CN109624021A - The AR interaction 3d printer of Internet of Things control - Google Patents

The AR interaction 3d printer of Internet of Things control Download PDF

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Publication number
CN109624021A
CN109624021A CN201910010882.2A CN201910010882A CN109624021A CN 109624021 A CN109624021 A CN 109624021A CN 201910010882 A CN201910010882 A CN 201910010882A CN 109624021 A CN109624021 A CN 109624021A
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CN
China
Prior art keywords
fixedly connected
collecting box
filter screen
printer
interaction
Prior art date
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Pending
Application number
CN201910010882.2A
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Chinese (zh)
Inventor
王毓麒
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Individual
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Individual
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Publication date
Application filed by Individual filed Critical Individual
Priority to CN201910010882.2A priority Critical patent/CN109624021A/en
Publication of CN109624021A publication Critical patent/CN109624021A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B1/00Producing shaped prefabricated articles from the material
    • B28B1/001Rapid manufacturing of 3D objects by additive depositing, agglomerating or laminating of material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C64/00Additive manufacturing, i.e. manufacturing of three-dimensional [3D] objects by additive deposition, additive agglomeration or additive layering, e.g. by 3D printing, stereolithography or selective laser sintering
    • B29C64/20Apparatus for additive manufacturing; Details thereof or accessories therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C64/00Additive manufacturing, i.e. manufacturing of three-dimensional [3D] objects by additive deposition, additive agglomeration or additive layering, e.g. by 3D printing, stereolithography or selective laser sintering
    • B29C64/30Auxiliary operations or equipment
    • B29C64/35Cleaning
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B33ADDITIVE MANUFACTURING TECHNOLOGY
    • B33YADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3-D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3-D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
    • B33Y30/00Apparatus for additive manufacturing; Details thereof or accessories therefor

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Manufacturing & Machinery (AREA)
  • Materials Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Ceramic Engineering (AREA)
  • Filtering Of Dispersed Particles In Gases (AREA)

Abstract

The present invention relates to 3D printing equipment technical fields, and disclose a kind of AR interaction 3d printer of Internet of Things control, including pedestal, body, and collecting box, it is fixedly connected at the top of the bottom of the body and pedestal, it is fixedly connected at the top of the bottom of the collecting box and body, and the bottom on the left of collecting box is connected to by metal tube with the left side at the top of body, the inside of the collecting box includes driving motor, fan, filter screen and chamber door, by being provided with collecting box at the top of body, the bottom of collecting box is connected to by metal tube with the inside of body, and collecting box is internally provided with driving motor, fan and filter screen, so that body is when carrying out the work of three-dimensional printing, the ozone and dust that internal body generates can be collected absorption, achieve the effect that protect ambient enviroment, solve existing some devices The ozone and dust generated at work is easy the problem of impacting to the environment of surrounding.

