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公开(公告)号:US20190277266A1
公开(公告)日:2019-09-12
申请号:US16466532
申请日:2017-12-07
Applicant: Lintec of America, Inc.
Inventor: Marcio Dias Lima , Yang Yang , Luis Plata , Marilu Guerrero , Franklin Le , Randy Allen
Abstract: A hinge-type actuator device in accordance with the present disclosure may include a first and second paddle, a first and second artificial muscle actuator segment, and a plurality of contacts, where the first and second artificial muscle actuator segments are actuated via the contacts, actuation of the first artificial muscle actuator segment causes the first and second paddle to open the hinge-type actuator, and actuation of the second artificial muscle actuator segment causes the first and second paddle to close the hinge-type actuator.
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公开(公告)号:US20190136094A1
公开(公告)日:2019-05-09
申请号:US16096610
申请日:2017-04-28
Applicant: LINTEC CORPORATION , LINTEC OF AMERICA, INC.
Inventor: Takahiro UEDA , Masaharu ITO , Kanzan INOUE
IPC: C09J7/29 , C01B32/168 , C09J7/38 , C09J9/02
Abstract: L1 is a maximum distance across a non-contacting section between intersection points of a straight line crossing the non-contacting section in parallel with an alignment direction of a carbon nanotubes in a plan view of a mounting section with a border between the non-contacting section and a contacting section. L2 is a maximum distance across the non-contacting section between intersection points of a straight line crossing the non-contacting section and intersecting the alignment direction of the carbon nanotubes in the plan view of the mounting section with the border between the non-contacting section and the contacting section. When L1 is larger than L2, at least L2 is more than 0 mm and less than 10 mm. When smaller, at least L1 is more than 0 mm and less than 10 mm. When equal, L1 and L2 are each more than 0 mm and less than 10 mm.
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公开(公告)号:US20190062958A1
公开(公告)日:2019-02-28
申请号:US16103102
申请日:2018-08-14
Applicant: Lintec of America, Inc.
Inventor: Julia Bykova , Marcio D. Lima
IPC: D02G3/44 , C01B32/158 , D02G3/04 , D02G3/36 , D02G3/40
Abstract: An insulated nanofiber having a continuous nanofiber collection extending along a longitudinal axis with an outside surface and an inside portion is described. A first material infiltrates the inside portion, where the outside surface of the nanofiber collection is substantially free of the first material. An electrically-insulating second material coats the outside surface of the nanofiber collection. A method of making an insulated nanofiber collection is also disclosed.
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公开(公告)号:US20190047247A1
公开(公告)日:2019-02-14
申请号:US16044739
申请日:2018-07-25
Applicant: Lintec of America, Inc.
Inventor: Marcio D. Lima , Julia Bykova
IPC: B32B5/12 , C01B32/162
Abstract: A density of a nanofiber sheet can be changed using an edged surface, and in particular an arcuate edged surface. As described herein, a nanofiber sheet is drawn over (and in contact with) an arcuate edged surface. Depending on whether the arcuate surface facing a direction opposite the direction in which the nanofiber sheet is being drawn is convex or concave determines whether the nanofiber sheet density is increased relative to the as-drawn sheet or decreased relative to the as-drawn sheet.
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公开(公告)号:US20180194101A1
公开(公告)日:2018-07-12
申请号:US15916354
申请日:2018-03-09
Applicant: Lintec of America, Inc.
Inventor: Marcio D. Lima , Julia Bykova
CPC classification number: C08K3/041 , B32B5/02 , B32B5/12 , B32B7/06 , B32B7/12 , B32B9/007 , B32B9/043 , B32B15/14 , B32B17/10788 , B32B17/10889 , B32B27/30 , B32B2260/021 , B32B2260/046 , B32B2307/202 , B32B2307/732 , B32B2307/748 , B32B2311/18 , B82Y40/00 , C08J5/042 , C08J5/18 , C08J7/047 , C08J2383/04 , C08J2483/04 , C08K3/04 , C08K3/042 , C08K3/045 , C08K3/08 , C08K7/06 , C08K2003/0831 , C08K2003/0881 , C08K2201/011 , C08L23/0853 , C08L29/14 , C09J7/22 , C09J7/38 , C09J9/02 , C09J201/02 , C09J2201/16 , C09J2201/602 , C09J2201/606 , C09J2205/10 , C09J2205/102
Abstract: Techniques are disclosed for producing multilayered composites of adhesive nanofiber composites. Specifically, one or more sheets of highly aligned nanofibers are partially embedded in an adhesive such that at least a portion of the nanofiber sheet is free from adhesive and is available to conduct current with adjacent electrical features. In some example embodiments, the adhesive nanofiber composites are metallized with a conductive metal and in these and other embodiments, the adhesive nanofiber composites may also be stretchable.
