CN114882745B - Artificial intelligence teaching experiment platform - Google Patents

Artificial intelligence teaching experiment platform Download PDF

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Publication number
CN114882745B
CN114882745B CN202210765744.7A CN202210765744A CN114882745B CN 114882745 B CN114882745 B CN 114882745B CN 202210765744 A CN202210765744 A CN 202210765744A CN 114882745 B CN114882745 B CN 114882745B
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column
block
supporting plate
plate
main body
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CN114882745A (en
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贾亦真
袁海嵘
王岳军
朱强
李顺良
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Control Tianjin Industrial Automation Technology Co ltd
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Control Tianjin Industrial Automation Technology Co ltd
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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B5/00Electrically-operated educational appliances
    • G09B5/02Electrically-operated educational appliances with visual presentation of the material to be studied, e.g. using film strip
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B19/00Teaching not covered by other main groups of this subclass

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  • Engineering & Computer Science (AREA)
  • Business, Economics & Management (AREA)
  • Physics & Mathematics (AREA)
  • Educational Administration (AREA)
  • Educational Technology (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Entrepreneurship & Innovation (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Pivots And Pivotal Connections (AREA)

Abstract

The invention discloses an artificial intelligence teaching experiment platform, which relates to the technical field of teaching experiment platforms and comprises a main body, experiment equipment, a cabinet door, a connecting column, a handle, a connecting block and an adjusting mechanism, wherein the cabinet door is provided with a cabinet door opening and a cabinet door opening; a touch display; locking mechanism, fixture. According to the invention, the adjusting mechanism is arranged, the moving column is pressed to drive the connecting ring to extrude the contraction spring to contract in the fixed column, so that the moving column drives the connecting ring to move, the fixed column is driven to move, the fixed column removes the connection and fixation between the moving column and the fixed column, then the moving column is rotated, the moving column rotates to drive the supporting plate to rotate, the supporting plate rotates to drive the touch display at the top end to rotate, then the extrusion on the moving column is released, the connecting ring removes the extrusion on the contraction spring, the contraction spring pushes the connecting ring to drive the fixed column to move, the fixed column moves to the inside of the fixed block, the fixation of the fixed block and the moving column is completed, and the angle adjustment on the touch display can be completed.

Description

Artificial intelligence teaching experiment platform
Technical Field
The invention relates to the technical field of teaching experiment platforms, in particular to an artificial intelligence teaching experiment platform.
Background
The artificial intelligence subject is a cross subject and a new subject which are based on computer science and are cross-fused by multiple subjects such as computer, psychology, philosophy and the like, researches and develops a new technology science of theories, methods, technologies and application systems for simulating, extending and expanding the intelligence of people, attempts to know the essence of intelligence and produces a new intelligent machine which can react in a way similar to human intelligence.
Present artificial intelligence teaching experiment platform is generally fixed by computer display screen and artificial intelligence machine combination, and computer display screen removes comparatively inconveniently, make the teacher when teaching, can not drive computer display screen and remove, when intelligent machinery removes the operation, the teacher need explain in computer display screen position department, lead to the student's sight not only to remove along with mechanical equipment, and attention also need divide partly position department to mr, make student's distraction easily, be unfavorable for improving mr's teaching quality, and computer display screen's rigidity is comparatively inconvenient, be unfavorable for teaching experiment platform's use.
Disclosure of Invention
The invention aims to: in order to solve the problem that a computer display screen cannot be moved together with an intelligent machine to be combined and observed, and the teaching quality of teachers is not favorably improved, an artificial intelligence teaching experiment platform is provided.
In order to achieve the purpose, the invention provides the following technical scheme: an artificial intelligence teaching experiment platform comprises a main body, wherein experiment equipment is arranged at the top end of the main body, a plurality of cabinet doors are arranged on one side of the main body and are rotatably connected with the main body through hinges, a connecting column penetrating into the cabinet doors is arranged at one end of each cabinet door, a handle is arranged at one end of each connecting column far away from the main body, a connecting block penetrating into the main body is arranged at one end of each connecting column close to the handle, and an adjusting mechanism is arranged on one side of the top end of the main body; the adjusting mechanism comprises a fixed block, a movable column and a supporting plate, the fixed block is positioned at the top end of the main body and is positioned at one side of the experimental equipment, the movable column is positioned at the top end of the fixed block and penetrates into the fixed block, and the supporting plate is positioned at one side of the top end of the movable column; the top end of the supporting plate is provided with a touch display which is sleeved with the inner wall of the supporting plate; the side, away from the experimental equipment, of the fixed block is provided with a through main body, and a locking mechanism extending to the connecting block and the interior of the movable column is used for respectively fixing the positions of the cabinet door and the movable column; clamping mechanisms penetrating through the supporting plate to the inside of the touch display are arranged on two sides of the top end of the supporting plate and used for clamping and fixing the touch display; the bottom of touch-control display is provided with the stop gear who runs through layer board to the activity post is inside for carry out angle locking operation to the layer board.
