Abstract:
퍼즐형 매트를 수평 방향으로만 슬라이딩시켜 결속하여 체결 편의성을 극대화시키면서 체결력을 현저하게 증가시킨 퍼즐형 매트 및 퍼즐형 매트 조립체를 제공한다 본 발명의 일 측면에 따른 퍼즐형 매트는 상기 퍼즐형 매트는 상부면이 4개의 꼭지점을 갖는 사각 형상으로 이루어지고, 상기 퍼즐형 매트의 측면 중 적어도 하나에는 복수개의 삽입돌기가 형성되되, 상기 삽입돌기는 꼭지점에서 상대적으로 먼 위치에 형성된 제1 삽입돌기와 상기 꼭지점에서 상대적으로 가까운 위치에 형성된 제2 삽입돌기를 포함하여 이루어지고, 상기 제1 삽입돌기와 상기 제2 삽입돌기의 형상은 서로 다르게 형성된다.
Abstract:
개시된 본 고안에 따른 조립식 마루는, 다수의 단위별 바닥판이 이웃한 상태로 상호 조립되는 직사각형태의 조립식 마루로서, 상기 단위별 바닥판의 측면 둘레를 따라 결속돌부와 결속요부가 순차 교번 형성되어, 상기 결속돌부와 상기 결속요부에 이웃한 단위별 바닥판의 결속요부와 결속돌부가 각각 상호 결속되며, 상기 단위별 바닥판은 장변 바닥부재 또는 단변 바닥부재 또는 장변 바닥부재와 단변 바닥부재의 조합에 의해 구성될 수 있다. 본 고안에 따른 조립식 마루는, 단위별 바닥판 각각의 측면 둘레를 따라 결속돌부와 결속요부가 순차 교번 형성되어, 결속돌부와 결속요부에 이웃한 단위별 바닥판의 결속요부와 결속돌부가 각각 상호 결속되게 함으로써, 어느 방향으로도 단위별 바닥판들의 연결이 가능한 효과가 있다.
Abstract:
A flooring system comprises a plurality of floor panels (1,1'') which are mechanically connectable to each other along one pair of adjacent edges, said floor panels comprising a tongue (10) and a groove (9), formed in one piece with the panels for mechanically locking together said one pair of adjacent edges at right angles to the principal plane of the panels, thereby forming a vertical mechanical connections (D1) between the panels and a first locking element (8) at one first edge formed in one piece with the panel and a second locking element (15), formed of a separate material connected to the panel, said first and second locking elements form a mechanical connection locking the panels to each other horizontally parallel to the principal plane and at right angles to the joint edges (D2) whereby said floor panels (1,1') can be mechanically joined by displacement of said two panels horizontally towards each other, while the first locking element (8) and the second locking element (15) are displaced first vertically away from each other and than vertically towards each other. The second locking element (15) is made of a sheet shaped material which has a higher density than the material of the first locking element. The second locking element has a first (40) and a second (41) surface and an edge portion (42) between the first (40) and second (41) surfaces, whereby the edge portion (42) forms at least a part of a second locking surface (22) which is in contact with a first locking surface (20) of the first locking element and prevents horizontal separation of the panels.
Abstract:
A floating floor system and a floor panel and method for use with the same that includes an improved mechanical interlock system. The mechanical interlock system allows laterally adjacent floor panels that are mechanically interlocked to slide relative to one another a predetermined distance in a longitudinal direction, while prohibiting relative translation in the vertical and transverse directions. In one embodiment, the predetermined distance eliminates the need for precision cuts during installation, thereby making installation fast and easy. In a further embodiment, the invention optimizes the floor panels (and floating floor system.) to balance ease of installation and horizontal locking strength between laterally adjacent floor panels.
Abstract:
Method for manufacturing floor panels, wherein is started from panels (1) , these panels (1) , at their lower side (9) , are provided with at least one guiding groove (22) and these panels (1) , at least at two opposite sides (3A-3B/4A-4B) , are provided with profiled edge regions (5A-5B) that comprise coupling parts (17A- 17B) , characterized in that at least one of the aforementioned two profiled edge regions (5A-5B) is formed such that this region, seen in a cross-section of the panel (1) , transverse to the guiding groove (22) , extends at the lower side (9) of the panel (1) at least up to the guiding groove (22) . Further, the invention also relates to still other methods, for manufacturing as well as packaging of floor panels, and also relates to devices used therewith, as well as to floor panels.
Abstract:
Method for manufacturing floor panels, wherein is started from panels (1) , these panels (1) , at their lower side (9) , are provided with at least one guiding groove (22) and these panels (1) , at least at two opposite sides (3A-3B/4A-4B) , are provided with profiled edge regions (5A-5B) that comprise coupling parts (17A- 17B) , characterized in that at least one of the aforementioned two profiled edge regions (5A-5B) is formed such that this region, seen in a cross-section of the panel (1) , transverse to the guiding groove (22) , extends at the lower side (9) of the panel (1) at least up to the guiding groove (22) . Further, the invention also relates to still other methods, for manufacturing as well as packaging of floor panels, and also relates to devices used therewith, as well as to floor panels.
Abstract:
Floor panels (1, 1’) are shown, which are provided with a mechanical snap locking system with a locking element (15) made of a separate material in order to reduce snapping resistance and/or increase locking strength. A method is provided to unlock mechanical locking systems horizontally.
Abstract:
A floating floor system and a floor panel and method for use with the same that includes an improved mechanical interlock system. The mechanical interlock system allows laterally adjacent floor panels that are mechanically interlocked to slide relative to one another a predetermined distance in a longitudinal direction, while prohibiting relative translation in the vertical and transverse directions. In one embodiment, the predetermined distance eliminates the need for precision cuts during installation, thereby making installation fast and easy. In a further embodiment, the invention optimizes the floor panels (and floating floor system.) to balance ease of installation and horizontal locking strength between laterally adjacent floor panels.
Abstract:
A floating floor system and a floor panel and method for use with the same that includes an improved mechanical interlock system. The mechanical interlock system allows laterally adjacent floor panels that are mechanically interlocked to slide relative to one another a predetermined distance in a longitudinal direction, while prohibiting relative translation in the vertical and transverse directions. In one embodiment, the predetermined distance eliminates the need for precision cuts during installation, thereby making installation fast and easy. In a further embodiment, the invention optimizes the floor panels (and floating floor system.) to balance ease of installation and horizontal locking strength between laterally adjacent floor panels.