Patents Examined by Michael Zhang
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Patent number: 10899108Abstract: A laminate includes a substrate; an atomic layer deposition film that is disposed on at least one surface of the substrate, and is made of an inorganic material; and a protective film that is bonded to and covers the atomic layer deposition film, and has an adhesive layer that is in contact with the atomic layer deposition film.Type: GrantFiled: October 12, 2017Date of Patent: January 26, 2021Assignee: TOPPAN PRINTING CO., LTD.Inventors: Takafumi Horiike, Jin Sato, Nao Takashima
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Patent number: 10883647Abstract: A vacuum heat insulator which can prevent lowering of a heat insulation performance in its thickness direction, while ensuring a sufficient strength, is provided. The vacuum heat insulator reduces heat transfer in the thickness direction of a core from one surface side of the core to the other surface side thereof. The core includes a first fiber layer and a second fiber layer. The first fiber layer includes short fibers layered in the thickness direction. The second fiber layer includes long fibers layered in the thickness direction, and thickness fiber bundles which extend in the thickness direction, and which bind the long fibers. The long fibers are longer than the short fibers.Type: GrantFiled: May 12, 2016Date of Patent: January 5, 2021Assignee: MITSUBISHI ELECTRIC CORPORATIONInventors: Toshio Shinoki, Satoshi Nakatsu, Hitoshi Maruyama, Yoshikazu Yaji, Shunkei Suzuki
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Patent number: 10857755Abstract: Thermoplastic polymeric films and methods of making thereof, comprising at least one thermoplastic polymer, wherein at least one portion of said film is micro-embossed with a micro-embossing pattern; at least one portion of the film is embossed with a first embossing pattern having a first embossing depth which may be greater than the micro-embossing depth; and, wherein the film has a basis weight of about 30 gsm or less and an impact strength of at least about 15 g.Type: GrantFiled: August 25, 2015Date of Patent: December 8, 2020Assignee: Clopay Plastic Products Company, Inc.Inventors: Tobias Proksch, Frank Eschenbacher
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Patent number: 10850435Abstract: A foam molded article mold includes a lower mold with a cavity space; an upper mold formed with an upper mold face portion facing a lower mold face portion of the cavity space when the upper mold has been brought together with the lower mold; a partitioning wall that projects out from the upper mold face portion, and that configures a first parting line between the partitioning wall and the lower mold face portion in a state in which the upper mold has been brought together with the lower mold; and a partition that projects out from the lower mold face portion, and that, in a state in which the upper mold has been brought together with the lower mold, partitions the cavity space together with the partitioning wall to form plural cavities, and that configures a second parting line between the partition and the partitioning wall.Type: GrantFiled: June 25, 2015Date of Patent: December 1, 2020Assignee: Toyota Boshoku Kabushiki KaishaInventors: Yoichi Nabeshima, Shin Tada, Masatoshi Satou, Hirokazu Hirano
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Patent number: 10843401Abstract: A fuse molded modeling three dimensional article having areas of dissimilar or different hardness is described, wherein one of said areas is hard and is plastic, metal, glass, wood, concrete, rock, or mixtures thereof, and another of said areas is a less hard area comprising a controlled distribution hydrogenated styrenic block copolymer composition. Although the metal, glass, wood, concrete, and rock are not fuse moldable material, the plastic and the controlled distribution hydrogenated styrenic block copolymer composition are. Thus the scope of the invention is meant to include articles where only one area or layer of the article is fuse molded, or wherein both the hard area/layer and the soft area/layer is formed via a fuse molded technique.Type: GrantFiled: November 1, 2013Date of Patent: November 24, 2020Assignee: Kraton Polymers U.S. LLCInventor: Marcus Greger