Description

The AR interaction 3d printer of Internet of Things control
Technical field
The present invention relates to 3D printing equipment technical field, the AR interaction 3d printer of specially a kind of Internet of Things control.
Background technique
3D printing is a kind of rapid shaping technique by 3D model construction for real-world object, cheap with its manufacturing cost, raw It produces the advantages such as period short, personalized volume production and is widely used in every field, augmented reality is that dummy object is registered in reality In environment, wherein dummy object is generated by computer, and allows user's real-time, interactive therewith, and augmented reality is in educational training, work Industry design, machine-building, medical operating etc. have obtained extensive use, and in quick three-dimensional manufacturing field, AR interaction is being helped People's decision-making level, augmented reality will play the part of pivotal player quickly, and 3D printer during use, can generate ozone and powder Dirt, and existing some 3D printing equipment are during use, are not easy to be collected the ozone and dust of generation, device The ozone and exhaust gas that inside generates are easy heat dissipation and are dealt into air, so that the environment to surrounding impacts.
Summary of the invention
(1) the technical issues of solving
In view of the deficiencies of the prior art, the present invention provides a kind of AR interaction 3d printer of Internet of Things control, have convenient for inhaling The advantages that receiving ozone and dust, solves existing some 3D printing equipment during use, is not easy to the smelly of generation Oxygen and dust are collected, and the ozone and exhaust gas generated inside device can radiate and be dealt into air, are easy to make the environment of surrounding The problem of at influencing.
(2) technical solution
The technical solution adopted by the present invention to solve the technical problems is: a kind of AR interaction 3d printer of Internet of Things control, packet Pedestal, body and collecting box are included, is fixedly connected at the top of the bottom of the body and pedestal, the bottom of the collecting box and machine It is fixedly connected at the top of body, and the bottom on the left of collecting box is connected to by metal tube with the left side at the top of body, the collecting box Inside include driving motor, fan, filter screen and chamber door, the right side of the driving motor is right by motor cabinet and collecting box The inner wall of side is fixedly connected, and the right side of the fan is fixedly connected with the output shaft on the left of driving motor, the side of the filter screen The bottom of the connection of the internal activity of surface and collecting box, the chamber door is flexibly connected by shaft with the left side of collecting box, described It include shell, clamping mechanism, pushing mechanism and empty slot, the bottom and the left side at the top of collecting box of the shell at the top of collecting box Side is fixedly connected, and the clamping mechanism and pushing mechanism are respectively positioned on the inside of shell, and the empty slot is located at the top of collecting box, institute The internal activity at the top and empty slot of stating filter screen connects, and includes handle at the top of the filter screen, the bottom of the handle It is fixedly connected at the top of filter screen.
Further, the bottom of the filter screen includes fixture block, and the top of the fixture block and the bottom of filter screen are fixed Connection, the inner bottom wall of the collecting box offer card slot, the bottom of the fixture block and the inside grafting of card slot.
Further, the inside of the collecting box includes through-hole, and the through-hole is located at the inner wall on the right side of collecting box.
Further, the clamping mechanism includes inserted block, the first movable plate, two elastic pieces, two guide plates and consolidates Fixed board, the top of the inserted block and the left side activity grafting of housing bottom, the side surface of first movable plate and shell it is interior Portion is flexibly connected, and the bottom of two elastic pieces is fixedly connected with the left and right side at the top of the first movable plate respectively, and two It is fixedly connected on the left of the bottom of the guide plate and shell inner bottom wall, and the left and right sides of the first movable plate is led with two respectively Be flexibly connected to the opposite side of plate, the left side of the fixed plate is fixedly connected with the inner wall on the left of shell, the elastic piece and The top of guide plate is fixedly connected with the bottom of fixed plate.