So, can be convenient for overhaul the operation to the inside circuit of main part through the cabinet door, close the cabinet door and be connected with the main part, rotate the handle and drive the connecting block through the spliced pole and remove to inside the main part, the locking to the cabinet door is accomplished to rethread locking mechanism internals to remove the locking to adjustment mechanism, the angle modulation that can be convenient for touch-control display screen uses, rethread fixture and stop gear remove the rigidity to touch-control display, the portable use of touch-control display of can being convenient for.
As a still further scheme of the invention: the adjusting mechanism further comprises two moving columns, a connecting ring, a contraction spring and fixing columns, the two moving columns are respectively located at two ends of the fixing block and penetrate through the fixing block to the inside of the moving column, the connecting ring is located inside the moving column and located at one end of the moving column, the contraction spring is located at one end, away from the moving column, of the connecting ring, the fixing columns are multiple, the fixing columns are located at one end, away from the contraction spring, of the connecting ring and are sleeved with the outer wall of the moving column and penetrate through the moving column to the inside of the fixing block.
Therefore, the movable column is pressed to drive the connecting ring to extrude the contraction spring to contract inside the fixed column, the movable column drives the connecting ring to move, the connecting ring moves to drive the fixed column to move, the fixed column moves to remove the movable column from being connected with the fixed column fixedly, the movable column rotates to drive the supporting plate to rotate, the supporting plate rotates to drive the touch display on the top end to rotate, the movable column is loosened to extrude the movable column, the connecting ring removes the extrusion on the contraction spring, the contraction spring pushes the connecting ring to drive the fixed column to move, the fixed column moves to the inside of the fixed block, the fixed block and the movable column are fixed, and the angle adjustment of the touch display can be completed.
As a still further scheme of the invention: the locking mechanism comprises a bearing column, a torsion plate, a moving block, a telescopic column, a telescopic spring, a supporting plate, clamping blocks and an L-shaped connecting plate, wherein the bearing column is located at the top end of the main body and is located at one end, far away from the experimental equipment, of the fixing block and penetrates into the main body, the torsion plate is located at the top end of the bearing column, the moving block is located inside the main body and is located at two ends of the bottom end of the bearing column, the telescopic column is located at the bottom end of the bearing column and is rotatably connected with the bearing column through a bearing, the telescopic spring is located inside the main body and is sleeved with the outer wall of the telescopic column, the supporting plate is located at the bottom end of the telescopic column, the clamping blocks are located at two ends of the supporting plate respectively and are located at the bottom end of the supporting plate and penetrate into the connecting block, and the L-shaped connecting plate is located on one side, close to the fixing block, of the bearing column and penetrates through the fixing block into the movable column.
So, promote cabinet door and main part laminating, it rotates to rotate the handle drive spliced pole again, the spliced pole rotates and drives the connecting block and remove to inside the main part, rotatory torque plate, the torque plate rotates and drives the bearing post and rotate, the bearing post rotates and drives the movable block and rotate, the movable block rotates and removes the rigidity of flexible post, make flexible post remove the extrusion to expanding spring, expanding spring resets and drives flexible post and remove, flexible post removes and drives backup pad and bearing post and remove, the backup pad removes and drives the clamping post and remove to inside the connecting block, accomplish the connection locking of cabinet door and main part, the bearing post removes simultaneously and drives L shape connecting plate and removes, L shape connecting plate removes and drives the clamping post and removes, can remove the position locking to the movable post.
As a still further scheme of the invention: fixture is including shrink piece, limiting plate, supporting spring, circular arc grip block and reset spring, the shrink piece has a plurality ofly, and is a plurality of the shrink piece is located the top both sides of layer board respectively to run through to the inside of layer board, the limiting plate is located the inside of layer board, and is located the one end of shrink piece, supporting spring is located the bottom of limiting plate, the circular arc grip block is located the inside of layer board, and is located the bottom of shrink piece to run through to touch-control display's inside, reset spring is located the one end that touch-control display was kept away from to the circular arc grip block.
