Abstract:
Described herein are flooring systems comprising: a first floor panel and a second floor panel, each of the first and second floor panels comprising: a top surface, a bottom surface, and a plurality of peripheral edges extending between the top and bottom surfaces; and a coupling surface formed on one peripheral edge; the coupling surfaces of the first and second floor panels being disposed proximate to each other forming a joint; and a thermally activated solid adhesive interspersed between the coupling surfaces of the first and second floor panel. Methods of installing these systems are also described.
Abstract:
A floor panel may include a substrate having a top side and a bottom side. A top layer may be provided on the substrate. The top layer may consist of a printed thermoplastic film and a thermoplastic transparent or translucent layer provided on the printed thermoplastic film. The top layer may be directly applied to the substrate using a glue layer available between the printed thermoplastic film and the top side of the substrate. The substrate may be an extruded synthetic material board including a filler selected from the group consisting of chalk, wood and sand. The substrate at least at two opposite edges may include coupling means provided in the extruded synthetic material board. The floor panel may have a thickness of 5 to 10 millimeters.
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 can be manufactured by press molding and provided with an upper side and a lower side. The upper side of the supporting core can be provided with a structure by a momentary pressing operation using a surface structured matrix. A ground coating can be provided on the structured upper side of the supporting core. A digitally printed decor comprising inks of at least four colors can be applied directly on top of the ground coating by an ink-jet type printer. The structure of the supporting core can enhance the realism of the decor, wherein the decor can be selected from the group consisting of woods and minerals.
Abstract:
Floor panels are shown, which are provided with a mechanical locking system comprising tongue and grooves provided with protrusions and cavities which are displaceable in relation to each other and configured such that the protrusions can obtain a vertically unlocked position where they match the cavities and a vertically locked position where the protrusions overlap each other.
Abstract:
In a method for manufacturing floor panels that have at least a substrate and a top layer provided on the substrate, the top layer including a thermoplastic layer that is translucent or transparent, the method may involve providing the top layer, including the thermoplastic layer, on the substrate. The method may also involve heating at least the thermoplastic layer, and structuring the thermoplastic layer using a mechanical press element.
Abstract:
A portable floor includes floor panels connected in an edge to edge relationship to form an extended temporary floor surface. Each of the panels includes a foam layer having a top face and a bottom face with a first aluminum sheet placed on the top face and a second aluminum sheet placed on the bottom face. The aluminum sheet placed on the bottom face is coated with a paint over the bottom surface while a laminate is applied over the upper aluminum sheet. Extruded edge pieces attach along the sides of the floor panels and include complementary tongues along two edges and grooves along the other two edges. The panels also include latches for securing the edges together.
Abstract:
An integrated fiber cement and foam cladding system is provided that incorporates foam or similar light weight material to improve the insulation capacity of the cladding system. The system includes at least a fiber cement layer and a foam layer disposed on the backside of the fiber cement layer. The system improves the R-value of the building, a measure of the building's resistance to transferring heat or thermal energy.
Abstract:
The present technology relates to connection joints for surface coverings which includes but is not limited to floor coverings and building panels. Embodiments of the present technology include connection joints that are strong and allow for the use of less material than is needed for tongue and groove connection joints. In embodiments related to floor coverings, these advantages are accomplished by reducing total thickness of a floor plank while increasing the thickness of the wear layer relative to the overall thickness of the floor plank and still be able to maintain a structurally strong connection joint.
Abstract:
Floor panel comprising coupling parts enabling two floor panels to adopt two or more different mutually locked positions (P1-P2) when coupled, wherein the two or more mutual positions (P1-P2) differ from each other in that they, at the coupled sides, define two or more different distances (S) between the upper side edges of the floor panels, and adapter elements are provided with the coupling parts, so that the use or non-use of these adapter elements enables setting the mutually locked position (P1-P2).
Abstract:
A set of panels, especially floor panels, comprising panels with a first edge, a second edge opposite the first edge, and a third edge and a fourth edge opposite the third edge, wherein each edge has a supporting profile, suitable to forming with a supporting element of the opposite edge of a similar panel a connection between the panels, the supporting profile of the first edge or the supporting profile of the second edge having a locking element, which in a locking position serves for locking and in an installation position allows joining or separating of the supporting profiles along this direction, and in the laid state a first panel and a second panel form a row within a laying plane, while coupling is provided by which the locking element performs a blockable forced movement, and when forced movement is blocked the locking element is held in the locking position, and when not blocked the locking element can be moved from locking position if the supporting profiles are moved.