Further, the pushing mechanism includes connecting tube, adjustable spring, the second movable plate, motion bar and brace, institute The right side for stating connecting tube is fixedly connected with the inner wall on the right side of shell, and the right end of the adjustable spring and the inner wall on the right side of connecting tube are consolidated Fixed connection, the right side of second movable plate are fixedly connected with the left end of adjustable spring, the side surface of second movable plate with The internal activity of connecting tube connects, and the right end of the motion bar and the internal activity on the left of connecting tube connect, and the right side of motion bar It holds and is fixedly connected on the left of the second movable plate, the top of the brace is connected by shaft and the positive left side activity of motion bar It connects, the bottom end of the brace is flexibly connected by shaft with the front of the first movable plate.
It further, include loose slot, connecting rod and shifting block at the top of the motion bar, the loose slot is located at shell The bottom end at the top of body, the connecting rod is fixedly connected with the left side at the top of motion bar, the connecting rod side surface and loose slot Internal activity connection, the bottom of the shifting block is fixedly connected with the top of connecting rod.
Further, the inside of the empty slot includes cover board, sealing-plug, two pressure rams and two crushing blocks, described The bottom of cover board and the top movable of empty slot connect, and the top of the sealing-plug is fixedly connected with the bottom of cover board, the sealing The internal activity of the side surface of plug and empty slot connects, the top of the two pressure rams left side and the right side with sealing-plug bottom respectively Side is fixedly connected, and the top of two crushing blocks is fixedly connected with the bottom end of two pressure rams respectively, two crushing blocks Bottom be fixedly connected respectively with the left and right side at the top of filter screen.
Further, include pulling block at the top of the cover board, be fixedly connected at the top of the bottom of the pulling block and cover board.
Further, the front of the body includes transparent glass door, the back side of the transparent glass door and body Front is flexibly connected.
Working principle: printing the object inside device by body, during body work, starting driving Motor drives fan to be rotated, and is then collected the ozone of internal body bad student and dust absorbing to device by metal tube Then the inside of case is filtered and is purified to the air entered inside device by filter screen, after device work is completed, close Motor is closed, then moves shifting block to the right, drives motion bar to move to the right by connecting rod, so that on the right side of the top row of brace It is mobile, and brace passes through shaft in the process of moving and rotated, so that the bottom end of brace pulls the first movable plate to moving up It is dynamic, so that inserted block moves up, so that the bottom of inserted block is separated from the top of chamber door, then convenient for opening chamber door, Jin Erbian Cleared up in the inside of collecting box, when needing the surface to filter screen to clear up, pull up pulling block so that cover board to Upper movement, so that the bottom of crushing block is separated from the top of filter screen, pull handle then up, by filter screen from collecting box Inside is taken out, and is then convenient for clearing up the surface of filter screen.
The beneficial effects of the present invention are:
1, the AR interaction 3d printer of Internet of Things control, by being provided with collecting box at the top of body, the bottom of collecting box is logical It crosses metal tube to be connected to the inside of body, and collecting box is internally provided with driving motor, fan and filter screen, so that body exists When carrying out the work of three-dimensional printing, the ozone and dust that internal body generates can be collected absorption, reach protection week The effect in collarette border, solves ozone that existing some devices generate at work and dust is easy to cause the environment of surrounding The problem of influence.
