STRUCTURAL INTEGRATED WIRING LOOM
    41.
    发明专利

    公开(公告)号:IN10857DEN2014A

    公开(公告)日:2015-09-11

    申请号:IN10857DEN2014

    申请日:2014-12-18

    Abstract: According to the invention there is provided a Structural integrated wiring loom comprising at least one conductor comprising at least one first conductive fibre ply wherein said at least one first conductive fibre ply comprises at least two electrical connectors a separator structure comprising at least one first non conductive fibre ply and at least one second non conductive fibre ply said separator structure encapsulating said at least one conductor a screen structure which encapsulates said separator structure said screen structure comprising at least one second conductive fibre ply and at least one third conductive fibre ply wherein said device is encapsulated a binder matrix. The device may be used to replace structural panels on a vehicle vessel or craft to transfer electrical power or RF signals data transmission around a composite structure.

    Electrical circuit assemblies and structural components incorporating same

    公开(公告)号:AU2009269753B2

    公开(公告)日:2014-03-27

    申请号:AU2009269753

    申请日:2009-07-07

    Abstract: A structural health monitoring arrangement comprises a component (panel 30) formed of fibre reinforced composite material with a plurality of electrical conducting fibres (conductors 32) intrinsic to the composite defining electrical paths that run through the composite. The paths act as sensing paths running through the material and a detector watches for changes in electrical property indicative of a structural (8x8 array of LEDs 36) event. The paths may be configured as an open or a closed node grid whose electrical continuity is monitored directly or indirectly. Alternatively they may be fibres having a piezoresi stive property and the changes in resistance may be monitored.

    Supercapacitor comprising fibre-based electrodes and separator

    公开(公告)号:GB2505166A

    公开(公告)日:2014-02-26

    申请号:GB201213803

    申请日:2012-08-03

    Abstract: A component including a structural supercapacitor, the supercapacitor comprising a first 12 and second 14 electrode and a separator structure 16 which separates the two electrodes 12,14 and contains a fluidic electrolyte 17; the first 12 and second 14 electrode structures are each formed from a composite material which includes at least one ply of electrically conductive fibres 12a,14a and a binder matrix 12b,14b; the separator 16 comprising at least one ply of non-conducting fibre 16a, where the supercapacitor is formed to be structurally inseparable from the rest of the component. Also disclosed is a method for forming said component. The separator 16 may be formed of glass-fibre 16a in a binder matrix 16b. One or more of the electrodes 12,14 may also contain a porous additive, where the additive may further be electrically conductive. The binder matrix for either electrode 12,14 or the separator 16 may be a polymer, ceramic or glass, more specifically the binder matrix may be epoxy resin. The component may be used in a panel on a vehicle, vessel or craft.

    ELECTRICAL CIRCUIT ASSEMBLIES AND STRUCTURAL COMPONENTS INCORPORATING SAME

    公开(公告)号:CA2730186C

    公开(公告)日:2013-12-03

    申请号:CA2730186

    申请日:2009-07-07

    Abstract: A structural health monitoring arrangement comprises a component (panel 30) formed of fibre reinforced composite material with a plurality of electrical conducting fibres (conductors 32) intrinsic to the composite defining electrical paths that run through the composite. The paths act as sensing paths running through the material and a detector watches for changes in electrical property indicative of a structural (8x8 array of LEDs 36) event. The paths may be configured as an open or a closed node grid whose electrical continuity is monitored directly or indirectly. Alternatively they may be fibres having a piezoresi stive property and the changes in resistance may be monitored.

    A structural metallic rechargeable battery or capacitor

    公开(公告)号:GB2501592A

    公开(公告)日:2013-10-30

    申请号:GB201303372

    申请日:2013-02-26

    Abstract: According to the invention there is provided a structural metallic rechargeable battery and a method of producing same. The battery uses one of an acid, alkaline or Li-ion chemistry and the battery has an anode structure 2, a cathode structure 3, each of which comprises a conductive foam 4, 5 which contains the active electrochemical reagents, and a structural separator 7 which separates the conductive foams 4, 5 of the anode 2 from the cathode 3 respectively, while being bonded to both. The foams 4, 5 contain an electrolyte comprising an electrochemically active material in a binder matrix. The anode structure 2 and the cathode structure 3 are each formed from a metallic element such as a sheet or foil. The structural separator 7 is preferably formed from a composite material including electrically insulating fibres in a further binder matrix. In another aspect, a structural metallic electrical energy storage device such as a capacitor is disclosed, comprising a pair of electrodes with a metallic element with a conductive foam on one surface thereof, with a structural separator separating the foams and being bonded thereto. The battery or capacitor may form a structural panel of a vehicle.

    FUZE SYSTEM, MUNITION, AND METHOD
    50.
    发明专利

    公开(公告)号:AU2023324440A1

    公开(公告)日:2025-02-13

    申请号:AU2023324440

    申请日:2023-07-26

    Abstract: According to the present disclosure, there is provided a fuze system for attaching to a munition body, the fuze system comprising: a body comprising a foremost section; a fuze located in the body; a power generator, attached to the body, for generating electrical power and providing it to the fuze system, the power generator configured to generate electrical power by interacting with an airstream around the fuze system, wherein at least a part of the power generator is located behind the foremost section, the at least a part of the power generator being arranged to rotate relative to the foremost section of the body.

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