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Patent number: 10815024Abstract: A bulk-based packaging material is provided, comprising at least one crease line for facilitating folding of the packaging material to a package. The at least one crease line is formed as an imprint on a primary side of the packaging material, and as an embossment on a secondary side of the packaging material, wherein the imprint is formed as an elongated groove having a triangular profile.Type: GrantFiled: June 17, 2015Date of Patent: October 27, 2020Assignee: TETRA LAVAL HOLDINGS & FINANCE S.A.Inventors: Hans Johansson, Lars Bergholtz, Jens Quist
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Patent number: 10800130Abstract: The invention relates to flexible PCM sheet materials having a high latent thermal energy storage density for the purpose of heat management. The flexible PCM sheet material includes a flexible supporting structure and phase-change-material elements arranged thereon separately in a specific geometry. The phase-change-material elements are geometrically defined structures composed of polymer-bound phase-change material. The flexible PCM sheet materials are characterized by a high latent heat storage capacity and optimized thermal conductivity, are dimensionally stable even in the event of temperature changes and after phase transitions, can be rolled, folded, wound, or cut to size without problems, and can be transported, stored, processed, or used in a single layer or in multiple layers.Type: GrantFiled: May 19, 2015Date of Patent: October 13, 2020Assignee: smartpolymer GmbHInventors: Dirk Büttner, Angelo Schütz, Martin Geissenhöner
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Patent number: 10786603Abstract: A multilayer sheet can be used in vivo or in an environment in which moisture is adhered, an integrated sheet including the multilayer sheet and a base material, and methods for producing the same. The multilayer sheet has one or more layers from each of a layer (A) composed of sparingly water-soluble polymer and a fiber layer (B) composed of water-soluble polymer are laminated, and at least one of outermost layers is the above-described layer (A) composed of sparingly water-soluble polymer. The time taken from dropping of water onto a surface of the outermost layer of the above-described layer (A) composed of sparingly water-soluble polymer to dissolution of the other outermost layer is 10 seconds to 5 minutes.Type: GrantFiled: March 31, 2015Date of Patent: September 29, 2020Assignee: Toray Industries, Inc.Inventors: Teruhisa Sato, Yoshikazu Yakake, Toru Arakane, Ai Suzuki
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Patent number: 10786980Abstract: A laminate has at least one polylactic acid resin-containing layer (C) with a thickness of 10-500 nm on at least one surface of a fibrous structure (B) containing a water-soluble resin (A). A production method for the laminate is characterized in that water or an aqueous solution is applied to the joining surface of the fibrous structure (B) and the polylactic acid resin-containing layer (C). The laminate exhibits excellent followability, adherence and coatability relative to flexible, curved adherends, exhibits excellent compatibility to organs such as skin and internal organs, and, because the fibrous structure (B) containing a water-soluble resin (A) can easily be removed from the polylactic acid resin-containing layer (C) by the aqueous solution, is adapted for use in materials for external use on the skin, such as wound-dressing materials, adhesion-preventing materials, and skin care products.Type: GrantFiled: June 18, 2015Date of Patent: September 29, 2020Assignee: Toray Industries, Inc.Inventors: Yuki Sekido, Motonori Hochi, Toru Arakane, Yoshikazu Yakake, Teruhisa Sato
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Patent number: 10786978Abstract: A packaging material (600) comprises a first sheet material (100) and a woven fabric (200), which are arranged one above the other and are connected to one another. The first sheet material (100) contains first regions (120), in which the first sheet material (100) is expanded locally, and second regions (110), in which the first sheet material (100) is not expanded locally. The first regions (120) are arranged in each case between two second regions (110) and run in a first direction. The woven fabric (200) comprises a thread (220), wherein part of the thread (220) runs in a direction which intersects the first direction.Type: GrantFiled: November 12, 2015Date of Patent: September 29, 2020Assignee: KARATZIS S.A. INDUSTRIAL & HOTELIER ENTERPRISESInventor: Antonios Karatzis
