CN205929843U - Novel digital printing machine - Google Patents
Novel digital printing machine Download PDFInfo
- Publication number
- CN205929843U CN205929843U CN201620655594.4U CN201620655594U CN205929843U CN 205929843 U CN205929843 U CN 205929843U CN 201620655594 U CN201620655594 U CN 201620655594U CN 205929843 U CN205929843 U CN 205929843U
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- silica gel
- digital
- drying chamber
- printer body
- hot plate
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Abstract
The utility model discloses a novel digital printing machine, including the body digital printer body, digital printer body's exit is connected with the stoving cavity, the stoving cavity has entry, export and supplies the bottom plate of the placing object body, the entry of stoving cavity links up digital printer body's export, the export of stoving cavity is the object delivery outlet, in the stoving cavity except the silica gel hot plate has all been laid to bottom plate other outer chamber walls. Compared with the prior art, more change the heating pipe in the digital printing machine commonly used into the silica gel hot plate, because silica gel hot plate silica gel has the characteristic fast, that the temperature is even and efficiency of heat transfer is high that intensifies, the messenger applies ink to paper the position can fast drying to under the same condition of stoving effect, the electric energy that the silica gel hot plate consumed can lack than the electric energy that the heating pipe consumed, only for 18 of the electric energy of heating pipe consumption, and unusual energy -conservation.
Description
Technical field
This utility model is related to digital printing forming technique field, more specifically to a kind of novel digital printer.
Background technology
Now, the digital-code printer commonly used on the market can print any material and irregular soft, hard object, such as metal,
Cloth, PVC, leather etc., because digital-code printer is printed by ink injection mode and dyes, therefore without directly contact
Object can complete, and printed matter Products can be made will not to deform because of heat and pressure.Meanwhile, digital-code printer is to utilize
Computer, to export printing type, therefore need not do any preparation in early stage and can print, and print convenient, fast.
But, because digital-code printer is printed using ink-jetting style, the inking position of therefore printed matter Products needs to dry in the air
Do or dry, that is, need to arrange drying unit on digital-code printer, in prior art, drying unit is using the number being arranged side by side
Root heating tube, is dried to the inking position of printed matter Products by the heat transfer of heating tube, is had using this kind of drying mode
The higher advantage of quick heating, heat transference efficiency, but there is also the shortcoming that thermal losses is many, power consumption is big.
Utility model content
The purpose of this utility model is to provide the novel digital printer that a kind of power consumption is little, heat transference efficiency is high.
For reaching above-mentioned purpose, solution of the present utility model is:
A kind of novel digital printer, including digital-code printer body, the exit of described digital-code printer body connects
There is drying chamber, described drying chamber has entrance, outlet and the base plate for placing object, the entrance linking of described drying chamber
The outlet of described digital-code printer body, the outlet of described drying chamber is object delivery outlet, and described drying within the chamber is except institute
Other cavity wall stated outside base plate are all equipped with silica gel heating plate.
Described drying chamber is square chamber, and described drying chamber has described entrance, described outlet, described base plate, top
Plate, left side wall and right side wall, described silica gel heating plate is layed on described base plate, described left side wall and described right side wall respectively.
Using said structure, this utility model has the advantages that:By the heating tube in conventional digital-code printer
It is replaced with silica gel heating plate, because silica gel heating plate silica gel has the high characteristic of all even heat transference efficiency of quick heating, temperature, make
Inking position can flash baking, and in the case of drying effect identical, the electric energy that silica gel heating plate consumes can be than heating
The electric energy that pipe consumes is few, and the 1/8 of the electric energy that only heating tube consumes, unusual energy-conservation.Simultaneously as the volume of silica gel heating plate
Less than the volume of heating tube, therefore in the within the chamber of same size, the area shared by silica gel heating plate is much smaller than shared by heating tube
Volume.
Brief description
Fig. 1 is the structural representation of silica gel heating plate in this utility model.
Fig. 2 is structural representation of the present utility model.
