CN112477450A - Printing equipment with automatic recovery unit - Google Patents

Printing equipment with automatic recovery unit Download PDF

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Publication number
CN112477450A
CN112477450A CN202011185632.1A CN202011185632A CN112477450A CN 112477450 A CN112477450 A CN 112477450A CN 202011185632 A CN202011185632 A CN 202011185632A CN 112477450 A CN112477450 A CN 112477450A
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CN
China
Prior art keywords
rotating shaft
assembly
piece
rotating
power end
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Granted
Application number
CN202011185632.1A
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Chinese (zh)
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CN112477450B (en
Inventor
董春福
何健
李凡
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Pu Ying Innovation Technology Corp Ltd
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Shenzhen Pu Ying Innovation Technology Corp Ltd
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Priority to CN202011185632.1A priority Critical patent/CN112477450B/en
Publication of CN112477450A publication Critical patent/CN112477450A/en
Application granted granted Critical
Publication of CN112477450B publication Critical patent/CN112477450B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J13/00Devices or arrangements of selective printing mechanisms, e.g. ink-jet printers or thermal printers, specially adapted for supporting or handling copy material in short lengths, e.g. sheets
    • B41J13/10Sheet holders, retainers, movable guides, or stationary guides

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  • Separation, Sorting, Adjustment, Or Bending Of Sheets To Be Conveyed (AREA)

Abstract

The invention provides printing equipment with an automatic recovery device, which comprises a rack, wherein the rack is provided with: the device comprises a turnover mechanism, a connecting piece, a recovery mechanism and a cavity; the turnover mechanism comprises a first power end, a first rotating shaft and a turnover assembly, wherein the turnover assembly is arranged on the first rotating shaft in a penetrating mode, the first power end is connected with the first rotating shaft in a transmission mode and used for driving the turnover assembly to rotate downwards to form a first channel used for transmitting external paper pieces with a connecting piece, and a second channel used for driving the turnover assembly to rotate upwards to form a communicated cavity with the rotating assembly; the connecting piece is arranged above the overturning assembly and connected with the rack; the recycling mechanism comprises a second power end, a second rotating shaft and a rotating assembly, the rotating assembly is arranged on the second rotating shaft in a penetrating mode, and the second power end is connected with the second rotating shaft in a transmission mode. Compared with the prior art, the paper piece can be conveyed into the printing equipment body through the first channel to be printed, and the printed paper piece can be recovered into the cavity through the second channel. The user does not spend time waiting for taking the parts, and the working efficiency and the use experience of the user are improved.

