CN203937359U - The digital cloth of quick-dry type thermal dye sublimation transfer printing - Google Patents

The digital cloth of quick-dry type thermal dye sublimation transfer printing Download PDF

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Publication number
CN203937359U
CN203937359U CN201420299814.5U CN201420299814U CN203937359U CN 203937359 U CN203937359 U CN 203937359U CN 201420299814 U CN201420299814 U CN 201420299814U CN 203937359 U CN203937359 U CN 203937359U
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CN
China
Prior art keywords
layer
cloth
digital
ink
transfer printing
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Expired - Fee Related
Application number
CN201420299814.5U
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Chinese (zh)
Inventor
吕德水
朱金金
陈志春
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HANGZHOU HUADA HAITIAN TECHNOLOGY Co Ltd
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HANGZHOU HUADA HAITIAN TECHNOLOGY Co Ltd
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Priority to CN201420299814.5U priority Critical patent/CN203937359U/en
Application granted granted Critical
Publication of CN203937359U publication Critical patent/CN203937359U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to thermal transfer paper technology field, the digital cloth of a kind of quick-dry type thermal dye sublimation transfer printing is disclosed, comprise digital layer of cloth (1) and coating, coating is coated on digital layer of cloth (1) surface, coating is ink-absorbed coated layer (3), the upper surface of ink-absorbed coated layer (3) is provided with antiseized separation layer (4), between digital cloth (1) and ink-absorbed coated layer (3), be also provided with except water layer (2), except water layer (2) comprises hole, space (21).The digital layer of cloth that the utility model adopts has scalable intensity, and the digital cloth of quick-dry type thermal dye sublimation transfer printing made from digital layer of cloth can be reused, and has not only saved production cost, and has improved production efficiency.The utility model is except the hole, space being provided with in water layer, absorb fast solvent and moisture in distillation ink, accelerate rate of drying, raising printed matter manufacturing speed and the yield rate of print procedure, thereby reached the effect that shortens drying time, improves end product quality, be applicable to produce in enormous quantities.

