Stick-on decorative floor covering system
The interlocking, flexible tile system addresses installation complexity and adhesive issues in stick-on flooring by enabling DIY installation and maintaining tile stability through mechanical connections and adhesive chambers, ensuring durability and longevity.
Patent Information
- Application Number
- JP2022542254
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-09-30
- Filing Date
- 2021-01-11
- Publication Date
- 2025-09-03
- Estimated Expiration
- 2041-01-11
AI Technical Summary
Existing stick-on flooring requires professional installation, is prone to adhesive contamination, and suffers from adhesive deterioration leading to tile separation from the subfloor.
A decorative floor covering system with interlocking, flexible tiles that utilize mechanical connections and adhesive chambers to facilitate DIY installation, prevent adhesive contamination, and maintain tile stability despite adhesive deterioration.
The system allows easy installation by DIY users, reduces adhesive contamination, and ensures durable tile fixation through interlocking geometry and adhesive chambers, enhancing stability and longevity.
Smart Images

Figure 0007733658000001 
Figure 0007733658000002 
Figure 0007733658000003
Abstract
Description
[Technical Field]
[0001] The present invention relates to a stick-on decorative floor covering system. The present invention also relates to a stick-on floor covering achieved by interlocking tiles of the stick-on floor covering system according to the present invention. The present invention further relates to stick-on tiles for use in the stick-on floor covering system according to the present invention. [Background technology]
[0002] Developed in the 1970s, luxury vinyl plank (LVP) and luxury vinyl tile (LVT) were created as a means to enhance the realism of vinyl sheeting, essentially consisting of polyvinyl chloride (PVC). Their popularity skyrocketed in the 2000s, as adhesive-backed building materials emerged as low-cost alternatives to HDF / MDF laminate, hardwood, and carpet. Around this time, so-called "peel and stick" versions of adhesive tiles were introduced as an option to meet the needs of DIY (do-it-yourself) consumers. Adhesive flooring is considered a permanent type of flooring because it is physically attached to the underlying subfloor with adhesive or tape. Adhesive flooring can typically withstand impacts, scratches, and spills. Furthermore, because adhesive flooring physically adheres to the subfloor, it provides a solid, secure hold. Therefore, adhesive flooring applications are typically attractive for use in rooms with heavy traffic. Although stick-on flooring has been very popular for decades, known stick-on flooring also has various drawbacks. The first major drawback of known stick-on flooring is that this type of flooring is not easy to install because it requires the use of adhesive. Professionals are often required to properly install the floor. An excessive amount of adhesive can easily stain the top surface of the tile, for example, which is clearly undesirable. Furthermore, it has been found that proper alignment of tiles during installation is not easy. Another drawback of known stick-on flooring is that the adhesive used can deteriorate over time, reducing the strength of the connection between the tile and the subfloor or even causing the tile to loosen and separate from the subfloor. Summary of the Invention [Problem to be solved by the invention]
[0003] SUMMARY OF THE INVENTION It is an object of the present invention to provide an improved stick-on decorative floor covering system that overcomes at least one of the above-mentioned drawbacks. [Means for solving the problem]
[0004] To this end, the present invention provides a decorative stick-on floor covering system according to the preamble, said floor covering system comprising: a plurality of interlocking decorative, preferably flexible, floor tiles; Each floor tile is preferably less than 4.7 mm thick, more preferably less than 4 mm thick; Each floor tile comprises at least one, preferably flexible, substrate layer at least partially made of polyvinyl chloride (PVC); Each floor tile is rectangular, either rectangular or square, and includes a first pair of opposing sides and a second pair of opposing sides; a first pair of opposing sides including a mechanical connection portion for mechanically connecting a plurality of the tiles to one another; the interlocking portions form a first locking system and a second locking system, the first locking system locking the interconnected tiles in a direction perpendicular to each edge in the plane of the tiles, and the second locking system locking the interconnected tiles in a direction perpendicular to the plane of the tiles; the connecting portion is substantially made of the substrate layer; the connectors on the first pair of opposing sides are configured to allow the two tiles to be connected to each other by rotational and / or vertical movement on those sides; The second pair of opposing sides preferably does not include a mechanical connection.