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Patent number: 10779587Abstract: Described are heat insulation structures for a garment. The heat insulation structure includes at least one first insulation element having a first uncompressed shape, at least one second insulation element having a second uncompressed shape that is different than the first uncompressed shape, and a contact area formed when the first uncompressed shape contacts the second uncompressed shape. The second uncompressed shape is deformable through pressure applied by a wearer's body when the garment is worn, which increases a size of the contact area.Type: GrantFiled: January 16, 2015Date of Patent: September 22, 2020Assignee: adidas AGInventor: Tim Maud
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Patent number: 10781134Abstract: An opaque cover for a capacitive sensor is provided. The cover includes a transparent substrate and a black color stack disposed adjacent the transparent substrate. The black color stack includes a pigment stack having a first dielectric layer, a second dielectric layer, and a first light absorbing layer positioned between the first and second dielectric layers. The first dielectric layer has a first refractive index. The second dielectric layer has a second refractive index different from the first refractive index. The black color stack also includes a plurality of second light absorption layers interleaved with a plurality of third dielectric layer.Type: GrantFiled: October 13, 2017Date of Patent: September 22, 2020Assignee: Apple Inc.Inventors: Naoto Matsuyuki, Douglas J. Weber
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Patent number: 10772984Abstract: The stretchable porous film of the present invention includes voids in a surface thereof, in which: the stretchable porous film has an air permeability measured with an Oken-type air permeability meter of less than 99,999 sec/100 cc; the stretchable porous film has such an extending direction that an air permeability measured with the Oken-type air permeability meter in a state in which the stretchable porous film is extended by 100% becomes less than 60,000 sec/100 cc; and the stretchable porous film has such a pulling direction that when, in a hysteresis test, the stretchable porous film is pulled from a width of 20 mm and an inter-chuck distance of 30 mm to an inter-chuck distance of 60 mm at a pulling speed of 50 mm/min and held for 1 minute, and then the pulling of the inter-chuck distance is released, a residual strain becomes 10 mm or less.Type: GrantFiled: April 12, 2016Date of Patent: September 15, 2020Assignee: NITTO DENKO CORPORATIONInventors: Yasuhiro Takeda, Yoshitake Shigematsu, Kohei Takeda, Shou Uchida, Muneshige Nakagawa, Shinsuke Ikishima
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Patent number: 10752788Abstract: The antifouling film includes a polymer layer that includes on a surface thereof an uneven structure provided with multiple projections at a pitch not longer than a wavelength of visible light. The polymer layer has a proportion of the number of fluorine atoms relative to the sum of the numbers of carbon atoms, nitrogen atoms, oxygen atoms, and fluorine atoms of 33 atom % or more on the surface of the uneven structure and of 3 atom % or less on average in a region 90 to 120 nm deep from the surface of the uneven structure. The polymer layer has a proportion of the number of nitrogen atoms relative to the sum of the numbers of carbon atoms, nitrogen atoms, oxygen atoms, and fluorine atoms of 4 atom % or less on average in a region 90 to 120 nm deep from the surface of the uneven structure.Type: GrantFiled: July 3, 2017Date of Patent: August 25, 2020Assignee: SHARP KABUSHIKI KAISHAInventors: Hidekazu Hayashi, Atsushi Niinoh
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Patent number: 10730208Abstract: In accordance with the purpose(s) of the present disclosure, as embodied and broadly described herein, embodiments of the present disclosure, in one aspect, relate to porous polymer membranes, structures including porous polymer membranes, devices including porous polymer membranes, methods of using porous polymer membranes, methods of making porous polymer membranes, and the like.Type: GrantFiled: April 15, 2019Date of Patent: August 4, 2020Assignee: University of Florida Research Foundation, Inc.Inventors: Yin Fang, Khalid Askar, Blayne M. Phillips, Peng Jiang