Description

Printing equipment with automatic recovery unit
Technical Field
The invention relates to the field of office, in particular to printing equipment with an automatic recovery device.
Background
With the development of science and technology, people increasingly need to use printing equipment in the official working, and printing equipment has become the office equipment that people used at high frequency in the official working, but current printing equipment has the defect.
For example, in the prior art, when a user needs to print paper pieces such as documents and invoices, the user needs to manually operate to print a single piece of tipping paper, and the user needs to wait before the printing device until the printing is completed and manually take out the printed paper piece. If the user does not wait in front of the printing device, the printed paper piece is easy to fall on the ground or even lose without being taken away.
Therefore, not only is the time of the user easily wasted, but also the office efficiency of the user is reduced, the printing process becomes troublesome and complicated, and errors easily occur, so that the use experience of the user becomes poor.
Disclosure of Invention
In order to overcome the defects of the prior art, the invention provides printing equipment with an automatic recovery device, and the specific technical scheme is as follows:
a printing equipment with automatic recovery unit, includes the frame, be provided with in the frame: the device comprises a turnover mechanism, a connecting piece, a recovery mechanism and a cavity; wherein
The turnover mechanism comprises a first power end, a first rotating shaft and a turnover assembly, wherein the turnover assembly is arranged on the first rotating shaft in a penetrating mode, the first power end is connected with the first rotating shaft in a transmission mode and used for driving the turnover assembly to rotate downwards for a preset angle to form a first channel used for transmitting external paper pieces with the connecting piece, and the turnover assembly is used for driving the turnover assembly to rotate upwards for a preset angle to form a second channel communicated with the cavity with the rotating assembly;
the connecting piece is arranged above the overturning assembly and connected with the rack;
the recycling mechanism comprises a second power end, a second rotating shaft and a rotating assembly, the rotating assembly is arranged on the second rotating shaft in a penetrating mode, and the second power end is connected with the second rotating shaft in a transmission mode.
In a specific embodiment, the turning assembly comprises a plurality of first rollers and a plurality of turning pieces, and the plurality of first rollers and the plurality of turning pieces are alternately arranged on the first rotating shaft in a penetrating manner;
the rotating assembly comprises a plurality of second rollers, the second rollers are arranged on the second rotating shaft in a penetrating mode, and the first rollers correspond to the second rollers in position one to one.
In a specific embodiment, the outer surfaces of the first roller and the second roller are respectively covered with elastic materials.
In a specific embodiment, the connecting member includes a plurality of through holes so that the turnover member can pass through the through holes when rotated upward by a predetermined angle.
In a particular embodiment, the shape of the through-hole comprises a long strip.
In a specific embodiment, the rotating assembly further includes a supporting member that is engaged with the rotating member, the supporting member is disposed on the second rotating shaft in a penetrating manner, and the supporting member is used for stopping and supporting the rotating member that rotates downward by a predetermined angle.
In a specific embodiment, the device further comprises a guide part, one end of the guide part is butted with the cavity, and the other end of the guide part is butted with the support part.
In a specific embodiment, the first power end comprises a coupler and a magnet, and the coupler and the magnet are respectively arranged on the first rotating shaft in a penetrating manner.
In a specific embodiment, the rotating mechanism further comprises a gear, the gear is arranged on the second rotating shaft in a penetrating mode, and a synchronous belt is arranged between the second power end and the gear.
A printing device comprises an automatic recovery device and a printing device body, wherein the printing device body is arranged on a rack.
The invention has at least the following beneficial effects:
the printing equipment with the automatic recovery device comprises a rack, wherein the rack is provided with: tilting mechanism, connecting piece, recovery mechanism, cavity. The turnover mechanism comprises a first power end, a first rotating shaft and a turnover assembly, wherein the turnover assembly is arranged on the first rotating shaft in a penetrating mode, the first power end is connected with the first rotating shaft in a transmission mode and used for driving the turnover assembly to rotate downwards to a preset angle to form a first channel used for transmitting an external paper piece with a connecting piece, and the second channel is used for driving the turnover assembly to rotate upwards to a preset angle to form a communicated cavity with the rotating assembly. The connecting piece sets up in the top of upset subassembly, is connected with the frame. The recycling mechanism comprises a second power end, a second rotating shaft and a rotating assembly, the rotating assembly is arranged on the second rotating shaft in a penetrating mode, and the second power end is connected with the second rotating shaft in a transmission mode.
