Electronic information engineering is test bench for specialtyTechnical Field
The invention relates to the technical field of electronic information engineering major, in particular to a test bed for electronic information engineering major.
Background
Electronic information engineering is a subject of electronic information control and information processing by applying modern technologies such as computers, and mainly studies on acquisition and processing of information, design, development, application and integration of electronic equipment and information systems. Nowadays, electronic information engineering covers many aspects of society, such as how to process various telephone signals in a telephone exchange, how to transmit our voice and even image by a mobile phone, and the like, all relate to application technologies of electronic information engineering.
The electronic information engineering major is a major integrating modern electronic technology, information technology and communication technology; when electronic information engineering professional teaching is carried out, an electronic test bed for electronic information teaching experiments is needed.
But present electronic information engineering is electronic test bench for specialty is most bulky great, and the structure is comparatively simple, is not convenient for transport, easily appears in the in-process of transporting moreover because of rocking the phenomenon that leads to appearing the damage, and simultaneously, most test benches can't be as required to its height regulation, can not satisfy the different student's of size user demand.
Disclosure of Invention
To solve the problems set forth in the background art described above. The invention provides a professional test bed for electronic information engineering, which has the functions of moving, lifting, transmitting, adjusting, buffering and fixing and solves the problems of inconvenient transportation, incapability of meeting use requirements and poor protection effect.
In order to achieve the purpose, the invention adopts the following technical scheme:
the utility model provides a test bench is used to electronic information engineering specialty, includes the base, the fixed lift removal subassembly that is equipped with of inner wall of base, the fixed install bin that is equipped with in the middle of the base upper surface, the last fixed surface of install bin is equipped with the U-shaped seat, one side of base is equipped with the workstation subassembly, the fixed lifting unit who makes it produce the displacement that is equipped with between workstation subassembly and the base, the fixed storage tank that is equipped with in one side of workstation subassembly lower surface.
Preferably, the lifting moving assembly comprises two guide posts which are fixedly connected with the inner wall of the base, the two guide posts are slidably connected with a lifting plate, the upper surface of the lifting plate is provided with a plurality of through chutes, the lower surface of the lifting plate is fixedly provided with a plurality of universal wheels, the lower surface of the base is provided with a plurality of through holes corresponding to the universal wheels, the through chutes are slidably connected with two moving seats, the two sides of the moving seats are rotatably connected with a connecting plate, one side of the connecting plate, far away from the moving seats, is rotatably connected with a fixed seat, the fixed seat is fixedly connected with the top of the inner wall of the base, one side of the moving seat is provided with a plurality of T-shaped posts in an inserting manner, one end of the T-shaped posts is fixedly provided with two extrusion seats, and the two extrusion seats are slidably connected with the inner walls of the through chutes, move and all fixedly between seat and the extrusion seat be equipped with a plurality of springs, and the spring cup joints with T shape post mutually respectively, fixedly between base and the install bin be equipped with the drive assembly who makes the extrusion seat produce the displacement.
Preferably, drive assembly includes motor one, motor one and base fixed connection, the output shaft of motor one runs through the inner wall rotation of install bin and is connected and the fixed worm one that is equipped with, one side toothing of worm one is equipped with worm wheel one, worm wheel one is fixed to be equipped with the screw lead screw, the one end that the worm wheel was kept away from to the screw lead screw runs through base and lifter plate in proper order and the bottom rotation of base inner wall is connected and threaded connection is equipped with the lift seat, the both sides of lift seat are all rotated and are connected and are equipped with the arm-tie, one side that the seat was kept away from to the arm-tie is all rotated and is connected and be equipped with the arm-tie, the arm-tie respectively with extrusion seat fixed connection.
Preferably, lifting unit includes a plurality of hollow supporting seats, hollow supporting seat all is connected with the last fixed surface of base, the equal sliding connection of inner wall of hollow supporting seat is equipped with the lift and pushes away the seat, and the lift pushes away one side of seat all with workstation subassembly fixed connection, one side that the lift pushed away the seat all rotates through the pivot to be connected and is equipped with the square connecting column, hollow supporting seat all is equipped with and passes through the groove corresponding with the square connecting column, the square connecting column all cup joints and is equipped with the grafting sleeve, the telescopic one side of pegging graft all is fixed and is equipped with the fixed block, the fixed transmission that makes its production angular displacement that is equipped with between U-shaped seat and the fixed block.
