CN112379739A - Dustproof, shockproof and heat dissipation type computer shell - Google Patents

Dustproof, shockproof and heat dissipation type computer shell Download PDF

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Publication number
CN112379739A
CN112379739A CN202011289655.7A CN202011289655A CN112379739A CN 112379739 A CN112379739 A CN 112379739A CN 202011289655 A CN202011289655 A CN 202011289655A CN 112379739 A CN112379739 A CN 112379739A
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China
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baffle
frame
vent
heat dissipation
groove
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CN202011289655.7A
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CN112379739B (en
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金杨杨
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Shenzhen Daixun Communication Equipment Co ltd
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Shenzhen Daixun Communication Equipment Co ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/20Cooling means
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Power Engineering (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

The utility model belongs to the technical field of the technique of computer and specifically relates to a dustproof, take precautions against earthquakes, heat dissipation formula computer housing, which comprises a housin, one side that the casing is close to ground is provided with the supporting legs, the side of casing is provided with damper, damper includes shock-absorbing rod and damper, the both sides of casing are provided with vent and air outlet respectively, be provided with the heat dissipation fan in the vent, be provided with the buffer gear who is used for slowing down the vibrations that the heat dissipation fan produced between heat dissipation fan and the vent, be provided with the filter screen in the vent, the outside of filter screen is provided with the link, be provided with baffle one and baffle two in the vent, baffle one and baffle two interval set up, be provided with the joint pole on the link, the joint pole slides the setting before baffle one and baffle two. The method and the device have the effect of improving the reliability of the computer in operation.

Description

Dustproof, shockproof and heat dissipation type computer shell
Technical Field
The application relates to the technical field of computers, in particular to a dustproof, shockproof and heat-dissipation type computer shell.
Background
The computer is commonly called as a computer, is a modern electronic computing machine for high-speed computing, can perform numerical computation, logic computation and engine oil storage and memory functions, can run according to programs, and can automatically process mass data at high speed. The computer includes power supply, mainboard, CPU, internal memory, hard disk and display etc. among them, except the display, other spare parts are mostly installed in the computer casing, pass through the computer casing in order to fix spare part, assemble each spare part together.
In the related art, a hard disk, a mainboard, a CPU and the like are fixedly installed in a computer shell, the hard disk and the CPU generate heat during operation, and in order to reduce the influence of the generated heat on the operation speed of the computer, a heat dissipation device is further arranged on the computer shell, generally, the heat dissipation device is a heat dissipation fan, and when the computer operates, air in the computer shell flows through the heat dissipation fan, so that the temperature in the computer shell is reduced, and the computer is kept in a good operation state.
In view of the above-mentioned related technologies, the inventor believes that the hard disk is hard connected with the computer casing, when the hard disk is used, the computer equipment runs or is vibrated by external force, which affects the reliability of hard disk reading and writing, and meanwhile, when the heat is dissipated by the heat dissipation fan, the external air enters the computer casing through the heat dissipation fan, and part of dust remains in the computer casing, which affects the reliability of the computer during running.
Disclosure of Invention
In order to improve the reliability of a computer in operation, the application provides a dustproof, shockproof and heat-dissipation type computer shell.
The application provides a dustproof, shockproof, heat dissipation formula computer housing adopts following technical scheme:
a dustproof, shockproof and heat-dissipation type computer shell comprises a shell, wherein one side of the shell, which is close to the ground, is provided with supporting legs, the side surface of the shell is provided with a damping mechanism, the damping mechanism comprises at least one damping rod and a damping piece, the damping rods are respectively hinged with the shell and the supporting legs, the damping rods are hinged with the adjacent damping rods, the damping pieces are arranged between the damping rods, both sides of the shell are respectively provided with a vent and an air outlet, a heat dissipation fan is arranged in the vent, a buffer mechanism used for reducing the vibration generated by the heat dissipation fan is arranged between the heat dissipation fan and the vent, a filter screen is arranged in the vent, a connecting frame is arranged outside the filter screen, a first baffle and a second baffle are arranged in the vent, the first baffle and the second baffle are arranged at intervals, and clamping and connecting rods are arranged on the, the clamping rod is arranged in front of the first baffle and the second baffle in a sliding mode, and a fixing mechanism used for fixing the connecting frame is arranged on the connecting frame.
