The present invention relates to an eco-friendly activator-free water transfer printing film and its transfer printing method, in particular to a water transfer printing process that can be carried out without using any activator to avoid environmental pollutions and prevent jeopardizing human health or deforming the transfer printing pattern.
In water transfer printing technology, an ink coating is printed on a water-soluble resin film to form texts and patterns, and the water-soluble resin film is set on a water surface, and then an activator is provided for dissolving and hydrolyzing the water-soluble resin film into an isolated state, and a transfer object is pressed onto the water-soluble resin film in water in order to transfer the texts and patterns on a surface of the transfer object, and then the transfer object is washed by water and dried before attaching the texts and patterns onto the surface of the transfer object securely.
However, the activator used for the water transfer printing is an organic solvent which discharges volatile organic compounds (VOC) during the manufacture, transportation and use of water transfer printing films and may damage the environmental ecology and jeopardize the health of related personnel. Since conditions such as the spray speed, uniformity, concentration, and recipe of the activator have substantial impacts on the solubility of the printed texts and patterns on the water-soluble resin film, and the printing process may lead to deformations due to the factors such as the uniform solution, and reaction force produced during the spray coating, and all these will affect the precision, aesthetic look, and production yield of the water transfer printing.
In the present market, solvent based inks are used and printed on PVA films, and the PVA films will swell slowly and dissolve when exposed to water, but the ink layer is oil soluble and will not be swollen or dissolved by water, so that an activator (with an organic mixed solvent) must be added before the ink can be used. Therefore, the prior art has the following drawbacks: 1. The activator is mixed with water to cause water pollution and environmental pollution. 2. The activator (with the organic mixed solvent) is easily flammable and has fire safety issue. 3. Operators preparing and using the activator are required.
In view of the aforementioned drawbacks of the conventional water transfer printing, the inventor of the present invention based on years of experience in the related industry to conduct extensive research and experiment, and finally provided the present invention to overcome the drawbacks of the prior art.
Therefore, the primary objective of the present invention is to overcome the aforementioned drawbacks of the prior art by providing an eco-friendly activator-free water transfer printing film, comprising: a water-based modified acrylic copolymer resin layer, set on a superabsorbent film and mainly formed by a water-based modified acrylic copolymer resin, and the water-based modified acrylic copolymer resin comprising an acrylic copolymer emulsion, a polyvinyl alcohol (PVA) resin and a polyvinylpyrrolidone (PVP) resin, and the water-based modified acrylic copolymer resin layer being provided for crosslinking an end surface of the water-based modified acrylic copolymer resin layer after the other end of the superabsorbent film absorbs water and becomes softened; and an information body, set on the water-based modified acrylic copolymer resin layer.
In the eco-friendly activator-free water transfer printing film, the superabsorbent film is made of polyvinyl alcohol (PVA).
In the eco-friendly activator-free water transfer printing film, the water-based modified acrylic copolymer resin layer comprises an acrylic copolymer emulsion of 23 wt % to 45 wt %, a polyvinyl alcohol (PVA) resin of 15 wt % to 20 wt %, a polyvinylpyrrolidone (PVP) resin of 15 wt % to 20 wt %, polyethylene glycol of 1 wt % to 2 wt %, calcium carbonate of 5 wt % to 10 wt %, and water of 18 wt % to 40 wt %.
In the eco-friendly activator-free water transfer printing film, the water-based modified acrylic copolymer resin layer further comprises fatty alcohol polyoxyethylene ether of 0.2 wt % to 0.6 wt %, and N,N dimethylethanolamine of 0.2 wt % to 0.6 wt %, a water-based defoamer of 0.3 wt % to 0.6 wt %, and an aqueous dispersant of 0.3 wt % to 0.6 wt %.
In the eco-friendly activator-free water transfer printing film, the information body is a water-based ink and the water-based ink is a mixture of a water-based color cream and a water-based modified acrylic copolymer resin.
In the eco-friendly activator-free water transfer printing film, the water-based modified acrylic copolymer resin has a weight percentage falling within a range from 50 wt % to 65 wt % and the water-based colorant has a weight percentage falling within a range from 35 wt % to 50 wt %.
In the eco-friendly activator-free water transfer printing film, the information body is a laser coating with a metal material.
In summation, the present invention has the following advantages and effects:
To make it easier for our examiner to understand the objective of the invention, its structure, innovative features, and performance, we use a preferred embodiment together with the attached drawings for the detailed description of the invention.
