CN205557180U - Inkjet thermal sublimation rendition body paper - Google Patents
Inkjet thermal sublimation rendition body paper Download PDFInfo
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- CN205557180U CN205557180U CN201620095019.3U CN201620095019U CN205557180U CN 205557180 U CN205557180 U CN 205557180U CN 201620095019 U CN201620095019 U CN 201620095019U CN 205557180 U CN205557180 U CN 205557180U
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- paper
- ink
- coating
- sublimation transfer
- dye sublimation
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Abstract
The utility model discloses an inkjet thermal sublimation rendition body paper comprises base paper layer and coating, and the coating is located the single face on base paper layer or two -sided, and the coating contains the network structure that vegetable fibre, chemical fiber or mineral fiber constitute, and the coating can reduce the humidity water elongation of paper.
Description
Technical field
This utility model belongs to pulp technology for making paper, is specifically related to a kind of ink-jet thermal dye sublimation transfer body paper.
Background technology
Ink-jet thermal dye sublimation transfer is a kind of fabric printing process not having sewage.Due to water-base ink spray printing on paper time paper swelling the heaving of fiber can be caused easily to put shower nozzle on the skin, the strict wet water percentage elongation controlling ink-jet thermal dye sublimation transfer paper could realize smooth printing effect.The wet water percentage elongation of body paper is required that harshness makes body paper production cost can not be in any more, becomes the bottleneck of ink-jet thermal dye sublimation transfer popularization and application, how to reduce wet water percentage elongation and papermaking cost is that a urgent need solves the technical problem that.
The method of the wet water percentage elongation reducing paper generally has selection low elongation paper pulp, adjusts beating degree and improve papermaking process condition.Such as Chinese patent CN102839561, it discloses a kind of low-shrinkage non-woven paper, long fibre wood pulp and chopped fiber wood pulp are mixed in proportion, through pulping, making beating, polyster fibre, aramid fiber, glass fibre and auxiliary agent are added the non-woven paper being mixed to get low humidity water percentage elongation in wood pulp.
The process of paper decreased as described above wet water percentage elongation, has following defects that cost of sizing agent complex process high, with slurry, complex operation, transformation cycle length and production cost are high.
Summary of the invention
The purpose of this utility model is to solve the problem such as cost height, complex process when prior art reduces paper wet water percentage elongation.
For realizing above-mentioned utility model purpose, this utility model provides a kind of ink-jet thermal dye sublimation transfer body paper, it is made up of base paper layer and coating, coating is positioned at the single or double of base paper layer, coating contains the network structure that Plant fiber, chemical fibre or mineral fibres are constituted, and coating can reduce the wet water percentage elongation of paper.
As the further improvement of this utility model one embodiment, coating is the network structure that paper pulp fiber is constituted.
As the further improvement of this utility model one embodiment, coating is the network structure that polyethylene terephthalate is constituted.
As the further improvement of this utility model one embodiment, coating is the network structure that glass fibre is constituted.
As the further improvement of this utility model one embodiment, Plant fiber, chemical fibre or mineral fibres adhere to base paper layer surface by adhesive.
As the further improvement of this utility model one embodiment, Plant fiber, chemical fibre or mineral fibres a length of 0.2-3 millimeter.
As the further improvement of this utility model one embodiment, coating is filled cancellated gap with granules of pigments, is formed planar structure.
As the further improvement of this utility model one embodiment, pigment is hydrophobic starch.
As the further improvement of this utility model one embodiment, pigment is the one in silicon dioxide, calcium carbonate, Pulvis Talci or Kaolin.
As the further improvement of this utility model one embodiment, base paper layer is glazed printing paper, wood-free paper or kraft paper.
Compared with prior art, the ink-jet thermal dye sublimation transfer body paper that this utility model provides, fiber is dispersed in coating and coats paper surface by stirring, fiber forms network structure, can improve the wet water percentage elongation of paper.
Accompanying drawing explanation
Fig. 1 is the ink-jet thermal dye sublimation transfer base sheet structure schematic diagram of double spread in this utility model one embodiment.
Detailed description of the invention
Below with reference to detailed description of the invention shown in the drawings, this utility model is described in detail.But these embodiments are not limiting as this utility model, structure, method or conversion functionally that those of ordinary skill in the art is made according to these embodiments are all contained in protection domain of the present utility model.
Fig. 1 illustrates this utility model ink-jet thermal dye sublimation transfer paper and includes base paper layer 2 and coating 1,3.Coating can also only coat the one side of base paper layer 2.Wherein, coating is by butt and solution composition, and solution is used for dissolving butt.Wherein, butt at least contains fiber and adhesive.
