Supercondensador estructural utilizable en una estructura mecánica

    公开(公告)号:ES2741485T3

    公开(公告)日:2020-02-11

    申请号:ES13745879

    申请日:2013-07-31

    Abstract: Un componente que incluye un supercondensador (10) estructural, el supercondensador estructural que comprende una primera estructura (12) de electrodo, una segunda estructura (14) de electrodo y una estructura (16) separadora, dicha estructura separadora está formada de un material compuesto que comprende una capa (16a) de fibra de vidrio en una matriz (16b) de aglutinante eléctricamente aislante curada, dicha estructura separadora separa el primer electrodo del segundo electrodo, dicha estructura separadora comprende intersticios (28) causados por la unión parcial de dicha estructura separadora al primer electrodo y la segunda estructura del electrodo, dichos intersticios comprenden un electrolito (27) líquido, en donde el primer electrodo y el segundo electrodo están formados a partir de al menos una capa de material compuesto conductor que incluye fibras (12a, 14a) eléctricamente conductoras en la matriz (12b, 14b) de aglutinante eléctricamente aislante curada y en donde el supercondensador es estructuralmente inseparable del resto del componente.

    Electric IR illumination munition
    54.
    发明专利

    公开(公告)号:AU2017361986A1

    公开(公告)日:2019-10-24

    申请号:AU2017361986

    申请日:2017-11-13

    Abstract: There is disclosed an IR illumination device and munitions comprising the same. There is provided an IR illumination munition device for selective activation where upon activation the device emits IR radiation in the range of wavelengths of from 750nm to 900nm, the device comprising : an electrical power source; an array of IR light emitting diodes to emit the IR radiation.

    Electroless metal deposition for micron scale structures

    公开(公告)号:AU2010217389B2

    公开(公告)日:2014-03-06

    申请号:AU2010217389

    申请日:2010-02-25

    Abstract: A method for electroless metal deposition on a surface in a finely dimensioned space (e.g. the bore of a hollow fibre) comprises introducing into said space an electroless plating solution that has a nil or relatively low plating rate at normal room temperature, and there after heating said structure to an elevated temperature for a period sufficient to cause metal to plate on the wall surface. The steps of introducing and heating may be repeated as necessary to build up a required thickness.

    Heat exchanger comprising a fibre reinforced polymer composite

    公开(公告)号:GB2503494A

    公开(公告)日:2014-01-01

    申请号:GB201211533

    申请日:2012-06-29

    Abstract: The heat exchanger 11 is at least partially comprised of a fibre reinforced polymer composite (FRPC) 14 having at least one elongate void 17. The FRPC is formed of at least one layer of fibre substantially encapsulated in a binder matrix. The elongate void is arranged to receive a heat exchange medium, which may be a fluid 19. The heat exchanger may have a thermal insulation layer 16 to prevent thermal transfer of energy from the fluid to a surface 18 of the heat exchanger. A thermally conductive layer 15, such as a metallic fabric, foil or mesh, may be provided to permit rapid conduction of thermal energy. The elongate void may be created by providing a low melting temperature metal alloy (38a, figure 4a), which is melted and poured out of the FRPC heat exchanger to provide the elongate void. Alternatively, the elongate void may be created by use of a sugar paste that is removed by hot water. The heat exchanger suitable as a heat exchanging panel on a vehicle, vessel or craft, and is lighter and stronger than conventional metal panels.

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