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公开(公告)号:US11549028B2
公开(公告)日:2023-01-10
申请号:US16957487
申请日:2018-12-14
Applicant: KAO CORPORATION
Inventor: Yuta Matsumoto , Azusa Kuroda , Kazuki Ishida
IPC: C09D11/322 , B41J2/01 , C09D11/102 , C09D11/107 , B41J2/21
Abstract: The present invention relates to an ink-jet printing method of overprinting a first ink and a second ink on a low-liquid absorbing printing medium, in which the first ink and the second ink are respectively in the form of a water-based ink containing a colorant (A), a polymer (B), an organic solvent (C) and water, and satisfy the following formulae (1) and (2), said ink-jet printing method including the steps of forming characters or images using at least one ink as the first ink, and then forming a background image using the second ink such that the background image is superimposed on at least a part of the characters or images formed by the first ink: [T2−T1]
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公开(公告)号:US10829651B2
公开(公告)日:2020-11-10
申请号:US15756341
申请日:2016-08-03
Applicant: THINK LABORATORY CO., LTD. , KAO CORPORATION
Inventor: Tatsuo Shigeta , Ryuma Mizushima , Yuta Matsumoto , Yasufumi Ueda
IPC: C09D11/03 , C09D11/033 , C09D11/023 , C09D11/037
Abstract: Provided is an aqueous gravure ink that is environmentally friendly, allows high-resolution printing by virtue of its excellent highlight suitability, and is excellent in drying property. The aqueous gravure ink comprises: a pigment; a polymer; a water-soluble organic solvent; a surfactant; and water, in which the water-soluble organic solvent has a boiling point of 100° C. or more and 260° C. or less, in which a content of the water-soluble organic solvent in the aqueous gravure ink is 10 mass % or more and 35 mass % or less, and in which a content of the water in the aqueous gravure ink is 50 mass % or more and 70 mass % or less.
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公开(公告)号:US11247481B2
公开(公告)日:2022-02-15
申请号:US16310771
申请日:2017-06-16
Applicant: KAO CORPORATION
Inventor: Yuta Matsumoto , Kazuki Watanabe , Azusa Kuroda
IPC: B41J2/21 , C09D11/32 , C09D11/322 , C09D11/40 , B41M5/00 , C09D11/033 , C09D11/38 , C09D11/324
Abstract: The present invention relates to an ink-jet printing method that is capable of obtaining good printed characters or images which are free of occurrence of white lines or streaks irrespective of irradiation with an active energy ray. The present invention provides an ink-jet printing method including the steps of ejecting at least one ink A selected from the group consisting of a black ink and chromatic inks onto a low-liquid absorbing printing medium and then ejecting a white ink thereonto, in which the ink A contains at least one pigment selected from the group consisting of a black pigment and chromatic pigments, and a polymer dispersant containing a constitutional unit derived from a polyalkylene glycol (meth)acrylate; and the white ink contains titanium oxide and a polymer dispersant containing a constitutional unit derived from a polyalkylene glycol (meth)acrylate.
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公开(公告)号:US12281230B2
公开(公告)日:2025-04-22
申请号:US17297703
申请日:2018-11-30
Applicant: Kao Corporation
Inventor: Yuta Matsumoto , Daniel Sandker
IPC: C09D11/033 , B41J2/01 , C08G77/442 , C08K5/05 , C08K5/17 , C09D11/037 , C09D11/104 , C09D11/107 , C09D11/38
Abstract: An inkjet ink that includes (A) a terpene phenol resin having a hydroxyl value of 46 to 150 mgKOH/g, (B) ethanol, and (C) 1-propanol. A printed article including the inkjet ink in dried form, and a method of forming a printed image with a thermal inkjet printhead are also provided.