Fiber can be the combination of one or more in Plant fiber, chemical fibre, mineral fibres.Further, fibre length 0.2-3mm.
Fiber content is the 1%-50% of coating butt weight.Further, fiber content is the 1%-20% of coating butt weight.
Adhesive can be the combination of one or more in sodium carboxymethyl cellulose (CMC), modified starch, biotinylated emulsion, synthetic latex.
Coating can also contain pigment.Pigment can be the combination of one or more in inorganic pigment, organic pigment.
The most also can add auxiliary agent, such as dispersant, thickening agent, brightening agent etc., to improve the physical property of coating.
The preparation of ink-jet thermal dye sublimation transfer paint for papers comprises the following steps:
Preparing raw material, at least a part of which includes fiber and adhesive;
Fiber is uniformly dispersed in the water of 40-70 DEG C;
Add adhesive to be sufficiently mixed.
The ink-jet thermal dye sublimation transfer base sheet structure of Fig. 1, schematically shows this coating double spread and forms coating 1,3 after base paper layer 2.Specifically, base paper includes glazed printing paper, wood-free paper, kraft paper etc..When applying, it is possible to use coating machine carries out single or double coating, coating method can be on-line coater can also be paper-dope spreading.The paper being coated with enters hot air drier and dries, and obtains ink-jet application thermal dye sublimation transfer printing body paper.
This coating can be additionally used in making ink-jet thermal dye sublimation transfer paper.Ink-jet thermal dye sublimation transfer paper can be that resurfacing prepares on above-mentioned ink-jet thermal dye sublimation transfer body paper, and the difference of two coatings is that pigment is different with the selection of adhesive.Ink-jet thermal dye sublimation transfer paper can also be that coating prepares on art paper body paper or other body paper.
Exemplary embodiment given below:
Embodiment one
The present embodiment prepares ink-jet thermal dye sublimation transfer paper, comprises the following steps:
S1, prepare coating.The percentage by weight of each component of butt is: hydrophobic starch 45%, adhesive CMC 50%, paper pulp fiber 5%.Hydrophobic starch and paper pulp being added in room temperature water and be uniformly dispersed, is added to the water by sodium carboxymethyl cellulose afterwards, stirs and be warming up to 70 DEG C, continuing stirring and be allowed to be completely dissolved for 1 hour, the coating solids made is 20%.
S2, by coatings to 90g/m2Body paper on, coating weight butt is 10g/m2。
S3, coating paper, through drying and processing, obtain ink-jet thermal dye sublimation transfer paper.
After testing, the moisture 5% of the heat-transferring printing paper of coating, wet water percentage elongation is 1.5%.Contrasting the ink-jet thermal dye sublimation transfer paper wet water percentage elongation without fiber coating is 2.0%, and the thermal dye sublimation transfer printing paper wet water percentage elongation that this example prepares reduces by 25%.
Carrying out on ink-jet printer prepared ink-jet thermal dye sublimation transfer paper printing test, Paper Printing is smooth, the most wrinkling does not put shower nozzle on the skin, it is possible to meets and prints requirement.
Embodiment two
The present embodiment prepares ink-jet thermal dye sublimation transfer paper, comprises the following steps:
S1, prepare coating.The percentage by weight of each component of butt is: SiO2 9%, adhesive CMC 90%, polyethylene terephthalate (PET) fiber 1%.By SiO2Adding in normal-temperature water with PET and be uniformly dispersed, being added to the water by CMC afterwards, stir and be warming up to 70 DEG C, continuing stirring and be allowed to be completely dissolved for 1 hour, the coating solids made is 10%.
S2, by coatings to 93g/m2Body paper on, coating weight butt is 7g/m2。
S3, coating paper, through drying and processing, obtain ink-jet thermal dye sublimation transfer paper.
After testing, the moisture 5% of coated heat transfer base paper, wet water percentage elongation is 1.6%.Matched group is 2.0% without the body paper wet water percentage elongation of fiber coating, and the thermal dye sublimation transfer printing paper wet water percentage elongation that this example prepares reduces by 20%.
Embodiment three
The present embodiment prepares ink-jet thermal dye sublimation transfer paper, comprises the following steps:
S1, prepare coating.The percentage by weight of each component of butt is: adhesive CMC 80%, paper pulp fiber 10%, PET 10%.PET and paper pulp being added in normal-temperature water and be uniformly dispersed, is added to the water by CMC afterwards, stirs and be warming up to 70 DEG C, continuing stirring and be allowed to be completely dissolved for 1 hour, the coating solids made is 10%.
