Server case with flow guide cover
By designing an air intake shroud layered above the fan mounting area air intake in the server chassis, and combining it with airflow channels and ducts, the airflow noise problem caused by the air intake shroud is solved, achieving efficient heat dissipation and low-noise server operation.
Patent Information
- Application Number
- CN202520240931.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-02-14
AI Technical Summary
The existing server chassis have air deflectors installed directly at the rear of the fan, which causes airflow noise problems, especially under high load conditions, making the noise more noticeable and affecting the stable operation of the server.
Design a server chassis with a shroud. The air intake front of the shroud is stacked above the air intake of the fan mounting area. Combined with the design of air guide channels and air ducts, it reduces obstruction at the front of the fan mounting area, promotes natural air intake, and guides airflow through the air guide channels and air ducts to cool the motherboard and module mounting area.
While ensuring the heat dissipation effect of the server chassis, it effectively reduces airflow noise and improves heat dissipation efficiency. Furthermore, by optimizing the structural design of the fan mounting area and the air guide shroud, it reduces noise during air intake.
Smart Images

Figure CN223637955U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to server technical field, concretely relates to a server case with fairing. BACKGROUND
[0002] At present, people usually set up a fairing in the server case to guide the airflow blown by the fan directly, which can reduce the generation of turbulence and improve the heat dissipation efficiency, so as to guarantee the stable operation of the server.
[0003] However, although the fairing is directly installed at the rear end of the fan, it can effectively guide the airflow, but this design will cause additional noise when the airflow passes through the fairing, especially under high load conditions, the fan rotates at a high speed, and the airflow noise problem is more obvious. SUMMARY
[0004] The utility model discloses a server case with fairing, which reduces the obstruction at the front end of the fan mounting area and stacks the air inlet front end of the fairing above the air inlet of the fan mounting area, thereby effectively reducing the airflow noise while ensuring the heat dissipation effect of the server case.
[0005] The utility model provides a server case with fairing, which comprises a box body and a cover body, the box body is sequentially provided with a CD-ROM drive mounting area, a fan mounting area, a mainboard mounting area and a module mounting area from front to back, the height of the CD-ROM drive mounting area is lower than half of the height of the fan mounting area, and the cover body covers the fan mounting area, the mainboard mounting area and the module mounting area.
[0006] A fairing is further arranged in the cavity between the box body and the cover body, the fairing comprises an air inlet front cover and a flow guiding rear cover which are connected as a whole, the air inlet front end of the air inlet front cover is stacked above the air inlet of the fan mounting area, and the air outlet rear end of the flow guiding rear cover is connected to the module mounting area.
[0007] Specifically, the two sides of the flow guiding rear cover are concave downward to form a first flow guiding groove and a second flow guiding groove, and the middle part of the flow guiding rear cover is convex upward relative to the first flow guiding groove and the second flow guiding groove to form a main flow guiding groove.
[0008] A first air inlet narrow opening is formed at the front end of the first flow guiding groove, a first side upper air duct is formed between the first flow guiding groove and the cover body, and a first side lower air duct is formed between the first flow guiding groove and the box body; a second air inlet narrow opening is formed at the front end of the second flow guiding groove, a second side upper air duct is formed between the second flow guiding groove and the cover body, and a second side lower air duct is formed between the second flow guiding groove and the box body; and a main air duct is formed between the main flow guiding groove and the box body.
[0009] Specifically, the module installation area includes a hard disk installation area, an expansion card installation area, an Internet of Things module installation area, and a power supply installation area, the hard disk installation area and the power supply installation area are respectively located on two sides of the Internet of Things module installation area, and the expansion card installation area is located above the Internet of Things module installation area.
[0010] The first side upper air duct and the first side lower air duct lead to the hard disk installation area, the second side upper air duct leads to the expansion card installation area, the second side lower air duct leads to the power supply installation area, and the main air duct leads to the hard disk installation area, the expansion card installation area, and the Internet of Things module installation area.
