CN210970347U - Printing ink circulation integrated configuration - Google Patents

Printing ink circulation integrated configuration Download PDF

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Publication number
CN210970347U
CN210970347U CN201921296631.7U CN201921296631U CN210970347U CN 210970347 U CN210970347 U CN 210970347U CN 201921296631 U CN201921296631 U CN 201921296631U CN 210970347 U CN210970347 U CN 210970347U
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China
Prior art keywords
roller
printing
transmission
ink circulation
driving roller
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Active
Application number
CN201921296631.7U
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Chinese (zh)
Inventor
邵新强
瞿之峰
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Jiangsu Daya New Packaging Material Co ltd
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Jiangsu Daya New Packaging Material Co ltd
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Priority to CN201921296631.7U priority Critical patent/CN210970347U/en
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Abstract

The utility model belongs to the technical field of the printing auxiliary assembly, a printing ink circulation integrated configuration is related to, include, silo, printing roller, the silo includes that silo workspace, silo feed back district, feed inlet and feed back mouth are constituteed, printing roller comprises driving roller, auxiliary area and printing district, add on the driving roller and establish drive turbine, drive turbine and driving roller combination are for whole, along with the circulation of the motion drive printing ink of driving roller. The utility model discloses an ink circulation integrated configuration is reformed transform and forms based on the autonomic research and development of current ink circulation combination, through reforming transform original printing roller, adds on the driving roller of traditional printing roller and establishes drive turbine, relies on the rotation of driving roller, need not additionally install the motor additional, can effectively accelerate colouring material circulation dynamics, guarantees that the colouring material flows in the silo fully, and the production of expecting, slow-witted material and reduction deposit appears dying, ensures product hue stability.

Description

Printing ink circulation integrated configuration
Technical Field
The utility model belongs to the technical field of the printing auxiliary assembly, in particular to printing ink circulation integrated configuration.
Background
The trough mode that adopts at present adopts is that the pump is followed the storage bucket and is taken out the feed chute workspace with printing ink, and the high feed chute feed back district that overflows again of printing ink beyond the feed chute workspace and encloses the fender, and the trough structure is seen in figure 1, figure 2.
The printing roller consists of a driving roller, an auxiliary area and a printing area, the intaglio printing process is that the printing roller is stuck with ink when rotating in a trough, the printing area is partially recessed below the layout, the non-printing area is the auxiliary area, the gloss is smooth, the ink scraper scrapes off the redundant ink in the printing area, then the paper transfers the ink in the printing area to the paper through the pressure of a rubber roller and the like, and the structure of the printing roller is shown in the attached figure 3.
The intaglio printing mode has the defects that 1, the phenomenon of uneven ink flow, dead material and even skinning solidification appear at the edge dead angle under many conditions; 2. the ink can overflow from the lowest part of the enclosure and flow out near the charging basket in many times, so that the circulation of the whole ink cannot be ensured; 3. the printing roller can bring a large amount of printing ink to the joint of the scraper in operation, so that materials on two sides of the printing roller can flow back to the joint, impurities and particles in the printing ink are easily brought up, the impurities, the particles and the like in the printing ink can be clamped between the scraper and the printing roller in the process, and the hardness degree of the impurities can form knife threads, lines, white blocks and the like.
The utility model aims at providing an printing ink circulation integrated configuration is reformed transform and forms based on the autonomic research and development of current printing ink circulation combination, through reforming transform original printing roller, adds on the both sides driving roller of traditional printing roller and establishes drive turbine, relies on the rotation of roller, need not additionally install the motor additional, can effectively accelerate colouring material circulation dynamics, guarantees that the colouring material flows fully in the silo, and the production of dead material, slow-witted material and reduction deposit does not appear, ensures product hue stability.
Disclosure of Invention
The utility model discloses the technical problem that will solve is: the utility model provides an ink circulation integrated configuration, it forms to develop based on the autonomic research and development of current ink circulation combination, through reforming transform original printing roller, adds on the driving roller of traditional printing roller and establishes drive turbine, relies on the rotation of roller, need not additionally install the motor additional, can effectively accelerate colouring material circulation dynamics, and it is abundant to guarantee that colouring material flows in the silo, and the production of dead material, slow-witted material and reduction deposit does not appear, ensures that product hue is stable.
The utility model discloses a printing ink circulation integrated configuration realizes through following technical scheme on prior art's basis: a printing ink circulation combination structure comprises a trough and a printing roller, wherein the trough comprises a trough working area, a trough return area, a feeding port and a return port, the printing roller comprises a driving roller, an auxiliary area and a printing area,
and a transmission turbine is additionally arranged on the transmission roller, the transmission turbine and the transmission roller are combined into a whole, and the circulation of the printing ink is driven along with the movement of the transmission roller.
Furthermore, the connection mode of the transmission turbine and the transmission roller is one of sleeving and welding.
Further, the turbine direction of the transmission turbine is arranged towards the roller.
Furthermore, the transmission turbines are symmetrically arranged on two sides of the transmission roller respectively in a group.
Further, the transmission turbine is of an integrated structure made of 304 stainless steel materials.
Further, the maximum outer diameter of the transmission turbine is smaller than the outer diameter of the plate roller.
The utility model discloses the beneficial effect who realizes is: the utility model provides an ink circulation integrated configuration, it forms to develop based on the autonomic research and development of current ink circulation combination, through reforming transform original printing roller, adds on the driving roller of traditional printing roller and establishes drive turbine, relies on the rotation of roller, need not additionally install the motor additional, can effectively accelerate colouring material circulation dynamics, and it is abundant to guarantee that colouring material flows in the silo, and the production of dead material, slow-witted material and reduction deposit does not appear, ensures that product hue is stable.
Drawings
Fig. 1 is a schematic diagram of the composition of a trough according to the prior art.
Fig. 2 is a schematic side view of the tank assembly according to the prior art.
Fig. 3 is a schematic composition of a printing roll according to the prior art.
Fig. 4 is a schematic diagram of the ink circulation combination structure of the present invention.
Wherein, the names of the components are: 01. a trough working area, 02, a trough returning area, 03, a feeding hole, 04, a returning hole, 05, a printing area, 06, an auxiliary area, 07, a driving roller, 08, a driving turbine, 09 and printing ink.
Detailed Description
The present invention will be described in detail with reference to the following examples so that those skilled in the art can better understand the present invention, but the present invention is not limited to the following examples.
Example 1
An ink circulation combination structure comprises a trough and a printing roller, wherein the trough comprises a trough working area 01, a trough feed-back area 02, a feed inlet 03 and a feed-back opening 04, the printing roller comprises a driving roller 07, an auxiliary area 06 and a printing area 05,
the driving roller 07 is additionally provided with a driving turbine 08, the driving turbine 08 and the driving roller 07 are combined into a whole, and the circulation of the printing ink 09 is driven along with the movement of the driving roller 07.
The transmission turbine 08 is connected with the transmission roller 07 in a sleeved mode.
The drive turbines 08 are arranged in a group on the left side of the drive roller 07.
Example 2
An ink circulation combination structure comprises a trough and a printing roller, wherein the trough comprises a trough working area 01, a trough feed-back area 02, a feed inlet 03 and a feed-back opening 04, the printing roller comprises a driving roller 07, an auxiliary area 06 and a printing area 05,
the driving roller 07 is additionally provided with a driving turbine 08, the driving turbine 08 and the driving roller 07 are combined into a whole, and the circulation of the printing ink 09 is driven along with the movement of the driving roller 07.
The connection mode of the transmission turbine 08 and the transmission roller 07 is welding.
The drive turbines 08 are arranged in a group on the right side of the drive roller 07.
Example 3
An ink circulation combination structure comprises a trough and a printing roller, wherein the trough comprises a trough working area 01, a trough feed-back area 02, a feed inlet 03 and a feed-back opening 04, the printing roller comprises a driving roller 07, an auxiliary area 06 and a printing area 05,
the driving roller 07 is additionally provided with a driving turbine 08, the driving turbine 08 and the driving roller 07 are combined into a whole, and the circulation of the printing ink 09 is driven along with the movement of the driving roller 07.
The turbine direction of the transmission turbine 08 is arranged towards the roller, and the transmission turbine 08 is connected with the transmission roller 07 in a sleeved mode.
The drive turbines 08 are symmetrically arranged in groups on both sides of the drive roller 07.
The transmission turbine is an integrated structure made of 304 stainless steel materials.
The maximum outer diameter of the transmission turbine is smaller than the outer diameter of the plate roller.
The above only do the preferred embodiment of the utility model discloses a not therefore restrict the utility model discloses a patent range, all utilize the utility model discloses equivalent structure or equivalent flow transform that the specification was done, or direct or indirect application is in other relevant technical field, all including on the same reason the utility model discloses a patent protection within range.

