portion as the axis, and the combined frame module of the air guide cover is pivoted to the frame body combined and fixed to the frame unit. At this time, the connecting unit can be abutted upward in the direction away from the bottom plate to block the connecting frame and the upper baffle, and the air guide cover is fixedly connected to the frame device and the electronic device.
[0006] In particular, the connecting unit has a connecting module extending from the base plate toward the direction of the limiting notch of the connecting frame and the direction of the upper baffle, the connecting module extends under the limiting notch and the upper baffle and makes the connecting module partially abut against the limiting notch and the upper baffle to form the abutment portion and makes the air guide cover pivot toward the direction of the base plate and makes the combining frame module of the air guide cover pivot to the frame body combined and fixed to the frame unit. At this time, the connecting module can be pressed upward to block the connecting frame and the upper baffle and make the air guide cover fixedly connected to the frame device and the electronic device.
[0007] In particular, the connection frame of the electronic device also has a positioning piece located below the connection plate, wherein the space below the connection plate is defined as being located between the connection plate and the bottom plate, the frame also has a lower baffle plate disposed on the side plate and extending from the side plate toward the connection frame, the lower baffle plate is located below the upper baffle plate and between the upper baffle plate and the air guide cover, the connection module of the connection unit has an extension piece extending from the base plate of the air guide cover in a direction away from the base plate, and a support piece extending downwardly from the extension piece. , and a connecting piece extending from the support piece in a direction away from the air guide cover, the connecting piece of the connecting module simultaneously extends into the limiting notch of the connecting plate and under the upper baffle and makes the supporting piece abut against the connecting plate and the upper baffle so that the air guide cover can pivot toward the direction of the bottom plate, and makes the air guide cover pivot to the frame unit fixed to the frame device, at this time, the connecting piece of the connecting module can be simultaneously clamped upward to block the connecting plate and the upper baffle and the extending piece abuts downward against the positioning piece of the connecting frame and the lower baffle of the rack.
[0008] In particular, the frame unit of the frame device also has a fixing plate arranged on the frame body and located in the installation notch, the fixing plate has a fixing hole, the combining frame module of the air guide cover has a combining frame extending from the substrate toward the frame body of the frame unit, a combining frame extending from the combining frame into the installation notch and detachably combining with the fixing plate, and a positioning unit arranged on the combining frame, the positioning unit has a positioning pin that passes through the combining frame and can be controllably extended into the fixing hole of the fixing plate for positioning, and a controller arranged on the combining frame and can control the positioning pin to extend into the fixing hole of the fixing plate.
[0009] In particular, the combining frame module of the air guide cover also has a guide frame extending from the combining frame toward the installation notch, and the guide frame has a bending piece corresponding to one side of the installation notch and can block the frame body of the frame unit. In the process that the support plate abuts against the connecting plate of the connecting frame and the upper blocking plate of the rack to pivot the air guide cover toward the bottom plate, the combining frame module will pivot toward the bottom plate and make the bending piece of the guide frame first combine with the installation notch of the frame body of the frame unit and guide the combining frame module to combine with the frame unit, and then the bending piece of the guide frame moves to block the frame body of the frame unit and make the combining frame corresponding to the fixing plate, and control the controller to control the positioning pin to extend into the fixing hole of the fixing plate to fix the combining frame on the fixing plate. At this time, the air guide cover is combined and fixed to the frame unit of the frame device.
[0010] In particular, the connecting unit has two connecting modules extending from two opposite ends of the substrate respectively in the direction of the limiting notch of the connecting frame and the direction of the upper baffle, the connecting modules respectively extend into the limiting notch and the lower part of the upper baffle and make the connecting module parts respectively abut against the limiting notch and the upper baffle to form the abutting part and make the air guide cover pivot toward the direction of the bottom plate and make the combining frame module of the air guide cover pivot to the frame body combined and fixed to the frame unit. At this time, the connecting modules can be respectively pressed upward to block the connecting frame and the upper baffle and make the air guide cover fixedly connected to the frame device and the electronic device.
[0011] In particular, the first fan unit has at least one first fan module, and the first fan fixing frame includes at least one fixing frame module for detachably fixing and combining the first fan module, the fixing frame module has two fixing plates which are arranged in parallel and spaced apart on the base plate of the air guide cover and extend from the base plate toward the bottom plate, and a fixing frame which is connected to the fixing plates and close to the combining frame module and can be fixedly combined with the first fan module, and the fixing plate of the fixing frame module cooperates with the fixing frame to define an installation space for accommodating the fan module.
[0012] In particular, the fixing frame module of the first fan fixing frame also has two fixing columns arranged on the fixing plate and capable of fixing the first fan module together. The fixing columns and the corresponding fixing frames are located on two opposite sides of the fixing plate. The first fan module is installed in the installation space of the fixing frame module and two opposite sides of the first fan module are fixedly combined to the corresponding fixing frames and the fixing columns.
