Abstract:
The present invention relates to a process for the preparation of a composite for thermal insulation comprising at least layers (L1), (L2) and (LB), the process comprising the steps of providing layer (L1) containing from 25 to 95% by weight of aerogel and from 5 to 75% by weight of fibers and from 0 to 70% by weight of fillers and layer (L2) containing from 25 to 95% by weight of aerogel and from 5 to 75% by weight of fibers and from 0 to 70% by weight of fillers; applying a composition (C1) comprising an inorganic binder on one surface of the layer (L1) or layer (L2) or layer (L1) and (L2), and combining layer (L1) and layer (L2) in a manner that composition (C1) is located between layer (L1) and (L2), wherein composition (C1) is applied in the form of a, as well as a composite for thermal insulation comprising at least layers (L1), (L2) and layer (LB) which is located between layers (L1) and (L2) and the use of said composite for thermal insulation.
Abstract:
A composite product comprising a metakaolin-based mineral polymer. The composite product has a number of applications including use as a fire resistant material, use as a thermally insulating material and use as an impact resistance material. Methods of preparing a composite product according to the present invention and a kit of parts for preparing the composite product are also disclosed.
Abstract:
La présente invention se rapporte à un dispositif déformable (10), comprenant un premier matériau thermoplastique (40), ledit premier matériau étant sensiblement rigide à une température inférieure à un premier seuil (Τ 1 ) et malléable à une température supérieure audit premier seuil (Τ 1 ), ledit premier seuil (Τ 1 ) étant préférentiellement compris entre 40 °C et 90 °C. Le dispositif comprend une enveloppe externe (16) formée d'au moins un deuxième matériau souple (42), ladite enveloppe externe définissant un logement interne (18), le premier matériau (40) remplissant le logement interne, l'au moins un deuxième matériau souple (42) formant l'enveloppe externe étant à l'état solide au moins jusqu'à un deuxième seuil de température (T 2 ) supérieur 10 °C, préférentiellement de 20 °C, au premier seuil (Τ 1 ).
Abstract:
The present invention is directed to a device for at least partially covering a vehicle floor pan of a motor vehicle, comprises a carrier element made at least by a hard foam material, a vibration decoupling element made at least by a soft foam material, a surface layer to visually cover the device from the top, wherein the device has a shield element, which is made at least by a plastic material and is configured for accepting, absorbing and distributing the energy of a localized impact stress, which is applied on the device from above against the shield element. The present invention is also directed to a method for producing the device.
Abstract:
Flexible composite material, method of obtention and uses thereof The present description refers to a flexible composite material, method of obtention and uses thereof with a surprising resistance to tear, fissure and/or breaking of the material in conditions of extreme use, namely presence of oils and low temperatures, particularly a flexible composite material comprising the following layers: a support layer selected from the following list: fabric, nonwoven fabric, foam knitted fabric, or mixtures thereof; an intermediate layer of polyvinyl chloride, PVC, containing a plurality of sublayers; a compact layer of thermoplastic polyurethane, TPU, containing a plurality of sublayers; wherein the TPU compact layer comprises: 0.4 - 70% w/w of an aromatic TPU; 0.2 - 35% w/w of an aliphatic TPU; The present material can be used in the production of upholsteries, namely upholsteries for the automobile industry, in particular automobile seats.
Abstract:
A multilayer surface material, for covering a surface of an engine bay component, consisting of 2 layers with a first outer layer being an open structured textile fabric and a second layer being a polymeric film layer superposed and laminated together such that the film layer is visible through the open structure of the textile layer.
Abstract:
The invention relates to a composite sandwich base panel for a Unit Load Device. The panel comprises an upper surface layer comprising fibre reinforcement material, a lower surface layer comprising fibre reinforcement material, and a central core section where at least the majority comprises a plurality of particles bound in a matrix material. The upper surface layer and lower surface layer are provided with a matrix material to bind them to the central core section.