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Patent number: 10710343Abstract: Multilayered polymer films are configured so that successive constituent layer packets can be delaminated in continuous sheet form from the remaining film. The new films are compatible with known coextrusion manufacturing techniques, and can also be made without the use of adhesive layers between layer packets that are tailored to be individually peelable from the remainder of the film. Instead, combinations of polymer compositions are used to allow non-adhesive polymer layers to be combined in such a way that delamination of the film is likely to occur along a plurality of delamination surfaces corresponding to interfaces between particular pairs of layers for which the peel strength is reduced relative to the peel strength at other layer interfaces within the film. The absence of an adhesive between peelable layer packets results in the delamination being irreversible.Type: GrantFiled: April 22, 2019Date of Patent: July 14, 2020Assignee: 3M INNOVATIVE PROPERTIES COMPANYInventors: Stephen A. Johnson, Onur S. Yordem, Timothy J. Lindquist, Terence D. Neavin
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Patent number: 10710341Abstract: The present invention concerns a shaped composite material and a method for producing it. More specifically, the invention concerns a disc for a disc brake made from ceramic composite materials, usually known as “CMC”, i.e. “Carbon Material Ceramic” or “CCM”, i.e. “Carbon Ceramic Material”. These materials consist of carbon matrices containing carbon fibres usually infiltrated with silicon and a product of reaction between C and Si, silicon carbide (SiC). More specifically, the invention concerns a shaped composite material comprising a inner layer (3; 103) of CCM C/SiC/Si material comprising disorderly short filaments consisting mainly of carbon and respective outer layers (2, 2?; 102, 102?) of C/SiC/Si material and having an orderly fabric structure of mainly carbon fibres.Type: GrantFiled: May 16, 2012Date of Patent: July 14, 2020Assignee: Petroceramics S.p.A.Inventor: Massimiliano Valle
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Patent number: 10703879Abstract: A ceramic bonding material including at least one fibrous material, a flux agent and a thickening agent wherein the ceramic bonding material fired at a set temperature to bond the two adjacent substrate faces.Type: GrantFiled: December 30, 2014Date of Patent: July 7, 2020Assignee: The Boeing CompanyInventors: Tab H. Crooks, MaryAnn S. Muench
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Patent number: 10696028Abstract: Multilayered polymer films are configured so that successive constituent layer packets can be delaminated in continuous sheet form from the remaining film. The films are compatible with known coextrusion manufacturing techniques, and can be made without adhesive layers between layer packets that are tailored to be individually peelable from the film. Instead, combinations of polymer compositions are used to allow non-adhesive polymer layers to be combined such that irreversible delamination of the film is likely to occur at interfaces between layer packet pairs. Some polymer layers, including at least one embedded layer, may include an ultraviolet (UV) light stabilizer such as a UV absorber, antioxidant, or hindered amine light stabilizer (HALS), and these layers may be positioned at the front of each layer packet. After the UV-stabilized layer of one packet has been used, the packet can be peeled away to expose a new UV-stabilized layer of the next layer packet.Type: GrantFiled: April 24, 2019Date of Patent: June 30, 2020Assignee: 3M INNOVATIVE PROPERTIES COMPANYInventors: Stephen A. Johnson, Timothy J. Lindquist, Terence D. Neavin, Onur S. Yordem
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Patent number: 10682830Abstract: Multilayered polymer films are configured so that successive constituent layer packets can be delaminated in continuous sheet form from the remaining film. The films are compatible with known coextrusion manufacturing techniques, and can be made without adhesive layers between layer packets that are tailored to be individually peelable from the remainder of the film. Instead, combinations of polymer compositions are used to allow non-adhesive polymer layers to be combined such that irreversible delamination of the film is likely to occur at interfaces between layer packets pairs. Some of the polymer layers, including at least one embedded layer, comprise an antimicrobial agent, and these layers may be positioned at the front of each layer packet. After the antimicrobial layer of one layer packet has been used, the packet can be peeled away to expose a pristine antimicrobial layer of the next layer packet. The antimicrobial agent may be organic.Type: GrantFiled: June 2, 2014Date of Patent: June 16, 2020Assignee: 3M INNOVATIVE PROPERTIES COMPANYInventors: Steven P. Swanson, Semra Colak Atan, Onur S. Yordem, Stephen A. Johnson, Timothy J. Lindquist, Terence D. Neavin, Matthew T. Scholz