Description

The digital cloth of quick-dry type thermal dye sublimation transfer printing
Technical field
The utility model relates to thermal transfer paper technology field, has related in particular to the digital cloth of quick-dry type thermal dye sublimation transfer printing.
Background technology
Printing and dyeing are general names of the processing modes such as dyeing, stamp, rear arrangement, wash water, and China's printing and dyeing have material impact to global apparel industry, but also produce waste water and the environmental problem of flood tide.Along with Green Chemistry and the arriving in personality digital epoch, hot transfer technique is fast-developing.Hot transfer printing is to use hot transfer apparatus that the pattern on heat-transferring printing paper and image process are heated to 180 DEG C-230 DEG C, shifts and is printed on technology type in different material medium.
But in prior art, the recycling rate of waterused of hot transfer printing digital template is lower, has not only increased production cost, and more waste the time when heat exchange transfer printing digital template.In addition, in prior art, also have that rate of drying is slow, the production cycle is long, production cost is high, the good shortcoming such as meeting the market requirement.
Summary of the invention
The utility model, for shortcoming of the prior art, provides a kind of quick-dry type thermal dye sublimation transfer printing digital cloth.
In order to solve the problems of the technologies described above, the utility model is solved by following technical proposals:
The digital cloth of quick-dry type thermal dye sublimation transfer printing, comprises digital layer of cloth and coating, and coating is coated on digital layer of cloth surface, coating is ink-absorbed coated layer, the upper surface of ink-absorbed coated layer is provided with antiseized separation layer, is also provided with except water layer, except water layer comprises hole, space between digital cloth and ink-absorbed coated layer.
The digital layer of cloth that the utility model is provided with, has scalable intensity.In thermal dye sublimation transfer printing process, the digital cloth of quick-dry type thermal dye sublimation transfer printing made from digital layer of cloth can be reused, and has not only saved production cost, and has saved and changed the time of transfer printing digital paper, thereby improved production efficiency.After ink-absorbed coated layer absorbs ink, except the hole, space in water layer, absorb the moisture in ink layer ink, accelerate to absorb the dry speed of the digital cloth of quick-dry type thermal dye sublimation transfer printing after ink; The ink of simultaneously removing portion of water also can rapid draing after being transferred on printed matter.
As preferably, hole, space is spherical voids hole.Find through research, when hole, space is spherical voids hole, the effect that absorbs moisture is comparatively desirable, can make rapid ink drying.
As preferably, the diameter in hole, space is 0.3~2 micron.When the diameter in hole, space is 0.3~2 micron, because capillarity effect is ideal, ink can rapid draing.
As preferably, hole, space is polyhedron.When hole, space is polyhedron, the effect that absorbs moisture is also comparatively desirable, can make rapid ink drying.Distance during for regular hexahedron between the corresponding sides of bottom surface is 0.3~2 micron.
As preferably, the thickness of ink-absorbed coated layer is 0.01~1.5 millimeter.Find through research, when the thickness of ink-absorbed coated layer is 0.01~1.5 millimeter, under cost-saving prerequisite, ink-absorbed coated layer can maximum absorption ink layer.
As preferably, ink-absorbed coated layer comprises lamella unit.Ink-absorbed coated layer comprises lamella unit, and lamella unit can be sufficient in the time of blotting, blotting rapidly; Lamella unit is in thermal dye sublimation transfer printing process, can ensure that ink is transferred on material fully, make that color perfectly reduces, color saturated bright-coloured, image detail is clearly demarcated, transfer printing is satisfactory for result, save ink, thereby improve production efficiency, be applicable to industrialized mass, there is application prospect very widely.Wherein, lamella unit is lamella macromolecular compound.
As preferably, the thickness of lamella unit is 0.3 nanometer~5 micron.
As preferably, antiseized separation layer is polymer composite layer.
As preferably, 0.015 millimeter of the thickness G reatT.GreaT.GT of absciss layer.
The utility model, owing to having adopted above technical scheme, has significant technique effect: the digital layer of cloth that the utility model is provided with, has scalable intensity.In thermal dye sublimation transfer printing process, the digital cloth of quick-dry type thermal dye sublimation transfer printing made from digital layer of cloth can be reused, and has not only saved production cost, and has saved and changed the time of transfer printing digital paper, thereby improved production efficiency.The utility model is except the hole, space being provided with in water layer, absorb fast solvent and moisture in distillation ink, accelerate rate of drying, raising printed matter manufacturing speed and the yield rate of print procedure, thereby reached the effect that shortens drying time, improves end product quality, be applicable to produce in enormous quantities.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model.
Detailed description of the invention
Below in conjunction with accompanying drawing and embodiment, the utility model is described in further detail.
Embodiment 1
The digital cloth of quick-dry type thermal dye sublimation transfer printing, as shown in Figure 1, comprise digital layer of cloth 1 and coating, coating is coated on digital layer of cloth 1 surface, coating is ink-absorbed coated layer 3, the upper surface of ink-absorbed coated layer 3 is provided with antiseized separation layer 4, is also provided with except water layer 2, except water layer 2 comprises hole, space 21 between digital cloth 1 and ink-absorbed coated layer 3.
The thickness of ink-absorbed coated layer 3 is 0.01~1.5 millimeter.Antiseized separation layer 4 is polymer composite layer.0.015 millimeter of the thickness G reatT.GreaT.GT of absciss layer 4.
Embodiment 2
The digital cloth of quick-dry type thermal dye sublimation transfer printing, as shown in Figure 1, comprise digital layer of cloth 1 and coating, coating is coated on digital layer of cloth 1 surface, coating is ink-absorbed coated layer 3, and the upper surface of ink-absorbed coated layer 3 is provided with antiseized separation layer 4, between digital cloth 1 and ink-absorbed coated layer 3, is also provided with except water layer 2, except water layer 2 comprises hole, space 21, hole, space 21 is spherical voids hole.
The thickness of ink-absorbed coated layer 3 is 0.01~1.5 millimeter, and ink-absorbed coated layer 3 comprises lamella unit 31.Antiseized separation layer 4 is polymer composite layer.0.015 millimeter of the thickness G reatT.GreaT.GT of absciss layer 4.
Embodiment 3
The digital cloth of quick-dry type thermal dye sublimation transfer printing, as shown in Figure 1, comprise digital layer of cloth 1 and coating, coating is coated on digital layer of cloth 1 surface, and coating is ink-absorbed coated layer 3, and the upper surface of ink-absorbed coated layer 3 is provided with antiseized separation layer 4, between digital cloth 1 and ink-absorbed coated layer 3, be also provided with except water layer 2, except water layer 2 comprises hole, space 21, hole, space 21 is spherical voids hole, and the diameter in hole, space 21 is 0.3~2 micron.
The thickness of ink-absorbed coated layer 3 is 0.01~1.5 millimeter.Ink-absorbed coated layer 3 comprises lamella unit 31, and the thickness of lamella unit 31 is 0.3 nanometer~5 micron.Antiseized separation layer 4 is polymer composite layer.0.015 millimeter of the thickness G reatT.GreaT.GT of absciss layer 4.
In a word, the foregoing is only preferred embodiment of the present utility model, all equalizations of doing according to the utility model claim change and modify, and all should belong to the covering scope of the utility model patent.