[0011] Specifically, the cover body is provided with a first heat dissipation mesh hole at a position corresponding to the hard disk installation area, and the box body is provided with a second heat dissipation mesh hole at a position corresponding to the hard disk installation area.
[0012] Specifically, the optical drive installation area is provided with an optical drive cover plate, one end of the optical drive cover plate is rotationally connected to the front end of the box body, and the other end of the optical drive cover plate is covered in the box body.
[0013] In the covered state of the optical drive cover plate, the height of the optical drive cover plate is lower than one-half of the height of the fan installation area.
[0014] Specifically, the fan installation area is provided with a fan support, the fan support is provided with at least three fan installation positions, the air inlet front end of any fan installation position is exposed to the outside, and the air outlet rear end of any fan installation position is provided with a self-vertical shutter type air port.
[0015] Specifically, the upper side of the box body is provided with at least three pairs of clamping grooves, the lower side of the cover body is provided with at least three pairs of clamping columns, and the at least three pairs of clamping grooves and the at least three pairs of clamping columns correspond one by one.
[0016] The upper side of the box body is further provided with a lock groove, the inner side of the cover body is further provided with a spring sheet, the spring sheet is provided with an unlocking pressing part, one end of the spring sheet is fixed on the cover body, the other end of the spring sheet is provided with a lock column, the lock column corresponds to the lock groove, the cover body is provided with a first through hole, and the first through hole exposes the unlocking pressing part.
[0017] Specifically, the cover body is recessed to form a drop lock groove, the drop lock groove is provided with a hand screw, and the hand screw connects the air inlet front cover through the drop lock groove.
[0018] Specific, the rear end of the box is provided with cover limiting device on both sides, any of the cover limiting device includes first lock piece, second lock piece and lock handle, the first lock piece is rotatably arranged on the upper side of the side of the box, the tail end of the lock handle is rotatably arranged on the lower side of the side of the box, the head end of the lock handle and the second lock piece are rotatably connected based on torsional spring;
[0019] The head end side of the lock handle is protruded and formed with a limiting block, and the tail end of the lock handle is provided with an arc-shaped limiting through slot, and the lower side of the side of the box is provided with a limiting column, and the limiting column is arranged in the arc-shaped limiting through slot.
[0020] In the locking state of the cover limiting device, the first lock piece and the second lock piece are buckled with each other, the second lock piece blocks the retreat path of the cover, the first lock piece points to the limiting block, and the limiting column is located at the bottom end of the arc-shaped limiting through slot.
[0021] Specifically, the air inlet front cover is clamped above the fan mounting area, and the flow guide rear cover is suspended above the mainboard mounting area.
[0022] Compared with the prior art, the server case with the flow guide cover has the following beneficial effects:
[0023] The server case with the flow guide cover stacks the air inlet front end of the flow guide cover above the air inlet of the fan mounting area, so that the airflow generated by the fan of the fan mounting area when working can reduce the pressure of the air outlet rear end of the flow guide cover, thereby promoting the natural air intake of the air inlet front end of the flow guide cover and guiding the airflow to cool the mainboard mounting area and the module mounting area. In this way, not only the heat dissipation effect of the server case can be ensured, but also the airflow noise can be effectively reduced. Moreover, the optical drive mounting area at the front end of the fan mounting area is relatively low, which can effectively reduce the blockage of the fan mounting area and the front end of the flow guide cover, facilitate the air intake of the fan mounting area and the flow guide cover, and further reduce the airflow noise during air intake. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creating any creative labor.
