CN212424869U - Paper receiving synchronizing device for self-service text printing equipment - Google Patents

Paper receiving synchronizing device for self-service text printing equipment Download PDF

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Publication number
CN212424869U
CN212424869U CN202020669718.0U CN202020669718U CN212424869U CN 212424869 U CN212424869 U CN 212424869U CN 202020669718 U CN202020669718 U CN 202020669718U CN 212424869 U CN212424869 U CN 212424869U
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conveyor belt
conveying
paper
mounting
guide
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CN202020669718.0U
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Chinese (zh)
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于进勇
于嘉韵
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China Aviation Marine Equipment Yantai Technology Co ltd
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China Aviation Marine Equipment Yantai Technology Co ltd
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Abstract

The utility model provides a paper synchronizer that connects for self-service seal of literary composition equipment, self-service seal of literary composition equipment include printer and transfer unit, and paper synchronizer includes: a conveying belt for conveying a print document from a paper outlet of the printer; the supporting frames are arranged on two sides of the conveying belt along the conveying direction; a plurality of rows of guide mechanisms which are arranged above the conveyor belt and are arranged perpendicular to the conveying direction, wherein the guide mechanisms are fixedly connected with the support frame; the paper receiving synchronous device is fixedly connected with the conveying unit through the mounting frame; and a control unit for controlling the operation of the conveyor belt; wherein, be formed with transfer passage between guiding mechanism and conveyer belt, the paper receiving synchronizer can pass through transfer passage in proper order sola conveying print document to lead to the print document, can adjust the horizontal inclination of conveyer belt through the mounting bracket, thereby adjust transfer passage's transmission angle.

