CN114967849A - Heat radiator for computer electronic information display - Google Patents

Heat radiator for computer electronic information display Download PDF

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Publication number
CN114967849A
CN114967849A CN202210585625.3A CN202210585625A CN114967849A CN 114967849 A CN114967849 A CN 114967849A CN 202210585625 A CN202210585625 A CN 202210585625A CN 114967849 A CN114967849 A CN 114967849A
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China
Prior art keywords
piece
seat
heat dissipation
information display
heat
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CN202210585625.3A
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Chinese (zh)
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CN114967849B (en
Inventor
应卫强
罗仕鉴
张玲燕
姚琤
应放天
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Zhejiang University ZJU
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Zhejiang University ZJU
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Priority to CN202210585625.3A priority Critical patent/CN114967849B/en
Publication of CN114967849A publication Critical patent/CN114967849A/en
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Publication of CN114967849B publication Critical patent/CN114967849B/en
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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
    • G06F1/1601Constructional details related to the housing of computer displays, e.g. of CRT monitors, of flat displays
    • 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)
  • General Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

The invention discloses a heat dissipation device for a computer electronic information display, which structurally comprises a dust cover, a heat conduction plate, a heat dissipation port, a main body and a stopping device.

Description

Heat radiator for computer electronic information display
Technical Field
The invention relates to the technical field of displays, in particular to a heat dissipation device for an electronic information display of a computer.
Background
Along with the continuous development of computer and display technique, the display technique on the computer constantly obtains improving, the display of computer generally divide into LED display screen and liquid crystal display two main categories today, current desktop display's screen has become an important output device, desktop display uses for a long time and need dispel the heat to display inside through heat abstractor, avoid the inside high temperature of display to lead to the part to burn out, when using heat abstractor, need the place of improvement:
when the existing heat dissipation device dissipates heat of the display, the heat dissipation assembly is driven by the heat dissipation motor to dissipate heat of the hot air generated by the display under normal conditions, when the heat dissipation fan blades perform heat dissipation operation, external sundries enter the heat dissipation assembly through the dust cover or the heat dissipation opening, the operation of the heat dissipation assembly is blocked under the influence of the sundries, the heat dissipation assembly is contacted with the heat dissipation fan blades through the cooperation of the swing arc piece and the installation limiting piece, the rotating heat dissipation fan blades are effectively stopped quickly, the inspection of operators is convenient, when the installation limiting piece stops the heat dissipation fan blades, the installation limiting piece can be directly contacted with the heat dissipation fan blades under the action of the swing arc piece, and the heat dissipation fan blades can generate larger collision impact force due to the external force contact of the installation limiting piece during high-speed operation, so that the contact positions of the heat dissipation fan blades and the installation limiting piece can not continuously rotate due to the bending and fracture phenomena, the heat generated in the display cannot be transmitted out by the radiating fan blades, so that the temperature in the display is easily and rapidly increased, the display is overheated and damaged, and great potential safety hazards can be caused.
Disclosure of Invention
Aiming at the defects in the prior art, the invention is realized by the following technical scheme: a heat dissipation device for a computer electronic information display structurally comprises a dust cover, a heat conduction plate, a heat dissipation port, a main body and a stop device, wherein the dust cover is matched and connected with the stop device, the stop device is provided with the heat dissipation port communicated with the stop device, the stop device is installed on the rear side of the main body, and the heat conduction plate is arranged on the rear side of the main body.
As a further optimization of the invention, the stop device comprises a contact head, a connection adjusting piece, a frame body, a swinging arc piece and two heat dissipation assemblies, wherein the contact head is arranged on the connection adjusting piece, the swinging arc piece is connected on the connection adjusting piece, the swinging arc piece is contacted with the heat dissipation assemblies, the two heat dissipation assemblies are arranged in parallel on the left side and the right side of the frame body, the frame body is matched and connected with the dust cover, the frame body is provided with a heat dissipation port communicated with the frame body, and the frame body is arranged on the rear side of the main body.
As the further optimization of the invention, the connecting and adjusting piece comprises a linkage rod, connecting plates, a limiting seat, a rotating shaft, an installing head and two zooming components, wherein one end of the linkage rod is connected with the rotating shaft, the installing head is installed at the other end of the linkage rod, the installing head is connected with the zooming components, the number of the zooming components is two, the connecting plates are fixedly connected to one sides of the two zooming components, the zooming components are arranged on the limiting seat, contact heads are installed on the zooming components, and the linkage rod is movably connected with the swinging arc piece through the rotating shaft.