In figure,
1- digital-code printer body 2- dries chamber
3- silica gel heating plate
Specific embodiment
In order to the technical solution of the utility model is explained further, this utility model is entered below by specific embodiment
Row elaborates.
A kind of this utility model novel digital printer, is changing of making of drying unit to common digital-code printer
Enter, as shown in Figure 1-2, including digital-code printer body 1, the exit of this digital-code printer body 1 is connected with drying printed matter
The drying chamber 2 of body, in the present embodiment, drying chamber 2 is square drying cavity, and this dries chamber 2 and has entrance, outlet, supplies to put
The base plate of glove body, top board, left side wall and right side wall, and this entrance drying chamber 2 is connected going out of digital-code printer body 1
Mouthful, the outlet drying chamber 2 is the delivery outlet after printing objects drying, dries top board, left side wall and the right side wall of chamber 2 simultaneously
All it is equipped with silica gel heating plate 3.In the present embodiment, dry the chamber that chamber 2 can be configured as other shapes, a demanding party just prints
Object carries out drying.
The printing step of traditional digital-code printer is:The position needing impression in object first applies trowel coating;Then right
The position needing impression carries out inking;After the completion of last object inking, object from traditional digital-code printer exit out, this
The ink at Shi Yintu position is in not dry state, and object is directly entered drying within the chamber, dries chamber and starts to entrance drying cavity
The impression position being in not dry state in the range of room is dried.When drying link, traditional drying mode is in drying cavity
Room arranges several heating tubes, rises, by the temperature that the heat transfer of heating tube makes drying within the chamber, the ink realized on impression position
Water is in drying regime.
In this utility model, specific works step is:Object needs after the completion of the position inking of impression from digital-code printer
The exit of body 1 out and enters in drying cavity room 2, due to drying silica gel heating plate 3 quick heating in chamber 2, heat transfer
The characteristic of efficiency high is so that silica gel heating plate 3 can be rapidly heated and make the cavity temperature of drying chamber 2 quick by heat transfer
Rise, the impression position of object is directly dried.
Compared with the heating tube above said, the thermal losses of silica gel heating plate 3 is less, and the electric energy of consuming is also less, simultaneously
In the case of drying effect identical, the electric energy that silica gel heating plate 3 consumes is lower than the electric energy that heating tube consumes, only heating tube
1/8, than heating tube more energy-conservation.Simultaneously as the volume of silica gel heating plate 3 is less than the volume of heating tube, therefore same big
Little within the chamber, the area shared by silica gel heating plate 3 is much smaller than the volume shared by heating tube.
The foregoing is only the preferred embodiment of the present embodiment, all equalizations done with this utility model right
Change and modification, all should belong to right of the present utility model.
Claims (2)
1. a kind of novel digital printer, including digital-code printer body, the exit of described digital-code printer body is connected with
Dry chamber, described drying chamber has entrance, outlet and the base plate for placing object, the entrance linking institute of described drying chamber
State the outlet of digital-code printer body, the outlet of described drying chamber be object delivery outlet it is characterised in that:Described drying chamber
Interior other cavity wall in addition to described base plate are all equipped with silica gel heating plate.
2. a kind of novel digital printer according to claim 1 it is characterised in that:Described drying chamber is rectangular cavity
Room, described drying chamber has described entrance, described outlet, described base plate, top board, left side wall and right side wall, and described silica gel adds
Hot plate is layed on described base plate, described left side wall and described right side wall respectively.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620655594.4U CN205929843U (en) | 2016-06-28 | 2016-06-28 | Novel digital printing machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620655594.4U CN205929843U (en) | 2016-06-28 | 2016-06-28 | Novel digital printing machine |
Publications (1)
Publication Number | Publication Date |
---|---|
CN205929843U true CN205929843U (en) | 2017-02-08 |
Family
ID=57930673
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201620655594.4U Active CN205929843U (en) | 2016-06-28 | 2016-06-28 | Novel digital printing machine |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN205929843U (en) |
-
2016
- 2016-06-28 CN CN201620655594.4U patent/CN205929843U/en active Active
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant |