序号 | 专利名 | 申请号 | 申请日 | 公开(公告)号 | 公开(公告)日 | 发明人 |
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1 | 转印纸制造方法 | CN201510404084.X | 2015-07-10 | CN106337313A | 2017-01-18 | 谈旻轩 |
本发明揭示了一种转印纸制造方法,包括添加表面活性剂步骤,所述表面活性剂添加于磨浆之后、上浆成型之前,或所述表面活性剂在上浆成型后以施胶方式被添加于成型纸张表面,所述表面活性剂包括水性蜡乳液或含氟化合物。本发明通过添加表面活性剂降低纸张表面张力,不需要使用机外涂布机,仅用造纸机即可完成转印纸生产,节约工序,且彻底解决转印纸卷曲问题,同时克服了仅使用造纸机生产的转印纸墨水渗透造成转移率低、图文清晰度低的缺陷。 | ||||||
2 | 再循环或牛皮纸板及其制备方法 | CN201180068092.1 | 2011-12-19 | CN103380249A | 2013-10-30 | P·C·哈耶斯 |
本发明提供了再循环或牛皮纸板,其表面具有一层或更多层的涂层,至少一层涂层包含一种或多种选自苯乙烯-丙烯酸基共聚物、苯乙烯-丁二烯基共聚物及其混合物的共聚物,其中存在于涂层中的共聚物的平均Tg为25℃或更大,且存在于涂层中的共聚物的平均聚合物粒度为130nm或更大。还提供生产涂布再循环纸板或牛皮纸板的方法和涂料组合物。 | ||||||
3 | WEB OF CELLULOSIC FIBERS COMPRISING AN ACTIVE AGENT AND METHOD FOR MANUFACTURING A WEB OF CELLULOSIC FIBERS COMPRISING AN ACTIVE AGENT | US14905301 | 2013-07-22 | US20160160443A1 | 2016-06-09 | Gérald DUHEN; Philippe MALGARINI; Cyril SCHU; Nicolas MARQUINE |
A web including cellulosic fibers having two sides and including an additive composition present on at least one side of the web and a method of making such a web are disclosed. The additive composition includes at least one filming agent and at least one active agent, the filming agent being fixed on the web and the active agent being retained on the web by the filming agent, the active agent being an antimicrobial agent. | ||||||
4 | シート製造装置 | JP2014063244 | 2014-03-26 | JP2015183336A | 2015-10-22 | 樋口 尚孝; 中村 昌英; 宮澤 一真 |
【課題】繊維と複数の前記繊維を結着する添加物とを大気中で混合して均一性の良好なシートを形成することのできるシート製造装置を提供すること。 【解決手段】本発明に係るシート製造装置は、繊維を含む被解繊物を解繊する解繊部と、前記解繊部で解繊処理され導入口を介して導入された解繊物を、回転することで円筒面にある複数の孔を通過させる円筒部と、前記円筒部内に複数の前記繊維を結着する添加物を供給する供給口を、前記導入口とは別に備える供給部と、前記繊維と前記添加物とを結着してシートを形成する結着部と、を備える。 【選択図】図1 |
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5 | 紙製品の製造中にパルプスラリの排水性能を高める方法およびその方法から製造される製品 | JP2018538522 | 2015-10-12 | JP2018530685A | 2018-10-18 | ハリントン、ジョン、シー.; ルスヴァルディ、ケート、マリット; ジャン、フシャン |
(a)少なくとも1つのミクロ開繊化セルロースと(b)少なくとも1つの会合性重合体または少なくとも1つの分岐または架橋共重合体とをパルプスラリに添加する段階により紙製品の製造中にパルプスラリの排水性能を高める方法。この添加は、パルプスラリが繊維マットになる脱水段階の前に起こる。 | ||||||
6 | シート製造装置 | JP2014063244 | 2014-03-26 | JP6264986B2 | 2018-01-24 | 樋口 尚孝; 中村 昌英; 宮澤 一真 |
7 | METHOD OF INCREASING DRAINAGE PERFORMANCE OF A PULP SLURRY DURING MANUFACTURE OF PAPER PRODUCTS, AND PRODUCTS THEREFROM | EP15791813.7 | 2015-10-12 | EP3362601A1 | 2018-08-22 | HARRINGTON, John, C.; LUSVARDI, Kate, Marritt; ZHANG, Fushan |
A method of increasing the drainage performance of a pulp slurry during the manufacture of paper products by adding (a) at least one microfibrillated cellulose and (b) at least one associative polymer or at least one branched or crosslinked copolymer to the pulp slurry. This addition occurs before the dewatering step where the pulp slurry is formed into a fibrous mat. | ||||||
8 | Method of increasing drainage performance of a pulp slurry during manufacture of paper products, and products therefrom | US14880873 | 2015-10-12 | US09873982B2 | 2018-01-23 | John C. Harrington; Kate Marritt Lusvardi; Fushan Zhang |
A method of increasing the drainage performance of a pulp slurry during the manufacture of paper products by adding (a) at least one microfibrillated cellulose and (b) at least one associative polymer or at least one branched or crosslinked copolymer to the pulp slurry. This addition occurs before the dewatering step where the pulp slurry is formed into a fibrous mat. | ||||||
