Abstract:
The present invention relates to a composite panel comprising: a surface-material layer; a substrate layer formed on the surface-material layer; and a profile which has the shape of a polygonal frame, receives the surface-material layer on the inside, is formed with a slot-in projection on at least one side and is formed with a slot-in recess on at least one side, and relates to a production method for the composite panel. The present invention can provide a composite material which entails a straightforward construction method and which can maintain a high degree of thermal conductivity and can minimize level differences in the constructed product surface, and provide a production method for the composite panel.
Abstract:
A subfloor component comprises an insulating foam panel having first and second opposing faces and a plurality of intersecting grooves in the first face to define, in cross-section, a plurality of pedestals having at least one wall extending toward the second face, a moisture-resistant layer formed on the first face of the panel that conforms to the pedestals, and a hardboard layer on the second face of the panel.
Abstract:
A construction block 1, which can be used to build ornamental structures, wall boards, decorative coatings etc., includes a front face 2, a back face 3 and edges 4. Each edge has a projection 5 and a recess 6. The projection includes a claw 7 on both sides of the projection 5, and the recess includes a notch 8 on both sides of the recess 6. The projection matches with the recess in order to connect the construction block 1 to a similar construction block. The construction block includes also a wheel 9 that has wedges 11 for each edge 4 of the construction block. The wedge 11 locks the connection between the construction block 1 and the similar construction lock when turning the wheel 9.
Abstract:
A cladding element (100), for use in a building envelope, comprising a first face (101), a second face (102) and a peripheral edge member, the first face and second face being spaced apart to define an intermediate portion of predetermined thickness (t), the peripheral edge member extending around the intermediate portion. The first face (101) comprises a profiled portion (106) simulating a masonry weather joint aesthetic thereby minimizing dirt and debris accumulation on the profiled portion of each cladding element in a constructed wall section. In addition the profiled portion provides a self-cleaning functionality. The profiled portion also provides an improved shadow zone contrast when arranged in a building array.
Abstract:
A floor panel includes a substrate and a top layer provided on the substrate. The top layer is composed of a print and a transparent thermoplastic layer having a thickness of 0.5 mm or less and being situated above said print. The floor panel, at least on two opposite edges, is provided with a straight or curved chamfer extending to below the global level of the print.
Abstract:
Disclosed is a new type of two-ply solid hybrid wood flooring system that utilizes an improved, more dimensional and stable solid wood backing layer or foundation with continuous solid structural edge beams made out of many small pieces of finger jointed solid wood strips and bonded together in such a way which eliminates waste of raw material, uses less adhesive and yields the maximum structural stability. The present invention combines the dimensional stability characteristics of a traditional perpendicular-grain engineered flooring product with the benefit of the thickness of the traditional solid wood flooring.
Abstract:
A building panel, such as a flooring panel or wall panel and a method of assembling the same into a floor, wall cladding, etc. The panel is provided with a locking means in the form of groove (6) and tongue (7) forming a tongue/groove joint for assembling of the panels. In a preferred embodiment, the groove (6) and the tongue (7) are made of water resistant material and fanned with a snap-together joint.
Abstract:
A process for the manufacturing of surface elements is provided herein. The surface elements can include a decorative upper layer and a supporting core. A supporting core with a desired format is manufactured and provided with an upper side and a lower side. The upper side of the supporting core is provided with a décor, by for example printing, which décor is positioned after a predetermined fixed point on the supporting core. The upper side of the supporting core is provided with a protecting, at least partly translucent, wear layer by for example spray coating, roller coating, curtain coating and immersion coating or by being provided with one or more sheets of α-cellulose impregnated with thermosetting resin or lacquer.
Abstract:
A floor panel includes a substrate and a top layer provided on the substrate. The top layer is composed of a print and a transparent thermoplastic layer having a thickness of 0.5 mm or less and is situated above the print. The floor panel, at least on two opposite edges, is provided with a straight or curved chamfer extending to below the global level of the print.
Abstract:
A modular floor system comprises modular floor panels and zippers that are fabricated in a manufacturing facility and subsequently installed in a facility. By virtue of being fabricated in the manufacturing facility the modular floor is subsequently installed in the sports facility with minimal labor and cost, while providing superior performance.