2, the AR interaction 3d printer of Internet of Things control, by being provided with shell, shell is internally provided with clamping machine Structure and pushing mechanism can be fixed chamber door so that the device is when in use by the effect of clamping mechanism, then pass through The effect of clamping mechanism is also convenient for opening chamber door, then convenient for clearing up from chamber door the inside of collecting box, so that should When in use, the inside of collecting box has achieved the effect that be convenient to clean device.
3, the AR interaction 3d printer of Internet of Things control, by being provided with empty slot, handle, cover board, pressure ram, crushing block And pulling block, so that the device is when in use, by pulling pulling block, convenient for opening cover board, so that the bottom of crushing block is from filtering The top of net separates, then by pull handle, convenient for taking out filter screen from the inside of collecting box, then again convenient for filter screen Surface cleared up so that the device is when in use, the surface of filter screen has achieved the effect that be convenient to clean.
4, the AR interaction 3d printer of Internet of Things control, by being provided with cover board and sealing-plug, so that filter screen is being pacified It after being attached to the inside of collecting box, can be closed by inside of the cover board to device, then by the effect of sealing-plug to receipts The inside of header is sealed, and during use, ozone and dust distribute anti-locking apparatus out of empty slot at the top of collecting box To the outside of device, so that the environment protecting of the device reaches more preferable.
5, the AR interaction 3d printer of Internet of Things control, by being provided with transparent glass door, convenient for object is passed through glass The inside that glass door is put into device is printed, and is then transparent setting by glass door, convenient for observing in device from the external world The printing situation in portion, when the printing inside device occurs abnormal, convenient for being closed to machine, so that the device reaches Effect easy to use.
Detailed description of the invention
Fig. 1 is structure of the invention cross-sectional view;
Fig. 2 is collecting box structure sectional view of the present invention;
Fig. 3 is schematic structural view of the invention;
Fig. 4 is the schematic enlarged-scale view of A in Fig. 2 of the present invention;
Fig. 5 is the schematic enlarged-scale view of B in Fig. 2 of the present invention.
Attached drawing acceptance of the bid note is described below: 1 pedestal, 2 bodies, 3 collecting boxs, 4 driving motors, 5 fans, 6 filter screens, 7 fixture blocks, 8 chamber doors, 9 through-holes, 10 shells, 11 clamping mechanisms, 1101 inserted blocks, 1,102 first movable plates, 1103 elastic pieces, 1104 guide plates, 1105 fixed plates, 12 pushing mechanisms, 1201 connecting tubes, 1202 adjustable springs, 1,203 second movable plates, 1204 motion bars, 1205 Brace, 13 loose slots, 14 connecting rods, 15 shifting blocks, 16 empty slots, 17 handles, 18 cover boards, 19 sealing-plugs, 20 pressure rams, 21 squeeze Block, 22 pulling blocks, 23 transparent glass doors.
Specific embodiment
In conjunction with the accompanying drawings, the present invention is further explained in detail.These attached drawings are simplified schematic diagram, only with Illustration illustrates basic structure of the invention, therefore it only shows the composition relevant to the invention.
Fig. 1-5, a kind of AR interaction 3d printer of Internet of Things control, including pedestal 1, body 2 and collecting box 3 are please referred to, The bottom of body 2 is fixedly connected with the top of pedestal 1, and the bottom of collecting box 3 is fixedly connected with the top of body 2, and collecting box 3 The bottom in left side is connected to by the left side at the top of metal tube and body 2, the inside of collecting box 3 include driving motor 4, fan 5, The right side of filter screen 6 and chamber door 8, driving motor 4 is fixedly connected by motor cabinet with the inner wall on 3 right side of collecting box, the right side of fan 5 Side is fixedly connected with the output shaft in 4 left side of driving motor, and the side surface of filter screen 6 is connect with the internal activity of collecting box 3, filtering Net 6 is Double-level Reticulated, and manganese dioxide and active carbon is provided between two layers of mesh, first passes through manganese dioxide