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公开(公告)号:US09964783B2
公开(公告)日:2018-05-08
申请号:US15800882
申请日:2017-11-01
Applicant: Lintec of America, Inc.
Inventor: Chi Huynh , Masaharu Ito
CPC classification number: G02F1/0063 , B32B15/00 , B32B25/00 , B32B27/00 , B32B37/12 , B32B37/1284 , B82Y20/00 , B82Y30/00 , B82Y40/00 , C01B32/16 , C01B2202/08 , C01B2202/20
Abstract: A nanofiber sheet is described that is composed of a substrate and a layer of oriented nanofibers. Nanofibers of the sheet can be oriented in a common direction. In some orientations, light absorbent sheets can absorb over 99.9%, and in some cases over 99.95%, of the intensity of light incident upon the sheet. Methods for fabricating a light absorbent sheet are also described.
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公开(公告)号:US20180043665A1
公开(公告)日:2018-02-15
申请号:US15552697
申请日:2016-02-23
Applicant: LINTEC OF AMERICA, INC. , LINTEC CORPORATION
Inventor: Raquel OVALLE
CPC classification number: B32B27/18 , B32B9/007 , B32B27/12 , B32B27/14 , B32B27/38 , B32B2255/02 , B32B2255/26 , B32B2262/106 , B32B2264/108 , B32B2305/77 , B32B2307/50 , B32B2405/00 , B82Y30/00 , C09J7/00 , C09J11/04 , C09J11/06 , C09J163/00
Abstract: An adhesive sheet includes: a carbon nanotube sheet including a plurality of carbon nanotubes aligned preferentially in one direction within a plane of the sheet; and an adhesive agent layer including an adhesive agent, in which a rupture elongation of the adhesive sheet is 10% or more.
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公开(公告)号:US12151215B2
公开(公告)日:2024-11-26
申请号:US17770812
申请日:2020-10-23
Applicant: LINTEC OF AMERICA, INC.
Inventor: Marcio D. Lima
IPC: B01D71/02 , B01D67/00 , B23K26/38 , B82Y30/00 , B82Y40/00 , C01B32/168 , D01F9/127 , D04H1/4242 , D04H1/732 , G03F1/62
Abstract: An apparatus and method for transferring nanofiber structures (e.g., nanofiber films, nanofiber sheets, stacks of nanofiber grids, nanofiber films, nanofiber sheets, and combinations thereof) between various substrates are described. The techniques described use a soluble layer on a substrate that is subsequently dissolved, thus freeing the nanofiber structure from the substrate. This liquid phase techniques preserves the mechanical integrity and the purity of the nanofiber structures.
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公开(公告)号:US12129175B2
公开(公告)日:2024-10-29
申请号:US18378531
申请日:2023-10-10
Applicant: LINTEC OF AMERICA, INC.
Inventor: Marcio D. Lima
IPC: C01B32/158 , B32B5/12 , B32B7/022 , C01B32/159 , B82Y30/00
CPC classification number: C01B32/158 , B32B5/12 , B32B7/022 , C01B32/159 , B32B2250/20 , B32B2262/106 , B32B2307/732 , B82Y30/00 , C01B2202/02 , C01B2202/04 , C01B2202/06 , C01B2202/08 , C01B2202/34 , C01B2202/36 , C01P2004/03
Abstract: Nanofiber membranes are described that include multiple layers of nanofiber structures, where each structure is a composite composition of multiwall carbon nanotubes and one or both of single wall and/or few walled carbon nanotubes. By selecting the relative proportions of multiwall and one or more of single/few wall carbon nanotubes in a nanofiber film, the membrane can be fabricated to withstand the heating that occurs during operation in an EUV lithography machine, while also having enough mechanical integrity to withstand pressure changes of between 1 atmosphere (atm) and 2 atm between operating cycles of an EUV lithography machine.
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公开(公告)号:US12085844B2
公开(公告)日:2024-09-10
申请号:US18231000
申请日:2023-08-07
Applicant: LINTEC OF AMERICA, INC.
Inventor: Marcio D. Lima , Takahiro Ueda
CPC classification number: G03F1/22 , G03F1/64 , G03F7/70983
Abstract: A filtration formed nanostructure pellicle film is disclosed. The filtration formed nanostructure pellicle film includes a plurality of carbon nanofibers that are intersected randomly to form an interconnected network structure in a planar orientation. The interconnected structure allows for a high minimum EUV transmission rate of at least 92%, with a thickness ranging from a lower limit of 3 nm to an upper limit of 100 nm, to allow for effective EUV lithography processing.
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