Through adopting above-mentioned technical scheme, when the casing receives vibrations, the shock attenuation pole rotates and compression or tensile damper, and then cushion the vibrations that the casing received, ventilate in to the casing through the heat dissipation fan, and then reduce the temperature in the casing, set up the filter screen in vent department, reduce external impurity and appear entering into the phenomenon in the casing through the heat dissipation fan, fix the splice frame at the vent through joint pole and fixed establishment, be convenient for simultaneously pull down the heat dissipation fan from vent department through the splice frame, so that wash the heat dissipation fan, promote the cooling efficiency of heat dissipation fan, reliability when promoting the computer operation.
Optionally, be provided with the installing frame in the vent, buffer gear is including buffering frame and buffering piece, the buffering frame sets up in the outside of heat dissipation fan, buffering frame and installing frame pass through the bolster and connect, the bolster is provided with one at least, and is a plurality of the bolster is in the even interval setting in the outside of buffering frame.
Through adopting above-mentioned technical scheme, the heat dissipation fan passes through the bolster and cushions the frame connection, and the bolster is provided with a plurality ofly, and the heat dissipation fan can produce vibrations when rotating, slows down the vibrations that transmit on the buffering frame through the bolster, and then reduces the vibrations that the casing received.
Optionally, a clamping groove is formed in the mounting frame, a clamping block is arranged at a position, corresponding to the clamping groove, on the buffering frame, a fixing groove is formed in the inner wall of the clamping groove, a protruding portion is integrally formed in the clamping block and clamped in the fixing groove, a separating plate is arranged on the clamping block, and one end, deviating from the clamping block, of the separating plate extends to the outside of the clamping groove.
Through adopting above-mentioned technical scheme, the fixture block inserts in the draw-in groove, inserts the fixed slot until the bellying in, fixes the fixture block in the draw-in groove, and then will cushion frame and installing frame and connect, when needs will dispel the heat the fan and pull down, presses the fixture block through the spacer plate, makes bellying and fixed slot separation, and then with fixture block and draw-in groove separation to take off the heat dissipation fan, clear up the heat dissipation fan.
Optionally, the outside of vent is provided with the baffle, a plurality of through-holes have been seted up on the baffle, the adjustment tank has been seted up on the casing, the adjustment tank sets up the one side at the vent, the side of baffle is provided with the regulating plate, the regulating plate slides in the adjustment tank and sets up.
Through adopting above-mentioned technical scheme, seted up the through-hole on the baffle, the air in the external world passes through the through-hole and enters into in the casing, reduces the great impurity of external granule and appears entering into the phenomenon in the casing, and the accessible adjustment regulating plate is taken off the baffle from the casing in the position of adjustment tank simultaneously to wash the baffle.
Optionally, baffle two sets up the one side that deviates from the heat dissipation fan at baffle one, baffle one and the splice bar butt, the joint pole rotates the setting between baffle one and baffle two, fixed establishment includes elastic component and fixed plate, set up limited groove on the vent, the fixed plate card is established at the limited inslot, fixed plate and splice bar pass through the elastic component and connect, the joint pole sets up the one side that deviates from the fixed plate at the splice bar, baffle two one end and the vent inner wall interval that deviate from the joint pole set up.
Through adopting above-mentioned technical scheme, the joint pole sets up in the both sides of splice frame, when the installation splice frame, places the joint pole earlier between baffle one and baffle two, then remove the position of joint pole between baffle one and baffle two to with vent inner wall butt, then rotate the splice frame to its and baffle butt, then fix through fixed establishment to install the filter screen in vent department.
Optionally, the connecting frame is provided with a yielding groove, and the yielding groove and the second baffle are correspondingly arranged.
Through adopting above-mentioned technical scheme, the groove of stepping down and two corresponding settings of baffle reduce when the connecting frame rotates, and the connecting frame pivoted phenomenon is interfered to two appearances of baffle, stability when promoting the connecting frame and rotating.
Optionally, the both sides of regulating plate are provided with spacing, the spacing groove has been seted up on the regulating groove inner wall, spacing groove and spacing correspond the setting, spacing slides in the spacing inslot and sets up.
