Abstract:
Support panels for masonry objects and associated methods of use are disclosed herein. A support panel for masonry objects may include an inner surface, an outer surface, at least one stiffening channel formed longitudinally along the support panel, and a plurality of substantially C-shaped tabs extending from the outer surface, the tabs being disposed in spaced apart relation to one another to form a grid, wherein the tabs are configured to contactingly support at least a portion of a masonry object.
Abstract:
Apparatus is for a baseboard installable relative to a wall assembly supported by a wall-support structure. The apparatus includes a body assembly configured for installation relative to the wall assembly and the baseboard. A visual-reveal feature is formed between the body assembly and the baseboard once the body assembly and the baseboard are positioned relative to each other, the body assembly is installed to the wall assembly, and the baseboard is installed to the wall assembly. The body assembly includes a wall-support contact portion configured to contact the wall-support structure. First engagement assembly extends from the wall-support contact portion. Second engagement assembly is configured to be attachable to the baseboard. Second engagement assembly and first engagement assembly are configured to engage with each other.
Abstract:
A façade (100) comprising at least one façade panel (112) having a front face (131) and a rear face (113) and at least two panel support elements (108). Each panel support element (108) comprises a first arm (110), a second arm (109) wherein at least a portion of the second arm (109) is attached to the rear face (113) of the façade panel (112). The panel support element (108) also comprising at least two panel retaining elements (101), each comprising a first flange (104) and a channel 106, wherein at least a portion of the second arm (109) of the panel support element (108) is restrained within the channel (106) and each panel retaining element (101) is attached to a building structural substrate (102).
Abstract:
Magnetic receptive media, the magnetic receptive media comprises at least one printable substrate layer and at least one layer formed from a hot melt polymer composition, the hot melt polymer composition comprising Greater than about 70% to about 95% magnetite and about 5% to less than about 30% thermoplastic polymer and methods of making and using the same.
Abstract:
Disclosed herein are embodiments of foam backing panels for use with lap siding and configured for mounting on a building. Also disclosed are lap siding assemblies and products of lap sidings. One such embodiment of the foam backing panel comprises a rear face configured to contact the building, a front face configured for attachment to the lap siding, alignment means for aligning the lap siding relative to the building, means for providing a shadow line, opposing vertical side edges, a top face extending between a top edge of the front face and rear face and a bottom face extending between a bottom edge of the front face and rear face.
Abstract:
Disclosed herein are embodiments of foam backing panels for use with lap siding and configured for mounting on a building. Also disclosed are lap siding assemblies and products of lap sidings. One such embodiment of the foam backing panel comprises a rear face configured to contact the building, a front face configured for attachment to the lap siding, alignment means for aligning the lap siding relative to the building, means for providing a shadow line, opposing vertical side edges, a top face extending between a top edge of the front face and rear face and a bottom face extending between a bottom edge of the front face and rear face. The foam backing panel has alternating high density portions and low density portions. Fasteners used to attach the foam back panel to an exterior wall pass through the high density portions.
Abstract:
A modular panel unit according to one embodiment includes a major subunit adapted for being secured to a keyed backing panel, and at least one minor subunit. The major subunit includes at least one connector adapted for coupling to a corresponding connection feature of the keyed backing panel in order to secure the major subunit to the keyed backing panel; and one or more coupling features. Each minor subunit includes: one or more couplers adapted for coupling to the one or more coupling features of the major subunit in order to secure the minor subunit to the major subunit. Additional systems and methods are also disclosed.
Abstract:
A variable-geometry modular structure made of a metallic or plastic alloy, having at least one modular element with variable-geometry, with a honey-comb structure, to be joined to different modular components to obtain different embodiments. The modular element has a series of passages in which vacuum is created when manufacturing, through molding or extrusion, the modular element itself; the above modular element is a structural element and has at the same time insulating characteristics. The external surfaces of the modular element have a series of recesses and ribs, shaped as a dovetail, that allow mutually joining two or more elements. Modular elements can further be butt-joined by using posts arranged next to the passages. The modular element can be joined to a panel which has a substantially smooth or a corrugated external surface, which is used for applying plaster or other finishing elements, such as any type photovoltaic panels or tiles.
Abstract:
A structural design is proposed, comprising rear-ventilated cladding elements (1), in particular plates or boards, which can be hung in front of a supporting framework (2), in particular consisting of vertical support elements and horizontal bearing elements, wherein the cladding elements are each assigned a frame (3) which spans a rear-ventilation cross-section (4) and the upper and lower frame leg profiles (5, 6) of which have ventilation openings (8) leading to the front (7) of the cladding. In order to provide advantageous rear-ventilation conditions it is proposed that at least the upper frame leg profile interior (12) is assigned a splash guard (13) which is arranged in the manner of a labyrinth seal, adjoins the frame leg profile below the ventilation openings (8), covers the ventilation openings (8) and preferably faces with the free end thereof towards the front (7) of the cladding.
Abstract:
Building panels and a method to produce such panels including a solid decorative surface having a decorative wear layer including fibers, binders, color substance and wear resistant particles. A method of manufacturing a building panel having a decorative surface connected to a core wherein the surface has at least two homogenous layers, a lower sub layer and an upper decorative layer, the upper decorative layer including fibers, a first color substance a binder and wear resistant particles, the lower sub layer including fibers, a second color substance, and a binder, whereby the method including the steps of applying the layers comprising a mix of fibers, binder, wear resistant particles and color substance on a core wherein the layers comprise different colors, displacing particles from their original position such that particles from the sub layer are visible on the decorative surface, and curing the layers by providing heat and pressure.