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公开(公告)号:US11454022B2
公开(公告)日:2022-09-27
申请号:US16766881
申请日:2018-08-24
发明人: Giuseppe Vairo , Luigi Bertucelli , Elena Ferrari
摘要: External thermal insulation composite systems described herein include a concrete or masonry wall and a thermal insulation board on the concrete or masonry wall. The thermal insulation board includes a polyurethane/polyisocyanurate foam having a density of less than 70 kg/m3 according to ASTM D 1622. Methods of preparing the external thermal insulation composite systems and the thermal insulation boards are also described.
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公开(公告)号:US20210054158A1
公开(公告)日:2021-02-25
申请号:US16992100
申请日:2020-08-13
发明人: Hongyuan Wang , Hezhi Wang , Yilan Zhang
摘要: A prepreg is a blend of a fiber reinforcement, a matrix resin and a filler. Based on 100 parts by mass of the prepreg, the fiber reinforcement is 20-60 parts by mass, the matrix resin is 20-65 parts by mass, and the filler is 10-40 parts by mass. The filler is a flame-retardant organic microsphere or a blend of the flame-retardant organic microsphere and an inorganic filler, and the particle size of the filler is preferably 0.1 microns to 15 microns. A copper-clad laminate and a printed circuit board are also disclosed. In various embodiments, the stability of material properties of the prepreg can be improved, the prepreg manufacturing process is simplified, the prepreg production efficiency is improved. Due to the high production efficiency of the prepreg, the manufacturing cost of the prepreg, the copper-clad laminate and the printed circuit board can be reduced.
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公开(公告)号:US20210001610A1
公开(公告)日:2021-01-07
申请号:US16976988
申请日:2019-03-01
申请人: LEONARDO S.P.A.
发明人: Luigi PISU , Gianni IAGULLI , Maria Sabrina SARTO , Fabrizio MARRA , Julian LECINI , Alessio TAMBURRANO
摘要: A multilayer radar-absorbing laminate includes three juxtaposed blocks.
A first electrically conductive block is arranged toward the inside of the aircraft in use.
A second electromagnetic intermediate absorber block has a layer of electrically non-conductive fiber sheets is permeated by graphene-based nanoplatelets to achieve a periodic and electromagnetically subresonant layer, the conductive layers containing graphene nanoplatelets alternating with non-conductive layers.
A third block of electrically non-conductive material is arranged towards the outside and forms part of the outer surface of the aircraft. The second block is produced by depositing on the fiber sheets a suspension of graphene nanoplatelets in a polymeric mixture, with controlled penetration of the graphene nanoplatelets into the fiber sheets. A plurality of dry fiber sheets sprayed with the suspension of graphene nanoplatelets is superimposed. An unpolymerized thermosetting synthetic resin is infused into a lay-up made of the first, second and third blocks. Afterwards, the thermosetting resin is polymerized.-
公开(公告)号:US10815395B2
公开(公告)日:2020-10-27
申请号:US15743346
申请日:2016-07-05
申请人: AICA KOGYO CO., LTD.
发明人: Kazuya Shido , Kazuki Kouyama , Keisuke Shitan
IPC分类号: C09J7/29 , B32B5/02 , B32B29/00 , B44C5/04 , B32B17/04 , C09J201/00 , B32B37/18 , B32B38/00 , C08K7/14
摘要: A decorative sheet according to one aspect of the present disclosure comprises a decorative plate and an adhesive layer disposed on a first side of the decorative plate. The decorative plate comprises (A) a decorative layer disposed on a second side from the first side, (B) a core layer made of a prepreg containing a fiber base material, and (C) a balancing layer including mixed paper containing an endothermic metal hydroxide as a base material.
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公开(公告)号:US20200307152A1
公开(公告)日:2020-10-01
申请号:US15931115
申请日:2020-05-13
申请人: Jurgen Schmerler
发明人: Jurgen Schmerler
摘要: A remote frequency communication device and method of embedding the device into a physical product build from carbon fiber materials whereby the communication device can interact with an interrogation device such as a mobile phone or tablet. The method provides steps to layer the communication device in a way that prevents the conductive carbon fiber material from short-circuiting the electro-magnetic field of the interrogating device by integrating insulating and protective layers around the communication device.