Therefore, the shrinkage block is pressed to drive the limiting plate to extrude the supporting spring to shrink, the limiting plate drives the shrinkage block to move, the shrinkage block moves to drive the arc clamping plate to extrude the reset spring to shrink, the arc clamping plate is moved out of the touch display, and the touch display and the supporting plate can be disconnected and fixed.
As a still further scheme of the invention: stop gear is including reset post, fixed plate, a spring, extrusion post, support column, toper post and locking piece, the post that resets is located the top of layer board, and is located touch-control display's below to run through the inside of layer board to the activity post, the fixed plate is located the inside of activity post, and is located the bottom of reset post, a spring is located the bottom of fixed plate, the extrusion post has two, two the extrusion post is located the bottom of fixed plate, and is located the both ends of a spring, the support column is located the one end that a spring was kept away from to the extrusion post, the toper post is located the bottom of fixed plate to cup joint with the support column outer wall, the locking piece is located the bottom of toper post to run through the inside of activity post to go-between.
So, remove the extrusion to the post that resets when touch display and layer board alternate segregation, the post that resets drives the fixed plate and removes the extrusion to a spring, a spring resets and promotes the fixed column and drives the post that resets and remove, the fixed column removes and drives the extrusion post and remove the extrusion to the toper post, the toper post removes the extrusion to the inside torque spring of support column, torque spring promotes the support column and resets and drives the toper post and remove, the toper post removes and drives the locking piece and remove, the locking piece removes to inside the go-between.
As a still further scheme of the invention: the both ends of main part are provided with the louvre, the activity post passes through the bearing and rotates with the fixed block to be connected, the top of layer board be provided with touch-control display assorted standing groove, the inside of fixed block be provided with a plurality ofly with fixed column assorted fixed slot, it rotates with the fixed block to pass through the bearing to remove the post and is connected, the top of L shape connecting plate is provided with the card post, the bottom outer wall of activity post is provided with a plurality ofly and blocks post assorted draw-in groove.
So, drive the go-between through removing the post and remove, be convenient for the go-between drives the fixed column and removes inside the fixed block.
As a still further scheme of the invention: the bottom end of the telescopic spring is provided with a reset ring which is sleeved with the outer wall of the telescopic column, the inner part of the main body is provided with a moving groove which is matched with the moving block, the inside of connecting block be provided with block assorted spread groove, the inside of main part be provided with the movable block assorted spacing groove, the spliced pole passes through the bearing and is connected with the rotation of cabinet door.
Therefore, the telescopic column is driven to move through the resetting of the telescopic spring, so that the telescopic column can drive the supporting plate to move conveniently.
As a still further scheme of the invention: the touch control display is characterized in that clamping grooves matched with the arc clamping plates are formed in two sides of the touch control display, contraction grooves matched with the contraction blocks are formed in the supporting plate, spring grooves matched with the reset springs are formed in the supporting plate, and telescopic grooves matched with the supporting springs are formed in the supporting plate.
Therefore, the arc clamping plate is pushed through the reset spring, and the touch display is conveniently released by the arc clamping plate.
As a still further scheme of the invention: the inner parts of the supporting plate and the movable column are provided with lifting grooves matched with the reset column, the supporting column is rotatably connected with the movable column through a torsion spring, the outer wall of the connecting ring is provided with a plurality of locking grooves matched with the locking blocks, and the inner part of the movable column is provided with movable grooves matched with the conical columns.
Therefore, the pressing column can conveniently release the extrusion of the conical column by moving and resetting the resetting column.