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公开(公告)号:US11655384B2
公开(公告)日:2023-05-23
申请号:US16956102
申请日:2018-12-12
Applicant: KAO CORPORATION
Inventor: Azusa Kuroda , Yuta Matsumoto
IPC: C09D11/107 , C09D11/322 , C09D11/38 , C08K5/053 , C08K5/54 , B41J2/21 , B41M5/00 , C09D11/326 , C08F220/28 , C08F212/08 , C08F220/06 , C08K5/00 , C08K5/103 , C08K5/1515 , C08K5/5415 , C08K9/10
CPC classification number: C09D11/326 , B41J2/2107 , B41M5/0064 , C08F212/08 , C08F220/06 , C08F220/286 , C08K5/0025 , C08K5/0041 , C08K5/053 , C08K5/103 , C08K5/1515 , C08K5/5415 , C08K9/10 , C09D11/107 , C09D11/38
Abstract: The present invention relates to a water-based ink containing a pigment (A), a water-soluble organic solvent (C), a surfactant (D) and water, in which a content of water in the water-based ink is not less than 40% by mass and not more than 65% by mass, a boiling point of the water-soluble organic solvent (C) is not higher than 230° C., and a content of a high-boiling point organic solvent having a boiling point of not lower than 250° C. in the water-based ink is not more than 4% by mass, and the surfactant (D) contains a silicone-based surfactant (d-1) and an acetylene glycol-based surfactant (d-2) which satisfy the following conditions 1 and 2: Condition 1: [(content of component (d-1))/(content of component (C))]×100=0.15 to 4; and Condition 2: [(content of component (d-2))/(content of component (C))]×100=0.35 to 1.65. In accordance with the present invention, it is possible to form ink dots having a complete circular shape and produce a printed material that is excellent in solid image fillability, image quality and rub fastness even when printed on a low-liquid absorbing printing medium.
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公开(公告)号:US10603928B2
公开(公告)日:2020-03-31
申请号:US16077298
申请日:2017-02-02
Applicant: KAO CORPORATION , THINK LABORATORY CO., LTD.
Inventor: Yuta Matsumoto , Ryuma Mizushima , Takahiro Sato , Kazuki Watanabe , Yasufumi Ueda , Tatsuo Shigeta
Abstract: The present invention relates to an ink-jet printing method that is capable of obtaining good printed materials that are free of occurrence of color migration and deformation of a printing medium even when printed on a resin printing medium. The present invention provides an ink-jet printing method using a water-based ink containing a black ink, a chromatic ink and a white ink which each contain a pigment (A), an organic solvent (C) having a boiling point of not lower than 90° C. and lower than 250° C., and water, said method including step 1 of ejecting at least one water-based ink selected from the group consisting of the black ink and the chromatic ink onto a transparent resin printing medium to print an image 1 on the printing medium; step 2 of ejecting the white ink onto the resulting image 1 to print a white image that covers the image 1 on the printing medium; and step 3 of heating and drying the resulting printed material from a side of a surface of the printing medium on which the white image is formed, using an infrared heater.
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公开(公告)号:US10960697B2
公开(公告)日:2021-03-30
申请号:US15756364
申请日:2016-08-03
Applicant: THINK LABORATORY CO., LTD. , KAO CORPORATION
Inventor: Tatsuo Shigeta , Ryuma Mizushima , Yuta Matsumoto , Yasufumi Ueda
Abstract: Provided is a gravure printing method by which high printing density and excellent highlight suitability are obtained, even if a gravure plate having high resolution and reduced thickness is used. The gravure printing method comprises: using an aqueous ink having a Zahn cup #3 viscosity at 20° C. of 11.0 seconds or more and 20.0 seconds or less, and having an evaporation rate of 30 mass % or less in a drying test, the drying test involving drying 1 g of the ink at a temperature of 40° C. and an air flow of 1,400 L/min for 30 minutes; and transferring 1 ml/m2 or more and 7 ml/m2 or less of the ink onto a printing medium.
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公开(公告)号:US10543684B2
公开(公告)日:2020-01-28
申请号:US16077159
申请日:2017-02-02
Applicant: KAO CORPORATION , THINK LABORATORY CO., LTD.
