CN113873098B - Image data processing device - Google Patents

Image data processing device Download PDF

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Publication number
CN113873098B
CN113873098B CN202111456501.7A CN202111456501A CN113873098B CN 113873098 B CN113873098 B CN 113873098B CN 202111456501 A CN202111456501 A CN 202111456501A CN 113873098 B CN113873098 B CN 113873098B
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China
Prior art keywords
clamping
chucking
plate
data processing
image
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CN202111456501.7A
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Chinese (zh)
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CN113873098A (en
Inventor
孙林
冯兵
薛启成
王洋
田芳
宋霞
赵鹏
孙朋
焦阳
张秀怡
王吉朋
朱方浩
王增明
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Gaoqing Power Supply Company State Grid Shandong Electric Power Co
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Gaoqing Power Supply Company State Grid Shandong Electric Power Co
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Priority to CN202111456501.7A priority Critical patent/CN113873098B/en
Publication of CN113873098A publication Critical patent/CN113873098A/en
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N5/00Details of television systems
    • H04N5/14Picture signal circuitry for video frequency region
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/20009Modifications to facilitate cooling, ventilating, or heating using a gaseous coolant in electronic enclosures
    • H05K7/20136Forced ventilation, e.g. by fans

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  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

The invention discloses an image data processing device which comprises a shell, a heat dissipation fan, an image big data processor and an adjusting plate, wherein the adjusting plate is positioned on two sides of the image big data processor, a clamping device is arranged on the adjusting plate, the clamping device comprises a fixing cavity, a clamping box, a clamping column, a rotating block, a clamping groove and a telescopic spring, the fixing cavity is arranged at two ends of the adjusting plate, the clamping box is arranged in the fixing cavity, the clamping column and the telescopic spring are arranged in the clamping box, the rotating block is arranged on two sides of the image big data processor, and the clamping groove is arranged on the rotating block. The invention relates to an image data processing device, which belongs to the field of data processing, wherein a heat dissipation fan and a heat dissipation device are mutually associated, the heat dissipation effect is good, a rotating block on an image big data processor is clamped through a clamping column, the image data processing device is suitable for image big data processors with different thicknesses, and a data plug and a data connector are clamped together and are firmly connected.

Description

Image data processing device
Technical Field
The present invention relates to the field of data processing, and in particular, to an image data processing apparatus.
Background
Data is an expression of facts, concepts or instructions, which can be processed by manual or automated means, and after being interpreted and given certain meaning, becomes information, and data processing is the collection, storage, retrieval, processing, transformation and transmission of data, and the basic purpose of data processing is to extract and derive valuable and meaningful data for certain specific people from a large amount of data which may be disordered and difficult to understand, and data processing is the basic link of system engineering and automatic control.
According to the Chinese patent application numbers: CN201922476589.3, entitled image big data processing device, which includes a shell (1) and an image big data processor (3) in the shell (1), … …, a threaded rod (14) extending out of the shell (1) is fixed on the rotating ring block (15), the image data processing device has certain disadvantages, firstly the device fixes the image big data processor by only twisting the handle to drive the threaded rod to rotate, the mode of fixing the image big data processor is simple, the fixed image big data processor is not firm, the distance between the fixed image big data processor and the shell can not be adjusted according to the thickness of the image big data processor, secondly, the heat dissipation is only guided by a guide plate, the guide effect is poor, and the image big data processor is easy to cause failure due to heat dissipation in time, finally, the interface for inserting the device into the transmission data is not firm, so that the interface is easy to fall off, and the operation is troublesome.
Disclosure of Invention
The invention mainly aims to provide an image data processing device, which can effectively solve the problems that the mode of fixing an image big data processor in the background technology is simple, the fixed image big data processor is very unstable, the distance between the fixed image big data processor and a shell cannot be adjusted according to the thickness of the image big data processor, the heat dissipation is only guided by a guide plate, the guide effect is poor, the image big data processor is easy to cause faults due to the fact that the heat dissipation is not timely, and finally, an interface for inserting equipment to transmit data is unstable, and the interface is easy to fall off.