Compared with the prior art, the invention has the beneficial effects that:
1. through the arrangement of a locking mechanism, the cabinet door is pushed to be attached to the main body, the rotating handle drives the connecting column to rotate, the connecting block is driven to move into the main body, the rotating torque plate drives the bearing column to rotate, the bearing column rotates to drive the moving block to rotate, the moving block rotates to remove the position fixation of the telescopic column, the telescopic column releases the extrusion on the telescopic spring, the telescopic spring resets to drive the telescopic column to move, the telescopic column moves to drive the supporting plate and the bearing column to move, the supporting plate moves to drive the clamping column to move into the connecting block, the connection locking of the cabinet door and the main body is completed, the bearing column moves to drive the L-shaped connecting plate to move, the L-shaped connecting plate moves to drive the clamping column to move, and through the mutual matching of the parts, the position locking of the moving column can be removed;
2. by arranging the adjusting mechanism, the movable column is pressed to drive the connecting ring to extrude the contraction spring to contract in the fixed column, so that the movable column drives the connecting ring to move, the connecting ring drives the fixed column to move, the fixed column moves to remove the connection and fixation between the movable column and the fixed column, then the movable column rotates to drive the supporting plate to rotate, the supporting plate rotates to drive the touch display at the top end to rotate, then the extrusion on the movable column is released, so that the connecting ring removes the extrusion on the contraction spring, the contraction spring pushes the connecting ring to drive the fixed column to move, the fixed column moves to the inside of the fixed block, the fixation of the fixed block and the movable column is completed, and the angle adjustment on the touch display can be completed through the mutual matching of the parts;
3. through setting up stop gear, press the shrink piece and drive limiting plate extrusion supporting spring shrink and remove, drive circular arc grip block extrusion reset spring shrink, make the circular arc grip block shift out from touch display is inside, can relieve touch display and the connection of layer board fixed, touch display and layer board alternate segregation relieve the extrusion to the post that resets, drive the fixed plate and relieve the extrusion to a spring, a spring resets and promotes the fixed column and drive the post that resets and remove, drive the extrusion post and relieve the extrusion to the toper post, relieve the extrusion to the inside torque spring of support column, torque spring promotes the support column and resets and drives the toper post and remove, it removes to inside the go-between to drive the locking piece, through mutually supporting between above-mentioned a plurality of parts, can accomplish the rotation locking to the go-between.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a structural sectional view of the main body of the present invention;
FIG. 3 is a structural sectional view of the fixing block of the present invention;
FIG. 4 is a sectional view of the cabinet door of the present invention;
FIG. 5 is a structural cross-sectional view of a mobile post of the present invention;
FIG. 6 is a structural cross-sectional view of a pallet of the present invention;
FIG. 7 is a structural cross-sectional view of the attachment ring of the present invention;
fig. 8 is an enlarged view of the invention at a.
In the figure: 1. a main body; 101. experimental equipment; 2. a cabinet door; 201. a handle; 202. connecting columns; 203. connecting blocks; 3. an adjustment mechanism; 301. a fixed block; 302. a movable post; 303. a pallet; 304. moving the column; 305. a connecting ring; 306. a retraction spring; 307. fixing a column; 4. a locking mechanism; 401. a bearing post; 402. a torsion plate; 403. a moving block; 404. a telescopic column; 405. a tension spring; 406. a support plate; 407. a clamping block; 408. an L-shaped connecting plate; 5. a touch display; 6. a clamping mechanism; 601. a shrinking block; 602. a limiting plate; 603. a support spring; 604. an arc clamping plate; 605. a return spring; 7. a limiting mechanism; 701. a reset column; 702. a fixing plate; 703. a first spring; 704. extruding the column; 705. a support pillar; 706. a tapered post; 707. a locking block.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "disposed" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art. The following describes an embodiment of the present invention based on its overall structure.
Referring to fig. 1 to 8, in the embodiment of the present invention, an artificial intelligence teaching experiment platform includes a main body 1, an experiment device 101 is disposed at the top end of the main body 1, a plurality of cabinet doors 2 are disposed on one side of the main body 1 and rotatably connected to the main body 1 through hinges, a connection column 202 penetrating into the cabinet doors 2 is disposed at one end of each cabinet door 2, a handle 201 is disposed at one end of each connection column 202 far from the main body 1, a connection block 203 penetrating into the main body 1 is disposed at one end of each connection column 202 close to the handle 201, and an adjusting mechanism 3 is disposed at one side of the top end of the main body 1; the adjusting mechanism 3 comprises a fixed block 301, a movable column 302 and a supporting plate 303, the fixed block 301 is positioned at the top end of the main body 1 and is positioned at one side of the experimental device 101, the movable column 302 is positioned at the top end of the fixed block 301 and penetrates into the fixed block 301, and the supporting plate 303 is positioned at one side of the top end of the movable column 302; the top end of the supporting plate 303 is provided with a touch display 5 which is sleeved with the inner wall of the supporting plate 303; a locking mechanism 4 which penetrates through the main body 1 and extends into the movable column 302 is arranged on one side, away from the experimental equipment 101, of the fixed block 301, and is used for respectively fixing the positions of the cabinet door 2 and the movable column 302; two sides of the top end of the supporting plate 303 are provided with clamping mechanisms 6 which penetrate through the supporting plate 303 to the inside of the touch display 5 and are used for clamping and fixing the touch display 5; the bottom end of the touch display 5 is provided with a limiting mechanism 7 penetrating through the supporting plate 303 to the inside of the movable column 302, and is used for performing angle locking operation on the supporting plate 303.