[0025] Figure 1 is a three-dimensional structure schematic diagram of the top view of the server case in the embodiment of the present application;
[0026] Figure 2 is a first explosion structure schematic diagram of the server case in the embodiment of the present application;
[0027] Figure 3 is a second explosion structure schematic view of the server case in the embodiment of the utility model, and
[0028] Figure 4 is a three-dimensional structure schematic view of the fairing in the embodiment of the utility model, and
[0029] Figure 5 is a structure schematic view of the fairing and module installation area in the embodiment of the utility model, and
[0030] Figure 6 is a three-dimensional structure schematic view of the server case bottom view in the embodiment of the utility model, and
[0031] Figure 7 is a structure schematic view of the optical drive installation area in the embodiment of the utility model, and
[0032] Figure 8 is a side three-dimensional structure schematic view of the box body and cover in the embodiment of the utility model, and
[0033] Figure 9 is a cooperation structure schematic view of the elastic sheet and lock slot in the embodiment of the utility model, and
[0034] Figure 10 is Figure 1 the structure enlarged schematic view of A area in the embodiment of the utility model.
[0035] In the drawing, 100, box body;101, second heat dissipation mesh hole;102, clamping groove;103, lock slot;110, optical drive installation area;111, optical drive cover plate;112, fixed lug;120, fan installation area;121, fan support;1211, self-vertical louver type air port;130, mainboard installation area;140, module installation area;141, hard disk installation area;142, expansion card installation area;143, internet of things module installation area;144, power supply installation area;200, cover;201, first heat dissipation mesh hole;202, clamping column;203, elastic sheet;2031, unlocking press part;2032, lock column;204, lock drop slot;300, fairing;310, air inlet front cover;320, fairing rear cover;321, first fairing groove;3211, first air inlet narrow mouth;322, second fairing groove;3221, second air inlet narrow mouth;323, main fairing groove;410, first lock sheet;420, second lock sheet;430, lock handle;431, limiting block;432, arc-shaped limiting through slot;440, limiting column. DETAILED DESCRIPTION
[0036] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0037] The utility model provides a server case with a flow guide cover, Figure 1 The utility model discloses a three-dimensional structure schematic diagram of the top view of the server case, Figure 2 The utility model discloses a first explosion structure schematic diagram of the server case, Figure 3 The utility model discloses a second explosion structure schematic diagram of the server case, the server case includes box body 100 and cover 200, please refer to Figure 3 The box body 100 is provided with optical drive mounting area 110, fan mounting area 120, mainboard mounting area 130 and module mounting area 140 in proper order from front to back, please refer to Figures 1 to 3 The height of optical drive mounting area 110 is lower than half of the height of fan mounting area 120, and the cover 200 covers fan mounting area 120, mainboard mounting area 130 and module mounting area 140, please refer to Figure 2 And Figure 3 The cavity between the box body 100 and the cover 200 is also provided with a flow guide cover 300, the flow guide cover 300 includes air inlet front cover 310 and flow guide rear cover 320 connected as a whole, the air inlet front end of the air inlet front cover 310 is stacked above the air inlet of fan mounting area 120, and the air outlet rear end of the flow guide rear cover 320 is connected with module mounting area 140.
[0038] The server case with a flow guide cover of the utility model stacks the air inlet front end of the flow guide cover 300 above the air inlet of fan mounting area 120, so that the air current generated when the fan of fan mounting area 120 works can reduce the pressure of the air outlet rear end of the flow guide cover 300, thereby promoting the air inlet front end of the flow guide cover 300 to inhale air naturally and guiding the air current to cool mainboard mounting area 130 and module mounting area 140, so that the heat dissipation effect of the server case can be ensured, and the air current noise can be reduced effectively. Moreover, the optical drive mounting area 110 at the front end of fan mounting area 120 is relatively low, which can effectively reduce the blockage of the front end of fan mounting area 120 and the flow guide cover 300, facilitate the air inlet of fan mounting area 120 and the flow guide cover 300, and further reduce the air current noise when inhaling air.