Description

Paper receiving synchronizing device for self-service text printing equipment
Technical Field
The utility model belongs to the technical field of mechanical transmission, specifically relate to a meet paper synchronizer for self-service seal equipment.
Background
Currently, many users without printers generally need to go out to a print shop for printing, use a flash disk for storage, copy personal documents to the other side, and then wait in line for printing or copying. The time cost for printing is large, and the safety is not guaranteed. In general, in a print shop, the print price is high due to daily expenses such as a front fee and a clerk labor fee.
With the gradual popularization of the concept of sharing economy, under the driving of the sharing economy, the sharing printing brings more convenience to people, saves the expenditure and ensures the safety. Therefore, it is necessary to provide a technical solution for penetrating the sharing concept into the field of public printing industry, and particularly, to provide a paper receiving synchronizer capable of synchronously receiving printed documents and accurately and effectively transmitting the printed documents, so as to ensure the receiving and transmitting of the printed documents and thus ensure the transmission effect.
SUMMERY OF THE UTILITY MODEL
To the technical problem as above, the utility model aims at providing a paper receiving synchronizer for self-service seal equipment, this paper receiving synchronizer can match the printing speed of printer and receive and convey the printing file accurately to can lead to the conveying of printing the file.
For this reason, according to the utility model provides a paper receiving synchronizer for self-service seal of literary composition equipment, self-service seal of literary composition equipment includes printer and transfer unit, paper receiving synchronizer includes: a conveying belt for conveying a print document from a paper outlet of the printer; the supporting frames are arranged on two sides of the conveying belt along the conveying direction; the guide mechanisms are arranged above the conveyor belt in a plurality of rows and are arranged perpendicular to the conveying direction, and the guide mechanisms are fixedly connected with the support frame; the paper receiving synchronizer is fixedly connected with the conveying unit through the mounting frame; and a control unit for controlling the operation of the conveyor belt; the paper receiving synchronizer can sequentially and singly transmit the printed documents through the transmission channel and guide the printed documents, and the horizontal inclination angle of the transmission belt can be adjusted through the mounting rack, so that the transmission angle of the transmission channel is adjusted.
In one embodiment, the rows of guide means are evenly spaced along the direction of travel of the conveyor belt.
In one embodiment, the guide mechanism includes a central shaft and a plurality of guide wheels axially disposed on the central shaft, the guide wheels being rotatable about the central shaft to guide the printed document conveyed by the conveyance path.
In one embodiment, the paper detection sensor is further included, and the control unit can control the conveyor belt to operate according to a detection signal of the paper detection sensor.
In one embodiment, a mounting plate fixedly connected with the supporting frame is arranged at one end of the conveying belt far away from the printer, and the paper detection sensor is mounted in the middle of the mounting plate.
In one embodiment, the conveyor belt is driven by a motor, and the control unit can adjust the rotating speed of the motor in real time according to a detection signal of the paper detection sensor, so that the conveying speed of the conveyor belt is matched with the printing speed of the printer.
In one embodiment, a plurality of convex mounting seats are arranged on the supporting frame at regular intervals along the conveying direction, and two ends of the guide mechanism are respectively mounted on the corresponding convex mounting seats so as to form a gap between the guide mechanism and the conveying belt, thereby forming the conveying channel.
In one embodiment, the mounting frame includes a first fixing plate fixedly connected to the support frame, a second fixing plate fixedly connected to the transfer unit, and a connecting plate connecting the first fixing plate and the second fixing plate.
In one embodiment, a mounting through hole is arranged at one end of the first fixing plate far away from the conveyor belt, an arc-shaped through hole is arranged at the first end of the connecting plate,
and fixing pieces are arranged in the mounting through holes and the arc-shaped through holes so as to fixedly connect the first fixing plate with the connecting plate, and the horizontal inclination angle of the conveyor belt can be adjusted by adjusting the mounting positions of the fixing pieces in the arc-shaped through holes.
In one embodiment, the second fixing plate comprises a first portion for connection with the connection plate and a second portion for fixed connection with the transfer unit forming a right-angle connection.
Compared with the prior art, the utility model has the advantages of:
according to the utility model discloses a paper receiving synchronizer for self-service seal of literary composition equipment can synchronous conveying print file, and it has effectively guaranteed through guiding mechanism that print file is at the stability of data send in-process, and has effectively avoided printing the file in the data send in-process chaotic or lose, has strengthened the accuracy that paper receiving synchronizer conveying printed the file. This meet paper synchronizer can real-time detection meet the printing file of paper synchronizer conveying through the paper detection inductor to the transfer rate of real-time detection response conveyer belt and the real-time feedback detection signal are with the transmission speed of automatically regulated conveyer belt, thereby match the printing speed of printer, have improved the conveying efficiency and the conveying precision of printing the file greatly, are showing the conveying effect that has strengthened meeting paper synchronizer. In addition, the paper receiving synchronizing device is simple in structure, convenient to adjust in installation angle, flexible and convenient to install, high in conveying efficiency and low in cost.