[0013] Particularly, the first fan fixing bracket further comprises a plurality of locking units, and the locking units can detachably fix two opposite sides of the first fan module of the first fan unit to the corresponding fixing frame and the fixing column respectively.
[0014] Therefore, the purpose of the present invention is to provide a server with good heat dissipation performance.
[0015] Therefore, the server of the utility model includes a rack, a frame device arranged in the rack, an electronic device arranged in the rack and spaced apart from the frame device, and an air scoop device arranged in the rack and located between the frame device and the electronic device, and detachably connecting the frame device and the electronic device.
[0016] The frame has a bottom plate, a side plate extending upward from the bottom plate, and an upper baffle plate arranged on the side plate and extending from the side plate to a connection frame. The frame device has a frame unit close to the air duct device, and the frame unit has a frame body, and the frame body has a mounting notch. The electronic device has the connection frame. The connection frame has a connecting plate, and the connecting plate has a limiting notch. The air duct device can detachably connect the frame device and the electronic device. The air duct device includes an air duct, a first fan fixing frame, and a connecting unit arranged on the air duct. The air duct includes a base plate spaced parallel to the bottom plate, and a combined frame module extending from the base plate to the frame body of the frame unit and extending into the mounting notch, and can be detachably fixed on the frame body. The first fan fixing frame can be installed for a first fan unit. The connecting unit extends from the base plate in a direction away from the first fan fixing frame. The connection unit extends from the base plate toward the direction of the limiting notch of the connection frame and the direction of the upper baffle. The lower part of the upper baffle is defined as the spatial position between the upper baffle and the bottom plate. The connection unit extends into the limiting notch and the lower part of the upper baffle, and the connection unit at least partially abuts against the limiting notch and the upper baffle to form an abutment portion, and the air scoop can be pivoted toward the bottom plate with the abutment portion as the axis, and the air scoop can be pivoted to the frame body fixed to the frame unit. At this time, the connection unit can be abutted upward in the direction away from the bottom plate to block the connection frame and the upper baffle, and the air scoop can be fixedly connected to the frame device and the electronic device.
[0017] Compared with the prior art, the utility model provides an air scoop device and a server thereof, wherein the connecting unit of the air scoop device extends into the limit notch and the bottom of the upper baffle plate and the connecting unit abuts against the limit notch and the upper baffle plate so that the air scoop can be pivoted toward the bottom plate, and the design cooperates with the design that the air scoop can be pivoted to the frame unit combined and fixed to the frame device, and the connecting unit can be abutted upward to block the connecting frame and the upper baffle plate. In the process that the heat dissipation airflow generated by the operation of the frame device and the first fan unit flows from the first fan unit through the connecting frame of the electronic device and flows into the electronic device for heat dissipation, the heat dissipation airflow will be blocked and fixed upward by the connecting frame and the upper baffle plate through the connecting unit, effectively ensuring that the air scoop and the connecting unit will not be lifted up due to the strong wind blowing through, effectively avoiding the problem of poor heat dissipation caused by the dissipation of the heat dissipation airflow, and the overall heat dissipation efficiency is good. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Other features and effects of the present invention will be clearly presented in the embodiments with reference to the accompanying drawings, in which:
[0019] Figure 1 It is a three-dimensional exploded view, illustrating an embodiment of the wind guide cover device of the utility model;
[0020] Figure 2 It is a three-dimensional diagram, which helps explain Figure 1 , and an embodiment of the air scoop device is described as being installed in a server;
[0021] Figure 3 is a three-dimensional diagram illustrating the connection relationship between two connection modules of a connection unit and an electronic device and a rack of the server in the embodiment;
[0022] Figure 4 This is a partial stereoscopic enlarged picture, explaining Figure 3 , a connection relationship between one of the connection modules of the connection unit and a connection frame of the electronic device;
[0023] Figure 5 This is a partial stereoscopic enlarged picture, explaining Figure 3 In the embodiment, another connection module of the connection unit is connected to an upper baffle of the rack;
[0024] Figure 6 is a three-dimensional diagram illustrating that in this embodiment, the air guide cover device is fixedly connected to a frame device and the electronic device;
[0025] Figure 7 This is a partial stereoscopic enlarged picture, explaining from another perspective Figure 6 In the embodiment, an extension piece of one of the connection modules of the connection unit is limited in upper and lower positions by the upper stopper and the lower stopper of the rack;
[0026] Figure 8 This is a partial stereoscopic enlarged picture, explaining Figure 6 In the embodiment, the extension piece of another connecting module of the connecting unit is limited in upper and lower positions by a connecting plate and a positioning piece of the connecting frame;
[0027] Fig. 9 This is a partial stereoscopic enlarged picture, explaining Figure 6 , a combination relationship between a combination frame module of an air scoop of the air scoop device and a frame unit of the frame device; and
[0028] Fig.10 This is a partial stereoscopic enlarged picture, explaining from another perspective Fig. 9 In the embodiment, a combination frame, a positioning unit and a fixing piece of a frame unit of the frame device are combined with each other. DETAILED DESCRIPTION
[0029] Before the present invention is described in detail, it should be noted that similar elements are represented by the same reference numerals in the following description.