From this, the user can be with waiting to print the paper spare and convey printing apparatus body in through first passageway and print, accomplish the back of printing when the paper spare to when the user overtime is not takied the paper spare, the preset angle of upset that overturns upwards under the drive of first power end, upset subassembly and rotating assembly form the second passageway of intercommunication cavity. The second power end drives the second rotating shaft to rotate and drives the second roller on the second rotating shaft to rotate, the printed paper piece is conveyed to the second channel from the printing equipment body, and the printed paper piece is conveyed downwards along the guide part to the cavity to be recovered along with the rotation of the first roller and the second roller. The time that the user waits for to get the piece is further saved, the working efficiency of the user is further improved, and the use experience of the user is improved.
Specifically, be provided with the support piece that can mutually support with the upset piece on the second pivot, support piece wears to establish on the second pivot. Further backstop and supported the upset piece of presetting the angle of downwards rotating, when the upset piece upwards overturns and presets the angle, further guaranteed the integrality of paper spare in second passageway data send, can avoid the paper spare to send out the phenomenon of fold in data send. Further plays a role in guiding paper pieces in the recycling process.
In order to make the aforementioned and other objects, features and advantages of the present invention comprehensible, preferred embodiments accompanied with figures are described in detail below.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings needed to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained according to the drawings without inventive efforts.
FIG. 1 is a first perspective view of the automatic recycling device of the embodiment;
FIG. 2 is a perspective view of the automatic recycling apparatus according to the embodiment from a second perspective;
FIG. 3 is a perspective view of the canting mechanism and drive wheel assembly of the embodiments;
FIG. 4 is a first perspective view of a printing apparatus with an automatic recycling device in an embodiment;
fig. 5 is a second perspective view of the printing apparatus with the automatic recycling device in the embodiment.
Description of the main element symbols:
1-a frame; 24-a turnover mechanism; 3-a first power end; 28-a first shaft; 44-a flipping assembly; 27-a connector; 111-a first channel; 47-paper pieces; 25-a recovery mechanism; 33-a second shaft; 222-a second channel; 666-rotating member; 30-a first roller; 29-a flip; 34-a second roller; 555-through holes; 26-a guide; 16-a support; 31-a coupler; 32-a magnet; 35-a gear; 4-printing equipment body.
Detailed Description
Examples
As shown in fig. 1 to 3, the present embodiment provides a printing apparatus with an automatic recycling device, including a frame 1, where the frame 1 is provided with:
turnover mechanism 24, connecting piece 27, recovery mechanism 25, cavity (not shown in the figure). The turnover mechanism 24 includes a first power end 3, a first rotating shaft 28, and a turnover assembly 44, the turnover assembly 44 is disposed on the first rotating shaft 28 in a penetrating manner, the first power end 3 is connected to the first rotating shaft 28 in a driving manner, and is used for driving the turnover assembly 44 to rotate downward by a preset angle, so as to form a first channel 111 with the connecting member 27 for transmitting an external paper piece 47 (the paper piece 47 may be a receipt) and a second channel 222 for driving the turnover assembly 44 to rotate upward by a preset angle, so as to form a communicating cavity with the rotating assembly. The connecting member 27 is disposed above the turnover unit 44 and connected to the frame 1. The recycling mechanism 25 includes a second power end (not shown), a second rotating shaft 33, and a rotating component, the rotating component is disposed on the second rotating shaft 33, and the second power end is connected to the second rotating shaft 33 in a transmission manner.
As shown in fig. 3, in the present embodiment, the turning assembly 44 includes a plurality of first rollers 30 and a plurality of turning members 29, and the plurality of first rollers 30 and the plurality of turning members 29 are alternately disposed on the first rotating shaft 28. The rotating assembly includes a plurality of second rollers 34, the plurality of second rollers 34 are disposed on the second shaft 33, and the number of the first rollers 30 is the same as that of the second rollers 34, and the positions thereof are in one-to-one correspondence.