Drawings
The present invention will be described with reference to the accompanying drawings.
Fig. 1 shows the structure of a receiving synchronization device for a self-service text printing apparatus according to the present invention.
In the present application, all the figures are schematic and are only intended to illustrate the principles of the present invention and are not drawn to scale.
Detailed Description
The present invention will be described with reference to the accompanying drawings.
Fig. 1 shows the structure of a receiving synchronization device 10 for a self-service letterpress device according to the invention. The self-service text printing device comprises a printer and a conveying unit. As shown in fig. 1, the splicing synchronization device 10 includes a conveyor belt 10. Preferably, the conveyor belt 10 is a synchronous belt. The conveyance belt 10 is implemented by driving a high-speed shaft with a motor 60 for conveying a print document from a paper output port of the printer.
As shown in fig. 1, the paper receiving synchronizing device 10 further includes a plurality of rows of guide mechanisms 30 disposed above the working surface of the conveyor belt 10, and the guide mechanisms 30 are arranged perpendicular to the conveying direction of the conveyor belt 10. On both sides of the conveyor belt 10 and in the conveying direction, support frames 20 are provided. A plurality of boss installation seats 21 are formed on the support frame 20 at regular intervals along the conveying direction, and the boss installation seats 21 are used for fixedly installing the guide mechanism 30. The two ends of the guide mechanisms 13 are fixedly connected with the corresponding convex mounting seats 21 on the supporting frame 20, so as to form uniformly spaced distribution along the conveying direction.
In the present embodiment, a gap is left between the guide mechanism 30 and the conveyor belt 10, so that a conveying passage is formed between the guide mechanism 30 and the conveyor belt 10. The paper receiving synchronization apparatus 100 can sequentially convey the printed documents one by one through the conveyance path and guide the printed documents.
According to the present invention, the guide mechanism 30 includes a center pin and a plurality of guide wheels installed on the center pin. The plurality of guide wheels can be arranged to be continuously distributed along the axial direction of the central shaft, and can also be arranged to be evenly spaced along the axial direction of the central shaft. The guide wheel is rotatable about a central axis so as to guide the print document conveyed through the conveyance path. Thus, a document printed by the printer can be conveyed by the conveyor belt 10 and effectively guided by the guide mechanism 30. The guide mechanism 30 can accurately and effectively convey the printed documents one by one in sequence and effectively guide the printed documents, so that the conveying efficiency is obviously improved, and the conveying effect is ensured.
As shown in fig. 1, the paper splicing synchronization device 100 further includes a paper detection sensor 50. At the end of the conveyor belt 10 remote from the printer is a mounting plate 51 fixedly connected to the support frame 20, leaving an exit between the mounting frame 40 and the conveyor belt 10 for conveying printed documents. The sheet detection sensor 50 is disposed on the mounting plate 51, and the sheet detection sensor 50 is preferably disposed at a central position of the mounting plate 51. The paper detection sensor 50 is used to detect the print document transferred by the paper splicing synchronization apparatus 100. For example, when the paper receiving synchronization device 100 does not transmit the print document, the paper detection sensor 50 does not detect and sense the paper within the response time of 2 seconds, the paper detection sensor 50 feeds back a detection signal to a control unit (see below) of the paper receiving synchronization device 100, and the control unit automatically controls the paper receiving synchronization device 100 to stop. Of course, the reaction time can be set as desired.
According to the present invention, the paper receiving synchronizer 100 further comprises a control unit (not shown) for controlling the operation of the paper receiving synchronizer 100. The control unit is in communication connection with the paper detection sensor 50 and the motor 60, respectively, and is configured to receive a detection signal from the paper detection sensor 50 and control the motor 60 to operate, so as to achieve automatic control of the paper synchronization device 100.
The paper detection sensor 50 is also capable of detecting the conveying speed of the sensing conveyor belt 10 in real time and feeding back to the control unit in real time. Thus, the rotational speed of the control motor 60 can be automatically adjusted by the control unit to automatically adjust the transmission speed of the conveyor belt 10 to match the printing speed of the printer. The paper detection sensor 50 can effectively ensure that the conveyor belt 10 accurately and effectively conveys the printed documents in sequence, and further improves the conveying precision and conveying efficiency of the paper receiving synchronization device 100.
According to the present invention, the paper receiving synchronizer 100 further includes a mounting bracket 40. The mounting bracket 40 is fixedly connected to the support frame 20, and the mounting bracket 40 is preferably connected to the middle of the support frame 20. The paper receiving synchronizer 100 is fixedly connected with the conveying unit of the self-service text printing device through the mounting frame 40, so that the paper receiving synchronizer 100 is arranged at the paper outlet of the printing unit.