[0030] See also Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , an embodiment of the air scoop device 1 of the utility model is installed in a server 90. The server 90 includes a rack 91, a frame device 92 disposed in the rack 91, and an electronic device 93 disposed in the rack 91 and spaced apart from the frame device 92. The air scoop device 1 is disposed in the rack 91 and is located between the frame device 92 and the electronic device 93, and the frame device 92 and the electronic device 93 are detachably connected. The frame device 92 has a frame unit 921 close to the air scoop device 1. The electronic device 93 has a connection frame 931 for connecting and combining with the air scoop device 1. The connection frame 931 has a connection plate 932, and the connection plate 932 has a limiting notch 933 close to the air scoop device 1. The frame 91 has a bottom plate 911, a side plate 912 extending upward from the bottom plate 911, and an upper baffle 913 disposed on the side plate 912 and extending from the side plate 912 toward the connection frame 931 and capable of being coupled to the air scoop device 1. The air scoop device 1 includes an air scoop 2, a first fan fixing frame 3 disposed in the air scoop 2, and a connecting unit 5 disposed on the air scoop 2.
[0031] The air guide cover 2 includes a base plate 21 parallel to and spaced from the bottom plate 911 , and two air guide plates 22 extending from two opposite sides of the base plate 21 toward the bottom plate 911 and connected to the bottom plate 911 .
[0032] The first fan fixing bracket 3 is disposed on the base plate 21 of the air scoop 2 and is located inside the air scoop 2 and close to the frame device 92. The first fan fixing bracket 3 can be used for mounting a first fan unit 4.
[0033] The connection unit 5 is disposed on the base plate 21 of the air guide cover 2 and extends from the base plate 21 in a direction away from the first fan fixing bracket 3. The connection unit 5 extends from the base plate 21 in a direction toward the limiting notch 933 of the connection frame 931 and the upper baffle 913. The lower part of the upper baffle 913 is defined as a space between the upper baffle 913 and the bottom plate 911 of the frame 91. The connection unit 5 extends into the lower part of the limiting notch 933 and the upper baffle 913, and the connection unit 5 partially abuts against the limiting notch 933 and the upper baffle 913 to form a abutting portion, and the air scoop 2 can be pivoted toward the bottom plate 911 with the abutting portion as the axis, and the air scoop 2 is pivoted to the frame unit 921 fixed to the frame device 92. At this time, the connection unit 5 can be abutted upward to block the connection frame 931 and the upper baffle 913, and the air scoop 2 is fixedly connected to the frame device 92 and the electronic device 93. That is, part of the connection unit 5 can abut against the limiting notch 933 and the upper baffle 913, and the part abutting against the limiting notch 933 and the upper baffle 913 is used as the abutting portion, so that the air scoop 2 can rotate with the abutting portion as the axis.
[0034] In further detail, in this embodiment, the connection unit 5 (see Figure 1 , Figure 3 ) has two connecting modules 51 extending from two opposite ends of the base plate 21 respectively toward the direction of the limiting notch 933 of the connection frame 931 and the direction of the upper baffle 913. The connecting modules 51 extend into the lower part of the limiting notch 933 and the upper baffle 913 respectively, and the connecting modules 51 are partially pressed against the limiting notch 933 and the upper baffle 913 respectively, and the part pressed against the limiting notch 933 and the upper baffle 913 is used as the abutting part (not numbered in the figure) so that the air scoop 2 can be pivoted toward the direction of the bottom plate 911, and the air scoop 2 is pivoted to the frame unit 921 combined and fixed to the frame device 92. At this time, the connecting modules 51 are pressed against the limiting notch 933 and the upper baffle 913 respectively, and the part pressed against the limiting notch 933 and the upper baffle 913 is used as the abutting part (not numbered in the figure) so that the air scoop 2 can be pivoted toward the direction of the bottom plate 911, and the air scoop 2 is pivoted to the frame unit 921 fixed to the frame device 92. At this time, the connecting modules The block 51 can be respectively pressed upward to block the connecting frame 931 and the upper baffle 913 and fix the air guide cover 2 to connect the frame device 92 and the electronic device 93. In another embodiment, the connecting unit 5 has one connecting module 51, and the connecting module 51 can be set at a position on the substrate 21 corresponding to the limiting notch 933, and extend from the substrate 21 to the direction of the limiting notch 933 of the connecting frame 931 and the direction of the upper baffle 913.