Preferably, the transmission device comprises a second motor, the second motor is fixedly connected with the U-shaped seat, an output shaft of the second motor penetrates through the U-shaped seat to be rotatably connected with the U-shaped seat and fixedly provided with a second worm, two sides of the second worm are all in toothed connection with a second turbine, the second turbine is fixedly provided with a transmission shaft, and two sides of the transmission shaft penetrate through the U-shaped seat to extend to one side of the U-shaped seat and are respectively fixedly connected with the fixing blocks.
Preferably, the workstation subassembly includes the workstation, the centre of workstation upper surface is equipped with and runs through the mounting groove, the inner wall that runs through the mounting groove rotates through the pivot to be connected and is equipped with the roll-over table, the fixed electron experiment board that is equipped with in one side of roll-over table, one side of workstation is pegged graft and is equipped with a plurality of pegs graft post, and is a plurality of the fixed connecting strip that is equipped with of one end of peg graft post, one side of roll-over table is equipped with a plurality ofly and the corresponding spliced eye of peg graft post.
Preferably, a box body is fixedly arranged on one side of the upper surface of the workbench, a plurality of guide rods are fixedly arranged on the inner wall of the box body and are connected with connecting seats in a sliding mode, a computer integrated machine is fixedly arranged on one side of the connecting seats, a long through groove is formed in the upper surface of the box body, a connecting moving seat is arranged on the long through groove in a sliding mode and is connected with the inner wall of the through groove, the connecting moving seat is fixedly connected with the connecting seats, and a locking bolt is arranged on one side of the connecting moving seat in a threaded connection mode.
Preferably, a folding dust cover is fixedly arranged between the base and the lower surface of the workbench assembly.
Compared with the prior art, the invention has the beneficial effects that: the invention is convenient for students or teachers to move and fix, is convenient and fast and has higher stability; under the cooperation of the extrusion seat, the T-shaped column and the spring, the vibration generated in the moving process of the invention can be buffered, the protection performance of the workbench component is improved, and the service life of the invention is prolonged; by arranging the storage box, students can conveniently store tools, and the protection performance of the multifunctional student desk is improved; by arranging the folding dust cover, the attractiveness is improved, meanwhile, the phenomenon of corrosion caused by dust entering between the base and the workbench assembly can be effectively prevented, and the protection performance is further improved; under the action of the lifting assembly, students can conveniently adjust the height of the workbench assembly according to the heights of the students, and convenience of the students in testing is improved; under the matching of the workbench, the through mounting groove, the turnover table, the plug-in column, the connecting strip and the plug-in hole, students can select a plane or an electronic experiment board to test as required; under the cooperation of box, guide bar, connecting seat and all-in-one computer, the student of being convenient for carries out information inquiry in real time, is convenient for fix all-in-one computer under the microscler cooperation that runs through the groove, connect and remove seat and locking bolt.
The parts of the device not involved are the same as or can be implemented using prior art.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
FIG. 1 is a front view of a professional electronic information engineering test stand according to the present invention;
FIG. 2 is a front cross-sectional view of a professional electronic information engineering test stand according to the present invention;
FIG. 3 is a side sectional view of a professional electronic information engineering test stand according to the present invention;
FIG. 4 is a front view of the internal structure of a base of a professional electronic information engineering test stand according to the present invention;
FIG. 5 is a structural view of a lifting assembly of a professional electronic information engineering test bed according to the present invention;
fig. 6 is an exploded view of a work table assembly of a professional electronic information engineering test table according to the present invention.