In this embodiment: can be convenient for overhaul the operation to the inside circuit of main part 1 through opening cabinet door 2, it is connected with main part 1 to close cabinet door 2, it drives connecting block 203 through spliced pole 202 and removes to inside the main part 1 to rotate handle 201, 4 internals of rethread locking mechanism accomplish the locking to cabinet door 2, and remove the locking to adjustment mechanism 3, the angle modulation that can be convenient for touch-control display screen 5 uses, rethread fixture 6 and stop gear 7 remove the rigidity to touch-control display 5, the portable use of touch-control display 5 can be convenient for.
Please refer to fig. 2 to 7, the adjusting mechanism 3 further includes two moving pillars 304, two connecting rings 305, a contracting spring 306 and two fixing pillars 307, wherein the two moving pillars 304 are respectively located at two ends of the fixed block 301 and penetrate through the fixed block 301 to the inside of the moving pillar 302, the connecting ring 305 is located inside the moving pillar 302 and located at one end of the moving pillar 304, the contracting spring 306 is located at one end of the connecting ring 305 away from the moving pillar 304, the plurality of fixing pillars 307 are located at one end of the connecting ring 305 away from the contracting spring 306, and are sleeved with the outer wall of the moving pillar 304 and penetrate through the moving pillar 302 to the inside of the fixed block 301.
In this embodiment: pressing the moving column 304 in the fixed block 301 drives the connecting ring 305 to squeeze the contracting spring 306 to contract, so that the moving column 304 drives the connecting ring 305 to move, the connecting ring 305 moves the fixed column 307 to move, the fixed column 307 moves to release the connection and fixation between the moving column 302 and the fixed block 301, then the moving column 302 rotates, the moving column 302 rotates to drive the supporting plate 303 to rotate, the supporting plate 303 rotates to drive the touch display 5 at the top end to rotate, then the squeezing of the moving column 304 is released, the connecting ring 305 releases the squeezing of the contracting spring 306, the contracting spring 306 pushes the connecting ring 305 to drive the fixed column 307 to move, the fixed column 307 moves to the inside of the fixed block 301, the fixed block 301 and the moving column 302 are fixed, and the angle adjustment of the touch display 5 can be completed, so that the teacher visual line angles of different heights can be conveniently adapted.
Please refer to fig. 1 to 5, the locking mechanism 4 includes a bearing column 401, a torsion plate 402, a moving block 403, a telescopic column 404, a telescopic spring 405, a support plate 406, two engaging blocks 407 and an L-shaped connecting plate 408, wherein the bearing column 401 is located at the top end of the main body 1, is located at one end of the fixed block 301 far away from the experimental device 101, and penetrates into the main body 1, the torsion plate 402 is located at the top end of the bearing column 401, the moving block 403 is located inside the main body 1, and is located at two ends of the bottom end of the bearing column 401, the telescopic column 404 is located at the bottom end of the bearing column 401, and is rotatably connected with the bearing column 401 through a bearing, the telescopic spring 405 is located inside the main body 1, and is sleeved with the outer wall of the telescopic column 404, the support plate 406 is located at the bottom end of the telescopic column 404, the two engaging blocks 407 are located at two ends of the support plate 406, and is located at the bottom end of the support plate 406, and penetrates into the connecting block 203, and the L-shaped connecting plate 408 is located at one side of the bearing column 401 near to the fixed block 301 and penetrates into the movable column 302.
In this embodiment: the cabinet door 2 is pushed to be attached to the main body 1, the handle 201 is rotated to drive the connecting column 202 to rotate, the connecting column 202 rotates to drive the connecting block 203 to move to the inside of the main body 1, the torsion plate 402 rotates to drive the bearing column 401 to rotate, the bearing column 401 rotates to drive the moving block 403 to rotate, the moving block 403 rotates to remove the position fixing of the telescopic column 404, the telescopic column 404 removes the extrusion on the telescopic spring 405, the telescopic spring 405 resets to drive the telescopic column 404 to move, the telescopic column 404 moves to drive the supporting plate 406 and the bearing column 401 to move, the supporting plate 406 moves to drive the clamping column 407 to move to the inside of the connecting block 203, the connection locking of the cabinet door 2 and the main body 1 is completed, meanwhile, the bearing column 401 moves to drive the L-shaped connecting plate 408 to move, the L-shaped connecting plate 408 moves to drive the clamping column to move, the position locking on the movable column 302 can be removed, the movable column 302 and the supporting plate 303 can be matched with each other parts, when the cabinet door 2 is in an opened state, the movable column 302 and the supporting plate 303 can not rotate, and the touch display 5 can be prevented from rotating and deviating in the overhaul operation process of the device.