In order to achieve the purpose, the invention adopts the technical scheme that:
an image data processing device comprises a machine shell, heat dissipation fans, a large image data processor and an adjusting plate, wherein the adjusting plate is positioned on two sides of the large image data processor, a clamping device is arranged on the adjusting plate and comprises a fixed cavity, a clamping box, clamping columns, rotating blocks, clamping grooves and a telescopic spring, the fixed cavity is arranged at two ends of the adjusting plate, the clamping boxes are arranged in the fixed cavity, the clamping columns and the telescopic spring are arranged in the clamping box, the rotating blocks are arranged on two sides of the large image data processor, the clamping grooves are arranged on the rotating blocks, the clamping columns are aligned with the clamping grooves, a heat dissipation device is arranged between the inner heat dissipation fans of the machine shell and comprises a swinging plate, a transmission gear, a double-head motor, a rotating disc, a first connecting rod, a second connecting rod and a rack, the double-head motor is arranged on the heat dissipation fans, the rolling disc sets up in double-end motor's tip, the head rod sets up in the surface of rolling disc, and head rod, second connecting rod and rack connect gradually, and rack and drive gear mesh mutually, be provided with chucking device and data connection on the casing, chucking device includes backup pad, friction pulley and contact strip, the friction pulley is located data connection's both sides, the backup pad sets up in the inner wall of casing, and the friction pulley is connected with the contact strip through the connecting axle, and the inside of backup pad is run through to the connecting axle.
As a preferred technical scheme, the heat dissipation device further comprises side plates, a connecting gear, a guide block, a fixing plate, a first connecting pin and a guide strip, wherein the side plates are arranged on the bottom surface of the casing, the swinging plate is located between the two side plates, the connecting gear is arranged at two ends of the swinging plate, the guide block and the fixing plate are welded to each other, the fixing plate is welded to the side plates, the guide strip is arranged at the end part of the rack, the rotating disc is connected with the first connecting rod through the first connecting pin, the first connecting rod is connected with the second connecting rod through the first connecting pin, and the second connecting rod is connected with the end part of the rack through the first connecting pin.
As a preferred technical scheme, the connecting gear at swing board both ends passes through intermediate gear and another swing board intermeshing, one of them the axis of rotation of connecting gear runs through the limit curb plate and is connected with drive gear, the inside sliding connection of gib block and guide block, double-end motor's one end and heat dissipation fan, and double-end motor's the other end runs through the fixed plate and is connected with the rolling disc, and the one end through double-end motor drives the heat dissipation fan and dispels the heat, and double-end motor's the other end drives swing board and swings to make the swing board carry out the fanning with the heat that big data processor of image dispels, and also simultaneous working along with the work heat abstractor's of heat dissipation fan swing board, form the interrelatedness between heat dissipation fan and the heat abstractor, the radiating effect is relatively good.
As an optimal technical scheme, clamping device still includes fixed slot, rotating pin, preformed hole, poker rod, chucking strip and stirs the groove, the fixed slot sets up on two inner walls of fixed chamber, and the chucking strip sets up in the both sides of chucking box, the turning block is connected with the big data processor of image through the rotating pin, the preformed hole sets up in adjusting plate and chucking box matched with position, and the preformed hole aligns mutually with the chucking groove, the poker rod sets up on the chucking post, and stirs the groove and set up on the chucking box.
As an optimal technical scheme, the quantity in fixed slot and chucking groove is three groups, the chucking strip of chucking box cooperatees with the fixed slot in fixed chamber, chucking post and preformed hole sliding connection, the poker rod with stir groove sliding connection, the chucking post presss from both sides tightly the turning block on the big data processor of image through the chucking post with the chucking groove looks chucking of turning block, can adjust the position of the big data processor of image through the clamping position in chucking post and chucking groove, is applicable to the big data processor of image of different thickness.
