Patent classifications
B32B2509/00
ACOUSTICALLY INSULATED MACHINE
An acoustically insulated machine including a source of noise positioned within a housing, a first insulation member positioned within the housing and including a first porous sound absorbing layer and a first dense layer, and a second insulation member positioned within the housing and including a second porous sound absorbing layer and a second dense layer. The first insulation member being is positioned closer to the internal source of noise than the second insulation member and the first insulation member being spaced apart from the second insulation member such that an air gap is formed between the first insulation member and the second insulation member.
Exterior panel for home appliance and method of manufacturing the same
The present disclosure relates to an exterior panel for a home appliance and a method of manufacturing the same. The exterior panel for a home appliance according to one aspect includes: a base layer made of a metal material, a deposition layer formed at a center except for an edge of an upper layer of the base layer and made of a metal material, and a coating layer formed on the deposition layer and an upper surface of the edge of the base layer, on which the deposition layer is not formed.
Dehumidifying element, dehumidifying device including dehumidifying element, and method of manufacturing dehumidifying element
A dehumidifying element includes a plurality of sheets that have moisture adsorption and desorption properties and that are stacked on top of each another. At least some of the sheets each have an irregular shape. The sheets each contain a hygroscopic agent having properties of a re-moistening-type glue that exhibits adherence when adsorbing moisture and that solidifies when being dried. The sheets are bonded to each other by the hygroscopic agent.
ACRYLIC MULTILAYER FOIL WITH IMPROVED MECHANICAL PROPERTIES AND A HIGH WEATHERING RESISTANCE
An acrylic multilayer foil includes a layer in which silica particles are uniformly distributed in an acrylic polymer matrix and at least one further layer. Due to adhesive promoting properties of the layer containing silica particles, the multilayer foil can be easily coated or laminated onto a substrate. The foil has a high weathering resistance and excellent mechanical properties. Therefore, the multilayer foil is highly suitable for surface-protection of materials such as polyvinyl chloride (PVC) and for use in high-pressure laminates (HPLs).
DOMESTIC APPLIANCE
A household appliance includes a receiving region and an insulation element attached to the receiving region for acoustic and/or thermal insulation of the receiving region. The insulation element is manufactured from a viscoelastic polyurethane foam and pressed against the receiving region in such a manner that the insulation element is sealed off in relation to the receiving region in a fluid-tight manner.
Composite film for home appliance and refrigerator with composite film attached
A composite film for a home appliance according to an embodiment of the present invention includes a first film part partially formed of metal material and forming an outer appearance, a second film part formed on one surface of the first film part and formed of resin material, an adhesive part formed on one surface of the second film part and adhering to injection products constituting the home appliance, and a plurality of exhaust grooves that are recessed in the adhesive part and extend from one end to the other end of the adhesive part to discharge air between the adhesive part and the injection products.
Thermal insulation products and production of thermal insulation products
Methods of making thermal insulation products that may be usable to provide insulation in high temperature applications. One method includes sealing a support material (e.g., a nanoporous core such as fumed silica, an aerogel powder, etc.) and at least one vapor within an interior portion of a substantially gas-impermeable envelope (e.g., a metallic and/or polymeric film), and then condensing at least a portion of the vapor after the sealing step to reduce the pressure within the gas-impermeable envelope from a first pressure before the condensing to a lower second pressure after the condensing. The disclosed methods limit or eliminate the need for pumping mechanisms to draw the vacuum within the products, drying of the core before the sealing, and the like.
DECORATIVE GRILL DECAL AND METHOD OF USE
A decorative decal for altering the aesthetics of a barbeque grill, with the decal comprising a flexible and heat resistant substrate having a visually discernible aesthetic element on its first surface and an adhesive on its second surface, with the adhesive suitable for attaching the substrate to the outer surface of the barbeque grill; and a method of use of the decal.
Decorative tape, method of manufacturing the same, and decorative cover including the same
Disclosed are a decorative tape including a printing layer, a base film layer on the printing layer, a nickel deposited layer on the base film layer and a pressure-sensitive adhesive layer on the nickel deposited layer; a method of manufacturing the decorative tape; and a decorative cover using the decorative tape.
FILTER MEDIUM FOR AIR FILTER, FILTER PACK, AIR FILTER UNIT, AND METHOD FOR PRODUCING FILTER MEDIUM FOR AIR FILTER
A filter medium includes first and second porous films mainly containing fluororesin, and a pre-collection member upstream of the first film. The second film is downstream of the first film. The pre-collection member has a pressure drop when air is passed through at a flow rate of 5.3 cm/s of between 15 Pa and 55 Pa, a collection efficiency of NaCl particles having a particle diameter of 0.3 μm when air containing the particles is passed hrough at a flow rate of 5.3 cm/s of between 25% and 80%, a thickness of 0.4 mm or less, and a PF value between 7 and 15. The PF value={−log((100−collection efficiency (%))/100)}/(pressure drop (Pa)/1000). A ratio of the PF value of the pre-collection member to the PF value when the first and second films are overlapped, is between 0.20 and 0.45. The filter medium can be used in a filter pack or filter unit, and may be produced by integrating the first and second films and the pre-collection member using heat lamination.