Please refer to fig. 3 to 8, the clamping mechanism 6 includes a plurality of shrinking blocks 601, a limiting plate 602, a supporting spring 603, an arc clamping plate 604 and a return spring 605, wherein the shrinking blocks 601 are respectively located at two sides of the top end of the supporting plate 303 and penetrate into the supporting plate 303, the limiting plate 602 is located inside the supporting plate 303 and at one end of the shrinking blocks 601, the supporting spring 603 is located at the bottom end of the limiting plate 602, the arc clamping plate 604 is located inside the supporting plate 303 and at the bottom end of the shrinking blocks 601 and penetrates into the touch display 5, and the return spring 605 is located at one end of the arc clamping plate 604 away from the touch display 5.
In this embodiment: pressing the contraction block 601 to drive the limiting plate 602 to extrude the supporting spring 603 to contract, enabling the limiting plate 602 to drive the contraction block 601 to move, enabling the contraction block 601 to move to drive the arc clamping plate 604 to extrude the return spring 605 to contract, enabling the arc clamping plate 604 to move out of the inside of the touch display 5, namely, the connection and fixation between the touch display 5 and the supporting plate 303 can be removed, the disassembly and use of the touch display 5 can be facilitated through the structure, a teacher can drive the touch display 5 to move along with the mechanical equipment in operation, and therefore students can learn more intensively.
Referring to fig. 6 to 8, the limiting mechanism 7 includes a reset column 701, a fixing plate 702, a first spring 703, a pressing column 704, a supporting column 705, two tapered columns 706 and a locking block 707, the reset column 701 is located at the top end of the supporting plate 303, is located below the touch display 5, and penetrates through the supporting plate 303 to the inside of the movable column 302, the fixing plate 702 is located inside the movable column 302 and is located at the bottom end of the reset column 701, the first spring 703 is located at the bottom end of the fixing plate 702, the two pressing columns 704 are located at the bottom end of the fixing plate 702 and are located at two ends of the first spring 703, the supporting column 705 is located at one end of the pressing column 704 away from the first spring 703, the tapered column 706 is located at the bottom end of the fixing plate 702 and is in sleeve connection with the outer wall of the supporting column 705, and the locking block 707 is located at the bottom end of the tapered column 706 and penetrates through the inside of the movable column 302 to the connecting ring 305.
In this embodiment: when the touch display 5 and the supporting plate 303 are separated from each other, the reset column 701 is released from being squeezed, the reset column 701 drives the fixing plate 702 to release squeezing of the first spring 703, the first spring 703 resets to push the fixing column 702 to drive the reset column 701 to move, the fixing column 702 moves to drive the squeezing column 704 to release squeezing of the conical column 706, the conical column 706 releases squeezing of a torsion spring inside the supporting column 705, the torsion spring pushes the supporting column 705 to reset to drive the conical column 706 to move, the conical column 706 moves to drive the locking block 707 to move, and the locking block 707 moves to the inside of the connecting ring 305, so that rotation locking of the connecting ring 305 can be completed, and the touch display 5 can be conveniently clamped and fixed through the structure.
Please refer to fig. 1 to 7, heat dissipation holes are disposed at two ends of the main body 1, the movable post 302 is rotatably connected to the fixed block 301 through a bearing, a placement groove matched with the touch display 5 is disposed at the top end of the supporting plate 303, a plurality of fixing grooves matched with the fixed posts 307 are disposed inside the fixed block 301, the movable post 304 is rotatably connected to the fixed block 301 through a bearing, a clamping post is disposed at the top end of the L-shaped connecting plate 408, and a plurality of clamping grooves matched with the clamping post are disposed on the outer wall of the bottom end of the movable post 302.
In this embodiment: the moving column 304 drives the connecting ring 305 to move, so that the connecting ring 305 drives the fixed column 307 to move into the fixed block 301.
Please refer to fig. 1 to 5, the bottom of the retractable spring 405 is provided with a reset ring sleeved with the outer wall of the retractable post 404, the main body 1 is provided with a moving groove matched with the moving block 403 inside, the connecting block 203 is provided with a connecting groove matched with the engaging block 407 inside, the main body 1 is provided with a limiting groove matched with the moving block 403 inside, and the connecting post 202 is rotatably connected with the cabinet door 2 through a bearing.