As a preferred technical scheme, the clamping device further comprises a fixing hole, a second connecting pin, a sliding groove, an oblique angle and a connecting shaft, the fixing hole is formed in the contact strip and the shell, the second connecting pin is located in the fixing hole, the sliding groove is formed in the two sides of the supporting plate, the oblique angle is formed in the end portion of the contact strip, and the two sides of the data connector are provided with matching grooves matched with the friction wheels.
As a preferred technical scheme, the contact strip rotates around the second connecting pin, the connecting shaft slides along the sliding groove, the friction wheel is in contact with the data connector, the data plug is connected with the data connector, and the data plug is connected with the friction wheel, so that the friction wheel on the connecting shaft is in contact with the matching groove of the data connector, the data plug is clamped with the data connector, the data plug is fixed to be more compact, the data plug can be pulled out from the data connector only by pulling out with force, and the connection is firm.
As a preferred technical scheme, a power supply module, a data interface module and a semiconductor refrigerating sheet are arranged inside the shell, and the data interface module is connected with the data connector.
As a preferable technical solution, a cover is disposed above the casing.
As a preferable technical solution, the image big data processor is fixed with the casing through an adjusting plate, and the adjusting plate is slidably connected with the inside of the casing.
Compared with the prior art, the invention has the following beneficial effects:
1. the heat dissipation device is arranged, the heat dissipation fan is driven to dissipate heat through one end of the double-head motor, the swing plate is driven to swing through the other end of the double-head motor, so that the swing plate can swing heat dissipated by the image big data processor, the swing plate of the heat dissipation device works simultaneously along with the work of the heat dissipation fan, the heat dissipation fan and the heat dissipation device are mutually related, and the heat dissipation effect is good;
2. the clamping device is arranged, the rotating block on the image big data processor is clamped through the clamping column, and the position of the image big data processor can be adjusted through the clamping position of the clamping column and the clamping groove, so that the clamping device is suitable for image big data processors with different thicknesses and is practical;
3. the data plug is connected with the data connector through the clamping device, the data plug is connected with the friction wheel at the moment, so that the friction wheel on the connecting shaft is contacted with the matching groove of the data connector, the data plug is clamped with the data connector, the data plug is fixed more tightly, the connecting data plug can be pulled out of the data connector only by pulling out the data plug with force, and the connection is firm.
Drawings
FIG. 1 is an overall schematic view of the present invention;
FIG. 2 is an internal schematic view of the housing of the present invention;
FIG. 3 is a schematic view of a heat dissipation device of the present invention;
FIG. 4 is a schematic view of the transmission of the heat dissipation device of the present invention;
FIG. 5 is a schematic view of a clamping device of the present invention;
FIG. 6 is a schematic view of the interior of the cartridge of the present invention;
FIG. 7 is a schematic view of the clamping mechanism of the present invention;
figure 8 is a disassembled schematic view of the clamping device of the present invention.
In the figure: 1. a housing; 2. a machine cover; 3. a heat dissipation fan; 4. a heat sink; 401. a side plate; 402. a swing plate; 403. a connecting gear; 404. a transmission gear; 405. a double-headed motor; 406. a guide block; 407. a fixing plate; 408. a first connecting pin; 409. rotating the disc; 410. a first connecting rod; 411. a second connecting rod; 412. a guide strip; 413. a rack; 5. a clamping device; 501. a fixed cavity; 502. fixing grooves; 503. clamping the box; 504. clamping the column; 505. rotating the block; 506. a rotation pin; 507. a clamping groove; 508. reserving a hole; 509. a tension spring; 510. a poke rod; 511. a clamping strip; 512. a poking groove; 6. an image big data processor; 7. an adjustment plate; 8. a power supply module; 9. a clamping device; 901. a fixing hole; 902. a support plate; 903. a friction wheel; 904. a second connecting pin; 905. a sliding groove; 906. a connecting shaft; 907. a contact bar; 908. oblique angle; 10. a data interface module; 11. a semiconductor refrigeration sheet; 12. and (4) data connectors.