Through adopting above-mentioned technical scheme, the regulating plate passes through spacing and spacing groove lock, and then fixes on the casing, when needs take off the baffle and wash, adjusts the position of spacing at the spacing inslot to take off the baffle from the casing.
Optionally, a sealing sleeve is arranged on the shell, the sealing sleeve is sleeved outside the shell, the shell is arranged in the sealing sleeve in a sliding mode, and the supporting legs penetrate through the sealing sleeve and are connected with the shock absorption rods.
Through adopting above-mentioned technical scheme, when the casing received external vibrations, the casing slided in the seal cover, reduces damper and external contact, reduces impurity and appears entering into the phenomenon in the damper, and then stability when promoting the damper shock attenuation.
Drawings
Fig. 1 is a schematic structural diagram of a dustproof, shockproof and heat dissipation type computer casing according to an embodiment of the present application.
FIG. 2 is a cut-away view of a boot seal in a dust, vibration, heat dissipating computer housing according to an embodiment of the present application.
FIG. 3 is a cut-away view of a housing in a dust, vibration, and heat dissipating computer housing according to an embodiment of the present application.
FIG. 4 is a cut-away view of a housing in a dust, vibration, and heat dissipating computer housing according to an embodiment of the present application.
Fig. 5 is an enlarged schematic view at a in fig. 4.
Fig. 6 is a schematic structural diagram of a buffering mechanism in a dustproof, shockproof and heat-dissipating computer case according to an embodiment of the present application.
Fig. 7 is an enlarged schematic view at B in fig. 6.
Fig. 8 is a schematic structural diagram of a fixing mechanism in a dustproof, shockproof and heat dissipation type computer housing according to an embodiment of the application.
Reference numerals: 1. a housing; 11. supporting legs; 12. sealing sleeves; 13. a vent; 131. a first baffle plate; 132. a second baffle plate; 133. defining a slot; 14. an air outlet; 141. a separator plate; 15. an adjustment groove; 151. a limiting groove; 2. a damping mechanism; 21. a shock absorbing member; 22. a shock-absorbing lever; 3. installing a frame; 31. a heat dissipation fan; 32. a mounting frame; 33. a card slot; 4. a buffer mechanism; 41. a buffer frame; 411. a clamping block; 412. a boss portion; 413. a separation plate; 42. a buffer member; 5. a partition plate; 51. an adjusting plate; 52. a limiting strip; 6. a filter screen; 7. a connecting frame; 71. a clamping and connecting rod; 72. a yielding groove; 8. a fixing mechanism; 81. an elastic member; 82. a fixing plate; 821. buckling grooves; 9. and a stabilizing plate.
Detailed Description
The present application is described in further detail below with reference to figures 1-8.
The application discloses a dustproof, shockproof, heat dissipation formula computer housing. Referring to fig. 1, the dustproof, shockproof and heat dissipation type computer housing comprises a housing 1, a main board, a CPU, a memory, a hard disk and the like are installed in the housing 1, and external devices such as a display and the like are connected through the housing 1 and the main board and the like in the housing 1, so that the main board can read and write the external devices.
Referring to fig. 1 and 2, in order to reduce the phenomenon that the normal operation of the internal equipment of the casing 1 is affected due to the vibration of the casing 1 in the using process, a plurality of supporting legs 11 are arranged on the bottom surface of the casing 1, the supporting legs 11 are used for supporting the casing 1, the supporting legs 11 are provided, the supporting legs 11 are uniformly arranged at the bottom of the casing 1 at intervals, and a damping mechanism 2 for reducing the vibration of the casing 1 is arranged between the casing 1 and the supporting legs 11. Damper 2 includes damper 21 and shock attenuation pole 22, and damper 21 can set up to the spring, and shock attenuation pole 22 has two, and two shock attenuation pole 22's tip is articulated each other, and shock attenuation pole 22 and casing 1 are articulated, and the one end that casing 1 was kept away from to another shock attenuation pole 22 is articulated with supporting legs 11, and two shock attenuation poles 22 are the V-arrangement setting, and damper 21 sets up between two shock attenuation poles 22.