As a further optimization of the invention, the zooming component comprises a moving rod, a fixed seat, rotating gears, elastic buffering pieces, a connecting frame, clamping teeth and movable seats, wherein the moving rod is inserted on the connecting plate, the lower end of the connecting plate is fixedly connected with the fixed seat, the two sides of the top of the connecting plate are both connected with the movable seats, the rotating gears are connected with the movable seats, mounting heads are connected with the rotating gears, the inner side surfaces of the two movable seats are connected with the moving rod, the clamping teeth are connected with the two sides of the moving rod, the top of the moving rod penetrates into the connecting frame, the elastic buffering pieces are mounted at the top of the connecting frame, contact heads are connected with the elastic buffering pieces, and the fixed seat is arranged on the limiting seat.
As the further optimization of the invention, the heat dissipation assembly comprises heat dissipation fan blades, elastic pressing pads, an installation rotating part and adjusting discs, wherein the heat dissipation fan blades are provided with a plurality of heat dissipation fan blades, the heat dissipation fan blades are annularly inserted on the installation rotating part at equal intervals, the installation rotating part is arranged at the middle position of the adjusting discs, four elastic pressing pads are connected outside the adjusting discs in an inosculating manner, the elastic pressing pads are in contact with the swing arc part, and the two adjusting discs are arranged on the left side and the right side of the frame body in parallel.
As a further optimization of the invention, the installation rotating piece comprises a plurality of sockets, triangular abutting blocks, locking bolts, a central shaft, an interconnecting seat and a guide disc, wherein the plurality of sockets are annularly arranged on the guide disc at equal intervals, the guide disc is movably connected with the central shaft, the plurality of sockets are respectively connected with two locking bolts, the interconnecting seat is arranged on the socket, the triangular abutting blocks are respectively connected with two sides of the interconnecting seat, the sockets and the interconnecting seat are connected with radiating fan blades, and the guide disc is arranged in the middle of the adjusting disc.
As a further optimization of the invention, the adjusting disc comprises a plurality of movable rods, an opening and closing elastic piece, a movable ring and a positioning seat, wherein the plurality of movable rods are connected with the inside of the movable ring in an equidistant annular manner, the other ends of the plurality of movable rods are inserted into the positioning seat, three opening and closing elastic pieces connected with the movable rods are arranged on the left side and the right side of the movable rods, the opening and closing elastic pieces and the movable rods are connected to form a symmetrical shaft structure, the movable ring is connected with four elastic pressing pads, an installation rotating piece is installed on the positioning seat, and the movable ring is arranged on the frame body.
As the further optimization of the invention content, the linkage rod is in an L-shaped structure, and the bending position of the end part of the linkage rod is movably connected with the swinging arc piece through a rotating shaft.
As the further optimization of the invention content, the two triangular abutting blocks are arranged on two sides of the intercommunicating seat to form a concave structure.
Advantageous effects
The invention relates to a heat radiator for a computer electronic information display, which has the following beneficial effects:
1. the invention adopts the combination arrangement of the contact head, the connecting adjusting piece, the frame body, the swinging arc piece and the radiating components, the frame body is arranged on the main body, the two radiating components rotate in the frame body under the drive of the radiating motor, the heat conducting plate conducts the heat generated by the heat conducting plate to carry out radiating treatment, and the positions of the contact head and the swinging arc piece are moved by the connecting adjusting piece when the radiating components stop intermittently, so that the contact head and the swinging arc piece are matched to stop and adjust the rotation of the radiating components.
2. The heat dissipation assembly is characterized in that the heat dissipation assembly comprises a heat dissipation assembly, a heat dissipation assembly and a control module, wherein the heat dissipation assembly comprises a heat dissipation assembly and a linkage rod, the heat dissipation assembly is arranged on the linkage rod, the linkage rod is connected with the heat dissipation assembly through the limiting seat, the limiting seat is connected with the heat dissipation assembly, the limiting seat is connected with the linkage rod, the rotation speed of the heat dissipation assembly is controlled through the connection and the collision of the heat dissipation assembly and the heat dissipation assembly, the swing arc piece is connected with the linkage rod through the rotation shaft, the linkage rod is adjusted through the heat dissipation assembly, the swing arc piece is contacted with the heat dissipation assembly, and the heat dissipation assembly which is slowed down is stopped.