catalysis, then using The effect of active carbon can effectively be handled ozone, and the bottom of filter screen 6 includes fixture block 7, the top of fixture block 7 and mistake The bottom of strainer 6 is fixedly connected, and the inner bottom wall of collecting box 3 offers card slot, the bottom of fixture block 7 and the inside grafting of card slot, case The bottom of door 8 is flexibly connected by shaft with the left side of collecting box 3, and the inside of collecting box 3 includes through-hole 9, and through-hole 9, which is located at, to be received The inner wall on 3 right side of header, the top of collecting box 3 includes shell 10, clamping mechanism 11, pushing mechanism 12 and empty slot 16, shell The left side at 3 top of 10 bottom and collecting box is fixedly connected, and clamping mechanism 11 and pushing mechanism 12 are respectively positioned on the inside of shell 10, Clamping mechanism 11 includes inserted block 1101, the first movable plate 1102, two elastic piece 1103, two guide plate 1104 and fixed plate 1105, the left side activity grafting on the top and 10 bottom of shell of inserted block 1101, side surface and the shell 10 of the first movable plate 1102 Internal activity connection, the bottom of two elastic pieces 1103 respectively with the left and right side at the top of the first movable plate 1102 is fixed connects It connects, is fixedly connected on the left of the bottom of two guide plates 1104 and 10 inner bottom wall of shell, and the left and right two of the first movable plate 1102 Side is flexibly connected with two opposite sides of guide plate 1104 respectively, and the inner wall in 10 left side of left side and shell of fixed plate 1105 is solid The top of fixed connection, elastic piece 1103 and guide plate 1104 is fixedly connected with the bottom of fixed plate 1105, and pushing mechanism 12 wraps Connecting tube 1201, adjustable spring 1202, the second movable plate 1203, motion bar 1204 and brace 1205 have been included, connecting tube 1201 Right side is fixedly connected with the inner wall on 10 right side of shell, and the inner wall on 1201 right side of right end and connecting tube of adjustable spring 1202 is fixed to be connected Connect, the right side of the second movable plate 1203 is fixedly connected with the left end of adjustable spring 1202, the side surface of the second movable plate 1203 with The internal activity of connecting tube 1201 connects, and the right end of motion bar 1204 is connect with the internal activity in 1201 left side of connecting tube, and living The right end of lever 1204 is fixedly connected with the left side of the second movable plate 1203, and the top of brace 1205 passes through shaft and motion bar 1204 positive left sides are flexibly connected, and the bottom end of brace 1205 is flexibly connected by shaft with the front of the first movable plate 1102, The top of motion bar 1204 includes loose slot 13, connecting rod 14 and shifting block 15, and loose slot 13 is located at the top of shell 10, even The bottom end of extension bar 14 is fixedly connected with the left side at 1204 top of motion bar, the internal activity of connecting rod 14 side surface and loose slot 13 Connection, the bottom of shifting block 15 are fixedly connected with the top of connecting rod 14, and empty slot 16 is located at the top of collecting box 3, the top of filter screen 6 Portion is connect with the internal activity of empty slot 16, and the top of filter screen 6 includes handle 17, the bottom of handle 17 and the top of filter screen 6 Portion is fixedly connected, and the inside of empty slot 16 includes cover board 18,19, two pressure rams 20 of sealing-plug and two crushing blocks 21, cover board 18 bottom is connect with the top movable of empty slot 16, and the top of sealing-plug 19 is fixedly connected with the bottom of cover board 18, sealing-plug 19 Side surface connect with the internal activity of empty slot 16, the top of two pressure rams 20 left side and the right side with 19 bottom of sealing-plug respectively Side is fixedly connected, and the top of two crushing blocks 21 is fixedly connected with the bottom end of two pressure rams 20 respectively, two crushing blocks 21 Bottom is fixedly connected with the left and right side at 6 top of filter screen respectively, and the top of cover board 18 includes pulling block 22, the bottom of pulling block 22 Portion is fixedly connected with the top of cover board 18, and the front of body 2 includes transparent glass door 23, the back side of transparent glass door 23 and machine The front of body 2 is flexibly connected.