[0005] Although the stick-on floor covering system of the present invention is also configured to be glued or attached to a subfloor, the tiles have so-called "angle-down" joints on two opposing sides, typically the long sides, which significantly facilitates the installation process. First, the joints make it easier to align the tiles during installation. Second, excess liquid adhesive applied under the installed tile and on the subfloor typically is prevented from flowing between the cooperating joints of adjacent tiles when the installed tile is tilted down. This significantly reduces the likelihood of contamination of the top surfaces of the tiles. Because the stick-on flooring system of the present invention is relatively easy to install, it no longer requires an installation professional and can be installed by a DIY user. Furthermore, the interconnections between the joints of adjacent tiles, which preferably have a snap or click fit to achieve the desired horizontal and vertical locking effect, make the installed stick-on floor more durable than conventional stick-on floors. Even if the adhesive that bonds the tiles to the subfloor deteriorates, the cooperation between the joints between adjacent tiles allows the tiles to remain fixed in place.
[0006] The stick-on floor covering system of the present invention combines the principles of traditional stick-on flooring, where floor tiles are attached to a subfloor with adhesive, with the interlocking or interlocking geometry typically used in floating floor flooring systems. Combining both of these aspects results in a new hybrid flooring system. It is also contemplated that the stick-on floor covering system could be used to implement alternative coverings, such as wall coverings, ceiling coverings, or furniture coverings. The floor covering system of the present invention may be used indoors or outdoors. Preferably, the floor covering system is waterproof. Because the substrate layer is made of PVC (typically also referred to as vinyl), the tiles of the floor covering system can also be referred to as luxury vinyl tiles (LVT) or luxury vinyl planks (LVP). Instead of PVC, other polymers, such as polypropylene, polyethylene, polyester, or polyurethane, or other thermoplastic or thermoset materials, may be used in the substrate layer. Further alternative materials, such as wood, composites, and / or minerals, such as magnesium oxide, may be used as base materials to construct the substrate layer used in the tiles of the present system. The tiles of the floor covering system of the present invention may also be considered to be planks, slabs, or panels.
[0007] As described above, the connecting portions of the first pair of opposing sides are preferably designed to snap or click into each other when they are connected to each other. This allows for a click-type lock between the tiles. Preferably, at least one of the connecting portions of the first pair of opposing sides is designed to elastically deform when they are connected to each other. This elastic deformation allows for a click-type lock mechanism, particularly when the shape of the connecting portion is such that, when two tiles are connected, an elastic portion of at least one connecting portion first deforms and then at least partially returns to its original shape. The connecting portions are preferably configured to cooperate with each other while fitting to each other's contours. The connecting portions are preferably complementary to each other. However, this does not exclude the presence of a space (gap) between the connected connecting portions of adjacent tiles.
[0008] In a preferred embodiment, the connectors of the first pair of opposing sides include lateral tongues on the first sides, the lateral tongues extending generally parallel to the plane of the tile, a bottom front region of the lateral tongues being at least partially rounded or flat, and a bottom rear region of the lateral tongues being configured as bearing regions; the bottom rear region is located closer to the level of the top side of the tile than the lowest point of the bottom front region; the connecting portion of the first pair of opposing sides includes a recess on a second opposing side for receiving at least a part of a lateral tongue of a further tile, said recess being defined by an upper lip and a lower lip, the lower lip being provided with an upwardly projecting shoulder for supporting a bearing area of the lateral tongue; The lateral tongue is The lateral tongue of the additional tile is inserted into the recess, and the tile is tilted and tilted (rotated) around an axis parallel to the first side to lock the tile into place. As a result, the upper surfaces of the lateral tongues engage with the upper lip, and the bearing areas of the lateral tongues rest against and / or face the shoulders of the lower lip; This causes adjacent tiles to lock together on the first and second edges. It is designed to be. Preferably, the lateral tongues are configured to be introduced into the recesses in a contoured manner. It is conceivable that the outer dimensions of the lateral tongues exceed the dimensions of the recesses. This typically results in an active clamp (also called pretension) between the connecting parts in the connected state. However, it is also conceivable that the lateral tongues fit into the recesses in a contoured manner, thereby connecting the connecting parts without pretension in the connected state. In the connected state of the connecting parts, the lateral tongues and the recesses preferably surround a number of gaps. These gaps may be present to compensate or absorb stretching of the connecting parts and / or may be used as adhesive chambers to allow adhesive to flow in during installation, thereby making the connection between adjacent tiles more solid.