3. According to the invention, through the combined arrangement of the socket, the triangular abutting blocks, the locking bolt, the central shaft, the intercommunicating seat and the guide disc, the plurality of radiating fan blades penetrate through the intercommunicating seat at equal intervals and are inserted on the socket, and the radiating fan blades are locked and connected on the socket through the locking bolt, so that the rotating stability of the radiating fan blades is kept, the two triangular abutting blocks can be arranged at two sides of the radiating fan blades and can be directly contacted with the contact head, and therefore, the radiating fan blades are prevented from being damaged due to external force contact in high-speed operation, and the radiating fan blades are effectively protected.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
FIG. 1 is a schematic structural diagram of a heat dissipation device for an electronic information display of a computer according to the present invention;
fig. 2 is a schematic view of the internal structure of the stop device of the present invention.
Fig. 3 is a schematic view of the internal structure of the connecting and adjusting member of the present invention.
FIG. 4 is a schematic diagram of an internal structure of the zoom assembly of the present invention.
Fig. 5 is a schematic view of the internal structure of the heat dissipation assembly of the present invention.
Fig. 6 is a schematic cross-sectional view of the mounting rotor according to the present invention.
Fig. 7 is a schematic cross-sectional view of the adjusting disk of the present invention.
In the figure: the device comprises a dust cover 1, a heat conduction plate 3, a heat dissipation port 5, a main body 2, a stopping device 4, a contact head Q1, a connecting adjusting piece E3, a frame body W2, a swinging arc piece Y5, a heat dissipation component T4, a linkage rod R11, a connecting plate I15, a limiting seat Y13, a rotating shaft T12, a mounting head U14, a zooming component P16, a moving rod D21, a fixed seat F23, a rotating gear J25, an elastic buffering piece H24, a connecting frame L27, a clamping tooth G22, a movable seat K26, a heat dissipation fan blade K31, an elastic pressing pad Z33, a mounting rotating piece L32, an adjusting disc X34, a socket C41, a triangular resisting block V43, a locking bolt M44, a central shaft N42, an intercommunicating seat Q45, a guide disc W46, a movable rod E51, an opening and closing piece Y54, a movable ring T52 and a positioning seat R53.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
Example one
Referring to fig. 1, the present invention provides a technical solution: the utility model provides a heat abstractor for computer electronic information display, its structure includes dust cover 1, heat-conducting plate 3, thermovent 5, main part 2, stops device 4, dust cover 1 and stop device 4 coincide and be connected, stop device 4 and be equipped with the thermovent 5 of putting through with it, stop device 4 and install in main part 2 rear side, main part 2 rear side is equipped with heat-conducting plate 3.
Referring to fig. 2, the stop device 4 includes a contact Q1, a connection adjusting member E3, a frame W2, a swing arc member Y5, and a heat dissipation assembly T4, the contact Q1 is mounted on the connection adjusting member E3, the connection adjusting member E3 is connected with the swing arc member Y5, the swing arc member Y5 contacts with the heat dissipation assembly T4, two heat dissipation assemblies T4 are provided, the two heat dissipation assemblies T4 are parallel to the left and right sides of the frame W2, the frame W2 is engaged with the dust cover 1, the frame W2 is provided with a heat dissipation port 5 connected with the frame W2, and the frame W2 is mounted on the rear side of the main body 2.
The swing arc piece Y5 is used for being matched with and connected with the adjusting piece E3, the connecting adjusting piece E3 is connected with the swing arc piece Y5 through a rotating shaft, the swing arc piece Y5 is in a bent arc structure and can be matched and connected with the outer wall of the radiating component T4, and the stop motion is effectively performed by being matched with the radiating component T4.
Referring to fig. 3, the connecting adjustment member E3 includes a linkage rod R11, a connecting plate I15, a limiting seat Y13, a rotating shaft T12, a mounting head U14, and a zooming component P16, one end of the linkage rod R11 is connected to the rotating shaft T12, the other end is mounted with a mounting head U14, the mounting head U14 is connected to the zooming component P16, there are two zooming components P16, one side of each of the two zooming components P16 is fixedly connected to the connecting plate I15, the zooming component P16 is mounted on the limiting seat Y13, the zooming component P16 is mounted with a contact head Q1, and the linkage rod R11 is movably connected to the swing arc member Y5 through the rotating shaft T12.