Referring to fig. 2, when the housing 1 is vibrated, the two damping members 21 rotate relatively, and simultaneously compress or stretch the damping members 21, so as to buffer the vibration received by the housing 1, thereby reducing the vibration received by the housing 1 and improving the stability of the housing 1 during operation. The side of the supporting leg 11 departing from the shell 1 can be provided with a shockproof pad, the supporting leg 11 is in contact with the ground through the shockproof pad, the shockproof pad is made of rubber, and the shock on the shell 1 is reduced while the friction force between the supporting leg 11 and the ground is increased.
Referring to fig. 1 and 2, in order to reduce impurities entering between the shock absorbing members 21, the shock absorbing members 21 buffer the housing 1, a sealing sleeve 12 is arranged on the housing 1, the sealing sleeve 12 is arranged in a hollow structure, an opening is formed in one side, close to the housing 1, of the sealing sleeve 12, the sealing sleeve 12 is arranged close to the bottom of the housing 1, the sealing sleeve 12 is sleeved at the bottom of the housing 1 through the opening, the housing 1 is arranged in the sealing sleeve 12 in a sliding manner, the inner walls of the housing 1 and the sealing sleeve 12 are abutted, and the supporting legs 11 penetrate through the sealing sleeve 12 and are abutted to the ground. When the shell 1 is vibrated, the shell 1 slides in the sealing sleeve 12, so that the contact between the shock absorbing part 21 and the outside air is reduced, the outside impurities are prevented from entering the shock absorbing part 21, and the stability of the shock absorbing part 21 is improved.
Referring to fig. 3 and 4, during operation, a mainboard, a CPU and the like in the housing 1 generate heat, the temperature in the housing 1 is high, which affects the normal operation of the computer, the housing 1 is provided with a vent 13 and an air outlet 14, the vent 13 and the air outlet 14 are arranged at two sides of the housing 1, the edge of the vent 13 is provided with a mounting frame 3, the mounting frame 3 is arranged in the housing 1, and the mounting frame 3 is provided with a heat dissipation fan 31 for dissipating heat. When the computer works, the heat dissipation fan 31 is opened, blows air into the shell 1 through the ventilation opening 13, flows out through the air outlet 14, and brings out heat in the shell 1, so that the heat in the shell 1 is reduced, and the stability of the computer during operation is improved. Be provided with division board 141 in air outlet 14 department, seted up a plurality of holes on division board 141, air clearing hole in casing 1 flows out, reduces simultaneously that external impurity enters into casing 1 through air outlet 14 in, promotes the stability of casing 1 internal plant operation.
Referring to fig. 4 and 6, in order to reduce the vibration generated from the heat radiating fan 31 from being transmitted to the main board and the hard disk through the case 1, a mounting bracket 32 is provided outside the heat radiating fan 31, the heat radiating fan 31 is rotatably provided on the mounting bracket 32, a buffer mechanism 4 for reducing vibration generated from the heat radiating fan 31 is provided outside the mounting bracket 32, the buffer mechanism 4 includes a buffer frame 41 and a buffer member 42, the buffer frame 41 is provided outside the mounting bracket 32, and the inner wall of the buffer frame 41 and the mounting frame 32 are arranged at intervals, the buffer member 42 can be arranged as a spring, the spring is provided with a plurality of springs, the springs are evenly arranged at intervals outside the buffer frame 41, the buffer member 42 is provided with a plurality of springs, and a plurality of buffering members 42 are arranged between the mounting frame 32 and the buffering frame 41 at even intervals, one end of each buffering member 42 is connected with the mounting frame 32, the other end of each buffering member 42 is connected with the inner wall of the buffering frame 41, and the mounting frame 32 is mounted in the mounting frame 3 through the buffering frame 41. When the heat dissipation fan 31 works, the vibration generated by the heat dissipation fan 31 is buffered by the buffer member 42, so that the vibration received by the equipment in the housing 1 is reduced, and the stability of the equipment during operation is further improved.
Referring to fig. 6 and 7, in order to facilitate the installation of the buffer frame 41 on the housing 1, the mounting frame 3 is provided with the clamping groove 33, the buffer frame 41 is provided with the clamping block 411, the clamping block 411 and the clamping groove 33 are correspondingly disposed, the clamping block 411 is inserted into the clamping groove 33 during installation, the inner wall of the clamping groove 33 is provided with the fixing groove, the clamping block 411 and the fixing groove are integrally provided with the protruding portion 412, after the clamping block 411 is inserted into the clamping groove 33, the protruding portion 412 is buckled in the fixing groove, the clamping block 411 is fixed in the clamping groove 33, the buffer frame 41 is fixed on the housing 1, and the heat dissipation fan 31 is further installed on the housing 1.