Claims (6)

1. An ink circulation integrated configuration which characterized in that: comprises a trough and a printing roller, wherein the trough comprises a trough working area (01), a trough return area (02), a feed inlet (03) and a return opening (04), the printing roller comprises a driving roller (07), an auxiliary area (06) and a printing area (05),
a transmission turbine (08) is additionally arranged on the transmission roller (07), the transmission turbine (08) and the transmission roller (07) are combined into a whole, and the ink (09) is driven to circulate along with the movement of the transmission roller (07).
2. The ink circulation assembly structure of claim 1, wherein: the connection mode of the transmission turbine (08) and the transmission roller (07) is one of sleeving connection and welding.
3. The ink circulation assembly structure of claim 2, wherein: the turbine direction of the transmission turbine (08) is arranged towards the roller.
4. The ink circulation assembly structure of claim 3, wherein: the transmission turbines (08) are symmetrically arranged in groups on two sides of the transmission roller (07).
5. The ink circulation assembly structure according to any one of claims 1 to 4, wherein: the transmission turbine (08) is an integrated structure made of 304 stainless steel materials.
6. The ink circulation assembly structure according to any one of claims 1 to 4, wherein: the maximum outer diameter of the transmission turbine (08) is smaller than the outer diameter of the plate roller.
CN201921296631.7U 2019-08-12 2019-08-12 Printing ink circulation integrated configuration Active CN210970347U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921296631.7U CN210970347U (en) 2019-08-12 2019-08-12 Printing ink circulation integrated configuration

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921296631.7U CN210970347U (en) 2019-08-12 2019-08-12 Printing ink circulation integrated configuration

Publications (1)

Publication Number Publication Date
CN210970347U true CN210970347U (en) 2020-07-10

Family

ID=71458802

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921296631.7U Active CN210970347U (en) 2019-08-12 2019-08-12 Printing ink circulation integrated configuration

Country Status (1)

Country Link
CN (1) CN210970347U (en)

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