Referring to fig. 3, the linkage rod R11 is in an L-shaped structure, and the bent end thereof is movably connected to the swing arc piece Y5 through a rotating shaft T12.
The zooming component P16 is used for being matched with the linkage rod R11, the linkage rod R11 is connected to the zooming component P16 through the mounting head U14, and when the zooming component P16 rotates, the linkage rod R11 is driven to move left and right through the mounting head U14 to be adjusted.
Referring to fig. 4, the zooming assembly P16 includes a moving rod D21, a fixed seat F23, a rotating gear J25, an elastic buffering member H24, a connecting frame L27, a latch G22, and a movable seat K26, the moving rod D21 is inserted into a connecting plate I15, the lower end of the connecting plate I15 is fixedly connected to the fixed seat F15, both sides of the top of the connecting plate I15 are connected to the movable seats K15, the movable seats K15 are connected to the rotating gear J15, the rotating gear J15 is connected to the mounting head U15, the inner side surfaces of the two movable seats K15 are connected to the moving rod D15, both sides of the moving rod D15 are connected to the latch G15, the top of the moving rod D15 penetrates through the connecting frame L15, the elastic buffering member H15 is installed at the top of the connecting frame L15, the elastic buffering member H15 is connected to the contact head Q15, and the fixed seat F15 is disposed on the fixed seat Y15.
The moving rod D21 is used for cooperating with the rotating gear J25, when the moving rod D21 moves downward, the latch G22 on both sides of the moving rod D21 can be engaged with the rotating gear J25 to move, when the moving rod D21 moves downward, the rotating gear J25 can drive the linkage rod R11 to move outward under the action of the latch G22, and when the moving rod D21 moves upward, the rotating gear J25 can drive the linkage rod R11 to move inward under the action of the latch G22.
Example two
Referring to fig. 1, the present invention provides a technical solution: the utility model provides a heat abstractor for computer electronic information display, its structure includes dust cover 1, heat-conducting plate 3, thermovent 5, main part 2, stops device 4, dust cover 1 and stop device 4 coincide and be connected, stop device 4 and be equipped with the thermovent 5 of putting through with it, stop device 4 and install in main part 2 rear side, main part 2 rear side is equipped with heat-conducting plate 3.
Referring to fig. 2, the stop device 4 includes a contact Q1, a connection adjusting member E3, a frame W2, a swing arc member Y5, and a heat dissipation assembly T4, the contact Q1 is mounted on the connection adjusting member E3, the connection adjusting member E3 is connected with the swing arc member Y5, the swing arc member Y5 contacts with the heat dissipation assembly T4, two heat dissipation assemblies T4 are provided, the two heat dissipation assemblies T4 are parallel to the left and right sides of the frame W2, the frame W2 is engaged with the dust cover 1, the frame W2 is provided with a heat dissipation port 5 connected with the frame W2, and the frame W2 is mounted on the rear side of the main body 2.
The swing arc piece Y5 is used for being matched with and connected with the adjusting piece E3, the connecting adjusting piece E3 is connected with the swing arc piece Y5 through a rotating shaft, the swing arc piece Y5 is in a bent arc structure and can be matched and connected with the outer wall of the radiating component T4, and the stop motion is effectively performed by being matched with the radiating component T4.
Referring to fig. 5, the heat dissipating assembly T4 includes a heat dissipating fan blade K31, a resilient pad Z33, an installation rotating member L32, and an adjusting disk X34, the heat dissipating fan blade K31 has a plurality of heat dissipating fan blades, the heat dissipating fan blades K31 are inserted into the installation rotating member L32 in an equidistant annular manner, the installation rotating member L32 is disposed at the middle position of the adjusting disk X34, the adjusting disk X34 is externally and fittingly connected with four resilient pads Z33, the resilient pad Z33 is in contact with the swing arc member Y5, and the two adjusting disks X34 are disposed in parallel on the left and right sides of the frame W2.
The elastic pressing pad Z33 is used for being matched with the adjusting disc X34, the outer portion of the adjusting disc X34 is connected with an elastic pressing pad Z33, the elastic pressing pad Z33 is made of elastic materials and has a certain thickness, the swing arc piece Y5 can be in direct contact with the elastic pressing pad Z33 when moving inwards, the elastic pressing pad Z33 can push the adjusting disc X34 along with the inward pushing force of the swing arc piece Y5, the adjusting disc X34 can be adjusted in an inward moving mode, and the heat dissipation fan blades K31 are stopped.