[0035] In another embodiment, the connection unit 5 may include a plurality of connection modules 51 . In this embodiment, the connection unit 5 is illustrated with an implementation form having two connection modules 51, but the invention is not limited thereto. The connection unit 5 can also be designed according to actual needs to have only one connection module 51 and the connection module 51 can extend into the limit notch 933 and the lower part of the upper baffle 913 and make the connection module 51 partially abut against the limit notch 933 and the upper baffle 913 at the same time and use the part abutting against the limit notch 933 and the upper baffle 913 as the abutting part so that the air scoop 2 can pivot toward the bottom plate 911 and pivot to the frame unit 921 fixed to the frame device 92. At this time, the connection module 51 can be simultaneously abutted upward against the connection frame 931 and the upper baffle 913 to fix the air scoop 2 to the frame device 92 and the electronic device 93. Alternatively, the connection unit 5 can have an implementation form having more than three connection modules 51. For the convenience of description, the following description is based on an implementation in which the connection unit 5 has two connection modules 51 .
[0036] During assembly, just connect the connecting module 51 of the air guide cover device 1 as shown in FIG. Figure 3 As shown in FIG. 1 , the connecting module 51 is extended into the limit notch 933 and the upper baffle 913 at an angle and the connecting module 51 is partially pressed against the limit notch 933 and the upper baffle 913 respectively. The portion pressed against the limit notch 933 and the upper baffle 913 is used as the abutting portion, so that the connecting module 51 can be as shown in FIG. Figure 3 As shown, the air guide cover 2 is driven to pivot toward the bottom plate 911. Figure 2 As shown, the air scoop 2 is located between the upper baffle 913 and the bottom plate 911. Next, the air scoop 2 is pivoted to the frame unit 921 combined with the frame device 92 and fixed to the frame unit 921, and the assembly is completed. At this time, the connection module 51 can be respectively pressed upward against the connection frame 931 and the upper baffle 913 to fix the air scoop 2 to the frame device 92 and the electronic device 93.
[0037] Incidentally, in this embodiment, the frame device 92 is a fan device with a built-in fan, but the invention is not limited thereto. Figure 6As shown, when the connecting frame 931 of the electronic device 93 is combined and fixed on the frame unit 921 of the frame device 92, the connecting module 51 is blocked and fixed upward by the connecting frame 931 and the upper baffle 913 respectively. In the process where the heat dissipation airflow generated by the operation of the frame device 92 and the first fan unit 4 flows from the first fan unit 4 through the connecting frame 931 of the electronic device 93 and flows into the electronic device 93 for heat dissipation, it is ensured that the air guide cover 2 and the connecting unit 5 will not be lifted up due to the strong wind blowing, thereby effectively avoiding the problem of poor heat dissipation caused by the dissipation of the heat dissipation airflow (airflow bypass).
[0038] Furthermore, in this embodiment, the connection frame 931 of the electronic device 93 further has a positioning piece 934 located below the connection plate 932. Figure 2 The frame 91 is shown as being located in the space between the connecting plate 932 and the bottom plate 911. The frame 91 also has a lower baffle 914 disposed on the side plate 912 and extending from the side plate 912 toward the connecting frame 931. The lower baffle 914 is located below the upper baffle 913 and between the upper baffle 913 and the air scoop 2. Each connecting module 51 of the connecting unit 5 has an extension piece 511 extending from the base plate 21 of the air scoop 2 in a direction away from the base plate 21, a support piece 512 extending downwardly from the extension piece 511, and a connecting piece 513 extending from the support piece 512 in a direction away from the air scoop 2. The connecting piece 513 of the connecting module 51 respectively extends into the limiting notch 933 of the connecting plate 932 and under the upper baffle 913, and makes the supporting piece 512 respectively abut against the connecting plate 932 and the upper baffle 913, so that the air guide cover 2 can be pivoted toward the direction of the bottom plate 911, and makes the air guide cover 2 pivot to the frame unit 921 fixed to the frame device 92. At this time, the connecting piece 513 of the connecting module 51 can be respectively clamped upward to block the connecting plate 932 and the upper baffle 913, and the extending piece 511 respectively abuts downward against the positioning piece 934 of the connecting frame 931 and the lower baffle 914 of the frame 91.