Specifically, the plurality of turning members 29 include gaps therebetween, and the first rollers 30 can be accommodated in the gaps. The plurality of turning members 29 are disposed on the first rotating shaft 28 at equal intervals, and the plurality of first rollers 30 are disposed on the first rotating shaft 28 at equal intervals. One end of each of the turning pieces 29 is arranged on the first rotating shaft 28 in a penetrating manner, the other end of each of the turning pieces 29 comprises a hook-shaped end facing the direction of the second roller 34, the second rollers 34 are arranged on the second rotating shaft 33 in a penetrating manner, and the second rollers 34 and the first rollers 30 are mutually abutted and extruded.
In this embodiment, the outer surfaces of the first roller 30 and the second roller 34 are respectively covered with an elastic material, the elastic material can enhance the friction force between the surfaces of the first roller 30 and the second roller 34, and meanwhile, the phenomenon that the surfaces of the paper pieces 47 are damaged by the first roller 30 and the second roller 34 can be avoided.
Specifically, the elastic material includes rubber, resin, fiber, and the like.
As shown in fig. 5, in this embodiment, the connecting member 27 includes a plurality of through holes 555, and the number of the through holes 555 is the same as that of the turning members 29, and the through holes 555 are in one-to-one correspondence with the positions of the turning members 29, so that the turning members 29 can pass through the through holes 555 when rotating upwards by a predetermined angle. Specifically, the shape of the through hole 555 comprises a long strip shape, and the design of the through hole 555 on the connecting member 27 can save the space of the automatic recovery device.
As shown in fig. 1, 2 and 4, in this embodiment, the device further includes a guide 26, one end of the guide 26 is abutted against the cavity, and the other end is abutted against the rotating assembly.
Specifically, when the printed paper piece 47 is not removed after a certain time, the first rotating shaft 28 is driven by the first power end 3 to rotate upward by a predetermined angle, and drives the turning piece 29 on the first rotating shaft 28 to turn upward by a predetermined angle, and the turning piece 29 includes a hook-shaped end passing through the through hole 555 of the connecting piece 27. Meanwhile, the printed paper piece 47 is conveyed into the second channel 222, the second power end drives the second rotating shaft 33 to rotate, the first roller 30 and the second roller 34 rotate in a matched mode, and the printed paper piece 47 is conveyed between the first roller 30 and the second roller 34 in a twisting mode and conveyed downwards along the guide piece 26 to the cavity to be recovered.
As shown in fig. 1 and fig. 2, in this embodiment, the rotating assembly further includes a supporting member 16 cooperating with the turning member 29, the supporting member 16 is disposed on the second rotating shaft 33, one end of the supporting member 16 abuts against the other end of the guiding member 26, and the supporting member 16 is used for stopping and supporting the turning member 29 which rotates downward by a predetermined angle.
Specifically, one end of the supporting member 16 includes an arc-plate shape, the turning member 29 and the connecting member 27 form a first passage 111 when the turning member 29 is rotated downward by a predetermined angle, and the end of the supporting member 16 including the arc-plate shape is in contact with the end of the turning member 29 including the hook shape, so that the paper member 47 to be printed can be conveyed out of the first passage 111.
When the reversing member 29 is rotated upward by a predetermined angle, the end of the reversing member 29 including the hook shape is separated from the end of the supporting member 16 including the arc-shaped plate shape, so that the paper member 47 having completed printing passes through the second passage 222 and is recovered along the guide member 26 into the cavity.
In this embodiment, the turnover mechanism 24 further includes a rotating member 666, one end of the rotating member 666 is connected to the first rotating shaft 28, and the other end of the rotating member 666 is provided with a third roller.
Specifically, when the printed paper piece 47 is conveyed into the second channel 222, the end of the rotating member 666 where the third roller is disposed is used for further rubbing the paper piece 47, so as to stop and guide the paper piece 47, and the printed paper piece 47 is conveyed downwards along the guide 26 to the cavity for recycling.
As shown in fig. 3, in the present embodiment, the first power end 3 includes a coupler 31 and a magnet 32, and the coupler 31 and the magnet 32 are disposed on the first rotating shaft 28.
Specifically, the magnet 32 provides power to drive the first rotating shaft 28 to turn back and forth by a preset angle, and drives the turning member 29 on the first rotating shaft 28 to turn back and forth by a preset angle.
In this embodiment, the rotating mechanism further includes a gear 35, the gear 35 is disposed on the second rotating shaft 33 in a penetrating manner, and a synchronous belt (not shown in the figure) is disposed between the second power end and the gear 35.