In this embodiment: the telescopic column 404 is driven to move by resetting the telescopic spring 405, so that the telescopic column 404 drives the support plate 406 to move.
Please refer to fig. 5 to 8, the two sides of the touch display 5 are provided with a clamping groove matching with the arc clamping plate 604, the inside of the supporting plate 303 is provided with a contraction groove matching with the contraction block 601, the inside of the supporting plate 303 is provided with a spring groove matching with the return spring 605, and the inside of the supporting plate 303 is provided with a telescopic groove matching with the supporting spring 603.
In this embodiment: the arc clamping plate 604 is pushed by the return spring 605, so that the arc clamping plate 604 releases the touch display 5.
Referring to fig. 5 to 7, the supporting plate 303 and the movable post 302 are provided with a lifting groove matching with the reset post 701, the supporting post 705 is rotatably connected with the movable post 302 through a torsion spring, the outer wall of the connecting ring 305 is provided with a plurality of locking grooves matching with the locking blocks 707, and the movable post 302 is provided with a movable groove matching with the tapered post 706.
In this embodiment: the displacement of the reset post 701 causes the squeeze post 704 to release its compression on the tapered post 706.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention are equivalent to or changed within the technical scope of the present invention.

Claims (7)

1. An artificial intelligence teaching experiment platform comprises a main body (1), wherein experimental equipment (101) is arranged at the top end of the main body (1), a plurality of cabinet doors (2) are arranged on one side of the main body (1) and are rotatably connected with the main body (1) through hinges, a connecting column (202) penetrating into the cabinet doors (2) is arranged at one end of each cabinet door (2), a handle (201) is arranged at one end, away from the main body (1), of each connecting column (202), and a connecting block (203) penetrating into the main body (1) is arranged at one end, close to the handle (201), of each connecting column (202), and is characterized in that an adjusting mechanism (3) is arranged on one side of the top end of the main body (1);
the adjusting mechanism (3) comprises a fixing block (301), a movable column (302) and a supporting plate (303), the fixing block (301) is located at the top end of the main body (1) and located on one side of the experimental equipment (101), the movable column (302) is located at the top end of the fixing block (301) and penetrates into the fixing block (301), and the supporting plate (303) is located on one side of the top end of the movable column (302);
the top end of the supporting plate (303) is provided with a touch display (5) which is sleeved with the inner wall of the supporting plate (303);
one side of the fixing block (301) far away from the experimental equipment (101) is provided with a locking mechanism (4) which penetrates through the main body (1) and extends into the movable column (302) and is used for respectively fixing the position of the cabinet door (2) and the position of the movable column (302);
clamping mechanisms (6) penetrating through the supporting plate (303) to the interior of the touch display (5) are arranged on two sides of the top end of the supporting plate (303) and used for clamping and fixing the touch display (5);
the bottom end of the touch display (5) is provided with a limiting mechanism (7) which penetrates through the supporting plate (303) to the interior of the movable column (302) and is used for carrying out angle locking operation on the supporting plate (303);
the adjusting mechanism (3) further comprises two moving columns (304), a connecting ring (305), two contraction springs (306) and two fixed columns (307), wherein the two moving columns (304) are respectively positioned at two ends of the fixed block (301) and penetrate through the fixed block (301) to the inside of the moving column (302), the connecting ring (305) is positioned inside the moving column (302) and positioned at one end of the moving column (304), the contraction springs (306) are positioned at one ends, far away from the moving columns (304), of the connecting ring (305), the fixed columns (307) are provided in plurality, the fixed columns (307) are positioned at one ends, far away from the contraction springs (306), of the connecting ring (305) and sleeved with the outer wall of the moving column (304) and penetrate through the moving column (302) to the inside of the fixed block (301);
the locking mechanism (4) comprises a bearing column (401), a torsion plate (402), a moving block (403), a telescopic column (404), a telescopic spring (405), a supporting plate (406), a clamping block (407) and an L-shaped connecting plate (408), the bearing column (401) is positioned at the top end of the main body (1), and is positioned at one end of the fixed block (301) far away from the experimental equipment (101), and penetrates into the main body (1), the torsion plate (402) is positioned at the top end of the bearing column (401), the moving block (403) is positioned inside the main body (1), and are positioned at the two ends of the bottom end of the bearing column (401), the telescopic column (404) is positioned at the bottom end of the bearing column (401), and is rotationally connected with the bearing column (401) through a bearing, the extension spring (405) is positioned inside the main body (1), and is sleeved with the outer wall of the telescopic column (404), the supporting plate (406) is positioned at the bottom end of the telescopic column (404), the number of the clamping blocks (407) is two, the two clamping blocks (407) are respectively positioned at two ends of the supporting plate (406) and at the bottom end of the supporting plate (406), and penetrates into the inside of the connecting block (203), the L-shaped connecting plate (408) is positioned on one side of the bearing column (401) close to the fixing block (301), and penetrates through the fixing block (301) to the inner part of the movable column (302).