As shown in fig. 1, the mounting bracket 40 includes a first fixing plate 41, a second fixing plate 42, and a connecting plate 43 connecting the first fixing plate 41 and the second fixing plate 42. The first fixing plate 41 is adapted to be fixedly connected to the supporting frame 20, and the second fixing plate 42 is adapted to be fixedly connected to the transfer unit. The first fixing plate 41 has a rectangular plate shape, and mounting through holes are respectively formed at both ends of the first fixing plate 41. One end of the first fixing plate 41 is connected to the support frame 20, and a fixing member is installed in the installation through hole of the end, thereby forming a fixed connection with the support frame 20. The other end of the first fixing plate 41 is fixedly connected to the connecting plate 43. The connecting plate 43 has a rectangular plate shape, an arc-shaped through hole 411 is formed at a first end of the connecting plate 43, and fixing members are installed in the installation through hole and the arc-shaped through hole 411 at an end of the first fixing plate 41 far from the conveyor belt 10, so that the first fixing plate 41 is fixedly connected with the connecting plate 43. The installation position of the adjusting fixing member in the arc-shaped through hole 411 enables the angle between the first fixing plate 41 and the connecting plate 43 to be adjusted so as to adjust the horizontal inclination angle of the conveyor belt 10, thereby realizing the adjustment of the conveying angle of the conveying passage.
The second fixing plate 42 includes a first portion 421 and a second portion 422 that form a right-angle connection, and the first portion 421 and the second portion 422 are integrally provided. The first portion 421 is intended to be connected to the connection plate 43 and the second portion 422 is intended to be fixedly connected to the transfer unit. Waist-shaped through holes 70 are correspondingly formed at the second end of the connecting plate 43 and the two ends of the second fixing plate 42 respectively, and the waist-shaped through holes 70 are used for installing fixing pieces so as to fixedly connect the second fixing plate 42 with the connecting piece 43 and the conveying unit respectively. The waist-shaped through-holes 70 of the connection plate 43 are provided to extend in the length direction of the connection plate 43, and the waist-shaped through-holes 70 of the second fixing plate 42 are provided on the first portion 421 and the second portion 422, respectively, and are provided to extend in the length direction of the first portion 421 and the second portion 422, respectively. The installation mode between the second fixing plate 42 and the connecting plate 43 can be adjusted through the waist-shaped through hole 70, so that the installation operation is very facilitated, the efficiency is improved, and the installation and adjustment are convenient.
In practical application, the paper receiving synchronization device 100 is mounted at the paper outlet of the printer through the mounting frame 40, and the horizontal inclination angle of the conveyor belt 10 is adjusted. The control unit activates the motor according to the operation requirement, so that the paper receiving synchronizing device 100 receives the document printed by the printer and transmits the printed document through the transmission passage while guiding the printed document through the guide mechanism 30. Thereby, the print file is synchronously transferred to the transfer unit of the document printing apparatus by the sheet delivery synchronization device 100. In the synchronous transfer process, the paper detection sensor 50 detects the print document transferred by the paper receiving synchronous device 100 in real time, detects the transfer speed of the sensing conveyor belt 10 in real time and feeds back the sensed speed to the control unit in real time, and the control unit automatically adjusts the rotation speed of the control motor 60 to automatically adjust the transmission speed of the conveyor belt 10, thereby matching the printing speed of the printer. When printing is finished and no printing document is conveyed on the conveyor belt 10, the paper detection sensor 50 feeds back a detection signal to the control unit after no paper is detected and sensed within a preset reaction time, and the control unit automatically controls the paper receiving synchronization device 100 to stop. Thereby, the synchronous transfer of the print file is completed.
According to the utility model discloses a paper receiving synchronizer 100 for self-service seal by letter equipment can synchronous conveying print file, and it has effectively guaranteed through guiding mechanism 30 that print file is at the stability of data send process, and has effectively avoided printing the file in the data send process chaotic or lose, has strengthened the accuracy that paper receiving synchronizer 100 conveys print file. This paper receiving synchronizer 100 can real-time detection through paper detection inductor 50 meet the print file of synchronizer 100 conveying to real-time detection responds to the transfer rate of conveyer belt 10 and feeds back the transmission speed that detection signal was with automatically regulated conveyer belt 10 in real time, thereby matches the print speed of printer, has improved the conveying efficiency and the conveying precision of printing the file greatly, is showing the conveying effect that has strengthened paper receiving synchronizer 100. In addition, the paper receiving synchronizer 100 has the advantages of simple structure, convenient adjustment of installation angle, flexible and convenient installation, high transmission efficiency and low manufacturing cost.
Finally, it should be noted that the above description is only a preferred embodiment of the present invention, and should not be construed as limiting the present invention in any way. 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 modifications may be made to the embodiments described in the foregoing examples, or that equivalents may be substituted for elements thereof. 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.