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公开(公告)号:US10723875B2
公开(公告)日:2020-07-28
申请号:US15744686
申请日:2017-08-14
发明人: Xianping Zeng , Liexiang He
摘要: The present disclosure relates to a halogen-free epoxy resin composition and a prepreg and a laminate using the same. The halogen-free epoxy resin composition comprises: (A) a halogen-free epoxy resin; (B) an active ester resin; and (C) a reactive phosphorous-containing flame retardant. The prepreg and laminate made from the halogen-free epoxy resin composition have the advantages of high inter-laminar adhesive force, low coefficient of thermal expansion and high heat-humidity resistance, and can achieve the halogen-free flame retardant purpose.
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公开(公告)号:US10688760B2
公开(公告)日:2020-06-23
申请号:US16337209
申请日:2018-05-11
发明人: Goran Solenicki , Joris Wismans , Sandeep Chandrakant Kulkarni , Rein Mollerus Faber , Erik Schwartz
IPC分类号: B32B27/08 , B32B3/12 , B32B5/12 , B32B7/12 , B32B17/04 , B32B27/20 , B32B27/06 , B32B5/24 , B32B5/32 , B32B17/06 , B32B27/28 , B32B27/30 , B32B27/32 , B32B27/36
摘要: Fire-retardant composites, methods of making fire-retardant composites, and use thereof are described. A fire-retardant composite can include at least two fire-retardant laminates, and a porous thermoplastic core material disposed between the at least two fire-retardant laminates. Each laminate can have one or more ply, each of the plies can include a plurality of fibers in a thermoplastic polymer matrix that includes a fire-retardant composition. The fire-retardant composite meets European fire-retardant standards for rail transportation.
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公开(公告)号:US20190217572A1
公开(公告)日:2019-07-18
申请号:US16280137
申请日:2019-02-20
申请人: Jurgen Schmerler
发明人: Jurgen Schmerler
CPC分类号: B32B7/02 , B32B9/007 , B32B17/04 , B32B2305/342 , B32B2307/206 , B62K19/02 , B62K2207/00
摘要: A remote frequency communication device is embedded into a physical product build from carbon fiber materials whereby the communication device can interact with an interrogation device such as a mobile phone or tablet.The present invention specifies a method to layer the communication device in a way that prevents the conductive carbon fiber material from short-circuiting the electro-magnetic field of the interrogating device by integrating insulating and protective layers around the communication device.
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公开(公告)号:US10328676B2
公开(公告)日:2019-06-25
申请号:US14181685
申请日:2014-02-16
摘要: A composite structure having a number of thermoset resin containing elements and a number of thermoplastic elements and at least one interface between the thermoset resin containing elements and the thermoplastic elements is provided. The thermoset resin containing elements and the thermoplastic elements have functional groups at the interface which bond to each other when the composite structure is cured and the functional groups are independently selected from amines, carboxylic acids, acid anhydrides, oxiranes, and derivatives thereof in their non-bonded condition. Additionally, a blade having such a composite structure is provided.
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公开(公告)号:US10322559B2
公开(公告)日:2019-06-18
申请号:US14192151
申请日:2014-02-27
申请人: Teijin Limited
IPC分类号: B32B1/00 , B32B1/02 , B32B5/02 , B32B17/04 , B29C43/14 , B29C70/12 , B29C70/34 , B29C70/40 , B29C70/46 , C08J5/04 , B29K101/12 , B29K105/12 , B29K105/08
摘要: There is provided a shaped product made of a fiber-reinforced composite material including reinforcing fibers having an average fiber length of 5 to 100 mm and a thermoplastic resin. In the shaped product, a volume fraction of reinforcing fibers is 5 to 80%, a reference plane (S) and a standing plane (B) inclined at an angle of 45 to 90 degrees with respect to the reference plane are included, a ratio of an area of the standing plane (B) to an area of the reference plane (S) is 0.5 to 100, and in the fiber-reinforced composite material constituting the shaped product, a ratio of a reinforcing fiber bundle (A) including the reinforcing fibers of a critical number of single fiber or more to the total amount of the reinforcing fibers is 20 Vol % or more and 99 Vol % or less.
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