[0039] That is to say, the connecting pieces 513 of the connecting module 51 of the air guide cover device 1 are respectively as follows Figure 4 , Figure 5 As shown, the connecting module 51 extends into the limit notch 933 and the lower part of the upper baffle 913 at an angle and makes the supporting piece 512 of the connecting module 51 respectively abut against the limit notch 933 and the upper baffle 913, so that the connecting module 51 can drive the air guide cover 2 to pivot toward the bottom plate 911. Furthermore, through the positioning piece 934 (see Figure 4 , Figure 8) and the lower baffle 914 of the frame 91 (see Figure 5 , Figure 7 ) design, and when the connecting module 51 drives the air guide cover 2 to pivot to the frame unit 921 combined with the frame device 92, the extension piece 511 of one connecting module 51 will be limited up and down by the connecting plate 932 of the connecting frame 931 and the positioning piece 934 (see Figure 8 ), and the extension piece 511 of the other connecting module 51 will be limited by the upper and lower stopper pieces 914 of the frame 91 (see Figure 7 ), thereby effectively preventing the connection module 51 from driving the air guide cover 2 to excessively pivot toward the bottom plate 911, but the present invention is not limited thereto.
[0040] The connecting module 51 of the connecting unit 5 of the air scoop device 1 extends into the limit notch 933 and the lower part of the upper baffle 913 at an angle, and the connecting module 51 is respectively pressed against the limit notch 933 and the upper baffle 913, so that the air scoop 2 can be pivoted toward the bottom plate 911, and the air scoop 2 can be pivoted to the frame unit 921 fixed to the frame device 92, and the connecting module 51 can be respectively pressed against the connection frame 931 and the upper baffle 913 upward to block the connection frame 931 and the upper baffle 913. In the process of the heat dissipation airflow generated by the operation of the frame device 92 and the first fan unit 4 flowing from the first fan unit 4 through the connection frame 931 of the electronic device 93 and flowing into the electronic device 93 for heat dissipation, the connection module 51 is upwardly blocked and fixed by the connection frame 931 and the upper baffle 913 respectively, thereby effectively ensuring that the air guide cover 2 will not be lifted up by the strong wind flow, effectively avoiding the problem of poor heat dissipation caused by the dissipation of the heat dissipation airflow, and the overall heat dissipation efficiency is good.
[0041] See also Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 8 , Fig. 9 and Fig.10It should be particularly noted that, in this embodiment, the frame unit 921 of the frame device 92 has a frame body 922 that can be combined with the air scoop device 1. The frame body 922 has a mounting notch 923. The air scoop 2 also includes a combining frame module 23 that extends from the substrate 21 toward the frame body 922 of the frame unit 921 and extends into the mounting notch 923, and is detachably fixed to the frame body 922. In detail, in this embodiment, the frame unit 921 of the frame device 92 also has a fixing sheet 924 disposed on the frame body 922 and located in the mounting notch 923, and the fixing sheet 924 has a fixing hole 925. The combining frame module 23 of the air scoop 2 has a combining frame 24 extending from the substrate 21 toward the frame body 922 of the frame unit 921, a combining frame 25 extending from the combining frame 24 into the installation notch 923 and detachably combined with the fixing plate 924, and a positioning unit 26 disposed on the combining frame 25. The positioning unit 26 has a positioning pin 261 that passes through the combining frame 25 and can be controllably extended into the fixing hole 925 of the fixing plate 924 for positioning, and a controller 262 that is disposed on the combining frame 25 and can control the positioning pin 261 to extend into the fixing hole 925 of the fixing plate 924 for positioning. In other words, the air scoop 2 is controlled by the controller 262 of the positioning unit 26 of the combining frame module 23 to control the positioning pin 261 to be positioned. Fig.10 As shown, the combining frame 25 is inserted into the fixing hole 925 of the fixing plate 924 to be fixedly combined with the fixing plate 924 , but the present invention is not limited thereto.
[0042] Furthermore, in this embodiment, the combination frame module 23 of the air scoop 2 further has a guide frame 27 extending from the combination frame 24 toward the installation notch 923. The guide frame 27 has a bending piece 271 corresponding to one side of the installation notch 923 and capable of blocking the frame body 922 of the frame unit 921. When the support plate 512 is respectively against the connecting plate 932 of the connecting frame 931 and the upper baffle plate 913 of the frame 91 to pivot the air guide cover 2 toward the bottom plate 911, the combining frame module 23 will pivot toward the bottom plate 911 and make the bending piece 271 of the guide frame 27 first combine with the installation notch 923 of the frame body 922 of the frame unit 921 and guide the combining frame module 23 to combine with the frame unit 921, and the bending piece 271 of the guide frame 27 moves to block the frame body 922 of the frame unit 921 and make the combining frame 25 correspondingly combine with the fixing plate 924, and control the controller 262 to control the positioning pin 261 to extend into the fixing hole 925 of the fixing plate 924 to fix the combining frame 25 on the fixing plate 924. At this time, the air guide cover 2 is combined and fixed to the frame unit 921 of the frame device 92.
