CN220280956U - Energy-saving drying dust collection device for digital printing machine - Google Patents

Energy-saving drying dust collection device for digital printing machine Download PDF

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Publication number
CN220280956U
CN220280956U CN202321697068.0U CN202321697068U CN220280956U CN 220280956 U CN220280956 U CN 220280956U CN 202321697068 U CN202321697068 U CN 202321697068U CN 220280956 U CN220280956 U CN 220280956U
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pipeline
dust collection
guide roller
drying
dust
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CN202321697068.0U
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Chinese (zh)
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蓝成荣
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Zhejiang Feida Textile Technology Co ltd
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Zhejiang Feida Textile Technology Co ltd
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Abstract

The utility model relates to an energy-saving drying dust collection device for a digital printing machine, which comprises a seat body and a digital printing host installed on the seat body, wherein the seat body is internally connected with a drying dust collection device; the drying dust collection device comprises a dust collection pipeline, a dust collection box, a centrifugal fan and a drying pipeline, wherein the dust collection pipeline, the dust collection box, the centrifugal fan and the drying pipeline are all positioned on the same side of the base body, the upper end of the dust collection pipeline is connected with the dust collection box, and a filter plate is inserted into the dust collection box; the upper end of the dust removing box is connected with the air inlet of the centrifugal fan through a pipeline, and the air outlet of the centrifugal fan is connected with the drying pipeline through a pipeline.