[0039] Figure 4The utility model discloses a three -dimensional structure schematic diagram of fairing is shown, the two sides of fairing rear cover 320 are concave and form first guide groove 321 and second guide groove 322, and the middle part of fairing rear cover 320 is concave and form main guide groove 323 to first guide groove 321 and second guide groove 322 upwards, first guide groove 321 is provided with first air inlet narrow mouth 3211 in the front, and first guide groove 321 and cover 200 form first side upper air duct, and first guide groove 321 and box 100 form first side lower air duct, second guide groove 322 is provided with second air inlet narrow mouth 3221 in the front, and second guide groove 322 and cover 200 form second side upper air duct, and second guide groove 322 and box 100 form second side lower air duct, and main guide groove 323 and box 100 form main air duct, first side upper air duct and second side upper air duct can shunt fresh air (not carrying the heat of mainboard installation area 130), and this part of fresh air is directly guided to module installation area 140, is favorable to improve the heat dissipation effect of module installation area 140, and first side lower air duct, second side lower air duct and main air duct are mainly used to guarantee the heat dissipation of mainboard installation area 130, and also have important heat dissipation effect to module installation area 140.
[0040] Figure 5 The utility model discloses a three -dimensional structure schematic diagram of fairing and module installation area is shown, module installation area 140 includes hard disk installation area 141, expansion card installation area 142, internet of things module installation area 143 and power supply installation area 144, and hard disk installation area 141 and power supply installation area 144 are located two sides of internet of things module installation area 143 respectively, and expansion card installation area 142 is located the top of internet of things module installation area 143, first side upper air duct and first side lower air duct lead to hard disk installation area 141, and first side upper air duct can directly transport fresh air to hard disk installation area 141, and first side lower air duct can transport the airflow of fast flow rate to hard disk installation area 141, and help hard disk installation area 141 heat dissipation, second side upper air duct leads to expansion card installation area 142, and second side upper air duct can directly transport fresh air to expansion card installation area 142, and be favorable to improve the heat dissipation effect of expansion card installation area 142, and second side lower air duct leads to power supply installation area 144, and second side lower air duct can transport the airflow of fast flow rate to power supply installation area 144, and help power supply installation area 144 heat dissipation, and main air duct leads to hard disk installation area 141, expansion card installation area 142 and internet of things module installation area 143, and main air duct can transport the airflow of fast flow rate to hard disk installation area 141, expansion card installation area 142 and internet of things module installation area 143 in large quantities, and help hard disk installation area 141, expansion card installation area 142 and internet of things module installation area 143 heat dissipation.
[0041] In some embodiments, referring to Figure 1 , the cover 200 is provided with a first heat dissipation mesh hole 201 at a position corresponding to the hard disk mounting area 141; Figure 6 The box body 100 is provided with a second heat dissipation mesh hole 101 at a position corresponding to the hard disk mounting area 141, and the first heat dissipation mesh hole 201 and the second heat dissipation mesh hole 101 can accelerate heat dissipation of the hard disk mounting area 141, thereby effectively improving the heat dissipation efficiency of the hard disk mounting area 141.
[0042] Figure 7 The optical drive mounting area 110 is provided with an optical drive cover plate 111, one end of the optical drive cover plate 111 is rotationally connected to the front end of the box body 100, and the other end of the optical drive cover plate 111 is covered in the box body 100. The optical drive cover plate 111 is easy to open and close, and is convenient for people to install the optical disc drive. In the covering state of the optical drive cover plate 111, the height of the optical drive cover plate 111 is lower than one-half of the height of the fan mounting area 120, so that the optical drive mounting area 110 does not hinder the air inlet of the fan mounting area 120, and the air inlet of the fan mounting area 120 can form an air flow to help the optical drive mounting area 110 dissipate heat.
[0043] In some embodiments, referring to Figure 7 , the optical drive cover plate 111 is provided with a fixing ear 112, the fixing ear 112 is close to the front end of the box body 100, and the fixing ear 112 is connected to the box body 100 based on a fastening screw, so as to lock the optical drive cover plate 111 on the box body 100.