With reference to
The manufacturing method of the present invention includes the following steps:
After the water transfer printing film of the present invention is manufactured, it is necessary to carry out the water transfer printing process as shown in
In summation of the description above, the present invention makes use of the material properties of the water-based modified acrylic copolymer resin layer 1 to crosslink the superabsorbent film 2 with the water-based modified acrylic copolymer resin layer 1 without the need of using any activator, and the synchronous softening allows the information body 3 to be transferred and printed on the object 4, so as to improve the transfer efficiency of the water transfer printing and omit the use of the activator to achieve the effects of preventing environmental pollutions, protecting the health of personnel. In addition, the whole superabsorbent film 2 is set on the water surface, so that the whole water-based modified acrylic copolymer resin layer 1 can be crosslinked with the superabsorbent film 2, and the patterns, texts or their combination of the information body 3 will not be deformed easily. Therefore, this invention can improve the precision, aesthetic appearance and production yield of the water transfer printing.
With reference to
In the third embodiment of the present invention, the information body 3 is a layer of water-based ink and a layer of laser coating capable of producing more diversified visual effects. Based on the first embodiment, the information body 3a configured to be the water-based ink is formed, and then another information body 3b configured to be a laser coating is set on the information body 3a, and the water transfer printing is the same as described in the previous embodiments. When the water transfer printing film of the present invention is set on water surface, the superabsorbent film 2 will absorb water, swell and crosslink with the water-based modified acrylic copolymer resin layer 1 to make it sticky, and water will be permeated continuously though the information body 3a and information body 3b, and then the object 4 is pressed into water as described above, so that the information body 3a and information body 3b can be transferred and printed onto the surface of the object 4, and the water-based modified acrylic copolymer resin layer 1 will form a protective layer. When the subsequent washing process is carried out, the superabsorbent film 2 will be dissolved and washed away by water. Subsequent processes such as baking and drying are performed to complete the transfer and printing of the information body 3a and information body 3b. In the manufacturing process of the third embodiment, the aforementioned direct method is adopted, but in other embodiments, an indirect method can also be adopted, wherein a laser pattern can be formed by engraving and hot pressing an oriented polypropylene (OPP) or polyethylene terephthalate (PET) film, so that the information body 3b (which is a laser coating) can be formed, and then the information body 3a being the water-based ink, and the water-based modified acrylic copolymer resin layer 1 are coated, and finally the water-based modified acrylic copolymer resin layer 1, and the information body 3a, 3b are detachably attached onto the superabsorbent film 2 by heating to form the water transfer printing film of the present invention, and the using method of the water transfer printing film is the same as described above, and thus will not be repeated.
Number | Date | Country | Kind |
---|---|---|---|
107128296 | Aug 2018 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
20060073342 | Ariga | Apr 2006 | A1 |
20070087171 | Hikasa | Apr 2007 | A1 |
20140170340 | Ito | Jun 2014 | A1 |
20150025179 | Landa | Jan 2015 | A1 |
20210060992 | Cai | Mar 2021 | A1 |
Number | Date | Country |
---|---|---|
1871138 | Nov 2006 | CN |
103260899 | Aug 2013 | CN |
104661830 | May 2015 | CN |
113183652 | Jul 2021 | CN |
2003145997 | May 2003 | JP |
2004018776 | Jan 2004 | JP |
2005132015 | May 2005 | JP |
2009214420 | Sep 2009 | JP |
2009226860 | Oct 2009 | JP |
2013000894 | Jan 2013 | JP |
2013067097 | Apr 2013 | JP |
5810798 | Nov 2015 | JP |
19990086128 | Dec 1999 | KR |
101664094 | Oct 2016 | KR |
200518948 | Jun 2005 | TW |
200842045 | Nov 2008 | TW |
Entry |
---|
Machine translation of JP 2004-018776 via EPO (Year: 2004). |
Machine translation of JP 2009-226860 via EPO (Year: 2009). |
Machine translation of JP 5810798 via EPO (Year: 2015). |
BASF, “Self-crosslinking acrylics: The missing link between sustainability and performance”, https://insights.basf.com/home/article/read/self-crosslinking-acrylics-the-missing-link-between-sustainability-and-performance (Year: 2018). |
Machine translation of JP 2003-145997 via EPO (Year: 2003). |
Machine translation of KR 101664094 via EPO (Year: 2016). |
Machine translation of JP 2005-132015 via EPO (Year: 2005). |
Machine translation of JP 2009-214420 via EPO (Year: 2009). |
Machine translation of KR 1999-0086128 via EPO (Year: 1999). |
Machine translation of CN 113183652 via EPO (Year: 2021). |
First Office Action of corresponding China patent application No. 201810923404.6 mailed on Feb. 1, 2021. |
Second Office Action of corresponding China patent application No. 201810923404.6 mailed on Jul. 20, 2021. |
Third Office Action of corresponding China patent application No. 201810923404.6 mailed on Oct. 13, 2021. |
First Office Action of corresponding Taiwan patent application No. 107128296 mailed on Feb. 13, 2019. |
Number | Date | Country | |
---|---|---|---|
20220032678 A1 | Feb 2022 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 16419202 | May 2019 | US |
Child | 17502306 | US |