2. The artificial intelligence teaching experiment platform as claimed in claim 1, wherein the clamping mechanism (6) comprises a plurality of contraction blocks (601), a limiting plate (602), a supporting spring (603), an arc clamping plate (604) and a return spring (605), the plurality of contraction blocks (601) are respectively located on two sides of the top end of the supporting plate (303) and penetrate through the supporting plate (303), the limiting plate (602) is located inside the supporting plate (303) and at one end of the contraction block (601), the supporting spring (603) is located at the bottom end of the limiting plate (602), the arc clamping plate (604) is located inside the supporting plate (303) and at the bottom end of the contraction block (601) and penetrates through the inside of the touch display (5), and the return spring (605) is located at one end of the arc clamping plate (604) far away from the touch display (5).
3. The artificial intelligence teaching experiment platform as claimed in claim 1, wherein the limiting mechanism (7) comprises a reset column (701), a fixing plate (702), a first spring (703), a squeezing column (704), a support column (705), a tapered column (706) and a locking block (707), the reset column (701) is located at the top end of the supporting plate (303), is located below the touch display (5), and penetrates through the supporting plate (303) to the inside of the movable column (302), the fixing plate (702) is located inside the movable column (302), and is located at the bottom end of the reset column (701), the first spring (703) is located at the bottom end of the fixing plate (702), the squeezing columns (704) are two, the squeezing columns (702) are located at the bottom end of the fixing plate (702), and are located at two ends of the first spring (703), the support column (705) is located at one end of the squeezing column (704) far away from the first spring (706), the tapered column (704) is located at the bottom end of the fixing plate (702), is sleeved with the outer wall (705) of the locking block (706), and penetrates through the locking block (707) and is located inside the movable column (302).
4. The artificial intelligence teaching experiment platform as claimed in claim 1, wherein heat dissipation holes are formed in two ends of the main body (1), the movable column (302) is rotatably connected with the fixed block (301) through a bearing, a placement groove matched with the touch display (5) is formed in the top end of the supporting plate (303), a plurality of fixing grooves matched with the fixed column (307) are formed in the fixed block (301), the movable column (304) is rotatably connected with the fixed block (301) through a bearing, a clamping column is arranged at the top end of the L-shaped connecting plate (408), and a plurality of clamping grooves matched with the clamping column are formed in the outer wall of the bottom end of the movable column (302).
5. The artificial intelligence teaching experiment platform as claimed in claim 1, wherein a reset ring sleeved with the outer wall of the telescopic column (404) is arranged at the bottom end of the telescopic spring (405), a moving groove matched with the moving block (403) is arranged inside the main body (1), a connecting groove matched with the clamping block (407) is arranged inside the connecting block (203), a limiting groove matched with the moving block (403) is arranged inside the main body (1), and the connecting column (202) is rotatably connected with the cabinet door (2) through a bearing.
6. The artificial intelligence teaching experiment platform as claimed in claim 2, wherein clamping grooves matched with the arc clamping plates (604) are arranged on two sides of the touch display (5), a contraction groove matched with the contraction block (601) is arranged inside the supporting plate (303), a spring groove matched with the return spring (605) is arranged inside the supporting plate (303), and a telescopic groove matched with the supporting spring (603) is arranged inside the supporting plate (303).
7. The artificial intelligence teaching experiment platform as claimed in claim 3, wherein lifting grooves matched with the reset columns (701) are formed in the supporting plate (303) and the movable columns (302), the supporting columns (705) are rotatably connected with the movable columns (302) through torsion springs, a plurality of locking grooves matched with the locking blocks (707) are formed in the outer wall of the connecting ring (305), and movable grooves matched with the tapered columns (706) are formed in the movable columns (302).
CN202210765744.7A 2022-07-01 2022-07-01 Artificial intelligence teaching experiment platform Active CN114882745B (en)

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