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131.
公开(公告)号:US11999132B2
公开(公告)日:2024-06-04
申请号:US16500033
申请日:2018-03-28
Applicant: Stora Enso OYJ
Inventor: Kaj Backfolk , Isto Heiskanen , Esa Saukkonen , Jukka Kankkunen , Ville Ribu , Kimmo Nevalainen
IPC: B32B15/085 , B32B15/20 , B32B27/10 , B65D65/40 , B65D65/42 , C08J5/18 , D21H11/18 , D21H19/04 , D21H19/08 , D21H19/22 , D21H19/82 , D21H19/84 , D21H27/10
CPC classification number: B32B15/085 , B32B15/20 , B32B27/10 , B65D65/40 , B65D65/42 , C08J5/18 , D21H11/18 , D21H19/04 , D21H19/08 , D21H19/22 , D21H19/824 , D21H19/84 , D21H27/10 , B32B2307/7244 , B32B2439/70 , C08J2323/06
Abstract: The present invention is directed to a packaging material comprising a layer of microfibrillated cellulose (MFC) and an aluminum layer having a thickness of 0.1-20 μm, wherein the layer comprising MFC and/or the aluminum layer has been laminated or extrusion coated on at least one side with a thermoplastic polymer and wherein the amount of aluminum is sufficient to make the packaging material heat sealable by induction. The MFC layer contains at least 60% by weight of microfibrillated cellulose.
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132.
公开(公告)号:US11920297B2
公开(公告)日:2024-03-05
申请号:US17415878
申请日:2019-12-20
Applicant: Stora Enso OYJ
Inventor: Isto Heiskanen , Katja Lyytikäinen , Otto Nylén , Kaj Backfolk
Abstract: The present invention relates to a method for preparing a surface-treated fibrous material comprising nanocellulose, in which a fibrous material is surface treated with an organic acid or salt thereof. Fibrous materials as such are also provided. The present technology allows improved Water Vapor Transmission Rates (WVTR) for the fibrous material, while operating on an industrial scale.
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公开(公告)号:US20240003092A1
公开(公告)日:2024-01-04
申请号:US18042116
申请日:2021-08-31
Applicant: Stora Enso OYJ
Inventor: Isto Heiskanen , Kaj Backfolk , Anna Kauppi , Jukka Kankkunen , Juha Korvenniemi
Abstract: The present invention relates to a method for manufacturing a multilayer machine glazed paper comprising highly refined cellulose fibers, the method comprising the steps of: forming a first wet web by applying at least one first pulp suspension comprising highly refined cellulose fibers on a first wire; partially dewatering the first wet web to obtain a first partially dewatered web; forming a second wet web by applying at least one second pulp suspension comprising highly refined cellulose fibers on a second wire; partially dewatering the second wet web to obtain a second partially dewatered web; joining the first and second partially dewatered web to obtain a multilayer web; optional dewatering the multilayer web in a dewatering unit, and glazing the multilayer web in at least one glazing unit to obtain a multilayer machine glazed paper comprising highly refined cellulose fibers. The invention also relates to a multiply MG paper produced according to the method.
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134.
公开(公告)号:US20230257937A1
公开(公告)日:2023-08-17
申请号:US18003187
申请日:2021-06-24
Applicant: Stora Enso OYJ
Inventor: Isto Heiskanen , Kaj Backfolk , Jukka Kankkunen , Anna Kauppi , Mikael Hjerpe , Juha Korvenniemi
CPC classification number: D21F3/0218 , C08J5/18 , D21F11/145 , D21H11/18 , C08J2301/02 , D21C9/002
Abstract: The present invention relates to a method for dewatering a web comprising microfibrillated cellulose, wherein the method comprises the steps of: providing a suspension comprising between 50 wt-% to 100 wt-% of microfibrillated cellulose based on total dry weight, forming a fibrous web of said suspension on a support wherein said web has a dry content of 1-25% by weight, applying a dewatering felt into direct contact with the fibrous web, conducting said fibrous web, arranged between said dewatering felt and said support, through at least one shoe press equipment, drying the dewatered web to form a film which film has an Oxygen Transmission Rate (OTR) value (23° C., 50% RH) below 100 cc/m2/24 h according to ASTM D-3985.
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135.
公开(公告)号:US20230243099A1
公开(公告)日:2023-08-03
申请号:US18042115
申请日:2021-08-31
Applicant: Stora Enso OYJ
Inventor: Isto Heiskanen , Kaj Backfolk , Anna Kauppi , Juha Korvenniemi , Jukka Kankkunen
Abstract: The present invention relates to a method for producing a machine glazed paper comprising microfibrillated cellulose, wherein the method comprises the steps of: providing a suspension comprising between 0.1 wt-% to 50 wt-% of microfibrillated cellulose based on total dry weight, forming a fibrous web of said suspension on a wire wherein said web has a dry content of 1-25% by weight, dewatering the fibrous web in at least one dewatering unit, glazing at least one side of the dewatered fibrous web in a glazing unit to form the machine glazed paper. The invention further relates to a MG paper produced according to the method.
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136.
公开(公告)号:US20230242795A1
公开(公告)日:2023-08-03
申请号:US17999065
申请日:2021-05-31
Applicant: Stora Enso OYJ
Inventor: Katja Lyytikäinen , Isto Heiskanen , Kaj Backfolk
IPC: C09J103/02 , C09J11/08 , C09J11/06 , D21H27/36 , B31F5/04 , B32B7/12 , B32B29/00 , B32B29/08 , B32B3/28
CPC classification number: C09J103/02 , B31F5/04 , B32B3/28 , B32B7/12 , B32B29/005 , B32B29/08 , C09J11/06 , C09J11/08 , D21H27/36 , B32B2255/12 , B32B2255/24 , B32B2307/718 , B32B2307/7244
Abstract: The present invention relates to a method for the production of an adhesive component wherein said method comprises the following steps: providing a suspension comprising starch granules, adding a suspension comprising microfibrillated cellulose to the suspension comprising starch granules, drying the starch granules and microfibrillated cellulose suspension to a dry content above 70 wt-% to form said adhesive component. The invention also relates to an adhesive, a corrugated board, paper and paperboard comprising said adhesive and to the adhesive component produced according to the method.