Referring to fig. 6 and 7, after long-term use, dust may adhere to the heat dissipation fan 31, in order to facilitate cleaning of the dust on the heat dissipation fan 31, one end of the fixture block 411 close to the protrusion 412 is spaced apart from the buffer frame 41, the other end of the fixture block 411 is connected to the buffer frame 41, a separation plate 413 is disposed on the fixture block 411, the separation plate 413 is connected to one end of the fixture block 411 close to the protrusion 412, and one end of the separation plate 413 away from the fixture block 411 extends to the outside of the fixture groove 33. When needs clear up heat dissipation fan 31, press separation plate 413, separation plate 413 drives fixture block 411 and rotates, makes the separation of bellying 412 fixed slot, will cushion frame 41 and installing frame 3 separation to take off heat dissipation fan 31, through setting up fixture block 411 and separation plate 413, so that connect or separate heat dissipation fan 31 and installing frame 3, and clear up it to heat dissipation fan 31, promote the radiating efficiency of heat dissipation fan 31.
Referring to fig. 3 and 4, in order to reduce the phenomenon that the external particle impurities enter the heat dissipation fan 31 and affect the rotation of the heat dissipation fan 31 in the process of dissipating heat of the heat dissipation fan 31, a partition plate 5 is arranged on the ventilation opening 13. Baffle 5 sets up in the outside of casing 1, has seted up a plurality of through-holes on baffle 5, and a plurality of through-holes are even interval setting on baffle 5, and baffle 5 and heat dissipation fan 31 interval set up, and heat dissipation fan 31 during operation, in external air enters into vent 13 through baffle 5, and baffle 5 filters the granule in the air, reduces the granule and appears entering into the phenomenon in heat dissipation fan 31, promotes the stability when heat dissipation fan 31 rotates.
Referring to fig. 4 and 5, limiting grooves 151 have been seted up at the both sides that the inner wall of adjusting groove 15 is close to adjusting plate 51, be provided with spacing 52 on adjusting plate 51, spacing 52 and limiting grooves 151 correspond the setting, spacing 52 card is established in limiting grooves 151, and spacing 52 slides in limiting grooves 151 and sets up, promote the complex stability between adjusting plate 51 and the casing 1, reduce the phenomenon that the skew appears in the in-process of adjusting plate 51 removing, be convenient for baffle 5 and casing 1 separation.
Referring to fig. 4, in order to reduce the phenomenon that impurities in the air enter the casing 1, a filter screen 6 is arranged in the ventilation opening 13, the filter screen 6 is arranged between the partition plate 5 and the heat dissipation fan 31, and the filter screen 6 is used for filtering the impurities in the air, so that the phenomenon that the operation of the computer is influenced because the impurities enter the casing 1 is reduced.
Referring to fig. 4 and 8, after a long time of use, many impurities adhere to the filter screen 6, and the impurities block the holes of the filter screen 6, and a connection frame 7 is provided outside the filter screen 6 to facilitate cleaning of the filter screen 6. Be provided with baffle one 131 and baffle two 132 in vent 13, baffle one 131 and baffle two 132 interval set up, and connection frame 7 sets up between baffle one 131 and baffle two 132, and connection frame 7 can dismantle the setting between baffle one 131 and baffle two 132, when needs clear up filter screen 6, takes out connection frame 7 from between baffle one 131 and baffle two 132, clears up filter screen 6, promotes the radiating efficiency.