[0044] In some embodiments, referring to Figure 3 , the fan mounting area 120 is provided with a fan support 121, the fan support 121 is provided with at least three fan mounting positions, the air inlet front end of any one of the fan mounting positions is exposed to the outside world, the air inlet efficiency is high, and the air flow noise is small; the air outlet rear end of any one of the fan mounting positions is provided with a self-vertical louver type air port 1211, the self-vertical louver type air port 1211 is a kind of air distributor, and can guide the air flow to become downward inclined air flow. The downward inclined air flow can better flush the mainboard mounting area 130, which is conducive to improving the heat dissipation effect of the mainboard mounting area 130; and the downward inclined air flow formed at the air outlet rear end of the fan mounting position can further reduce the pressure above the air outlet rear end of the fan mounting position, that is, the pressure of the air inlet front end of the air inlet front cover 310, thereby facilitating the natural air suction effect of the air inlet front end of the air inlet front cover 310.
[0045] Figure 8The utility model discloses a box body and the side surface three -dimensional structure schematic diagram of cover body show in the embodiment of the utility model, the upper side of box body 100 is provided with at least three pairs of card slot 102, the downside of cover body 200 is provided with at least three pairs of card post 202, at least three pairs of card slot 102 with at least three pairs of card post 202 correspond one by one, and it is favorable to guarantee the clamping stability between box body 100 and cover body 200; Figure 9 The utility model discloses a box body and the cooperation structure schematic drawing of lock slot show in the embodiment of the utility model, the upper side of box body 100 still is provided with lock slot 103, the inside of cover body 200 still is provided with elastic sheet 203, be provided with unlocking press portion 2031 on elastic sheet 203, and one end of elastic sheet 203 is fixed on cover body 200, and the other end of elastic sheet 203 is provided with lock post 2032, and lock post 2032 with lock slot 103 correspond;First through -hole is set up on cover body 200, and unlocking press portion 2031 is exposed when first through -hole, when lock post 2032 is inserted into lock slot 103, cover body 200 is locked, and cover body 200 can be avoided accidental drop;Press unlocking press portion 2031, can make lock post 2032 separate lock slot 103, thereby can remove cover body 200.
[0046] In some specific embodiments, please refer to Figure 1 , the cover body 200 is recessed into the lock slot 204, the lock slot 204 is provided with hand screw, the hand screw passes through the lock slot 204 and is connected with the air inlet front cover 310, the hand screw can lock the air inlet front cover 310 on the cover body 200, thereby being favorable to improve the working stability of the fairing 300, and reduce the front end vibration of the fairing 300.
[0047] In some specific embodiments, Figure 10 It is shown Figure 1The rear end of the box 100 is provided with a cover limiting device on both sides, any of the cover limiting devices comprises a first locking sheet 410, a second locking sheet 420 and a locking handle 430, the first locking sheet 410 is rotationally arranged on the upper side of the side surface of the box 100, the tail end of the locking handle 430 is rotationally arranged on the lower side of the side surface of the box 100, and the head end of the locking handle 430 and the second locking sheet 420 are rotationally connected based on a torsional spring; the side surface of the head end of the locking handle 430 is protruded and formed with a limiting block 431; the tail end of the locking handle 430 is provided with an arc-shaped limiting through slot 432, and the lower side of the side surface of the box 100 is provided with a limiting column 440, the limiting column 440 is arranged in the arc-shaped limiting through slot 432; in the locking state of the cover limiting device, the first locking sheet 410 and the second locking sheet 420 are buckled with each other, the second locking sheet 420 blocks the retreat path of the cover 200, the first locking sheet 410 is directed to the limiting block 431, and the limiting column 440 is located at the bottom end of the arc-shaped limiting through slot 432. The cover limiting device can prevent the cover 200 from automatically exiting the clamping groove 102, further improves the clamping stability between the cover 200 and the box 100, and the torsional spring, the limiting block 431, the limiting column 440 and the arc-shaped limiting through slot 432 are matched with each other, so that the first locking sheet 410 and the second locking sheet 420 are prevented from being automatically buckled, and the working stability of the cover limiting device is ensured.
[0048] In some embodiments, referring to Figure 2 and Figure 3 , the air inlet front cover 310 is clamped above the fan mounting area 120, and the air guide rear cover 320 is suspended above the mainboard mounting area 130, so that additional fasteners are not needed, the disassembly and assembly are facilitated, and the limited space in the box 100 is reduced.