When in use, the object inside device is printed by body 2, during body work, starting is driven Dynamic motor 4 drives fan 5 to be rotated, then by metal tube by the ozone of 2 inside bad student of body and dust absorbing to device The inside of collecting box, the air then entered inside device by 6 Duis of filter screen are filtered and purify, device work completion Afterwards, driving motor 4 is closed, then moves shifting block 15 to the right, drives motion bar 1204 to move to the right by connecting rod 14, makes Movement on the right side of the top row of brace 1205 is obtained, and brace 1205 is rotated by shaft in the process of moving, so that brace 1205 bottom end pulls the first movable plate 1102 to move up, so that inserted block 1101 moves up, so that the bottom of inserted block 1101 It separates, then convenient for opening chamber door 8, and then is cleared up convenient for the inside of collecting box 3, when needs pair from the top of chamber door 8 When the surface of filter screen 6 is cleared up, pulling block 22 is pulled up, so that cover board 18 moves up, so that the bottom of crushing block 21 It is separated from the top of filter screen 6, then up pull handle 17, filter screen 6 is taken out from the inside of collecting box 3, is then convenient for The surface of filter screen 6 is cleared up.
To sum up, the AR interaction 3d printer of Internet of Things control, is provided with collecting box 3, collecting box by the top of body 2 3 bottom is connected to by metal tube with the inside of body 2, and collecting box 3 is internally provided with driving motor 4, fan 5 and filters Net 6, so that the ozone generated inside body 2 and dust can be collected suction when carrying out the work of three-dimensional printing by body 2 It receives, has achieved the effect that protect ambient enviroment, solve ozone that existing some devices generate at work and dust is easy The problem of environment of surrounding is impacted.
Secondly, by being provided with shell 10, shell 10 is internally provided with clamping mechanism 11 and pushing mechanism 12, so that should Device when in use, can be fixed chamber door 8 by the effect of clamping mechanism 11, then pass through the work of clamping mechanism 11 With being also convenient for opening chamber door 8, then convenient for clearing up the inside of collecting box 3 from chamber door 8, so that the device makes Used time, the inside of collecting box 3 have achieved the effect that be convenient to clean.
Also, by being provided with empty slot 16, handle 17, cover board 18, pressure ram 20, crushing block 21 and pulling block 22, so that should Device when in use, by pulling pulling block 22, convenient for opening cover board 18, so that the bottom of crushing block 21 is from the top of filter screen 6 Part is from then by pull handle 17, convenient for taking out filter screen 6 from the inside of collecting box 3, then again convenient for filter screen 6 Surface cleared up so that the device is when in use, the surface of filter screen 6 has achieved the effect that be convenient to clean.
Also, by being provided with cover board 18 and sealing-plug 19, so that filter screen 6 is behind the inside for being installed to collecting box 3, it can To be closed by inside of the cover board 18 to device, then carried out by inside of the effect of sealing-plug 19 to collecting box 3 close Envelope, during use, ozone and dust are dispersed into the outside of device to anti-locking apparatus out of 3 top of collecting box empty slot 16, So that the environment protecting of the device reaches more preferable.
Also, by being provided with transparent glass door 23, convenient for object is carried out by the inside that glass door is put into device Then printing is transparent setting by glass door, convenient for observing the printing situation inside device from the external world, inside device When printing occurs abnormal, convenient for being closed to machine, so that the device has achieved the effect that be easy to use.
Taking the above-mentioned ideal embodiment according to the present invention as inspiration, through the above description, relevant staff is complete Various changes and amendments can be carried out without departing from the scope of the technological thought of the present invention' entirely.The technology of this invention Property range is not limited to the contents of the specification, it is necessary to which the technical scope thereof is determined according to the scope of the claim.