Description

Energy-saving drying dust collection device for digital printing machine
Technical Field
The utility model relates to the technical field of digital printing machines, in particular to an energy-saving drying dust collection device for a digital printing machine.
Background
Digital printers are an industry of large-format printers, for example, plotters are similar in the CAD field, whose ink characteristics are aqueous dispersion ink, which is mainly applied to the printing of clothing cloth by printing it on transfer paper and then transferring it to the cloth (artificial chemical fiber cloth) by high temperature.
In order to make the printing effect of digital printing machine better, current digital printing machine carries out dust extraction earlier through dust extraction before the cloth stamp, and after the cloth stamp is accomplished, then the rethread drying device carries out the stoving, for example: an energy-saving digital printing machine with the application number of 202221816422.2, which sucks dust to cloth before printing through a dust suction device and air-dries the cloth after printing through an air drying mechanism; although this patent can be through the inside of air-out pipe with the inside air filling exhaust pipe of box, blow out the stamp of cloth surface through the exhaust nozzle and air-dry, thereby reach energy-conserving purpose, but on the connection of exhaust pipe and air-dry mechanism, dust extraction and exhaust pipe are installed respectively in digital printing machine's both sides, consequently can only adopt the tuber pipe to connect, and the tuber pipe is according to the figure 1 of this patent, this tuber pipe is located digital printing machine and box outside, consequently the tuber pipe is collided by external object very easily, lead to the tuber pipe damage, and dust extraction and exhaust pipe are installed respectively in digital printing machine's both sides, the length of the tuber pipe that its needs to use is longer.
Disclosure of Invention
The utility model aims to solve the technical problem of an energy-saving drying dust collection device with a dust collection pipeline, a dust removal box, a centrifugal fan and a drying pipeline arranged on a base body, and the dust collection pipeline, the dust removal box, the centrifugal fan and the drying pipeline are all arranged on the same side of the base body.
In order to solve the technical problems, the technical solution of the energy-saving drying dust collection device for the digital printing machine is as follows:
the digital printing device comprises a seat body and a digital printing host installed on the seat body, wherein a drying dust collection device is connected in the seat body; the drying and dust collection device comprises a dust collection pipeline, a dust removal box, a centrifugal fan and a drying pipeline; the dust collection pipeline, the dust removal box, the centrifugal fan and the drying pipeline are all positioned on the same side of the seat body; the dust collection pipeline is provided with a dust collection opening, and the upper end of the dust collection pipeline is connected with the dust collection box; a filter plate is inserted into the dust removal box; the upper end of the dust removing box is connected with an air inlet of the centrifugal fan through a pipeline; the air outlet of the centrifugal fan is connected with the drying pipeline through a pipeline; an electric heating wire is connected in the drying pipeline; an air outlet is formed in the drying pipeline; the outer side of the seat body is connected with a mounting plate frame; the centrifugal fan and the dust removing box are fixed in the mounting plate frame; and a replacement opening corresponding to the dust removal box is formed in the outer side of the mounting plate frame.
The inside of the seat is connected with a left upper cloth guide roller, a left lower cloth guide roller, a right lower cloth guide roller and a right upper cloth guide roller; the left upper cloth guide roller and the left lower cloth guide roller are both positioned at the left side of the digital printing host, and the left upper cloth guide roller is positioned right above the left lower cloth guide roller; the right lower cloth guide roller and the right upper cloth guide roller are both positioned on the right side of the digital printing host, and the right lower cloth guide roller is positioned right below the right upper cloth guide roller; the left side of the digital printing host machine of the base body is also connected with a middle and upper cloth guide roller.
The replacement port of the mounting plate frame is connected with a cover plate through bolts.
Both sides of the dust removal box are connected with mounting seats; the two mounting seats are connected with the mounting plate frame through bolts respectively.
The bottom of the centrifugal fan is connected with a fixed seat; the fixing seat is connected with the mounting plate frame through bolts.
The utility model has the following technical effects: the utility model relates to an energy-saving drying dust collection device for a digital printing machine, which comprises a base body and a digital printing host installed on the base body, wherein the inside of the base body is connected with a drying dust collection device; the drying dust collection device comprises a dust collection pipeline, a dust collection box, a centrifugal fan and a drying pipeline, wherein the dust collection pipeline, the dust collection box, the centrifugal fan and the drying pipeline are all positioned on the same side of the base body, the upper end of the dust collection pipeline is connected with the dust collection box, and a filter plate is inserted into the dust collection box; the upper end of the dust removing box is connected with the air inlet of the centrifugal fan through a pipeline, and the air outlet of the centrifugal fan is connected with the drying pipeline through a pipeline; the outside of the seat body is connected with a mounting plate frame, the outside of the mounting plate frame is provided with a replacement port corresponding to the dust removal box, and the filter plate in the dust removal box is conveniently replaced through the replacement port.
Drawings
The utility model is described in further detail below with reference to the attached drawings and detailed description:
FIG. 1 is a cross-sectional view of an energy-saving drying and dust-absorbing apparatus for a digital printing machine according to the present utility model;
fig. 2 is an enlarged view of a portion a of fig. 1;
FIG. 3 is a schematic diagram of an energy-saving drying dust collector for a digital printing machine;
FIG. 4 is a schematic view of a replacement port;
FIG. 5 is a schematic illustration of the attachment of a filter plate;
fig. 6 is an enlarged view of a portion B of fig. 5;
fig. 7 is a schematic structural view of the drying and dust suction device.
Detailed Description
The utility model is further described in detail below with reference to the accompanying drawings.
See fig. 1-7.
The energy-saving drying dust collection device for the digital printing machine comprises a base body 1 and a digital printing host machine 2 arranged on the base body 1, wherein the base body 1 is connected with the drying dust collection device; the drying and dust-absorbing device is arranged in the seat body 1, and the seat body 1 is used for protecting the drying and dust-absorbing device, so that the service life of the drying and dust-absorbing device is longer; the utility model relates to a drying dust collection device, which comprises a dust collection pipeline 3, a dust collection box 4, a centrifugal fan 5 and a drying pipeline 6, wherein the dust collection pipeline 3, the dust collection box 4, the centrifugal fan 5 and the drying pipeline 6 are all positioned on the same side of a base body 1, a dust collection opening 7 is formed in the dust collection pipeline 3, the upper end of the dust collection pipeline 3 is connected with the dust collection box 4, a filter plate 8 is inserted in the dust collection box 4, the upper end of the dust collection box 4 is connected with an air inlet of the centrifugal fan 5 through a pipeline, and an air outlet of the centrifugal fan 5 is connected with the drying pipeline 6 through a pipeline; the drying pipeline 6 is internally connected with an electric heating wire 9, and an air outlet 10 is arranged on the drying pipeline 6.
On the installation of the centrifugal fan 5 and the dust removal box 4, the outer side of the base body 1 is connected with a mounting plate frame 11, and the centrifugal fan 5 and the dust removal box 4 are both fixed in the mounting plate frame 11; specifically, both sides of the dust removal box 4 are connected with mounting seats 32, and the two mounting seats 32 are respectively connected with the mounting plate frame 11 through bolts; the bottom of the centrifugal fan 5 is connected with a fixed seat 33, and the fixed seat 33 is connected with the mounting plate frame 11 through bolts.
Preferably, a replacement port 12 corresponding to the dust collection box 4 is arranged on the outer side of the mounting plate frame 11, and the filter plate 8 inserted in the dust collection box 4 is conveniently replaced through the design of the replacement port 12; specifically, the replacement port 12 of the mounting plate frame 11 is connected to a cover plate 31 by bolts, and when the replacement port 12 is not in use, the replacement port is covered by the cover plate 31.
Specifically, the inside of the seat body 1 is connected with an upper left cloth guide roller 21, a lower left cloth guide roller 22, a lower right cloth guide roller 23 and an upper right cloth guide roller 24; the left upper cloth guide roller 21 and the left lower cloth guide roller 22 are both positioned at the left side of the digital printing host 2, and the left upper cloth guide roller 21 is positioned right above the left lower cloth guide roller 22; the right lower cloth guide roller 23 and the right upper cloth guide roller 24 are positioned on the right side of the digital printing host machine 2, the right lower cloth guide roller 23 is positioned under the right upper cloth guide roller 24, and the left side of the digital printing host machine 2 of the seat body 1 is also connected with the middle upper cloth guide roller 25; in the process of conveying the cloth 41 (refer to fig. 1), firstly, the cloth 41 enters the seat body 1 from the guide of the lower left cloth guide roller 22, then the cloth 41 is sucked through the dust collection pipeline 3, then sequentially bypasses the lower right cloth guide roller 23 and the upper right cloth guide roller 24 to enter the digital printing host 2, the cloth 41 is printed through the digital printing host 2, after the cloth 41 is printed, the cloth 41 sequentially passes through the guide of the upper middle cloth guide roller 25 and the upper left cloth guide roller 21, is dried through the drying pipeline 6, and finally, the cloth is discharged out of the seat body 1.
The working principle of the drying dust collection device is as follows: according to the utility model, the centrifugal fan 5 and the electric heating wire 9 are electrified, the centrifugal fan 5 and the electric heating wire 9 start to work, the dust collection pipeline 3 starts to collect dust and absorb air, the air and dust are sucked into the dust collection pipeline 3 through the dust collection port 7, then are sucked into the dust collection box 4 along the dust collection pipeline 3, are filtered by the filter plate 8, and are retained on the filter plate 8, the air enters the centrifugal fan 5 through the guide pipe and is then discharged from the air outlet of the centrifugal fan 5 and enters the drying pipeline 6, and the air entering the drying pipeline 6 takes away part of heat of the electric heating wire 9 and is discharged through the air outlet 10, so that the printed cloth 41 is dried conveniently; in the drying and dust collection device, only one centrifugal fan 5 is adopted, so that the drying and dust collection device is energy-saving.