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
As shown in FIGS. 1-8, an image data processing device comprises a housing 1, a heat dissipation fan 3, an image big data processor 6 and an adjustment plate 7, wherein a power module 8, a data interface module 10 and a semiconductor refrigeration sheet 11 are arranged inside the housing 1, the data interface module 10 is connected with a data connector 12, the image big data processor 6 is clamped between the adjustment plate 7 through the adjustment plate 7, heat in the housing 1 is discharged through the heat dissipation fan 3, the housing 1 is covered through a cover 2, the cover 2 is arranged above the housing 1, the image big data processor 6 is fixed with the housing 1 through the adjustment plate 7, the adjustment plate 7 is connected with the inside of the housing 1 in a sliding manner, the adjustment plate 7 is positioned at two sides of the image big data processor 6, a clamping device 5 is arranged on the adjustment plate 7, the clamping device 5 comprises a fixing cavity 501, a clamping box 503, A clamping column 504, a rotating block 505, a clamping groove 507 and a telescopic spring 509, wherein a fixed cavity 501 is arranged at two ends of the adjusting plate 7, a clamping box 503 is arranged inside the fixed cavity 501, the clamping column 504 and the telescopic spring 509 are arranged inside the clamping box 503, the rotating block 505 is arranged at two sides of the image big data processor 6, the clamping groove 507 is arranged on the rotating block 505, the clamping column 504 is aligned with the clamping groove 507, the rotating block 505 on the image big data processor 6 is clamped through the clamping column 504, the position of the image big data processor 6 can be adjusted through the clamping position of the clamping column 504 and the clamping groove 507, the image big data processor is suitable for image big data processors 6 with different thicknesses, a heat dissipation device 4 is arranged between heat dissipation fans 3 inside the machine shell 1, the heat dissipation device 4 comprises a swinging plate 402, a transmission gear 404, a double-head motor 405, a rotating disc 409, a first connecting rod 410, a second connecting rod 411 and a rack 413, the double-head motor 405 is arranged on the heat dissipation fan 3, the rotating disc 409 is arranged at the end of the double-head motor 405, the first connecting rod 410 is arranged on the surface of the rotating disc 409, the first connecting rod 410, the second connecting rod 411 and the rack 413 are sequentially connected, the rack 413 is meshed with the transmission gear 404, the heat dissipation fan 3 is driven by one end of the double-head motor 405 to dissipate heat, the swinging plate 402 is driven by the other end of the double-head motor 405 to swing, so that the swinging plate 402 can fan the heat dissipated by the image big data processor 6, the swinging plate 402 of the heat dissipation device 4 works simultaneously along with the work of the heat dissipation fan 3, the heat dissipation fan 3 and the heat dissipation device 4 are mutually associated, the heat dissipation effect is good, the clamping device 9 and the data connector 12 are arranged on the machine shell 1, the clamping device 9 comprises a supporting plate 902, a friction wheel 903 and a contact strip 907, the friction wheel 903 is arranged at two sides of the data connector 12, the supporting plate 902 is arranged on the inner wall of the machine shell 1, the friction wheel 903 is connected with the contact strip 907 through the connecting shaft 906, the connecting shaft 906 penetrates through the inside of the supporting plate 902, a data plug is connected with the data connector 12, the data plug is connected with the friction wheel 903 at the moment, and therefore the friction wheel 903 on the connecting shaft 906 is in contact with a matching groove of the data connector 12, the data plug is tightly clamped with the data connector 12, the data plug is fixed more tightly, the data plug can be pulled out from the data connector 12 through pulling out forcibly, and connection is firm.