Referring to fig. 6, the mounting rotating member L32 includes a socket C41, a triangular abutting block V43, a locking bolt M44, a central shaft N42, an interconnecting seat Q45, and a guide disc W46, the socket C41 is provided with a plurality of sockets C41, the plurality of sockets C41 are annularly arranged on the guide disc W46 at equal intervals, the guide disc W46 is movably connected with the central shaft N42, the plurality of sockets C41 are connected with two locking bolts M44, the socket C41 is provided with an interconnecting seat Q45, two sides of the interconnecting seat Q45 are connected with the triangular abutting block V43, the socket C41 and the interconnecting seat Q45 are connected with a heat dissipating fan K31, and the guide disc W46 is arranged at the middle position of an adjusting disc X34.
Referring to fig. 6, two triangular supporting blocks V43 are mounted on two sides of the communicating base Q45 to form a "concave" structure.
The triangular abutting block V43 is used for matching with an interconnecting seat Q45, the interconnecting seat Q45 is communicated with a socket C41, a radiating fan blade K31 penetrates through the interconnecting seat Q45 and is inserted into the socket C41, two triangular abutting blocks V43 are arranged at the upper end and the lower end of the radiating fan blade K31, and when the radiating fan blade K31 needs to be stopped, the contact Q1 is contacted with the triangular abutting block V43 to control the stop of the rotation of the radiating fan blade K31.
Referring to fig. 7, the adjusting disk X34 includes a plurality of movable rods E51, an opening and closing elastic member Y54, a movable ring T52, and a positioning seat R53, the movable rods E51 are provided, the movable rods E51 are connected to the inside of the movable ring T52 in an equidistant annular manner, the other ends of the movable rods E51 are inserted into the positioning seat R53, the left and right sides of the movable rod E51 are provided with three opening and closing elastic members Y54 connected to the left and right sides of the movable rod E51, the opening and closing elastic member Y54 is connected to the movable rod E51 to form a symmetrical shaft structure, the movable ring T52 is connected to four elastic pads Z33, the positioning seat R53 is provided with an installation rotating member L32, and the movable ring T52 is arranged on the frame W2.
The opening and closing elastic piece Y54 is used for matching with the movable rod E51, the movable ring T52 retracts along with the inward pushing force, the movable rod E51 in the movable ring E51 retracts along with the inward folding force, the opening and closing elastic pieces Y54 on two sides of the movable rod E51 retract along with the inward folding force and eject outwards, and the opening and closing elastic piece Y54 has certain elasticity and can effectively match with the movable rod E51 to perform telescopic resetting movement.
The working principle of the above technical solution is explained as follows:
when the invention is used, a main body 2 is arranged on a display, when the display operates, hot air is conducted to the inside of a heat dissipation component T4 through a heat conduction plate 3 to drive a heat dissipation motor in the heat dissipation component T4, a plurality of heat dissipation fan blades K31 penetrate through an interconnection seat Q45 at equal intervals to be plugged into a plurality of sockets C41, the heat dissipation fan blades K31 are locked and connected on a socket C41 through a locking bolt M44, thereby the stability of the rotation of the heat dissipation fan blades K31 is kept, the phenomenon of shaking of the heat dissipation fan blades K3 in the rotating process is prevented, two triangular abutting blocks V43 are arranged at the upper side and the lower side of the heat dissipation fan blades K31 under the action of an interconnection seat Q45, a certain gap exists between the triangular abutting blocks V43 and the heat dissipation fan blades K31, a guide disc W46 is stably connected on a central shaft N42, the central shaft N42 penetrates through the R53 to be connected with the heat dissipation motor, a guide disc W46 is connected on a positioning seat R53, the heat dissipation motor drives the guide disc W46 to rotate through a central shaft N42, the heat dissipation fan blade K31 rotates along with the heat dissipation fan blade K31 can dissipate heat outwards through the dust cover 1 and the heat dissipation port 5, the dust cover 1 is externally arranged outside the frame body W2 and can be detached and adjusted, dust on the dust cover 1 can be effectively cleaned, when a heat dissipation motor stops intermittently after heat dissipation for a period of time, the heat dissipation motor moves upwards through the moving rod D21, the moving rod D21 can push the elastic buffering piece H24 outwards through the connecting frame L27, the top of the elastic buffering piece H24 is connected with the contact Q1, the contact Q1 can move outwards under the action of the elastic buffering piece H24, the contact Q1 can be in contact with the end part of the triangular abutting block V43 on the guide disc W46 when moving to a certain position, certain contact collision force can be generated between the contact Q1 and the elastic buffering piece H24 due to the collision force, the elastic buffering piece H24 can retract inwards when being pressed, the buffering piece is provided with a buffering piece, and can effectively buffer the collision force, the elastic buffer piece H24 generates resilience force after being pressed to eject the contact Q1 outwards, so that the contact Q1 is contacted with the end part of the triangular abutting block V43 again, and the speed of the heat dissipation fan blade K31 is reduced under the action of the triangular abutting block V43;