9 | METHOD OF INCREASING DRAINAGE PERFORMANCE OF A PULP SLURRY DURING MANUFACTURE OF PAPER PRODUCTS, AND PRODUCTS THEREFROM | US14880873 | 2015-10-12 | US20170101740A1 | 2017-04-13 | John C. HARRINGTON; Kate Marritt LUSVARDI; Fushan ZHANG |
A method of increasing the drainage performance of a pulp slurry during the manufacture of paper products by adding (a) at least one microfibrillated cellulose and (b) at least one associative polymer or at least one branched or crosslinked copolymer to the pulp slurry. This addition occurs before the dewatering step where the pulp slurry is formed into a fibrous mat. | ||||||
10 | METHOD FOR MANUFACTURING TRANSFER PAPER | US14878579 | 2015-10-08 | US20170009400A1 | 2017-01-12 | Minxuan TAN |
A method of making transfer paper in which surfactant is applied either after the step of refining and before the paper sheet formed or on the surface of the paper sheet. The surfactant includes aqueous wax emulsion or fluorochemical. The present disclosure accomplishes papermaking by paper machine, with no need of coater. | ||||||
11 | Sheet manufacturing apparatus | US14664248 | 2015-03-20 | US09476161B2 | 2016-10-25 | Naotaka Higuchi; Masahide Nakamura; Kazuma Miyazawa |
A sheet manufacturing apparatus includes: a defibrating unit which defibrates a defibration object including fibers; a cylinder unit which allows a defibrated material which is defibration-processed in the defibrating unit and introduced via an introduction port to pass through a plurality of holes that is on a cylindrical surface by rotating; a supplying unit which is provided with a supply port which supplies additive agents that bond the plurality of fibers in the cylinder portion; and a bonding unit which forms a sheet by bonding the fibers and the additive agents. | ||||||
12 | Heat formable artificial leather product and method of manufacture | US3507691D | 1966-11-22 | US3507691A | 1970-04-21 | WEBER ROBERT E; DULL MARVIN L |
13 | SHEET MANUFACTURING APPARATUS | US14664248 | 2015-03-20 | US20150275430A1 | 2015-10-01 | Naotaka HIGUCHI; Masahide NAKAMURA; Kazuma MIYAZAWA |
A sheet manufacturing apparatus includes: a defibrating unit which defibrates a defibration object including fibers; a cylinder unit which allows a defibrated material which is defibration-processed in the defibrating unit and introduced via an introduction port to pass through a plurality of holes that is on a cylindrical surface by rotating; a supplying unit which is provided with a supply port which supplies additive agents that bond the plurality of fibers in the cylinder portion; and a bonding unit which forms a sheet by bonding the fibers and the additive agents. | ||||||
14 | RECYCLED OR BROWN PAPER BOARD AND METHODS OF MAKING SAME | US13996908 | 2011-12-19 | US20140004337A1 | 2014-01-02 | Peter C. Hayes |
Recycled or brown paper board is provided having a surface with a coating having one or more layers, at least one coating layer comprising one or more copolymers selected from the group consisting of styrene-acrylic-based copolymers, styrene-butadiene-based copolymers, and mixtures thereof, wherein the average Tg of the copolymers present in the coating layer is 25° C. or greater and the average polymer particle size of the copolymers present in the coating layer is 130 nm or greater. A method of producing a coated recycled paper board or brown paper board and a coating composition are also provided. | ||||||
15 | METHOD FOR MANUFACTURING TRANSFER PAPER | EP15188962.3 | 2015-10-08 | EP3115505A1 | 2017-01-11 | Tan, Minxuan |