Example two
As shown in fig. 3-4, an image data processing apparatus, the heat sink 4 further includes side plates 401, connecting gears 403, guide blocks 406, fixing plates 407, first connecting pins 408 and guide bars 412, the side plates 401 are disposed on the bottom surface of the housing 1, the swing plate 402 is disposed between the two side plates 401, the connecting gears 403 are disposed at both ends of the swing plate 402, the guide blocks 406 and the fixing plates 407 are welded to each other, the fixing plates 407 are welded to the side plates 401, the guide bars 412 are disposed at the ends of the racks 413, the rotating disc 409 is connected to the first connecting rod 410 through the first connecting pin 408, the first connecting rod 410 is connected to the second connecting rod 411 through the first connecting pin 408, the second connecting rod 411 is connected to the ends of the racks 413 through the first connecting pin 408, the double-head motor 405 drives the heat dissipating fan 3 and the rotating disc 409, the rotating disc 409 drives the first connecting rod 410 and the second connecting rod 411, so that the second connecting rod 411 swings to drive the guide strip 412 and the second connecting rod 411 to move up and down, at the moment, the rack 413 and the connecting gear 403 are repeatedly meshed, and the transmission gear 404 drives the swinging plate 402 to swing; the connecting gears 403 at two ends of the swinging plate 402 are meshed with another swinging plate 402 through the intermediate gear, the rotating shaft of one connecting gear 403 penetrates through the side plates 401 to be connected with the transmission gear 404, the guide strip 412 is connected with the inner part of the guide block 406 in a sliding manner, one end of the double-head motor 405 is connected with the heat dissipation fan 3, the other end of the double-head motor 405 penetrates through the fixing plate 407 to be connected with the rotating disc 409, the double-head motor 405 drives the heat dissipation fan 3 and drives the rotating disc 409 to rotate, so that the guide strip 412 can move up and down and can rotate back and forth with the connecting gear 403 through a series of transmissions, the intermediate gear drives each swinging plate 402 to swing between the side plates 401, the swinging plates 402 of the heat dissipation device 4 work simultaneously along with the work of the heat dissipation fan 3, and the heat dissipation effect of the heat dissipation device 4 is good.
EXAMPLE III
As shown in fig. 5 to 6, in an image data processing apparatus, a clamping means 5 further includes a fixing groove 502, a rotation pin 506, a prepared hole 508, a toggle lever 510, a clamping strip 511, and a toggle groove 512, the fixing groove 502 is provided on both inner walls of a fixing chamber 501, and the clamping strips 511 are arranged at both sides of the clamping box 503, the rotating block 505 is connected with the image big data processor 6 through the rotating pin 506, the preformed hole 508 is arranged at the matching position of the adjusting plate 7 and the clamping box 503, and the prepared hole 508 is aligned with the chucking groove 507, the tap lever 510 is disposed on the chucking post 504, and the tap groove 512 is disposed on the chucking case 503, according to the thickness of the image big data processor 6, the position of the chucking cartridge 503 mounted in the fixing groove 502 of the fixing chamber 501 is determined, the catch posts 504 are then engaged with the catch grooves 507 of the turning block 505 by the extension springs 509, so that the positions of different clamping grooves 507 can be determined according to the image big data processor 6 with different thicknesses; the number of the fixing grooves 502 and the clamping grooves 507 is three, the clamping strips 511 of the clamping box 503 are matched with the fixing grooves 502 of the fixing cavity 501, the clamping columns 504 are slidably connected with the preformed holes 508, the poking rod 510 is slidably connected with the poking groove 512, the clamping columns 504 are clamped with the clamping grooves 507 of the rotating block 505, when the image big data processor 6 needs to be detached, the poking rod 510 slides along the poking groove 512, the clamping columns 504 are separated from the clamping grooves 507 and are contained in the clamping box 503, the clamping box 503 can be detached from the fixing cavity 501, the position of the image big data processor 6 can be adjusted through the clamping position of the clamping columns 504 and the clamping grooves 507, and the image big data processor is suitable for image big data processors 6 with different thicknesses.