when the moving rod D21 moves upwards, the latch G22 on both sides of the moving rod D21 engages with the rotating gear J25 on the two moving seats K26, the two rotating gears J25 rotate outwards along with the moving rod D21, the rotating gear J25 is provided with a mounting head U14, the mounting head U14 is fixedly connected with the linkage rod R11, the rotating gear J25 drives the linkage rod R11 to move outwards under the action of the mounting head U14, the bent end of the linkage rod R11 is connected with the swinging arc piece Y11 through the rotating shaft T11, the swinging arc piece Y11 is driven by the linkage rod R11 to move inwards to contact with the elastic pressing pad Z11, the swinging arc piece Y11 is matched with the elastic pressing pad Z11 in position adjusted along with the rotating shaft T11, the rotating gear J11 rotates continuously, the linkage rod R11 moves outwards, the swinging arc piece Y11 presses the elastic pressing pad Z11 inwards, and the movable ring 11 is pressed and is conducted to the movable ring 11 to be pressed and pressed by the movable ring 11, a plurality of movable rods E51 are connected inside the movable ring T52, the movable rods E51 are pressed to inwards fold and retract, the opening and closing elastic pieces Y54 on two sides of the movable rod E51 retract inwards along with the movable rods and eject outwards, the opening and closing elastic pieces Y54 have certain elasticity and can effectively cooperate with the movable rods E51 to perform telescopic resetting movement, the movable ring T52 moves inwards under the action of the movable rods E51, the movable ring T52 contacts with the radiating fan blades K31 when moving to a corresponding position, the movable ring T52 moves outwards under the action of contact collision force, the movable ring T52 can be elastically adjusted upwards and downwards under the action of the movable rods E51 and the opening and closing elastic pieces Y54, a sponge is arranged inside the movable ring T52, the radiating fan blades K31 can be effectively protected and buffered, the radiating fan blades K31 can be prevented from being directly contacted with the movable ring T52 to be damaged, the rotating speed of the radiating fan blades K31 is effectively controlled in a short time, and the fan blades K31 can be prevented from being damaged due to continue rotating speed reduction, effectively protect heat dissipation flabellum K31 for heat dissipation flabellum K31 can rotate the transmission away with the heat that the heat dissipation motor stably cooperated the inside production of display, prevent that the inside temperature of display from rising rapidly and the phenomenon of overheated damage appears, effectively protect the display, make the display can normally operate.
In summary, the invention adopts a combination of a dust cover, a heat conducting plate, a heat dissipating port, a main body and a stopping device to form a new heat dissipating device for a computer electronic information display, the frame body is arranged on the main body, two heat dissipating components rotate in the frame body under the drive of a heat dissipating motor to dissipate heat conducted by the heat conducting plate, when the heat dissipating components stop intermittently, a contact head can be in direct contact with the heat dissipating components, the two heat dissipating components are connected and butted together to control the rotating speed of the heat dissipating components, a swing arc part is connected with a linkage rod through a rotating shaft, and the linkage rod moves inwards through adjustment of a zooming component, so that the swing arc part can be in contact with the heat dissipating components, and then the heat dissipating components which are slowed down are stopped.
While there have been shown and described what are at present considered the fundamental principles and essential features of the invention and its advantages, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (8)

1. The utility model provides a heat abstractor for computer electronic information display which the structure includes dust cover (1), heat-conducting plate (3), thermovent (5), main part (2), ends stop device (4), its characterized in that:
the dust cover (1) is connected with the stopping device (4) in a matching manner, a heat dissipation port (5) is arranged on the stopping device (4), and a heat conduction plate (3) and the stopping device (4) are arranged on the main body (2);
stop device (4) including contact (Q1), connect and transfer piece (E3), framework (W2), swing arc spare (Y5), radiator unit (T4), contact (Q1) is installed and is being connected on transferring piece (E3), it transfers to connect and is connected with swing arc spare (Y5) on piece (E3), swing arc spare (Y5) contacts with radiator unit (T4), radiator unit (T4) are established on framework (W2), framework (W2) coincide with dust cover (1) and are connected, be equipped with thermovent (5) on framework (W2), install on main part (2) framework (W2).
