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公开(公告)号:US20180057404A1
公开(公告)日:2018-03-01
申请号:US15792322
申请日:2017-10-24
Applicant: Garmor Inc.
Inventor: Sean Christiansen , David Restrepo , Richard Stoltz , Jeff Bullington
IPC: C04B14/02 , C04B28/04 , C01B32/192 , C01B32/198 , C04B14/06
CPC classification number: C04B14/026 , C01B32/19 , C01B32/192 , C01B32/198 , C01B32/20 , C01B32/23 , C04B14/06 , C04B26/26 , C04B28/04 , C04B14/00 , C04B40/0021
Abstract: A method of producing dispersed of high quality graphene/graphite oxides in a powder matrix to then be reacted to form a composite. Where the powders have similar hydrophobicity and the graphene/graphite oxides has minimal surface oxidation or minimal epoxy group and where the powders are sonically mixed.
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公开(公告)号:US20160016803A1
公开(公告)日:2016-01-21
申请号:US14773013
申请日:2014-03-07
Applicant: GARMOR, INC.
Inventor: Richard Stoltz , Jeff Bullington
Abstract: This is generally a method of producing graphene-containing suspensions of flakes of high quality graphene/graphite oxides and method of producing graphene/graphite oxides. Both the exfoliating graphite into flakes and oxidizing the graphite flakes and the preparation and suspension of the flakes can be done with high volume production and at a low cost.
Abstract translation: 这通常是生产含有石墨烯的高品质石墨烯/石墨氧化物薄片的悬浮液的方法和石墨烯/石墨氧化物的生产方法。 将去角质石墨粉碎成薄片并氧化石墨薄片以及薄片的制备和悬浮均可以大量生产和低成本进行。
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公开(公告)号:US20170152147A9
公开(公告)日:2017-06-01
申请号:US14773013
申请日:2014-03-07
Applicant: GARMOR, INC.
Inventor: Richard Stoltz , Jeff Bullington
Abstract: This is generally a method of producing graphene-containing suspensions of flakes of high quality graphene/graphite oxides and method of producing graphene/graphite oxides. Both the exfoliating graphite into flakes and oxidizing the graphite flakes and the preparation and suspension of the flakes can be done with high volume production and at a low cost.
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公开(公告)号:US20190263977A1
公开(公告)日:2019-08-29
申请号:US16343855
申请日:2017-10-26
Applicant: Garmor Inc.
Inventor: David Restrepo , Matthew McInnis , Richard Stoltz , Jeff Bullington
Abstract: Existing methods of extrusion and other techniques to compound host and additives material uniformly disperse the additive in the host. This innovation uses ball milling to a coat a host particle with an additive dramatically reducing the additive required to achieve a percolative network in the host.
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公开(公告)号:US10351711B2
公开(公告)日:2019-07-16
申请号:US15559741
申请日:2016-03-18
Applicant: Garmor Inc.
Inventor: Sean Christiansen , David Restrepo , Dan O'Donnell , Matthew McInnis , Richard Stoltz , Jeff Bullington
IPC: C09C1/44 , C04B28/04 , C08K3/04 , C01B32/23 , C01B32/194 , C01B32/198 , C04B14/02 , C09C1/00
Abstract: This is generally a method of producing dispersed high quality engineered composite structures using flat flakes of graphene/graphene oxides/reduced graphene oxides in a host as the reinforcing additive of the composite.
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公开(公告)号:US09951436B2
公开(公告)日:2018-04-24
申请号:US14353760
申请日:2012-10-23
Applicant: Garmor, Inc.
Inventor: Jeff Bullington , Richard Stoltz
Abstract: Graphene has been used in nanocomposites as constituents/doping in plastics or epoxy providing dramatic enhancement of the mechanical properties but have not progressed past the laboratory level novelty. This invention can provide a graphene based composite structure with a density less that 1.9 g/cm3 for a fiber, yarn, rope or cable and a density less that 1.5 g/cm3 for a sheet both structure have tensile and shear strength greater than either Aluminum or Steel; thus providing a graphene material that is both much lighter and stronger.
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公开(公告)号:US20180086643A1
公开(公告)日:2018-03-29
申请号:US15564637
申请日:2016-03-31
Applicant: Garmor Inc.
Inventor: Sean Christiansen , David Restrepo , Richard Stoltz , Jeff Bullington
IPC: C01B32/198 , C01B32/23
CPC classification number: C01B32/198 , B82Y30/00 , C01B32/23 , C01B2204/04 , C01B2204/32 , C04B14/024 , C04B20/1055 , C04B20/1066 , C04B28/04 , C08L95/00 , C08L2555/50 , C04B20/0048 , C04B40/0021 , C04B20/026
Abstract: This can be a method of making a high strength composite reinforcing fiber using flat GO flakes coated on a conventional reinforcing fiber. This maintains some the flexibility of the fiber and aligns the flat graphene flakes along the surface of the fiber; this dramatically increases the strength of the fiber. It also allows bonding between overlapping flakes, in contrast to flakes being uniformly dispersed in a host material that is being reinforced and dramatically increases the strength of the host material.
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公开(公告)号:US09828290B2
公开(公告)日:2017-11-28
申请号:US15503171
申请日:2015-08-18
Applicant: Garmor Inc.
Inventor: Sean Christiansen , David Restrepo , Richard Stoltz , Jeff Bullington
CPC classification number: C04B14/026 , C01B31/043 , C01B31/0469 , C01B32/192 , C01B32/198 , C01B32/20 , C04B14/06 , C04B26/26 , C04B28/04 , C04B14/00 , C04B40/0021
Abstract: A method of producing dispersed of high quality graphene/graphite oxides in a powder matrix to then be reacted to form a composite. Where the powders have similar hydrophobicity and the graphene/graphite oxides has minimal surface oxidation or minimal epoxy group and where the powders are sonically mixed.
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公开(公告)号:US11482348B2
公开(公告)日:2022-10-25
申请号:US15580475
申请日:2016-03-31
Applicant: Garmor Inc.
Inventor: Matt McInnis , Jeff Bullington , David Restrepo , Richard Stoltz , Sean Christiansen
Abstract: The present method includes graphene, preferably in the form of flat graphene oxide flakes with, by mass, preferably between 0.5% and 35% PAN. The graphene oxide and conductive-polymer PAN is in a co-suspension in water and is co-deposited on a surface. The deposited PAN with a high-percentage graphene-oxide layer is dried. Our tests have produced electrical conductivities 1000 times more conductive than the PAN by itself. Our testing indicates that using flakes that are flat is essential to getting very high conductivity, and that controlled oxidation is very important in suspending graphene oxide in water.
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公开(公告)号:US10981791B2
公开(公告)日:2021-04-20
申请号:US15564637
申请日:2016-03-31
Applicant: Garmor Inc.
Inventor: Sean Christiansen , David Restrepo , Richard Stoltz , Jeff Bullington
Abstract: This can be a method of making a high strength composite reinforcing fiber using flat GO flakes coated on a conventional reinforcing fiber. This maintains some the flexibility of the fiber and aligns the flat graphene flakes along the surface of the fiber; this dramatically increases the strength of the fiber. It also allows bonding between overlapping flakes, in contrast to flakes being uniformly dispersed in a host material that is being reinforced and dramatically increases the strength of the host material.
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