Abstract:
Rectangular floor panels, a fastening system for joining the panels, and a method for laying and interlocking the panels are disclosed. The panels are provided complementary, form-fitting retaining profiles extending over the length of the sides. The complementary edges of the panels allow two adjacent panels to be positively joined such that displacement of the panels away from one another is prevented, while enabling articulation of the panels with respect to one another at the joint location. The method of installation provides for installing a new panel to a first row and a panel in a second row by first joining the new panel to the panel of the second row at its short side, followed by pivoting the new panel upwards out of the plane of the laid panels along its long side, along with at least the adjacent end of the first panel in the second row, into an inclined position, and sliding the new panel into the retaining profile of the panels in the first row. The new panel and the raised end of the panel in the second row are then pivoted down into the plane of the laid panels. Laying of panels continues according to this process until the complete floor assembly has been laid.
Abstract:
Floor element (1), which is mainly in the form of a board with triangular, quadratic, rectangular, rhomboidal or polygonal shape as seen from above. The floor element (1) is provided with edges (2), a lower side (7) and a decorative upper layer (3). The floor elements (1), which are intended to be joined via tongue and groove are on at least two opposite edges (2), preferably on all edges (2) provided with holes (4). The holes (4) extends inwards from the edge (2) mainly parallel to the decorative upper layer (3). The holes (4) are arranged on a predetermined distance from the decorative upper layer (3) and on a predetermined distance from a closest corner between two adjacent edges (2), whereby the holes (4) are intended to receive each one part of a guiding means (6).
Abstract:
An interlockable panel for forming a generally planar surface. Each panel includes a first surface positioned substantially in a plane and a second surface facing opposite the first surface and substantially parallel to and displaced from the first surface. Each surface has a perimeter defined by edges extending between the first and second surfaces. The edges may include male or female edges. Each male edge includes a tongue that extends outwardly from the male edge and a longitudinally extending void that extends inwardly of the tongue. Each female edge includes a groove having a protrusion position within the groove and extending outwardly from the groove generally parallel to the first surface. An adjacent panel may be linked to a fixed panel such that the tongue engages the groove and the protrusion engages the void. The invention also includes a method for assembling a generally planar surface using interlockable panels such as the above-mentioned. The method generally includes the steps of placing the first surfaces of adjacent panels within a common plane, and manually linking of the male edge of the first panel with the female edge of a second panel, by relatively moving the panels towards each other while maintaining said panels in a common plane.
Abstract:
A panel joint for positioning and holding panels together via their respective edges in order to form a surface comprising a plurality of said panels assembled together. The edges of said panels are provided with a core and means for mechanically locking said panels towards one another via interacting locking surfaces. The edges further comprises friction enhancing means intended for impeding assembled panels from sliding in a direction along the edges.
Abstract:
The durable products of prior art woodworking have always been unyielding constructions of individual wooden elements held and forced rigidly in place by rigid means such as joinery, fasteners, adhesives, or supporting structures. In the present invention a new method of mobile wood joinery alone is used to draw the wooden elements into place while yet allowing them a range of motion. The joinery of the present invention is mobile, resilient, elastic, and dimensionally dynamic and so are the products made using the present invention. In the present invention a width of resilient elastic adhesive is bonded to the adjoining surfaces of the unmilled individual wooden elements of a wooden product. When the adhesive dries, a mobile, resilient, elastic, dimensionally dynamic joint has been formed. This joint can be bent, hinged, stretched, or compressed in many different directions. The individual wooden elements joined using the present invention can move independently of each other. The joint formed by the present invention is inexpensive and easy to form, yet will not be destroyed or loosened by impact during use or by dimensional swelling and contracting of the individual wooden elements it draws together. The individual wooden elements will not be permanently displaced or damaged by impact or by swelling and contracting of the wood, but will always be drawn back to their original correct positions by the mobile joinery of the present invention. A continuously smooth entirely wooden surface may be formed using the present invention. Alternatively a wooden surface that is substantially continuous may be formed having resilient, elastic, dimensionally dynamic joints visible at its surface that are less than {fraction (1/16)}null wide.
Abstract:
A cornerboard assembly comprises an interlocking, opposite direction joint between cornerboard millwork components. Dual male members extend from the end of one of the respective components, forming an opening between the members. The male members and opening formed between the members have planar outer surfaces. The second component comprises an end with a single male member which is configured to be inserted into the opening of the first component. The male member of the second component and the other surfaces at this end also have planar outer surfaces. The planar outer surfaces of the two cornerboards components are configured to be positioned adjacent to each other, in surface to surface contact. An exterior construction glue or similar adhesive is placed on the planar surfaces to fixedly and permanently secure the components.
Abstract:
The invention provides a new floor covering panel and floor covering system in which the floor covering panels include first and second generally planar surfaces, first and second side edges containing first and second complementary coupling members, respectively, and a barrier composition selectively applied to at least a portion of at least one of the first and second coupling members for providing a moisture barrier to prevent water penetration below the first surface of the floor covering panel. The barrier composition may be applied to at least one of the first or second coupling members during the floor covering manufacturing process.
Abstract:
Disclosed is a method of joining at least two linoleum sheets. The method includes creating a seam between the linoleum sheets and forming a bead of non-epoxy adhesive on a seam edge or injecting the non-epoxy adhesive into a closed seam. The seam formed by the edges of the linoleum sheets is joined and filled with the adhesive. Excess adhesive is removed and the seam is rolled and the seam adhesive is limited to the area between the linoleum sheets and the substrate within one linoleum sheet thickness of the seam.
Abstract:
A complex laminated bamboo board includes an upper layer and a plurality of lower layers glued to the upper one. The upper layer consists of parallel strips and a pair of ribs alongside them. The ribs extend downward from a level not higher than a top face but not lower than a bottom face of the upper layer to below the bottom face. The lower layers are glued to the upper layer beneath the bottom face and at sides of the ribs. In addition, the strips and ribs of the upper layer are made of a first woody material but the lower layers are made of a second woody material different from the first woody material.