[0049] The server case with the air guide cover of the utility model stacks the air inlet front end of the air guide cover 300 above the air inlet of the fan mounting area 120, so that the airflow generated when the fan of the fan mounting area 120 works reduces the pressure of the air outlet rear end of the air guide cover 300, thereby promoting the air inlet front end of the air guide cover 300 to naturally inhale and guiding the airflow to cool the mainboard mounting area 130 and the module mounting area 140, so that the heat dissipation effect of the server case can be ensured, and the airflow noise can be effectively reduced; moreover, the CD drive mounting area 110 at the front end of the fan mounting area 120 is relatively low, so that the obstruction of the front end of the fan mounting area 120 and the air guide cover 300 can be effectively reduced, the air inlet of the fan mounting area 120 and the air guide cover 300 is facilitated, and the airflow noise during air inlet can be further reduced.
[0050] Moreover, the fairing 300 can directly deliver part of fresh air to the module mounting area 140 under the premise of ensuring the heat dissipation effect of the mainboard mounting area 130, which is beneficial to improve the heat dissipation effect of the module mounting area 140; the optical drive cover plate 111 is rotationally arranged in the optical drive mounting area 110, and cooperates with the fixed lug 112, so as to facilitate the installation of the optical disc drive; the self-vertically louvered air outlet 1211 is arranged at the exhaust rear end of the fan mounting area 120, which can guide the airflow to become a downward inclined air supply flow, better flushing the mainboard mounting area 130, and is beneficial to improve the heat dissipation effect of the mainboard mounting area 130; moreover, the downward inclined air supply flow formed at the exhaust rear end of the fan mounting area 120 can further reduce the pressure above the exhaust rear end of the fan mounting area 120, that is, the pressure of the exhaust rear end of the air inlet front cover 310, thereby facilitating the natural suction effect of the air inlet front end of the air inlet front cover 310.
[0051] In addition, the box body 100 and the cover body 200 are clamped with each other, and are matched with the elastic sheet 203 which can be pressed to be unlocked and the cover body limiting device, so that the cover body 200 is easy to disassemble and assemble and can be stably covered on the box body 100 and will not automatically fall off; the air inlet front cover 310 of the fairing 300 is clamped above the fan mounting area 120 and is connected with the cover body 200 through hand-screwed screws, and the air outlet rear cover 320 of the fairing 300 is suspended above the mainboard mounting area 130, which avoids the use of additional fasteners under the premise of ensuring the working stability of the fairing 300, and not only facilitates disassembly and assembly, but also can reduce the occupation of the limited space in the box body 100.
[0052] The server case with the fairing is described in detail, and the principle and implementation mode of the server case with the fairing are described by using specific examples in the present application. The above description of the embodiments is only used to help understand the method and the core idea of the present application. Meanwhile, for the general technical personnel in the field, the specific implementation mode and the application range will be changed according to the idea of the present application. In conclusion, the content of the present application should not be understood as the limitation of the present application.
Claims
1. A server enclosure with a wind deflector, comprising a box and a cover, characterized in that, The box is provided with a CD-ROM mounting area, a fan mounting area, a mainboard mounting area and a module mounting area from front to back, the height of the CD-ROM mounting area is lower than half of the height of the fan mounting area, and the cover covers the fan mounting area, the mainboard mounting area and the module mounting area. A flow guide cover is arranged in the cavity between the box and the cover, the flow guide cover comprises a front air inlet cover and a rear flow guide cover which are connected as a whole, the front air inlet cover is stacked above the air inlet of the fan mounting area, and the rear air outlet cover is connected to the module mounting area.
