Abstract:
A floor tile structure, provided that a surface layer and a bottom layer are attached respectively on the upper and the lower surfaces of the soft double-sided adhesive tape with pressure sensitivity, wherein the surface layer is possibly made of ceramic, rock, metal or other hard material and the periphery is a smooth cross-section; and, the bottom layer is a hard adhesive layer, wherein the continuous periphery is concave relative to the periphery and the other opposite continuous periphery is complementarily convex; further, the concave periphery is buried in the inner edge of the periphery of the surface layer and the convex periphery is protruded to the outer edge of the periphery of the surface layer; as for the two floor tiles with the above-mentioned structure, with the adhesive layer in the convex site on the bottom layer being attached with the concave periphery on the bottom layer of the other floor tile, the tiles can be laterally apposed to pave on the working floor.
Abstract:
Vertically joined flooring material comprising floor elements (1) with a mainly triangular, square, rectangular, rhomboidal or polygonal shape, as seen from above. The floor elements (1) are provided with edges (2) which are provided with joining members (20), a lower side (5) and a decorative top surface (3). The flooring material comprises a combination of at least two types of floor elements (1), which types comprises female floor elements (1null) and male floor elements (1null). The female floor element (1null) is provided with a female joining member (21) on at least half of the number of its edges (2) and a male joining member (22) on less than half of the number of its edges (2). The male floor element (1null) is provided with a male joining member (22) on at least two thirds of the number of its edges (2) and a female joining member (21) on less than one third of the number of its edges (2.) An optional joining profile (50) possibly constitutes a junction between two adjacent male joining members (22) of two adjacent floor elements (1).
Abstract:
A modular construction system and method of use for creating a concrete wall system which has a wall system which complies with a modular construction system. The system uses wall form panels having connectors and structural tie plates. The wall form panels have interlocking protrusions around the edges such that the panel is reversibly symmetric. The panels are specific lengths to minimize the number of panels required to achieve a set length. The structural tie plates have connectors to tie in with the wall form panels and in addition carry and position reinforcement bars with the wall. The modular wall system ensures ease and integrity of alignment of the wall form panels by the self-aligning structural tie elements. In a preferred embodiment, a footing is continuously integral with the wall. A heat retention cap form allows for a more uniform cure temperature in adverse temperatures. The modular system in addition allows for integrated tie-ins to built-out piers, which can support stone or steel or wood or poured concrete or continue as a vertical pier with design vertical reinforcement bar strength.
Abstract:
A floating floor system includes a plurality of interlocking floor panels (101), each including a base layer (104) formed from a first material having a first hardness; a body (102) formed from the base layer and having a top surface (103) and a bottom surface (105); a first locking edge portion (175) formed from the base layer and including a locking channel (201) defined by a channel floor (207) and first and second channel sidewalls (203, 205) extending upward from the channel floor toward the top surface; a second locking edge portion (167) formed from the base layer and including a locking ridge (189) protruding downward away from an upper surface of the second locking edge portion and defined by a ridge surface (191) and first and second ridge sidewalls (193, 194); wherein at least one of the sidewalls includes a portion formed from a second material (217, 219) having a second hardness that is less than the first hardness.
Abstract:
A floating floor system includes a plurality of interlocking floor panels (101), each including a base layer (104) formed from a first material having a first hardness; a body (102) formed from the base layer and having a top surface (103) and a bottom surface (105); a first locking edge portion (175) formed from the base layer and including a locking channel (201) defined by a channel floor (207) and first and second channel sidewalls (203, 205) extending upward from the channel floor toward the top surface; a second locking edge portion (167) formed from the base layer and including a locking ridge (189) protruding downward away from an upper surface of the second locking edge portion and defined by a ridge surface (191) and first and second ridge sidewalls (193, 194); wherein at least one of the sidewalls includes a portion formed from a second material (217, 219) having a second hardness that is less than the first hardness.
Abstract:
A polymer foam underlay element (10) for flooring applications is provided imparting improved structural stability to the underlayment, each side of the underlay element comprising puzzle locking means (12, 14, 16, 18) engageable with the side of another underlay element having the same design. The puzzle locking means enable each underlay element to directly interlock with both four or six other underlay elements of the same design to form interlocking joints, the interlocking joints being directly observable from a top view.
Abstract:
An insulation element and a structural system comprising such an element, wherein the insulation element (100, 200, 300, 400, 800, 900, 1000, 1100, 1200, 1500, 1800) comprises: pedestals (103, 210, 303, 411, 412, 413, 414, 901, 902, 1103, 1291, 1503), the top surface of which is suitable for bearing a floor panel (530, 1530) to be placed on top of the pedestals; and a substantially continuous surface (101) between the pedestals. The continuous surface (101) and the pedestals are fabricated in one piece in the same process from at least one heat insulating material. The mutual layout of the pedestals and the continuous surface (101) is implemented in such a way that onto the substantially continuous surface, through spaces between the pedestals, at least on top of the substantially continuous surface (101) can be pulled installation cables (41) and, in addition, possibly also installation hoses or tubes (42) across the support foundation.
Abstract:
Die Erfindung betrifft ein Verfahren zum Herstellen von Bodenplatten aus einem elastischen Kunststoffwerkstoff, wobei die Bodenplatten zunächst urgeformt werden und daraufhin ein Feder-Nut-System spanend eingebracht wird.
Abstract:
Die Erfindung betrifft ein Verfahren zum Herstellen von Bodenplatten aus einem elastischen Kunststoffwerkstoff, wobei die Bodenplatten zunächst urgeformt werden und daraufhin ein Feder-Nut-System spanend eingebracht wird.