Referring to fig. 4 and 8, in order to facilitate the installation of the connection frame 7 between the first baffle 131 and the second baffle 132, the first baffle 131 is disposed on one side of the filter screen 6 close to the heat dissipation fan 31, the second baffle 132 is disposed on the other side of the connection frame 7, the first baffle 131 abuts against the connection frame 7, one end of the second baffle 132 is connected to the inner wall of the vent 13, the other end of the second baffle 132 is spaced from the inner wall of the vent 13, the connection frame 7 is provided with the clamping rod 71, the clamping rod 71 is slidably disposed between the first baffle 131 and the second baffle 132, the clamping rod 71 is cylindrical, the clamping rod 71 is rotatably disposed between the first baffle 131 and the second baffle 132, and one side of the connection frame 7, which is far away from the second baffle 132, is provided with. When installing the joint frame 7, insert the joint pole 71 between baffle one 131 and baffle two 132 through the top of baffle two 132, remove joint pole 71 to the one end that baffle two 132 is close to vent 13, then rotate joint frame 7 to joint frame 7 and the butt of baffle one 131, then deviate from one side of joint pole 71 to joint frame 7 through fixed establishment 8 and fix, and then fix joint frame 7 in vent 13. In order to reduce the phenomenon that the second baffle 132 interferes with the rotation of the connecting frame 7, the connecting frame 7 is provided with the abdicating groove 72, the abdicating groove 72 and the second baffle 132 are correspondingly arranged, and in the process that the connecting frame 7 rotates to abut against the first baffle 131, the contact between the connecting frame 7 and the second baffle 132 is reduced, so that the connecting frame 7 can rotate.
Referring to fig. 4 and 8, in order to facilitate the separation of the connection frame 7 and the vent 13, the fixing mechanism 8 includes an elastic member 81 and a fixing plate 82, the elastic member 81 may be provided as a spring, the fixing plate 82 is slidably provided on the connection frame 7, and the elastic member 81 is provided between the fixing plate 82 and the connection frame 7. The inner wall of the ventilation opening 13 is provided with a limiting groove 133, the limiting groove 133 and the fixing plate 82 are correspondingly arranged, under the action of the elastic piece 81, the fixing plate 82 is inserted into the limiting groove 133 to further fix the connecting frame 7, the fixing plate 82 is provided with a buckle groove 821, the fixing plate 82 can be pressed through the buckle groove 821 to adjust the position of the fixing plate 82, so that the fixing plate 82 and the limiting groove 133 are separated, and the connecting frame 7 can be taken down from the ventilation opening 13. The stabilizing plate 9 is arranged between the fixing plate 82 and the connecting frame 7, the fixing plate 82 is connected with the connecting frame 7 through the stabilizing plate 9, the stabilizing plate 9 is fixedly connected with the fixing plate 82, the stabilizing plate 9 is arranged on the connecting frame 7 in a sliding mode in the direction of the elastic force of the elastic piece 81 of the fixing plate 82, the fixing plate 82 is supported through the stabilizing plate 9, the stability of the fixing plate 82 is improved, and the phenomenon that the fixing plate 82 deviates when moving is reduced.
The implementation principle of the application is as follows: the mainboard and the like are arranged in the shell 1, the shell 1 is arranged on the bottom surface, when the shell 1 receives the vibration transmitted to the shell 1 from the outside, the shock absorption rod 22 rotates and compresses the shock absorption piece 21, the vibration received by the shell 1 is buffered, the heat dissipation fan 31 rotates to drive the air in the shell 1 to flow, the temperature in the shell 1 is adjusted, the heat dissipation fan 31 is arranged in the buffer frame 41, the vibration generated by the heat dissipation fan 31 is buffered under the action of the buffer piece 42, the vibration received by the mainboard is reduced, when the heat dissipation fan 31 needs to be cleaned, the buffer frame is detached from the shell 1 for cleaning, the filter screen 6 is arranged in the vent 13 for filtering impurities, the phenomenon that the external impurities enter the shell 1 is reduced, after long-time work, the position of the fixing plate 82 in the limiting groove 133 can be adjusted, the fixing plate 82 is separated from the limiting groove 133, the filter screen 6 is then removed from the vent 13 for cleaning.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a dustproof, shockproof, heat dissipation formula computer housing, includes casing (1), its characterized in that: one side of the shell (1) close to the ground is provided with a supporting leg (11), the side of the shell (1) is provided with a damping mechanism (2), the damping mechanism (2) comprises a damping rod (22) and a damping piece (21), at least one damping rod (22) is arranged, the damping rod (22) is hinged with the shell (1) and the supporting leg (11) respectively, the damping rod (22) is hinged with the adjacent damping rod (22), the damping piece (21) is arranged between the damping rods (22), two sides of the shell (1) are respectively provided with a vent (13) and an air outlet (14), a heat dissipation fan (31) is arranged in the vent (13), a buffer mechanism (4) used for slowing down the vibration generated by the heat dissipation fan (31) is arranged between the heat dissipation fan (31) and the vent (13), a filter screen (6) is arranged in the vent (13), the outside of filter screen (6) is provided with coupling frame (7), be provided with baffle (131) and baffle two (132) in vent (13), baffle one (131) and baffle two (132) interval set up, be provided with joint pole (71) on coupling frame (7), joint pole (71) slide the setting before baffle one (131) and baffle two (132), be provided with fixed establishment (8) that are used for fixed connection frame (7) on coupling frame (7).
