Abstract:
A composite material for the realization of a component or a structural part, in particular for installation on-board a vehicle, adapted to integrate electrical devices and connections, comprises a non-conductive polymeric matrix; a dispersed phase comprising at least one promoter of carbonization adapted to form carbonaceous conductive structures; and a reinforcing-fibre filler adapted to direct the distribution and orientation of the dispersed phase in the polymeric matrix.
Abstract:
A composite material for the realization of a component or a structural part, in particular for installation on-board a vehicle, adapted to integrate electrical devices and connections, comprises a non-conductive polymeric matrix; a dispersed phase comprising at least one promoter of carbonization adapted to form carbonaceous conductive structures; and a reinforcing-fibre filler adapted to direct the distribution and orientation of the dispersed phase in the polymeric matrix.
Abstract:
A composite material for the realization of a component or a structural part, in particular for installation on-board a vehicle, adapted to integrate electrical devices and connections, comprises a non-conductive polymeric matrix; a dispersed phase comprising at least one promoter of carbonization adapted to form carbonaceous conductive structures; and a reinforcing-fibre filler adapted to direct the distribution and orientation of the dispersed phase in the polymeric matrix.
Abstract:
A tank comprising a first and a second half-shell comprising a hydrocarbon barrier layer made of a first material and a structural containment layer made of a second material is described, wherein the material of the barrier layer is EVOH and the material of the structural containment layer is a mixture of polyethylene, an agent for promoting bonding with EVOH and a carbon nanotube filler.
Abstract:
A composite material for the realization of a component or a structural part, in particular for installation on-board a vehicle, adapted to integrate electrical devices and connections, comprises a non-conductive polymeric matrix; a dispersed phase comprising at least one promoter of carbonization adapted to form carbonaceous conductive structures; and a reinforcing-fibre filler adapted to direct the distribution and orientation of the dispersed phase in the polymeric matrix.
Abstract:
What is described is a control device for an electrical circuit integrated on a substrate (12) made of polymeric material, incorporating carbonaceous conductive structures which define at least one track (10) having improved electrical conductivity properties with respect to the substrate, which control device includes an operating area (14) able to be acted on by a user and having a pressure-deformable structure able to disturb the electrical properties of the track (10) by a piezo-resistive effect, characterized in that the conductive track (10) includes at least one linear segment (10'; 10") which has a winding progression at the operating area (14).
Abstract:
A method for the manufacturing of a component or a structural part made of polymeric material, adapted to integrate electrical devices and connections and a system for carrying out said method. The method includes the injection moulding of a composite material comprising a non-conductive polymeric matrix; a dispersed phase comprising at least one promoter of carbonization adapted to form carbonaceous conductive structures; and a reinforcing-fibre filler adapted to direct the distribution and orientation of said dispersed phase in the polymeric matrix, in which the injection of the composite material into a mould arranged for forming the component or the structural part includes supplying the material in a spatially more-concentrated way at pre-established regions of the component or of the structural part designed for the incorporation of electrical devices or connections, and supplying the material in a spatially more spread-out way elsewhere.