Claims (9)

1. a kind of AR interaction 3d printer of Internet of Things control, including pedestal (1), body (2) and collecting box (3), feature exists In: it is fixedly connected at the top of the bottom of the body (2) and pedestal (1), the bottom of the collecting box (3) and the top of body (2) Portion is fixedly connected, and the bottom on the left of collecting box (3) is connected to by metal tube with the left side at the top of body (2), the collecting box (3) inside includes driving motor (4), fan (5), filter screen (6) and chamber door (8), and the right side of the driving motor (4) is logical Motor cabinet is crossed to be fixedly connected with the inner wall on the right side of collecting box (3), the right side of the fan (5) with it is defeated on the left of driving motor (4) Shaft is fixedly connected, and the side surface of the filter screen (6) is connect with the internal activity of collecting box (3), the bottom of the chamber door (8) It is flexibly connected by shaft with the left side of collecting box (3), includes shell (10), clamping mechanism at the top of the collecting box (3) (11), the bottom of pushing mechanism (12) and empty slot (16), the shell (10) is fixedly connected with the left side at the top of collecting box (3), The clamping mechanism (11) and pushing mechanism (12) are respectively positioned on the inside of shell (10), and the empty slot (16) is located at collecting box (3) Top, the top of the filter screen (6) connect with the internal activity of empty slot (16), includes at the top of the filter screen (6) Handle (17) is fixedly connected at the top of the bottom and filter screen (6) of the handle (17).
2. the AR interaction 3d printer of Internet of Things control according to claim 1, it is characterised in that: the filter screen (6) Bottom include fixture block (7), the top of the fixture block (7) is fixedly connected with the bottom of filter screen (6), the collecting box (3) Inner bottom wall offer card slot, the bottom of the fixture block (7) and the inside grafting of card slot.
3. the AR interaction 3d printer of Internet of Things control according to claim 1, it is characterised in that: the collecting box (3) Inside include through-hole (9), the through-hole (9) is located at the inner wall on the right side of collecting box (3).
4. the AR interaction 3d printer of Internet of Things control according to claim 1, it is characterised in that: the clamping mechanism It (11) include inserted block (1101), the first movable plate (1102), two elastic pieces (1103), two guide plates (1104) and fixation Plate (1105), the left side activity grafting on the top and shell (10) bottom of the inserted block (1101), first movable plate (1102) side surface is connect with the internal activity of shell (10), and the bottom of two elastic pieces (1103) is living with first respectively Left and right side at the top of movable plate (1102) is fixedly connected, the bottom of two guide plates (1104) and shell (10) inner bottom wall Left side be fixedly connected, and the side opposite with two guide plates (1104) is living respectively for the left and right sides of the first movable plate (1102) Dynamic connection, the left side of the fixed plate (1105) are fixedly connected with the inner wall on the left of shell (10), the elastic piece (1103) and The top of guide plate (1104) is fixedly connected with the bottom of fixed plate (1105).
5. the AR interaction 3d printer of Internet of Things control according to claim 1, it is characterised in that: the pushing mechanism It (12) include connecting tube (1201), adjustable spring (1202), the second movable plate (1203), motion bar (1204) and brace (1205), the right side of the connecting tube (1201) is fixedly connected with the inner wall on the right side of shell (10), the adjustable spring (1202) Right end be fixedly connected with the inner wall on the right side of connecting tube (1201), the right side of second movable plate (1203) and adjustable spring (1202) left end is fixedly connected, and the side surface of second movable plate (1203) and the internal activity of connecting tube (1201) connect It connects, the right end of the motion bar (1204) is connect with the internal activity on the left of connecting tube (1201), and the right side of motion bar (1204) It holds and is fixedly connected on the left of the second movable plate (1203), the top of the brace (1205) passes through shaft and motion bar (1204) Positive left side is flexibly connected, and the bottom end of the brace (1205) is movable even by the front of shaft and the first movable plate (1102) It connects.
6. the AR interaction 3d printer of Internet of Things control according to claim 5, it is characterised in that: the motion bar It (1204) include loose slot (13), connecting rod (14) and shifting block (15) at the top of, the loose slot (13) is located at shell (10) Top, the bottom end of the connecting rod (14) is fixedly connected with the left side at the top of motion bar (1204), connecting rod (14) side Surface is connect with the internal activity of loose slot (13), and the bottom of the shifting block (15) is fixedly connected with the top of connecting rod (14).
7. the AR interaction 3d printer of Internet of Things control according to claim 1, it is characterised in that: the empty slot (16) Inside includes cover board (18), sealing-plug (19), two pressure rams (20) and two crushing blocks (21), the bottom of the cover board (18) Portion is connect with the top movable of empty slot (16), and the top of the sealing-plug (19) is fixedly connected with the bottom of cover board (18), described The side surface of sealing-plug (19) is connect with the internal activity of empty slot (16), the top of two pressure rams (20) respectively with sealing The left and right side of plug (19) bottom is fixedly connected, the top of two crushing blocks (21) respectively with two pressure rams (20) Bottom end is fixedly connected, and the bottom of two crushing blocks (21) is fixedly connected with the left and right side at the top of filter screen (6) respectively.
8. the AR interaction 3d printer of Internet of Things control according to claim 7, it is characterised in that: the cover board (18) Top includes pulling block (22), is fixedly connected at the top of the bottom and cover board (18) of the pulling block (22).
9. the AR interaction 3d printer of Internet of Things control according to claim 1, it is characterised in that: the body (2) Front includes transparent glass door (23), and the back side of the transparent glass door (23) is flexibly connected with the front of body (2).
CN201910010882.2A 2019-01-07 2019-01-07 The AR interaction 3d printer of Internet of Things control Pending CN109624021A (en)

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Application Number Priority Date Filing Date Title
CN201910010882.2A CN109624021A (en) 2019-01-07 2019-01-07 The AR interaction 3d printer of Internet of Things control

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Application Number Priority Date Filing Date Title
CN201910010882.2A CN109624021A (en) 2019-01-07 2019-01-07 The AR interaction 3d printer of Internet of Things control

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CN109624021A true CN109624021A (en) 2019-04-16

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Citations (10)

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