[0043] In short, the design of the bending piece 271 of the guide frame 27 of the combined frame module 23 can assist in guiding the guide frame 27 of the combined frame module 23 and the combined frame 25 to move to the installation notch 923 of the frame body 922 and the bending piece 271 can be adjusted as shown in FIG. Figure 6 , Fig. 9 As shown, the air scoop device 1 is moved to block the frame body 922 of the frame unit 921 and facilitates the assembly of the coupling frame 25 corresponding to the fixing plate 924. Furthermore, when the air scoop device 1 is coupled to the connecting frame 931 of the electronic device 93 and fixed on the frame unit 921 of the frame device 92, the bending member 271 is used as Figure 6 , Fig. 9 The frame body 922 moves to block the frame unit 921 and the supporting piece 512 of the connecting piece 513 of the connecting module 51 of the air guide cover device 1 will respectively abut against the limiting notch 933 (see Figure 8 ) and the upper baffle 913 (see Figure 7 ) structure to achieve a limiting effect of limiting the forward and backward movement of the air guide cover device 1, but not limited to this.
[0044] It should be noted that, in this embodiment, the first fan unit 4 has at least one first fan module 41. The first fan fixing frame 3 includes at least one fixing frame module 31 for detachably fixing and combining the first fan module 41. The following is an explanation of the implementation of the first fan unit 4 having two first fan modules 41. The first fan fixing frame 3 includes two fixing frame modules 31 for detachably fixing and combining the first fan module 41. Each fixing frame module 31 has two fixing plates 32 arranged in parallel and spaced apart on the base plate 21 of the air guide cover 2 and extending from the base plate 21 to the bottom plate 911, and a fixing frame 33 connected to the fixing plate 32 and close to the combining frame module 23, and can be fixedly combined with any first fan module 41. The fixing plate 32 of each fixing frame module 31 cooperates with the fixing frame 33 to define an installation space 34 for accommodating any fan module.
[0045] In simple terms, the first fan fixing frame 3 can be installed and combined with the first fan module 41 in the air scoop 2 through the fixing frame module 31 disposed in the air scoop 2. In this embodiment, the first fan fixing frame 3 is designed with two fixing frame modules 31 to meet the installation requirements of the two first fan modules 41 required for use, but it is not limited to this. It can be based on actual use requirements. For example, the first fan unit 4 has only one first fan module 41, so the first fan fixing frame 3 only needs to design one fixing frame module 31; or the first fan unit 4 has more than three first fan modules 41. Therefore, the first fan fixing frame 3 only needs to design the fixing frame modules 31 corresponding to the number of the first fan modules 41. Further, in this embodiment, each fixing frame module 31 of the first fan fixing frame 3 also has two fixing columns 35 disposed on the fixing plate 32 and can be fixedly combined with any first fan module 41. The fixing columns 35 and the corresponding fixing frames 33 are located on opposite sides of the fixing plate 32. Each first fan module 41 is installed in the installation space 34 of each fixing frame module 31 and two opposite sides of each first fan module 41 are fixedly combined with the corresponding fixing frame 33 and the fixing column 35 , but the present invention is not limited thereto.
[0046] In addition, in this embodiment, the first fan fixing bracket 3 further has a plurality of locking units 36, and the locking units 36 can detachably fix the two opposite sides of the first fan module 41 of the first fan unit 4 to the corresponding fixing frame 33 and the fixing column 35, respectively, but not limited to this. In particular, in this embodiment, the locking units 36 of the first fan fixing bracket 3 are in the form of plastic rivets, but not limited to this. That is, through the plastic rivets such as Figure 2 As shown, the two opposite sides of the first fan module 41 are fixedly coupled to the corresponding fixing frame 33 and the fixing column 35, respectively, and the plastic rivet is a quick-detachable plastic rivet structure that can be used as a snap-fit part of the first fan module 41 and also has a shockproof function.
[0047] In addition, the above-mentioned air scoop device 1 can also be integrated into the embodiment of the server 90, that is, the embodiment of the server 90 can be regarded as comprising a rack 91, a frame device 92 disposed in the rack 91, an electronic device 93 disposed in the rack 91 and spaced from the frame device 92, and an air scoop device 1 disposed in the rack 91 and located between the frame device 92 and the electronic device 93, and detachably connecting the frame device 92 and the electronic device 93. The assembly method is the same as that of the above-mentioned air scoop device 1, and will not be repeated here.