2. The heat dissipating device for a computer electronic information display according to claim 1, wherein: the connecting adjusting piece (E3) comprises a linkage rod (R11), a connecting plate (I15), a limiting seat (Y13), a rotating shaft (T12), a mounting head (U14) and a zooming component (P16), wherein the linkage rod (R11) is connected with the rotating shaft (T12) and the mounting head (U14), the mounting head (U14) is connected with the zooming component (P16), the zooming component (P16) is fixedly connected with the connecting plate (I15), the zooming component (P16) is arranged on the limiting seat (Y13), the zooming component (P16) is provided with a contact head (Q1), and the linkage rod (R11) is movably connected with the swinging arc piece (Y5) through the rotating shaft (T12).
3. The heat dissipating device for an electronic information display of a computer according to claim 2, wherein: the zoom component (P16) comprises a moving rod (D21), a fixed seat (F23), a rotating gear (J25), an elastic buffer (H24), a connecting frame (L27), a latch (G22) and a movable seat (K26), the moving rod (D21) is inserted on a connecting plate (I15), the connecting plate (I15) is fixedly connected with a fixed seat (F23), the connecting plate (I15) is connected with a movable seat (K26), the movable seat (K26) is connected with a rotating gear (J25), the rotating gear (J25) is connected with a mounting head (U14), the movable seat (K26) is connected with a moving rod (D21), the moving rod (D21) is connected with a latch (G22), the moving rod (D21) penetrates through the connecting frame (L27), the elastic buffer piece (H24) is installed on the connecting frame (L27), a contact head (Q1) is connected to the elastic buffer piece (H24), and the fixed seat (F23) is arranged on the limiting seat (Y13).
4. The heat dissipating device for an electronic information display of a computer according to claim 1, wherein: radiating component (T4) changes piece (L32), adjustment disk (X34) including heat dissipation flabellum (K31), bullet pressure pad (Z33), installation, heat dissipation flabellum (K31) is pegged graft and is changeed on piece (L32) in the installation, the installation changes piece (L32) and establishes on adjustment disk (X34), adjustment disk (X34) coincide and are connected with bullet pressure pad (Z33), bullet pressure pad (Z33) contacts with swing arc spare (Y5), adjustment disk (X34) is established on framework (W2).
5. The heat dissipating device for an electronic information display of a computer according to claim 4, wherein: installation commentaries on classics piece (L32) is including socket (C41), triangle support piece (V43), locking bolt (M44), center pin (N42), intercommunication seat (Q45), guide plate (W46), socket (C41) are established on guide plate (W46), guide plate (W46) and center pin (N42) swing joint, be connected with locking bolt (M44) on socket (C41), be equipped with intercommunication seat (Q45) on socket (C41), intercommunication seat (Q45) are connected with triangle and support piece (V43), socket (C41), intercommunication seat (Q45) meet with heat dissipation flabellum (K31), guide plate (W46) are established on adjusting disk (X34).
6. The heat dissipating device for an electronic information display of a computer according to claim 4, wherein: adjusting disk (X34) including activity pole (E51), open and close bullet piece (Y54), activity ring (T52), positioning seat (R53), activity pole (E51) are connected with on activity ring (T52), activity pole (E51) are pegged graft on positioning seat (R53), activity pole (E51) with open and close bullet piece (Y54) and meet, be connected with on the activity ring (T52) and suppress pad (Z33), install installation commentaries on classics piece (L32) on positioning seat (R53), activity ring (T52) are established on framework (W2).
7. The heat dissipating device for an electronic information display of a computer according to claim 2, wherein: the linkage rod (R11) is of an L-shaped structure, and the bent position of the end part of the linkage rod is movably connected with the swinging arc piece (Y5) through a rotating shaft (T12).
8. The heat dissipating device for an electronic information display of a computer according to claim 5, wherein: the two triangular abutting blocks (V43) are arranged at two sides of the communicating seat (Q45) to form a concave structure.
CN202210585625.3A 2022-05-27 2022-05-27 Heat abstractor for electronic information display Active CN114967849B (en)

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