The present disclosure relates to a method making transfer paper. Surfactant is applied either after the step of refining and before the paper sheet fonned or on the surface of paper sheet. The surfactant includes aqueous wax emulsion or fluorochemical. The present disclosure accomplishes papermaking by paper machine, with no need of coater. |
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16 | WEB OF CELLULOSIC FIBERS COMPRISING AN ACTIVE AGENT AND METHOD FOR MANUFACTURING A WEB OF CELLULOSIC FIBERS COMPRISING AN ACTIVE AGENT | EP13770702.2 | 2013-07-22 | EP3024980A1 | 2016-06-01 | DUHEN, Gérald; MALGARINI, Philippe; SCHU, Cyril; MARQUINE, Nicolas |
A web including cellulosic fibers having two sides and including an additive composition present on at least one side of the web and a method of making such a web are disclosed. The additive composition includes at least one filming agent and at least one active agent, the filming agent being fixed on the web and the active agent being retained on the web by the filming agent, the active agent being an antimicrobial agent. | ||||||
17 | WEB OF CELLULOSIC FIBERS COMPRISING AN ACTIVE AGENT AND METHOD FOR MANUFACTURING A WEB OF CELLULOSIC FIBERS COMPRISING AN ACTIVE AGENT | EP13770702.2 | 2013-07-22 | EP3024980B1 | 2018-06-27 | DUHEN, Gérald; MALGARINI, Philippe; SCHU, Cyril; MARQUINE, Nicolas |
A web including cellulosic fibers having two sides and including an additive composition present on at least one side of the web and a method of making such a web are disclosed. The additive composition includes at least one filming agent and at least one active agent, the filming agent being fixed on the web and the active agent being retained on the web by the filming agent, the active agent being an antimicrobial agent. | ||||||
18 | RECYCLED OR BROWN PAPER BOARD AND METHODS OF MAKING SAME | EP11801730.0 | 2011-12-19 | EP2655738A1 | 2013-10-30 | HAYES, Peter C. |
Recycled or brown paper board is provided having a surface with a coating having one or more layers, at least one coating layer comprising one or more copolymers selected from the group consisting of styrene-acrylic-based copolymers, styrene-butadiene-based copolymers, and mixtures thereof, wherein the average Tg of the copolymers present in the coating layer is 25°C or greater and the average polymer particle size of the copolymers present in the coating layer is 130 nm or greater. A method of producing a coated recycled paper board or brown paper board and a coating composition are also provided. | ||||||
19 | 꽃씨 발아용 카드 엽서의 제조 방법 | KR1020010019440 | 2001-04-12 | KR1020020080157A | 2002-10-23 | 류봉균 |
PURPOSE: Provided is a production process of postal cards for budding flower seeds thereby manufacturing postal cards which is made from pulp and culture fluid and includes flower seeds. CONSTITUTION: The production process of the postal cards for budding the flower seeds comprises the steps of: (i) mixing pulp with culture fluid to produce culture paper(1); (ii) placing culture paper between rollers(2) with plural projections(4) to form grooves(3); (iii) cutting culture paper into a certain length; (iv) placing plural seeds at the grooves of the culture paper; (v) thinly coating the entire upper side of the culture paper or the upper part of the seeds to fix the seeds at the grooves; and (vi) attaching a card cover(6) as large as the culture paper to one side of the culture paper. |