2. The cowl served chassis of claim 1, wherein, The two sides of the rear flow guide cover are concave downward to form a first flow guide groove and a second flow guide groove, and the middle part of the rear flow guide cover is convex upward to form a main flow guide groove relative to the first flow guide groove and the second flow guide groove. The front end of the first flow guide groove is provided with a first air inlet narrow opening, the first flow guide groove and the cover form a first upper air duct, and the first flow guide groove and the box form a first lower air duct; the front end of the second flow guide groove is provided with a second air inlet narrow opening, the second flow guide groove and the cover form a second upper air duct, and the second flow guide groove and the box form a second lower air duct; and the main flow guide groove and the box form a main air duct.
3. The caged server chassis of claim 2, wherein, The module mounting area comprises a hard disk mounting area, an expansion card mounting area, an Internet of Things module mounting area and a power supply mounting area, the hard disk mounting area and the power supply mounting area are respectively located on the two sides of the Internet of Things module mounting area, and the expansion card mounting area is located above the Internet of Things module mounting area. The first upper air duct and the first lower air duct lead to the hard disk mounting area, the second upper air duct leads to the expansion card mounting area, the second lower air duct leads to the power supply mounting area, and the main air duct leads to the hard disk mounting area, the expansion card mounting area and the Internet of Things module mounting area.
4. The caged server chassis of claim 3, wherein, The cover is provided with a first heat dissipation mesh hole corresponding to the hard disk mounting area, and the box is provided with a second heat dissipation mesh hole corresponding to the hard disk mounting area.
5. The baffle-equipped server enclosure of claim 1, wherein, The CD-ROM mounting area is provided with a CD-ROM cover plate, one end of the CD-ROM cover plate is rotationally connected to the front end of the box, and the other end of the CD-ROM cover plate is covered in the box. In the covered state of the CD-ROM cover plate, the height of the CD-ROM cover plate is lower than half of the height of the fan mounting area.
6. The baffle-equipped server enclosure of claim 1, wherein, The fan mounting area is provided with a fan support, the fan support is provided with at least three fan mounting positions, the air inlet front end of any fan mounting position is exposed to the outside, and the air outlet rear end of any fan mounting position is provided with a self-vertical louver air port.
7. The baffle-equipped server enclosure of claim 1, wherein, The upper side of the box is provided with at least three pairs of clamping grooves, the lower side of the cover is provided with at least three pairs of clamping columns, and the at least three pairs of clamping grooves and the at least three pairs of clamping columns correspond one by one. The upper side of the box body is further provided with a lock slot, the inner side of the cover body is further provided with an elastic sheet, the elastic sheet is provided with an unlocking pressing part, one end of the elastic sheet is fixed on the cover body, the other end of the elastic sheet is provided with a lock column, the lock column corresponds to the lock slot; the cover body is provided with a first through hole, the first through hole exposes the unlocking pressing part.
8. The baffle-equipped server enclosure of claim 1, wherein, The cover body is recessed and formed with a drop lock slot, the drop lock slot is provided with a hand screw, the hand screw connects the air inlet front cover through the drop lock slot.
9. The baffle-equipped server enclosure of claim 1, wherein, The rear end of the box body is provided with cover body limiting devices on both sides, any cover body limiting device comprises a first lock sheet, a second lock sheet and a lock handle, the first lock sheet is rotationally arranged on the upper side of the side surface of the box body, the tail end of the lock handle is rotationally arranged on the lower side of the side surface of the box body, the head end of the lock handle and the second lock sheet are rotationally connected based on a torsional spring; The head end side of the lock handle is protrusively formed with a limiting block; the tail end of the lock handle is provided with an arc-shaped limiting through slot, the lower side of the side surface of the box body is provided with a limiting column, the limiting column is arranged in the arc-shaped limiting through slot; In the locked state of the cover body limiting device, the first lock sheet and the second lock sheet are buckled to each other, the second lock sheet blocks the retreat path of the cover body, the first lock sheet points to the limiting block, and the limiting column is located at the bottom end of the arc-shaped limiting through slot.
10. The baffle-equipped server enclosure of claim 1, wherein, The air inlet front cover is clamped above the fan mounting area, and the flow guide rear cover is suspended above the main board mounting area.