Claims (9)

1. the digital cloth of quick-dry type thermal dye sublimation transfer printing, it is characterized in that: comprise digital layer of cloth (1) and coating, coating is coated on digital layer of cloth (1) surface, coating is ink-absorbed coated layer (3), the upper surface of ink-absorbed coated layer (3) is provided with antiseized separation layer (4), between digital cloth (1) and ink-absorbed coated layer (3), be also provided with except water layer (2), except water layer (2) comprises hole, space (21).
2. the digital cloth of quick-dry type thermal dye sublimation transfer printing according to claim 1, is characterized in that: hole, space (21) are spherical voids hole.
3. the digital cloth of quick-dry type thermal dye sublimation transfer printing according to claim 2, is characterized in that: the diameter of hole, space (21) is 0.3~2 micron.
4. the digital cloth of quick-dry type thermal dye sublimation transfer printing according to claim 1, is characterized in that: hole, space (21) are polyhedron.
5. the digital cloth of quick-dry type thermal dye sublimation transfer printing according to claim 1, is characterized in that: the thickness of ink-absorbed coated layer (3) is 0.01~1.5 millimeter.
6. the digital cloth of quick-dry type thermal dye sublimation transfer printing according to claim 1, is characterized in that: ink-absorbed coated layer (3) comprises lamella unit (31).
7. the digital cloth of quick-dry type thermal dye sublimation transfer printing according to claim 6, is characterized in that: the thickness of lamella unit (31) is 0.3 nanometer~5 micron.
8. the digital cloth of quick-dry type thermal dye sublimation transfer printing according to claim 1, is characterized in that: antiseized separation layer (4) is polymer composite layer.
9. the digital cloth of quick-dry type thermal dye sublimation transfer printing according to claim 1, is characterized in that: 0.015 millimeter of the thickness G reatT.GreaT.GT of antiseized separation layer (4).
CN201420299814.5U 2014-06-06 2014-06-06 The digital cloth of quick-dry type thermal dye sublimation transfer printing Expired - Fee Related CN203937359U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420299814.5U CN203937359U (en) 2014-06-06 2014-06-06 The digital cloth of quick-dry type thermal dye sublimation transfer printing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420299814.5U CN203937359U (en) 2014-06-06 2014-06-06 The digital cloth of quick-dry type thermal dye sublimation transfer printing

Publications (1)

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CN203937359U true CN203937359U (en) 2014-11-12

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104553432A (en) * 2014-12-30 2015-04-29 杭州华大海天科技有限公司 Self-adhesive quick-drying thermal sublimation transfer printing digital paper
CN104553431B (en) * 2014-12-30 2019-03-12 杭州华大海天科技有限公司 Self-adhesive quick-drying thermal sublimation transfer printing digital cloth

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104553432A (en) * 2014-12-30 2015-04-29 杭州华大海天科技有限公司 Self-adhesive quick-drying thermal sublimation transfer printing digital paper
CN104553431B (en) * 2014-12-30 2019-03-12 杭州华大海天科技有限公司 Self-adhesive quick-drying thermal sublimation transfer printing digital cloth

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20141112

Termination date: 20160606

CF01 Termination of patent right due to non-payment of annual fee