Claims (5)

1. The utility model provides an energy-conserving stoving dust extraction for digital calico printing machine, includes pedestal (1) and installs digital calico printing host computer (2) on pedestal (1), its characterized in that: the seat body (1) is connected with a drying and dust-absorbing device; the drying and dust collection device comprises a dust collection pipeline (3), a dust removal box (4), a centrifugal fan (5) and a drying pipeline (6); the dust collection pipeline (3), the dust removal box (4), the centrifugal fan (5) and the drying pipeline (6) are all positioned on the same side of the base body (1); a dust collection opening (7) is formed in the dust collection pipeline (3), and the upper end of the dust collection pipeline (3) is connected with the dust collection box (4); a filter plate (8) is inserted into the dust removal box (4); the upper end of the dust removal box (4) is connected with an air inlet of the centrifugal fan (5) through a pipeline; an air outlet of the centrifugal fan (5) is connected with a drying pipeline (6) through a pipeline; an electric heating wire (9) is connected in the drying pipeline (6); an air outlet hole (10) is formed in the drying pipeline (6); the outer side of the base body (1) is connected with a mounting plate frame (11); the centrifugal fan (5) and the dust removal box (4) are fixed in the mounting plate frame (11); the outer side of the mounting plate frame (11) is provided with a replacement opening (12) corresponding to the dust removal box (4).
2. An energy-saving drying and dust-absorbing device for a digital printing machine according to claim 1, wherein: the inside of the seat body (1) is connected with an upper left cloth guide roller (21), a lower left cloth guide roller (22), a lower right cloth guide roller (23) and an upper right cloth guide roller (24); the left upper cloth guide roller (21) and the left lower cloth guide roller (22) are both positioned at the left side of the digital printing host (2), and the left upper cloth guide roller (21) is positioned right above the left lower cloth guide roller (22); the right lower cloth guide roller (23) and the right upper cloth guide roller (24) are both positioned on the right side of the digital printing host (2), and the right lower cloth guide roller (23) is positioned under the right upper cloth guide roller (24); the left side of the digital printing host (2) of the base body (1) is also connected with a middle-upper cloth guide roller (25).
3. An energy-saving drying and dust-absorbing device for a digital printing machine according to claim 1, wherein: the replacement port (12) of the mounting plate frame (11) is connected with a cover plate (31) through bolts.
4. An energy-saving drying and dust-absorbing device for a digital printing machine according to claim 1, wherein: both sides of the dust removal box (4) are connected with mounting seats (32); the two mounting seats (32) are respectively connected with the mounting plate frame (11) through bolts.
5. An energy-saving drying and dust-absorbing device for a digital printing machine according to claim 1, wherein: the bottom of the centrifugal fan (5) is connected with a fixed seat (33); the fixing seat (33) is connected with the mounting plate frame (11) through bolts.
CN202321697068.0U 2023-06-30 2023-06-30 Energy-saving drying dust collection device for digital printing machine Active CN220280956U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321697068.0U CN220280956U (en) 2023-06-30 2023-06-30 Energy-saving drying dust collection device for digital printing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321697068.0U CN220280956U (en) 2023-06-30 2023-06-30 Energy-saving drying dust collection device for digital printing machine

Publications (1)

Publication Number Publication Date
CN220280956U true CN220280956U (en) 2024-01-02

Family

ID=89338487

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321697068.0U Active CN220280956U (en) 2023-06-30 2023-06-30 Energy-saving drying dust collection device for digital printing machine

Country Status (1)

Country Link
CN (1) CN220280956U (en)

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