In the figure: 1 base, 2 lifting and moving components, 3 working platform components, 4 lifting and moving components, 5 storage boxes, 6 folding dust covers, 7 installation boxes, 8U-shaped seats, 201 guide posts, 202 lifting plates, 203 through sliding grooves, 204 universal wheels, 205 moving seats, 206 connecting plates, 207 fixing seats, 208 motor I, 209 worm I, 210 worm gear I, 211 threaded screw rods, 212 lifting seats, 213 pulling plates, 214 pulling blocks, 215 extruding seats, 216T-shaped posts, 217 springs, 301 working tables, 302 through installation grooves, 303 overturning tables, 304 electronic experiment boards, 305 plug-in posts, 306 connecting strips, 307 plug-in holes, 308 box bodies, 309 guide rods, 310 connecting seats, 311 computer integrated machines, 312 long through grooves, 313 connecting and moving seats, 314 locking bolts, 401 hollow supporting seats, 402 lifting and pushing seats, 403 connecting square posts, 404 through grooves, 405 plug-in sleeves, 406 fixing blocks, 407 motor II, 408 II, 409 turbine II, 405 turbine II, 406 fixing blocks, and the like, A drive shaft.
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.
Referring to fig. 1-6, a professional electronic information engineering test bed comprises abase 1, alifting moving assembly 2 is fixedly arranged on the inner wall of thebase 1, an installation box 7 is fixedly arranged in the middle of the upper surface of thebase 1, aU-shaped seat 8 is fixedly arranged on the upper surface of the installation box 7, aworkbench assembly 3 is arranged on one side of thebase 1, a lifting assembly 4 for enabling theworkbench assembly 3 to generate displacement is fixedly arranged between theworkbench assembly 3 and thebase 1, and astorage box 5 is fixedly arranged on one side of the lower surface of theworkbench assembly 3.
Specifically, thelifting moving assembly 2 comprises twoguide posts 201, theguide posts 201 are fixedly connected with the inner wall of thebase 1, the twoguide posts 201 are slidably connected with alifting plate 202, the upper surface of thelifting plate 202 is provided with a plurality of throughchutes 203, the lower surface of thelifting plate 202 is fixedly provided with a plurality ofuniversal wheels 204, the lower surface of thebase 1 is provided with a plurality of through holes corresponding to theuniversal wheels 204, the plurality of throughchutes 203 are slidably connected with two movingseats 205, both sides of the movingseat 205 are rotatably connected with a connectingplate 206, one side of theconnecting plate 206 far away from the movingseat 205 is rotatably connected with afixed seat 207, thefixed seat 207 is fixedly connected with the top of the inner wall of thebase 1, one side of the movingseat 205 is inserted with a plurality of T-shaped posts 216, one end of the plurality of T-shaped posts 216 is fixedly provided with twoextrusion seats 215, and the twoextrusion seats 215 are slidably connected with the inner walls of the, a plurality ofsprings 217 are fixedly arranged between themovable base 205 and theextrusion base 215, thesprings 217 are respectively sleeved with the T-shaped posts 216, and a driving component for enabling theextrusion base 215 to generate displacement is fixedly arranged between thebase 1 and the installation box 7.
Specifically, drive assembly includesmotor 208,motor 208 andbase 1 fixed connection, the inner wall that installation case 7 and installation case 7 are run through to the output shaft ofmotor 208 rotates to be connected and fixedly is equipped withworm 209, one side toothing ofworm 209 is equipped withworm wheel 210,worm wheel 210 is fixed and is equipped withscrew lead screw 211, the one end thatworm wheel 210 was kept away from toscrew lead screw 211 runs throughbase 1 andlifter plate 202 in proper order and is connected and threaded connection is equipped withlift seat 212 with the bottom rotation ofbase 1 inner wall, the both sides oflift seat 212 all rotate to be connected and are equipped with arm-tie 213, one side thatlift seat 212 was kept away from to arm-tie 213 all rotates to be connected and is equipped with arm-tie 214, arm-tie 214 respectively withextrusion seat 215 fixed connection.
Specifically, lifting unit 4 includes a plurality of hollow supportingseats 401, hollow supportingseat 401 all is connected with the last fixed surface ofbase 1, the equal sliding connection of inner wall of hollow supportingseat 401 is equipped with the lift and pushes awayseat 402, and the lift pushes away one side ofseat 402 all with workstation subassembly 3 fixed connection, the lift pushes away one side ofseat 402 and all rotates through the pivot and connects and be equipped withconnection square column 403, hollow supportingseat 401 all is equipped with and runs throughgroove 404 withconnection square column 403 is corresponding,connection square column 403 all cup joints and is equipped withgrafting sleeve 405, one side ofgrafting sleeve 405 all is fixed and is equipped withfixed block 406, the fixed transmission that makes its production angular displacement that is equipped with betweenU-shaped seat 8 and thefixed block 406.