Example four
As shown in fig. 7 to 8, in an image data processing apparatus, a chucking device 9 further includes a fixing hole 901, a second coupling pin 904, a slide groove 905, a bevel 908, and a coupling shaft 906, the fixing hole 901 is provided in the contact bar 907 and the housing 1, the second connecting pin 904 is positioned in the fixing hole 901, sliding grooves 905 are provided at both sides of the supporting plate 902, an oblique angle 908 is provided at an end of the contact bar 907, a mating groove for mating with the friction wheel 903 is provided at both sides of the data connector 12, when the data plug is inserted into the data connector 12, the data plug contacts the bevel 908 of the contact bar 907 and interferes with the two sides, and the contact bar 907 rotates around the second connecting pin 904, so that the connecting shaft 906 on the friction wheel 903 slides along the sliding groove 905, further, the friction wheel 903 is tightly pressed with a matching groove of the data connector 12, namely, the connecting shaft 906 is contacted with the data plug; the contact bar 907 rotates around the second connecting pin 904, the connecting shaft 906 slides along the sliding groove 905, the friction wheel 903 is in contact with the data connector 12, when the data plug is pulled out, the contact bar 907 is loosened, the friction wheel 903 and the matching groove of the data connector 12 are in a loose state, the data plug and the data connector 12 are clamped tightly, the data plug is fixed to be more compact, and the connected data plug can be pulled out of the data connector 12 only by pulling out forcibly.
Although illustrative embodiments of the present invention have been described herein with reference to the accompanying drawings, which are not intended to depart from the spirit and scope of the invention, the same shall be construed as disclosed herein, and it will be apparent to those skilled in the art that various changes and modifications may be made therein without departing from the spirit and scope of the invention.

Claims (10)

1. An image data processing device, includes casing (1), heat dissipation fan (3), big data processor of image (6) and adjusting plate (7), its characterized in that: the adjusting plate (7) is positioned on two sides of the image big data processor (6), the adjusting plate (7) is provided with a clamping device (5), the clamping device (5) comprises a fixed cavity (501), a clamping box (503), a clamping column (504), a rotating block (505), a clamping groove (507) and a telescopic spring (509), the fixed cavity (501) is arranged at two ends of the adjusting plate (7), the clamping box (503) is arranged in the fixed cavity (501), the clamping column (504) and the telescopic spring (509) are arranged in the clamping box (503), the rotating block (505) is arranged on two sides of the image big data processor (6), the clamping groove (507) is arranged on the rotating block (505), the clamping column (504) is aligned with the clamping groove (507), and a heat radiating device (4) is arranged between the internal heat radiating fans (3) of the machine shell (1), the heat dissipation device (4) comprises a swing plate (402), a transmission gear (404), a double-head motor (405), a rotating disc (409), a first connecting rod (410), a second connecting rod (411) and a rack (413), the double-head motor (405) is arranged on the heat dissipation fan (3), the rotating disc (409) is arranged at the end part of the double-head motor (405), the first connecting rod (410) is arranged on the surface of the rotating disc (409), the first connecting rod (410), the second connecting rod (411) and the rack (413) are sequentially connected, the rack (413) is meshed with the transmission gear (404), a clamping device (9) and a data connector (12) are arranged on the machine shell (1), the clamping device (9) comprises a support plate (902), a friction wheel (903) and a contact strip (907), the friction wheel (903) is located on two sides of the data connector (12), the supporting plate (902) is arranged on the inner wall of the machine shell (1), the friction wheel (903) is connected with the contact strip (907) through the connecting shaft (906), and the connecting shaft (906) penetrates through the inside of the supporting plate (902).