S2, by coatings to 93g/m2Body paper on, coating weight butt is 7g/m2。
S3, coating paper, through drying and processing, obtain ink-jet thermal dye sublimation transfer paper.
After testing, the moisture 5% of coated heat sublimation transfer paper, wet water percentage elongation is 1.2%.Matched group is 2.0% without the body paper wet water percentage elongation of fiber coating, and the thermal dye sublimation transfer printing paper wet water percentage elongation that this example prepares reduces by 40%.
Embodiment four
The present embodiment prepares ink-jet thermal dye sublimation transfer body paper, comprises the following steps:
S1, prepare coating.The percentage by weight of each component of butt is: grinding calcium carbonate 80%, adhesive styrene-butadiene latex 10%, PET 9%, auxiliary agent 1%.Auxiliary agent includes dispersant and brightening agent.Grinding calcium carbonate and PET being added to the water and be uniformly dispersed, keeping temperature 40 DEG C, be added to the water by styrene-butadiene latex afterwards, be uniformly dispersed and add auxiliary agent, continuing stirring and be allowed to be thoroughly mixed for 1 hour, the coating solids made is 60%.
S2, by coatings to 60g/m2Glazed printing paper base paper on, coating weight butt one side is 16g/m2Two-sided is 32 grams.
S3, coating paper, through drying and processing, obtain ink-jet thermal dye sublimation transfer body paper.
After testing, the moisture 5% of the coated heat transfer base paper prepared, wet water percentage elongation is 1.5%.Matched group is 2.5% without the body paper wet water percentage elongation of fiber coating, and the thermal transfer body paper wet water percentage elongation that this example prepares reduces by 40%.
Embodiment five
The present embodiment prepares ink-jet thermal dye sublimation transfer body paper, comprises the following steps:
S1, prepare coating.The percentage by weight of each component of butt is: Kaolin 65%, adhesive styrene-butadiene latex 14%, glass fibre 10%, paper pulp fiber 10%, auxiliary agent 1%.Kaolin and glass fibre, paper pulp fiber being added to the water and is uniformly dispersed, keeps temperature 40 DEG C, be added to the water by styrene-butadiene latex afterwards, be uniformly dispersed and add auxiliary agent, continuing stirring and be allowed to be thoroughly mixed for 1 hour, the coating solids made is 60%.
S2, by coatings to 60g/m2Art paper body paper base paper on, coating weight butt one side is 16g/m2。
S3, coating paper, through drying and processing, obtain ink-jet thermal dye sublimation transfer body paper.
After testing, the moisture 5% of coated heat transfer base paper, wet water percentage elongation is 1.1%.Matched group is 2.5% without the body paper wet water percentage elongation of fiber coating, and the thermal transfer body paper wet water percentage elongation that this example prepares reduces by 56%.
Embodiment six
The present embodiment prepares ink-jet thermal dye sublimation transfer body paper, comprises the following steps:
S1, prepare coating.The percentage by weight of each component of butt is: grinding calcium carbonate 85%, adhesive styrene-butadiene latex 13%, PET 1%, auxiliary agent 1%.Ready grinding calcium carbonate and PET being added to the water and be uniformly dispersed, keeping temperature 40 DEG C, be added to the water by styrene-butadiene latex afterwards, be uniformly dispersed and add auxiliary agent, continuing stirring and be allowed to be thoroughly mixed for 1 hour, the coating solids made is 60%.
S2, by coatings to 60g/m2Wood-free paper base paper on, coating weight butt one side is 16g/m2, two-sided is 32 g/m2。
S3, coating paper, through drying and processing, obtain ink-jet thermal dye sublimation transfer body paper.
After testing, the moisture 5% of the coated heat transfer base paper prepared, wet water percentage elongation is 1.6%.Matched group is 2.5% without the body paper wet water percentage elongation of fiber coating, and the thermal transfer body paper wet water percentage elongation that this example prepares reduces by 36%.
Embodiment seven
The present embodiment prepares ink-jet thermal dye sublimation transfer body paper, comprises the following steps:
S1, prepare coating.The percentage by weight of each component of butt is: Pulvis Talci 65%, adhesive Oxytarch 14%, paper pulp fiber 20%, auxiliary agent 1%.Ready Pulvis Talci and paper pulp fiber being added to the water and be uniformly dispersed, keeping temperature 40 DEG C, be added to the water by Oxytarch afterwards, be uniformly dispersed and add auxiliary agent, continuing stirring and be allowed to be thoroughly mixed for 1 hour, the coating solids made is 60%.