[0048] In summary, the wind scoop device 1 for testing of the utility model is designed such that the connecting module 51 of the connecting unit 5 of the wind scoop device 1 extends into the limit notch 933 and the lower part of the upper baffle 913 at an angle, and the connecting module 51 is respectively pressed against the limit notch 933 and the upper baffle 913, so that the wind scoop 2 can be pivoted toward the bottom plate 911, and the wind scoop 2 can be pivoted to the frame unit 921 fixed to the frame device 92, and the connecting module 51 can be respectively pressed against the connecting frame 913 to block the connecting frame 913. 31 and the upper baffle 913 are applied, and in the process that the heat dissipation airflow generated by the operation of the frame device 92 and the first fan unit 4 flows from the first fan unit 4 through the connecting frame 931 of the electronic device 93 and flows into the electronic device 93 for heat dissipation, the connecting module 51 is upwardly blocked and fixed by the connecting frame 931 and the upper baffle 913 respectively, effectively ensuring that the air guide cover 2 will not be lifted up by the strong wind blowing through, effectively avoiding the problem of poor heat dissipation caused by the dissipation of the heat dissipation airflow, and the overall heat dissipation efficiency is good.
[0049] The above is only a specific implementation of the utility model, but the protection scope of the utility model is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed by the utility model, which should be included in the protection scope of the utility model. Therefore, the protection scope of the utility model should be based on the protection scope of the claims.
Claims
1. A wind deflector device installed in a server, the server comprising a rack, a frame device arranged in the rack, and an electronic device, the wind deflector device is detachably connected to the frame device and the electronic device, the frame device has a frame unit, the frame unit has a frame body, the frame body has an installation notch, the electronic device has a connection frame, the connection frame has a connection plate, the connection plate has a limiting notch, the rack has a bottom plate, a side plate extending from the bottom plate to a direction away from the bottom plate and perpendicular to the bottom plate, and an upper baffle plate arranged on the side plate and extending from the side plate to the connection frame, characterized in that The air guide cover device comprises: An air guide cover, comprising a base plate parallel to and spaced from the bottom plate, and a combined frame module extending from the base plate toward the frame body of the frame unit and extending into the installation notch and detachably fixed to the frame body; a first fan mounting bracket for mounting a first fan unit; and A connecting unit extending from the base plate in a direction away from the first fan fixing bracket, the connecting unit extending from the base plate in the direction of the limiting notch of the connecting frame and the direction of the upper baffle, wherein the lower part of the upper baffle is defined as a spatial position between the upper baffle and the bottom plate, the connecting unit extends into the limiting notch and the lower part of the upper baffle and makes the connecting unit at least partially abut against the limiting notch and the upper baffle to form an abutment portion and makes the air guide cover pivot toward the bottom plate with the abutment portion as the axis, and makes the combined frame module of the air guide cover pivot to the frame body combined and fixed to the frame unit, at this time, the connecting unit can be abutted upward in a direction away from the bottom plate to block the connecting frame and the upper baffle and make the air guide cover fixedly connect the frame device and the electronic device.
2. The air guide cover device according to claim 1, characterized in that: The connecting unit has a connecting module extending from the base plate toward the limiting notch of the connecting frame and the upper baffle, the connecting module extends into the limiting notch and the lower part of the upper baffle and makes the connecting module partially abut against the limiting notch and the upper baffle to form the abutting portion and makes the air guide cover pivot toward the bottom plate and makes the combining frame module of the air guide cover pivot to the frame body combined and fixed to the frame unit, at this time, the connecting module can be pressed upward to block the connecting frame and the upper baffle and make the air guide cover fixedly connected to the frame device and the electronic device.
3. The air guide cover device according to claim 2, characterized in that: The connection frame of the electronic device also has a positioning piece located below the connection plate, wherein the space below the connection plate is defined as being located between the connection plate and the bottom plate, the frame also has a lower baffle plate disposed on the side plate and extending from the side plate toward the connection frame, the lower baffle plate is located below the upper baffle plate and between the upper baffle plate and the air guide cover, the connection module of the connection unit has an extension piece extending from the base plate of the air guide cover in a direction away from the base plate, a support piece extending downwardly from the extension piece, and A connecting piece extends from the support piece in a direction away from the air guide cover, and the connecting piece of the connecting module simultaneously extends into the limiting notch of the connecting plate and below the upper baffle and makes the supporting piece abut against the connecting plate and the upper baffle so that the air guide cover can pivot toward the direction of the base plate and pivot to the frame unit fixed to the frame device. At this time, the connecting piece of the connecting module can be simultaneously clamped upward to block the connecting plate and the upper baffle and the extending piece abuts downward against the positioning piece of the connecting frame and the lower baffle of the rack.