Specifically, the transmission device comprises asecond motor 407, thesecond motor 407 is fixedly connected with the U-shapedseat 8, an output shaft of thesecond motor 407 penetrates through the U-shapedseat 8 to be rotatably connected with the U-shapedseat 8 and is fixedly provided with asecond worm 408, two sides of thesecond worm 408 are respectively in toothed connection with asecond worm wheel 409, thesecond worm wheels 409 are respectively and fixedly provided with atransmission shaft 410, and two sides of thetransmission shaft 410 penetrate through theU-shaped seat 8 to extend to one side of theU-shaped seat 8 and are respectively and fixedly connected with thefixing block 406.
Specifically,workstation subassembly 3 includesworkstation 301, the middle ofworkstation 301 upper surface is equipped with and runs throughmounting groove 302, the inner wall that runs throughmounting groove 302 rotates through the pivot to be connected and is equipped with roll-over table 303, the fixedelectron experiment board 304 that is equipped with in one side of roll-over table 303, one side ofworkstation 301 is pegged graft and is equipped with a plurality ofspliced poles 305, the fixed connectingstrip 306 that is equipped with in one end of a plurality of splicedpoles 305, one side of roll-over table 303 is equipped with a plurality ofspliced eyes 307 corresponding withspliced poles 305.
Specifically, abox 308 is fixedly arranged on one side of the upper surface of theworkbench 301, a plurality ofguide rods 309 are fixedly arranged on the inner wall of thebox 308, a connectingseat 310 is arranged on the plurality ofguide rods 309 in a sliding connection mode, an all-in-onecomputer 311 is fixedly arranged on one side of the connectingseat 310, a long throughgroove 312 is arranged on the upper surface of thebox 308, a connecting movingseat 313 is arranged on the long throughgroove 312 in a sliding connection mode, the connecting movingseat 313 is fixedly connected with the connectingseat 310, and alocking bolt 314 is arranged on one side of the connecting movingseat 313 in a threaded connection mode.
Specifically, afolding dust cover 6 is fixedly arranged between thebase 1 and the lower surface of theworkbench assembly 3.
The use principle and the use flow of the invention are as follows: when in use, a student moves the lifting device to a proper position under the action of theuniversal wheel 204, the vibration generated by road surface factors in the moving process is transmitted to thelifting plate 202 through theuniversal wheel 204, the movingseat 205 starts to move under the matching of the connectingplate 206 and thefixing seat 207 to extrude thespring 217, thespring 217 performs buffering and energy absorption work, the student is powered on and uses the controller to control the motor I208 to start to work, the threadedscrew rod 211 starts to rotate under the transmission of the worm screw I209 and the worm wheel I210, thelifting seat 212 starts to move under the action of the thread, the extrudingseat 215 starts to move under the pulling of thepulling plate 213 and thepulling block 214, the movingseat 205 starts to move under the pulling of thespring 217 so that thelifting plate 202 drives theuniversal wheel 204 to start to move upwards until thebase 1 is attached to the ground and fixed, the student uses the controller to control the motor II 407 to start to work according to the height of the student, thetransmission shaft 410 starts to rotate under the transmission of thesecond worm 408 and thesecond worm wheel 409, thefixing block 406 drives theinserting sleeve 405 to rotate, the lifting pushingseat 402 starts to move theworkbench assembly 3 upwards under the matching of the connectingsquare column 403, thefolding dust cover 6 is stretched until theworkbench assembly 3 is moved to a proper height, when a student needs to perform a test, the connectingstrip 306 is pulled to separate theinserting column 305 from theinserting hole 307 on theoverturning platform 303, theoverturning platform 303 selects a proper surface to perform the test and resets the connectingstrip 306 and theinserting column 305, when the position of the all-in-onecomputer 311 needs to be adjusted, thelocking bolt 314 is rotated, then the connecting movingseat 313 is pulled to start moving the connectingseat 310 and the all-in-onecomputer 311 until the connectingseat 310 and the all-in-onecomputer 311 are moved to a proper position, and thelocking bolt 314 is rotated reversely to complete the fixing.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.