S2, by coatings to 60g/m2Wood-free paper base paper on, coating weight butt one side is 16g/m2, two-sided is 32 g/m2。
S3, coating paper, through drying and processing, obtain ink-jet thermal dye sublimation transfer body paper.
After testing, the moisture 5% of the coated heat transfer base paper prepared, wet water percentage elongation is 1.2%.Matched group is 2.5% without the body paper wet water percentage elongation of fiber coating, and the thermal transfer body paper wet water percentage elongation that this example prepares reduces by 52%.
Embodiment eight
The present embodiment prepares ink-jet thermal dye sublimation transfer body paper, comprises the following steps:
S1, prepare coating.The percentage by weight of each component of butt is: calcium carbonate 35%, adhesive starch nano biology latex 14%, paper pulp fiber 50%, auxiliary agent 1%.Ready calcium carbonate and paper pulp fiber being added to the water and be uniformly dispersed, keeping temperature 40 DEG C, be added to the water by starch nano biology latex afterwards, be uniformly dispersed and add auxiliary agent, continuing stirring and be allowed to be thoroughly mixed for 1 hour, the coating solids made is 60%.
S2, by coatings to 60g/m2Wood-free paper base paper on, coating weight butt one side is 16g/m2, two-sided is 32 g/m2。
S3, coating paper, through drying and processing, obtain ink-jet thermal dye sublimation transfer body paper.
After testing, the moisture 5% of the coated heat transfer base paper prepared, wet water percentage elongation is 1.1%.Matched group is 2.5% without the body paper wet water percentage elongation of fiber coating, and the thermal transfer body paper wet water percentage elongation that this example prepares reduces by 56%.
Fiber is dispersed in coating by this utility model by stirring, then by coating machine paint paper surface.In coating, being cross-linked with each other between fiber and fiber, form network structure, pigment, hydrophobic starch etc. fill cancellated gap, form the coating structure of plane.Coating sticks to the surface of paper, can effectively reduce the wet water percentage elongation of paper.
It is to be understood that, although this specification is been described by according to embodiment, but the most each embodiment only comprises an independent technical scheme, this narrating mode of description is only for clarity sake, those skilled in the art should be using description as an entirety, technical scheme in each embodiment can also form, through appropriately combined, other embodiments that it will be appreciated by those skilled in the art that.
The a series of detailed description of those listed above is only for illustrating of feasibility embodiment of the present utility model; they are also not used to limit protection domain of the present utility model, within all equivalent implementations made without departing from this utility model skill spirit or change should be included in protection domain of the present utility model.
Claims (10)
1. an ink-jet thermal dye sublimation transfer body paper, it is characterized in that, being made up of base paper layer and coating, described coating is positioned at the single or double of base paper layer, described coating contains the network structure that Plant fiber, chemical fibre or mineral fibres are constituted, and described coating can reduce the wet water percentage elongation of paper.
Ink-jet thermal dye sublimation transfer body paper the most according to claim 1, it is characterised in that described coating is the network structure that paper pulp fiber is constituted.
Ink-jet thermal dye sublimation transfer body paper the most according to claim 1, it is characterised in that described coating is the network structure that polyethylene terephthalate is constituted.
Ink-jet thermal dye sublimation transfer body paper the most according to claim 1, it is characterised in that described coating is the network structure that glass fibre is constituted.
Ink-jet thermal dye sublimation transfer body paper the most according to claim 1, it is characterised in that described Plant fiber, chemical fibre or mineral fibres adhere to base paper layer surface by adhesive.
Ink-jet thermal dye sublimation transfer body paper the most according to claim 1, it is characterised in that described Plant fiber, chemical fibre or mineral fibres a length of 0.2-3 millimeter.
Ink-jet thermal dye sublimation transfer body paper the most according to claim 1, it is characterised in that described coating fills cancellated gap with granules of pigments, forms planar structure.
Ink-jet thermal dye sublimation transfer body paper the most according to claim 7, it is characterised in that described pigment is hydrophobic starch.
Ink-jet thermal dye sublimation transfer body paper the most according to claim 7, it is characterised in that described pigment is the one in silicon dioxide, calcium carbonate, Pulvis Talci or Kaolin.
Ink-jet thermal dye sublimation transfer body paper the most according to claim 1, it is characterised in that described base paper layer is glazed printing paper, wood-free paper or kraft paper.
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CN201620095019.3U CN205557180U (en) | 2016-01-29 | 2016-01-29 | Inkjet thermal sublimation rendition body paper |
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CN201620095019.3U CN205557180U (en) | 2016-01-29 | 2016-01-29 | Inkjet thermal sublimation rendition body paper |
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Granted publication date: 20160907 Termination date: 20210129 |
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