Inventor: Yuta Matsumoto , Kazuki Watanabe , Yasufumi Ueda , Tatsuo Shigeta
IPC: B41J2/135 , B41J11/02 , B41M5/00 , C09D11/322 , C09D11/40
Abstract: The present invention relates to an ink-jet printing apparatus that is capable of obtaining printed materials that are free of occurrence of color migration and have good appearance even when printed on a resin printing medium using a water-based ink, and an ink-jet printing method. The present invention provides an ink-jet printing apparatus including an ink-jet printing head that ejects a water-based ink onto a resin printing medium that is transported in a feeding direction thereof, and an under heater that heats the printing medium from a rear side surface of the printing medium opposed to a front side surface thereof which faces to the ink-jet printing head, in which the under heater is disposed at a position spaced at a distance of from 0.05 to 3.0 mm apart from the rear side surface of the printing medium upon printing, and an ink-jet printing method using the ink-jet printing apparatus.
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公开(公告)号:US11072197B2
公开(公告)日:2021-07-27
申请号:US16485298
申请日:2018-02-15
Applicant: KAO CORPORATION
Inventor: Ryuma Mizushima , Yuta Matsumoto , Yasufumi Ueda
Abstract: The present invention relates to [1] a process for producing a printed material, including step 1 of subjecting an image-bearing surface of a printed recording medium 1′ on which characters or images are formed by analog printing to discharge treatment under specific conditions to obtain a printed recording medium 1, and step 2 of further forming characters or images on the image-bearing surface of the printed recording medium 1 by ink-jet printing using a water-based ink to obtain the printed material, [2] an ink-jet printing method including the step of ejecting a water-based ink onto a printed recording medium 1 by an ink-jetting method to form characters or images thereon, in which the printed recording medium 1 has an image-bearing surface on which characters or images are formed by analog printing, and the image-bearing surface is subjected to discharge treatment under the specific conditions, [3] a recording medium for ink-jet printing, including an image-bearing surface on which characters or images are formed by analog printing and which is subjected to discharge treatment, in which a surface free energy of the image-bearing surface after being subjected to the discharge treatment is not less than 30 mN/m, and [4] a printed material including an image-bearing surface on which characters or images are formed by analog printing and then on at least a part of which characters or images are further formed by ink-jet printing using a water-based ink, in which the image-bearing surface after forming the characters or images thereon by the analog printing is subjected to discharge treatment, and a surface free energy of the image-bearing surface after being subjected to the discharge treatment is not less than 30 mN/m.
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公开(公告)号:US11034179B2
公开(公告)日:2021-06-15
申请号:US16485298
申请日:2018-02-15
Applicant: KAO CORPORATION
Inventor: Ryuma Mizushima , Yuta Matsumoto , Yasufumi Ueda
Abstract: The present invention relates to [1] a process for producing a printed material, including step 1 of subjecting an image-bearing surface of a printed recording medium 1′ on which characters or images are formed by analog printing to discharge treatment under specific conditions to obtain a printed recording medium 1, and step 2 of further forming characters or images on the image-bearing surface of the printed recording medium 1 by ink-jet printing using a water-based ink to obtain the printed material, [2] an ink-jet printing method including the step of ejecting a water-based ink onto a printed recording medium 1 by an ink-jetting method to form characters or images thereon, in which the printed recording medium 1 has an image-bearing surface on which characters or images are formed by analog printing, and the image-bearing surface is subjected to discharge treatment under the specific conditions, [3] a recording medium for ink-jet printing, including an image-bearing surface on which characters or images are formed by analog printing and which is subjected to discharge treatment, in which a surface free energy of the image-bearing surface after being subjected to the discharge treatment is not less than 30 mN/m, and [4] a printed material including an image-bearing surface on which characters or images are formed by analog printing and then on at least a part of which characters or images are further formed by ink-jet printing using a water-based ink, in which the image-bearing surface after forming the characters or images thereon by the analog printing is subjected to discharge treatment, and a surface free energy of the image-bearing surface after being subjected to the discharge treatment is not less than 30 mN/m.
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