2. An image data processing apparatus according to claim 1, characterized in that: the heat dissipation device (4) also comprises a side plate (401), a connecting gear (403), a guide block (406), a fixing plate (407), a first connecting pin (408) and a guide strip (412), the side plates (401) are arranged on the bottom surface of the machine shell (1), the swinging plate (402) is positioned between the two side plates (401), the connecting gears 403 are provided at both ends of the swing plate 402, the guide blocks 406 and the fixing plate 407 are welded to each other, and the fixed plate (407) is welded on the side plate (401), the guide bar (412) is arranged at the end part of the rack (413), the rotary disc (409) is connected with a first connecting rod (410) through a first connecting pin (408), the first connecting rod (410) is connected with the second connecting rod (411) through a first connecting pin (408), and the second connecting rod (411) is connected with the end part of the rack (413) through the first connecting pin (408).
3. An image data processing apparatus according to claim 2, characterized in that: swing connecting gear (403) at board (402) both ends and another swing board (402) intermeshing through intermediate gear, one of them connecting gear's (403) axis of rotation runs through limit curb plate (401) and is connected with drive gear (404), gib block (412) and the inside sliding connection of guide block (406), the one end and the heat dissipation fan (3) of double-end motor (405), and the other end of double-end motor (405) runs through fixed plate (407) and is connected with rolling disc (409).
4. An image data processing apparatus according to claim 1, characterized in that: clamping device (5) still includes fixed slot (502), rotating pin (506), preformed hole (508), poker rod (510), chucking strip (511) and stir groove (512), fixed slot (502) set up on two inner walls of fixed chamber (501), and chucking strip (511) set up in the both sides of chucking box (503), turning block (505) are connected with big data processor (6) of image through rotating pin (506), preformed hole (508) set up in adjusting plate (7) and chucking box (503) matched with position, and preformed hole (508) and chucking groove (507) align to each other, poker rod (510) set up on chucking post (504), and stir groove (512) and set up on chucking box (503).
5. An image data processing apparatus according to claim 4, characterized in that: the quantity of fixed slot (502) and chucking groove (507) is three groups, chucking strip (511) of chucking box (503) and fixed slot (502) of fixed chamber (501) cooperate, chucking post (504) and preformed hole (508) sliding connection, poker rod (510) and toggle groove (512) sliding connection, chucking post (504) and chucking groove (507) looks chucking of turning block (505).
6. An image data processing apparatus according to claim 1, characterized in that: the clamping device (9) further comprises a fixing hole (901), a second connecting pin (904), a sliding groove (905), an oblique angle (908) and a connecting shaft (906), the fixing hole (901) is formed in the contact strip (907) and the machine shell (1), the second connecting pin (904) is located in the fixing hole (901), the sliding groove (905) is formed in the two sides of the supporting plate (902), the oblique angle (908) is formed in the end portion of the contact strip (907), and the two sides of the data joint (12) are provided with matching grooves matched with the friction wheels (903).
7. An image data processing apparatus according to claim 6, characterized in that: the contact bar (907) rotates around the second connecting pin (904), the connecting shaft (906) slides along the sliding groove (905), and the friction wheel (903) is in contact with the data connector (12).
8. An image data processing apparatus according to claim 1, characterized in that: the intelligent air conditioner is characterized in that a power supply module (8), a data interface module (10) and a semiconductor refrigerating sheet (11) are arranged inside the machine shell (1), and the data interface module (10) is connected with a data connector (12).
9. An image data processing apparatus according to claim 1, characterized in that: a cover (2) is arranged above the machine shell (1).
10. An image data processing apparatus according to claim 1, characterized in that: the image big data processor (6) is fixed with the machine shell (1) through an adjusting plate (7), and the adjusting plate (7) is connected with the interior of the machine shell (1) in a sliding mode.
CN202111456501.7A 2021-12-02 2021-12-02 Image data processing device Active CN113873098B (en)

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CN202111456501.7A CN113873098B (en) 2021-12-02 2021-12-02 Image data processing device

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CN113873098B true CN113873098B (en) 2022-03-01

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