Specifically, the second power end drives the second rotating shaft 33 to rotate through the synchronous belt, and drives the second roller 34 on the second rotating shaft 33 to rotate.
As shown in fig. 1 to 5, a printing apparatus includes an automatic recovery device and a printing apparatus body 4.
Specifically, the printing apparatus body 4 is provided on the chassis 1, and the paper piece 47 to be printed can be conveyed into the printing apparatus body 4 through the first passage 111 to be printed.
When the printed paper piece 47 is not taken away after a certain time, the first power end 3 drives the first rotating shaft 28 to rotate by a preset angle, so that the turning piece 29 on the first rotating shaft 28 turns upwards by the preset angle, one end of the turning piece 29, which comprises a hook shape, passes through the through hole 555 on the connecting piece 27, and the printed paper piece 47 is conveyed into the second channel 222. Meanwhile, the second power end rotates through the synchronous belt drive gear 35 and drives the second rotating shaft 33 to rotate, meanwhile, the second roller 34 on the second rotating shaft 33 rotates along the axis of the second rotating shaft 33, and the first roller 30 and the second roller 34 rotate in a matched mode. The printed paper piece 47 passes between the first roller 30 and the second roller 34 in the second passage 222, and the printed paper piece 47 is conveyed by rubbing under the action of the first roller 30 and the second roller 34 and is conveyed down along the guide 26 into the cavity for recycling.
Compared with the prior art, improved the user and collected the mode of accomplishing the paper spare after printing, utilized and set up the mode that sets up the second gyro wheel in first gyro wheel, upset piece and the second pivot in the first pivot, through the predetermined angle of upset piece downward upset on the first pivot of first power end drive, the paper spare of waiting to print can pass first passageway and is conveyed and print in the printing apparatus body.
When the user overtime does not take away the paper piece of accomplishing the printing, the preset angle of upwards overturning of the upset piece on first pivot of first power end drive, the paper piece of accomplishing the printing is conveyed in the second passageway, and simultaneously, the epaxial second gyro wheel of second pivot is rotated along the axis of second pivot to second power end drive, and first gyro wheel rotates with the cooperation of second gyro wheel under the conflict extrusion of second gyro wheel. The printed paper piece penetrates between the first roller and the second roller in the second channel, and along with rotation of the first roller and the second roller, the printed paper piece is rubbed and conveyed downwards along the guide part to the cavity to be recycled.
Preferably, the user is able to flexibly take control of the time to complete printing of the paper piece without spending time and effort waiting for printing of the paper piece. The time that the user waits for to get the piece is saved, the working efficiency of the user is further improved, and the use experience of the user is improved.
Specifically, the connecting piece includes a plurality of and the same and the one-to-one through-hole in position of upset number quantity, and when the upset piece upwards rotated preset angle, the upset piece included that hook-shaped one end can pass the through-hole. The material and the space of the automatic recovery device are saved, and the miniaturization of the automatic recovery device is facilitated.
Particularly, a supporting piece which can be matched with the overturning piece is arranged on the second rotating shaft. Further stopping and supporting the flip member which is turned downward by a predetermined angle. When the overturning part overturns upwards to preset an angle, the completeness of the paper part in the second channel conveying process is further ensured, and the phenomenon that the paper part is folded in the conveying process can be avoided. Further plays a role in guiding paper pieces in the recycling process.
Those skilled in the art will appreciate that the figures are merely schematic representations of one preferred implementation scenario and that the blocks or flow diagrams in the figures are not necessarily required to practice the present invention.
Those skilled in the art will appreciate that the modules in the devices in the implementation scenario may be distributed in the devices in the implementation scenario according to the description of the implementation scenario, or may be located in one or more devices different from the present implementation scenario with corresponding changes. The modules of the implementation scenario may be combined into one module, or may be further split into a plurality of sub-modules.
The above-mentioned invention numbers are merely for description and do not represent the merits of the implementation scenarios.
The above disclosure is only a few specific implementation scenarios of the present invention, however, the present invention is not limited thereto, and any variations that can be made by those skilled in the art are intended to fall within the scope of the present invention.