2. The dust, vibration, heat dissipating computer case of claim 1, wherein: be provided with installing frame (3) in vent (13), buffer gear (4) are including buffering frame (41) and buffer (42), buffering frame (41) set up in the outside of heat dissipation fan (31), buffering frame (41) and installing frame (3) are connected through bolster (42), bolster (42) are provided with one at least, and are a plurality of bolster (42) are in the even interval setting in the outside of buffering frame (41).
3. The dust, vibration, heat dissipating computer case of claim 2, wherein: the utility model discloses a buffer structure, including installing frame (3), buffer frame (41), clamping groove (33), buffer frame (33), protruding portion (412), clamping groove (411), clamping groove (33) and clamping groove (33) are seted up to the mounting frame (3) is last to have seted up draw-in groove (33), the fixed slot has been seted up to the inner wall of draw-in groove (33), an organic whole is provided with protruding portion (412) on clamping groove (411), protruding portion (412) card is established in the fixed slot, be provided with separating plate (413) on clamping block (411), separating plate (413) deviate from the one end.
4. The dust, vibration, heat dissipating computer case of claim 3, wherein: the outside of vent (13) is provided with baffle (5), a plurality of through-holes have been seted up on baffle (5), adjustment tank (15) have been seted up on casing (1), adjustment tank (15) set up the one side at vent (13), the side of baffle (5) is provided with regulating plate (51), regulating plate (51) slide in adjustment tank (15) and set up.
5. The dust, vibration, heat dissipating computer case of claim 4, wherein: baffle two (132) set up the one side that deviates from heat dissipation fan (31) in baffle one (131), baffle one (131) and coupling frame (7) butt, joint pole (71) rotate the setting between baffle one (131) and baffle two (132), fixed establishment (8) include elastic component (81) and fixed plate (82), set up on vent (13) and have limited groove (133), fixed plate (82) card is established in limited groove (133), fixed plate (82) and coupling frame (7) are connected through elastic component (81), joint pole (71) set up the one side that deviates from fixed plate (82) in coupling frame (7), baffle two (132) deviate from the one end and vent (13) inner wall interval setting of joint pole (71).
6. The dust, vibration, heat dissipating computer case of claim 5, wherein: offer on the link frame (7) and let a groove (72), it sets up to let a groove (72) and baffle two (132) correspondence.
7. The dust, vibration, heat dissipating computer case of claim 4, wherein: the both sides of regulating plate (51) are provided with spacing (52), spacing groove (151) have been seted up on regulating groove (15) inner wall, spacing groove (151) and spacing (52) correspond the setting, spacing (52) slide in spacing groove (151) and set up.
8. The dust, vibration, heat dissipating computer case of claim 1, wherein: the shock-absorbing device is characterized in that a sealing sleeve (12) is arranged on the shell (1), the sealing sleeve (12) is sleeved outside the shell (1), the shell (1) is arranged in the sealing sleeve (12) in a sliding mode, and the supporting legs (11) penetrate through the sealing sleeve (12) and are connected with the shock-absorbing rods (22).
CN202011289655.7A 2020-11-18 2020-11-18 Dustproof, shockproof and heat dissipation type computer housing Active CN112379739B (en)

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CN115500058A (en) * 2022-09-30 2022-12-20 苏州浪潮智能科技有限公司 Server cooling cabinet
TWI819804B (en) * 2022-09-20 2023-10-21 緯創資通股份有限公司 Server and host casing thereof

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TWI819804B (en) * 2022-09-20 2023-10-21 緯創資通股份有限公司 Server and host casing thereof
CN115500058A (en) * 2022-09-30 2022-12-20 苏州浪潮智能科技有限公司 Server cooling cabinet

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