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公开(公告)号:US20230212825A1
公开(公告)日:2023-07-06
申请号:US17999060
申请日:2021-05-18
Applicant: Stora Enso OYJ
Inventor: Chris Bonnerup , Magnus Ekberg , Kaj Backfolk
IPC: D21H27/10 , D21H19/82 , D21H19/22 , D21H19/12 , D21H23/64 , D21H23/50 , D21H23/72 , B32B27/10 , B32B27/32 , B32B37/24 , B32B38/00 , B65D65/40 , B65D65/42
CPC classification number: D21H27/10 , D21H19/824 , D21H19/22 , D21H19/12 , D21H23/64 , D21H23/50 , D21H23/72 , B32B27/10 , B32B27/32 , B32B37/24 , B32B38/164 , B65D65/40 , B65D65/42 , B32B2307/7265 , B32B2255/12 , B32B2307/718 , B32B2307/31 , B32B2307/7246 , B32B2307/7244 , B32B2255/26 , B32B2250/40 , B32B2037/243 , B32B2317/12 , B32B2439/70
Abstract: The invention discloses a paperboard for packaging of a heat-sealable packaging material comprising: —a paperboard substrate comprising a first and a second side, —a first and an optional second dispersion coating layer on the first side, which first and optional second dispersion coating layer provides a barrier against at least one of liquid, moisture, grease and gas, —an extrusion coated barrier layer comprising a polyolefin, wherein the first and optional second dispersion coating layer is applied between the paperboard substrate and the extrusion coated barrier layer, and wherein the coat weight of the extrusion coated barrier layer is less than 15 gsm. The packaging material according of the invention minimizes the amount of plastic coating, but still provides the needed barrier properties for the packaging of food and/or liquid. The packaging material has especially been shown to provide a longer shelf life for food items packed in a packaging made from the material. Especially, the packaging material provides gas-, liquid and/or grease barrier properties. Although the packaging material comprises such low amount of extruded thermoplastic polymers, the material is readily heat-sealable.
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公开(公告)号:US20230151552A1
公开(公告)日:2023-05-18
申请号:US17995445
申请日:2021-04-14
Applicant: Stora Enso OYJ
Inventor: Isto Heiskanen , Kaj Backfolk , Anna Kauppi , Jukka Kankkunen
Abstract: The present invention relates to a method for manufacturing a multilayer film comprising highly refined cellulose fibers, the method comprising the steps of: a) forming a first wet web by applying a first pulp suspension comprising highly refined cellulose fibers on a first wire; b) partially dewatering the first wet web to obtain a first partially dewatered web; c) forming a second wet web by applying a second pulp suspension comprising highly refined cellulose fibers on a second wire; d) partially dewatering the second wet web to obtain a second partially dewatered web; e) joining the first and second partially dewatered web to obtain a multilayer web; and f) further dewatering, and optionally drying, the multilayer web to obtain a multilayer film comprising highly refined cellulose fibers.
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公开(公告)号:US20230132010A1
公开(公告)日:2023-04-27
申请号:US17996939
申请日:2021-05-06
Applicant: Stora Enso OYJ
Inventor: Kaj Backfolk , Isto Heiskanen , Jukka Kankkunen
IPC: D21H19/82 , D21F1/66 , D21H27/10 , D21H11/18 , D21H19/12 , D21H19/08 , C23C16/06 , C23C16/455 , C23C16/02
Abstract: The present invention is directed to a process for manufacturing a nano-coated pulp-based substrate comprising the steps of: a) providing a suspension comprising pulp, said pulp having Schopper Riegler value of at least 70°; b) using the suspension of step a) to form a wet web; c) dewatering and/or drying the wet web to form a substrate; d) adding a first layer of an acrylic monomer solution comprising less than 2 wt-% water to the surface of the substrate, followed by radiation curing the first layer; e) optionally adding a second layer comprising an acrylic monomer solution to the surface of the cured first layer and radiation curing the second layer; f) providing a nano-coating on the surface of the cured first or second layer such that a nano-coating having a thickness in the range of from 0.1 nm to 100 nm is provided on the substrate.
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公开(公告)号:US11555275B2
公开(公告)日:2023-01-17
申请号:US16614164
申请日:2018-05-17
Applicant: Stora Enso OYJ
Inventor: Esa Saukkonen , Isto Heiskanen , Katja Lyytikäinen , Kaj Backfolk
Abstract: A method of manufacturing a film having an oxygen transmission rate (OTR) value in the range of 0.1 to 200 cc/m2*24 h at 23° C., 50% relative humidity (RH), and an OTR value in the range of 0.1 to 2000 cc/m2*24 h at 38° C. at 85% RH, comprising at least 60% by weight nanocellulose based on the weight of the total amount of fibers in the film, wherein the method comprises the steps of, providing an aqueous suspension comprising said nanocellulose; forming a web from said aqueous suspension; calendering said web at a line load of at least 40 kN/m, and at a temperature of at least 60° C. wherein said film is formed and said web has an OTR value in the range of 50 to 10 000 cc/m2*24 h at 23° C., 50% RH before said calendering step, or more preferably in the range of 500 to 5000 cc/m2*24 h at 23° C., 50% RH before said calendering step.
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