Claims (10)

1. A paper receiving synchronizer for a self-service text printing device, the self-service text printing device comprising a printer and a transfer unit, the paper receiving synchronizer comprising:
a conveyor belt (10) for conveying a printed document from a paper outlet of the printer;
a support frame (20) disposed on both sides of the conveyor belt in a conveying direction;
a plurality of rows of guide mechanisms (30) arranged above the conveyor belt and perpendicular to the conveying direction, wherein the guide mechanisms are fixedly connected with the support frame;
a mounting frame (40) connected with the support frame, wherein the paper receiving synchronous device is fixedly connected with the conveying unit through the mounting frame; and
a control unit for controlling the operation of the conveyor belt;
the paper receiving synchronizer can sequentially and singly transmit the printed documents through the transmission channel and guide the printed documents, and the horizontal inclination angle of the transmission belt can be adjusted through the mounting rack, so that the transmission angle of the transmission channel is adjusted.
2. A meet synchronising device according to claim 1 wherein a plurality of said rows of guide means are provided at regular intervals along the direction of travel of the conveyor belt.
3. The splicing synchronization device according to claim 1 or 2, wherein the guide mechanism includes a central shaft and a plurality of guide wheels axially disposed on the central shaft, the guide wheels being rotatable about the central shaft so as to guide the print document conveyed by the conveyance path.
4. A splicing synchronization device according to claim 1, further comprising a sheet detection sensor (50), wherein said control unit is capable of controlling the operation of said conveyor belt in accordance with a detection signal of said sheet detection sensor.
5. A splicing synchronization device according to claim 4, wherein a mounting plate (51) is provided at the end of the conveyor belt remote from the printer and fixedly connected to the support frame, the paper detection sensor being mounted in the middle of the mounting plate.
6. A splicing synchronization device according to claim 4 or 5, wherein said conveyor belt is driven by a motor (60), and said control unit is capable of adjusting the rotation speed of said motor in real time in response to the detection signal of said paper detection sensor, so that the conveying speed of said conveyor belt matches the printing speed of said printer.
7. The paper splicing synchronization device according to claim 1 or 2, wherein a plurality of protruding mounting seats (21) are formed on the supporting frame at regular intervals along the conveying direction, and two ends of the guide mechanism are respectively mounted on the corresponding protruding mounting seats to form a gap between the guide mechanism and the conveyor belt, so as to form the conveying channel.
8. A meet synchronising device according to claim 1, wherein said mounting bracket comprises a first fixing plate (41) fixedly connected to said support frame, a second fixing plate (42) for fixedly connecting to said transfer unit, and a connecting plate (43) connecting said first and second fixing plates.
9. A meet synchronizing device according to claim 8, characterized in that a mounting through hole is provided at an end of the first fixing plate remote from the conveyor belt, an arc-shaped through hole (411) is provided at a first end of the connecting plate,
and fixing pieces are arranged in the mounting through holes and the arc-shaped through holes so as to fixedly connect the first fixing plate with the connecting plate, and the horizontal inclination angle of the conveyor belt can be adjusted by adjusting the mounting positions of the fixing pieces in the arc-shaped through holes.
10. A meet synchronising device according to claim 8, wherein said second fixing plate comprises a first part (421) for connection with said connection plate and a second part (422) for fixed connection with said transfer unit forming a right angle connection.
CN202020669718.0U 2020-04-27 2020-04-27 Paper receiving synchronizing device for self-service text printing equipment Active CN212424869U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020669718.0U CN212424869U (en) 2020-04-27 2020-04-27 Paper receiving synchronizing device for self-service text printing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020669718.0U CN212424869U (en) 2020-04-27 2020-04-27 Paper receiving synchronizing device for self-service text printing equipment

Publications (1)

Publication Number Publication Date
CN212424869U true CN212424869U (en) 2021-01-29

Family

ID=74294603

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020669718.0U Active CN212424869U (en) 2020-04-27 2020-04-27 Paper receiving synchronizing device for self-service text printing equipment

Country Status (1)

Country Link
CN (1) CN212424869U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20210623

Address after: Room 608, Runli building, No.3 Huanshan Road, Zhifu District, Yantai City, Shandong Province

Patentee after: Yu Jinyong

Patentee after: Chen Yong

Patentee after: Chang Hui

Address before: 264000 No.8, Beijing South Road, Yantai Development Zone, Shandong Province

Patentee before: China Aviation Marine Equipment (Yantai) Technology Co.,Ltd.

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20211008

Address after: 264000 305-1, block a, college students entrepreneurship Park, No. 101, Hangtian Road, high tech Zone, Yantai City, Shandong Province

Patentee after: Aoyin Intelligent Technology (Shandong) Co.,Ltd.

Address before: Room 608, Runli building, No.3 Huanshan Road, Zhifu District, Yantai City, Shandong Province

Patentee before: Yu Jinyong

Patentee before: Chen Yong

Patentee before: Chang Hui

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20240614

Address after: 264000 No. 8, Beijing South Road, Yantai Economic and Technological Development Zone, Shandong Province

Patentee after: China Aviation Marine Equipment (Yantai) Technology Co.,Ltd.

Country or region after: China

Address before: 264000 305-1, block a, college students entrepreneurship Park, No. 101, Hangtian Road, high tech Zone, Yantai City, Shandong Province

Patentee before: Aoyin Intelligent Technology (Shandong) Co.,Ltd.

Country or region before: China

TR01 Transfer of patent right