4. The air guide cover device according to claim 3, characterized in that: The frame unit of the frame device also has a fixing plate arranged on the frame body and located in the installation notch, the fixing plate has a fixing hole, the combining frame module of the air guide cover has a combining frame extending from the substrate toward the frame body of the frame unit, a combining frame extending from the combining frame into the installation notch and detachably combining with the fixing plate, and a positioning unit arranged on the combining frame, the positioning unit has a positioning pin that passes through the combining frame and can be controllably extended into the fixing hole of the fixing plate for positioning, and a controller arranged on the combining frame and capable of controlling the positioning pin to extend into the fixing hole of the fixing plate.
5. The air guide cover device according to claim 4, characterized in that: The combining frame module of the air guide cover also has a guide frame extending from the combining frame toward the installation notch, and the guide frame has a bending piece corresponding to one side of the installation notch and can block the frame body of the frame unit. In the process that the support plate abuts against the connecting plate of the connecting frame and the upper blocking plate of the rack to pivot the air guide cover toward the bottom plate, the combining frame module will pivot toward the bottom plate and make the bending piece of the guide frame first combine with the installation notch of the frame body of the frame unit and guide the combining frame module to combine with the frame unit, and then the bending piece of the guide frame moves to block the frame body of the frame unit and make the combining frame corresponding to the fixing plate, and control the controller to control the positioning pin to extend into the fixing hole of the fixing plate to fix the combining frame on the fixing plate. At this time, the air guide cover is combined and fixed to the frame unit of the frame device.
6. The air guide cover device according to claim 1, characterized in that: The connecting unit has two connecting modules extending from two opposite ends of the substrate respectively in the direction of the limiting notch of the connecting frame and the direction of the upper baffle, the connecting modules respectively extend into the limiting notch and the lower part of the upper baffle and make the connecting module parts respectively abut against the limiting notch and the upper baffle to form the abutting part and make the air guide cover pivot toward the direction of the bottom plate and make the combined frame module of the air guide cover pivot to the frame body combined and fixed to the frame unit, at this time, the connecting modules can be respectively pressed upward to block the connecting frame and the upper baffle and make the air guide cover fixedly connected to the frame device and the electronic device.
7. The air guide cover device according to claim 1, characterized in that: The first fan unit has at least one first fan module, and the first fan fixing frame includes at least one fixing frame module for detachably fixing and combining the first fan module. The fixing frame module has two fixing plates which are arranged in parallel and spaced relation on the base plate of the air guide cover and extend from the base plate toward the bottom plate, and a fixing frame which is connected to the fixing plates and close to the combining frame module and can be fixedly combined with the first fan module. The fixing plate of the fixing frame module cooperates with the fixing frame to define an installation space for accommodating the fan module.
8. The air guide cover device according to claim 7, characterized in that: The fixing frame module of the first fan fixing frame also has two fixing columns arranged on the fixing plate and capable of fixing the first fan module together. The fixing columns and the corresponding fixing frames are located on two opposite sides of the fixing plate. The first fan module is installed in the installation space of the fixing frame module and two opposite sides of the first fan module are fixedly combined with the corresponding fixing frames and the fixing columns.
9. The air guide cover device according to claim 8, characterized in that: The first fan fixing frame also has a plurality of locking units, and the locking units can detachably fix two opposite sides of the first fan module of the first fan unit to the corresponding fixing frame and the fixing column respectively.
10. A server, characterized in that: Include: A frame having a bottom plate, a side plate extending from the bottom plate in a direction away from the bottom plate and perpendicular to the bottom plate, and an upper baffle plate disposed on the side plate and extending from the side plate in a direction of a connecting frame; A frame device is arranged in the frame, the frame device has a frame unit, the frame unit has a frame body, and the frame body has a mounting notch; An electronic device, comprising the connection frame, the connection frame having a connection plate, the connection plate having a limiting notch; and A wind deflector device detachably connected to the frame device and the electronic device, the wind deflector device comprising: A wind guide cover includes a base plate parallel to and spaced from the bottom plate, and a combined frame module extending from the base plate toward the frame body of the frame unit and extending into the installation notch and detachably fixed to the frame body. a first fan fixing bracket for mounting a first fan unit, and a connecting unit extending from the base plate in a direction away from the first fan fixing bracket, and the connecting unit extending from the base plate in a direction of the limiting notch of the connection frame and in a direction of the upper baffle, wherein the lower side of the upper baffle is defined as a space between the upper baffle and the bottom plate; The connecting unit extends into the limit notch and the bottom of the upper baffle, and the connecting unit at least partially abuts against the limit notch and the upper baffle to form a abutment portion, so that the air guide cover can be pivoted toward the bottom plate with the abutment portion as the axis, and the combined frame module of the air guide cover is pivoted to the frame body combined and fixed to the frame unit. At this time, the connecting unit can be abutted upward in the direction away from the bottom plate to block the connecting frame and the upper baffle, and the air guide cover is fixedly connected to the frame device and the electronic device.