Claims (10)

1. The automatic recovery device is characterized by comprising a frame, wherein the frame is provided with: the device comprises a turnover mechanism, a connecting piece, a recovery mechanism and a cavity; wherein:
the turnover mechanism comprises a first power end, a first rotating shaft and a turnover assembly, wherein the turnover assembly is arranged on the first rotating shaft in a penetrating mode, the first power end is connected with the first rotating shaft in a transmission mode and used for driving the turnover assembly to rotate downwards for a preset angle to form a first channel used for transmitting external paper pieces with the connecting piece, and the turnover assembly is used for driving the turnover assembly to rotate upwards for a preset angle to form a second channel communicated with the cavity with the rotating assembly;
the connecting piece is arranged above the overturning assembly and connected with the rack;
the recycling mechanism comprises a second power end, a second rotating shaft and a rotating assembly, the rotating assembly is arranged on the second rotating shaft in a penetrating mode, and the second power end is connected with the second rotating shaft in a transmission mode.
2. The automatic recovery device of claim 1, wherein:
the overturning assembly comprises a plurality of first rollers and a plurality of overturning pieces, and the plurality of first rollers and the plurality of overturning pieces alternately penetrate through the first rotating shaft;
the rotating assembly comprises a plurality of second rollers, the second rollers are arranged on the second rotating shaft in a penetrating mode, and the first rollers correspond to the second rollers in position one to one.
3. The automatic recovery device of claim 2, wherein: the outer surfaces of the first roller and the second roller are respectively covered with elastic materials.
4. The automatic recovery device of claim 2, wherein: the connecting piece comprises a plurality of through holes, so that the overturning piece can penetrate through the through holes when rotating upwards for a preset angle.
5. The automatic recovery device of claim 4, wherein: the shape of the through hole comprises a long strip.
6. The automatic recovery device of claim 2, wherein: the rotating assembly further comprises a supporting piece matched with the overturning piece, the supporting piece penetrates through the second rotating shaft, and the supporting piece is used for stopping and supporting the overturning piece which rotates downwards by a preset angle.
7. The automatic recovery device of claim 6, wherein: the guide piece is connected with the cavity in a butt joint mode, and the supporting piece is connected with the other end of the guide piece in a butt joint mode.
8. The automatic recovery device of claim 1, wherein: the first power end comprises a coupler and a magnet, and the coupler and the magnet are respectively arranged on the first rotating shaft in a penetrating mode.
9. The automatic recovery device of claim 1, wherein: the rotating mechanism further comprises a gear, the gear is arranged on the second rotating shaft in a penetrating mode, and a synchronous belt is arranged between the second power end and the gear.
10. A printing apparatus characterized by: comprising an automatic recovery device according to any one of claims 1 to 9.
CN202011185632.1A 2020-10-29 2020-10-29 Printing equipment with automatic recovery unit Active CN112477450B (en)

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Application Number Priority Date Filing Date Title
CN202011185632.1A CN112477450B (en) 2020-10-29 2020-10-29 Printing equipment with automatic recovery unit

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Application Number Priority Date Filing Date Title
CN202011185632.1A CN112477450B (en) 2020-10-29 2020-10-29 Printing equipment with automatic recovery unit

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CN112477450A true CN112477450A (en) 2021-03-12
CN112477450B CN112477450B (en) 2024-02-09

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CN114872455A (en) * 2022-06-01 2022-08-09 广州卓腾科技有限公司 Certificate double-sided printing equipment

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Publication number Priority date Publication date Assignee Title
CN114872455A (en) * 2022-06-01 2022-08-09 广州卓腾科技有限公司 Certificate double-sided printing equipment
CN114872455B (en) * 2022-06-01 2024-01-30 广州卓腾科技有限公司 Certificate double-sided printing equipment

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