[0009] Preferably, the lower surface of the bearing region, which is configured to support and / or face the shoulder of the lower lip, slopes upward toward the bottom front region of the lateral tongue. This positions the thinnest portion of the lateral tongue between the front and rear regions of the lateral tongue. This thinnest portion is typically the weakest and most easily (elastically) deformed. By positioning this weakest portion near the front region of the lateral tongue, not only is the deformation region predetermined, but it also positions the lateral tongue so that as little material as possible deforms during installation. This reduces stress buildup in the material during installation and improves the lifespan of the tile. The upper surface of the shoulder of the lower lip preferably slopes upward toward the upper lip. This orientation of the shoulder's upper surface is typically advantageous for creating a desired space between the shoulder and the bearing region. This space can act as an upper adhesive chamber configured to receive adhesive during installation, further strengthening the connection between the tiles.
[0010] Preferably, the distance between the upper surface of the tile and the lower surface of the bearing area, which is configured to support and / or face the shoulder of the lower lip, is smaller than the distance between the upper surface of the tile and the shoulder of the lower lip. Preferably, the entire space between the shoulder and the bearing area is configured to be filled with adhesive during installation and is filled with adhesive in the connected state.
[0011] Preferably, the lower lip has a first end surface, more preferably a substantially vertical first end surface. Preferably, the bearing area is connected to a second end surface of the tile, particularly of the substrate layer, more preferably to the substantially vertical second end surface of the tile. The second end surface is located below (at a lower height than) the bearing area. Preferably, when adjacent tiles are joined, the first end surface faces the second end surface, and the first and second end surfaces mutually enclose a lower adhesive chamber. This lower adhesive chamber is preferably connected to the above-mentioned upper adhesive chamber (if applied) and is configured to receive liquid adhesive during installation to further strengthen the connection between the tiles. Preferably, the connection between the lower and upper adhesive chambers is filled with liquid adhesive during installation, with a layer of adhesive extending from the upper adhesive chamber to the lower adhesive chamber and further to the bottom of the tile.
[0012] Preferably, when adjacent tiles are joined together, the first end faces face the second end faces, the first and second end faces mutually enclosing the lower adhesive chamber, and the first and second end faces are spaced apart from each other, preferably at a distance of at least 0.2 mm, to allow sufficient adhesive to enter between the first and second end faces.
[0013] Advantageously, the first and / or second end faces are provided with at least one adhesive collection void, in particular at least one adhesive collection groove, which preferably extends parallel to the joint and the corresponding tile edge. The application of this one or more adhesive collection voids increases the contact surface between the adhesive and the tile, thereby strengthening the connection between the adhesive and the tile.
[0014] Preferably, the lower adhesive chamber is spaced from the bottom of the tile and a vertical distance extends from the bottom of the tile to the lower adhesive chamber to prevent adhesive buildup on the bottom of the tile.
[0015] The connecting portions of the first pair of opposite sides may be configured so that the two tiles can be connected to each other by vertical movement (also called drop-down movement or downward movement) at these sides. To this end, the connecting portions of the first pair of opposite sides preferably include (i) on the first side a single upward tongue, at least one upward flank spaced apart from the upward tongue, and a single upward groove formed between the upward tongue and the upward flank, wherein at least a portion of a side of the upward tongue facing the upward flank is inclined and extends in a direction toward (or away from) the normal to the upper side of the core, and at least a portion of a side of the upward tongue facing opposite to the upward flank optionally includes a first locking element. and (ii) on the second side, a single downward tongue, at least one downward flank spaced from the downward tongue, and a single downward groove formed between the downward tongue and the downward flank, wherein at least a portion of the side of the downward tongue facing the downward flank extends at an angle toward (or away from) the direction of the normal to the underside of the core, and the downward flank optionally includes a second locking element adapted for cooperation with the first locking element on the first side of the further tile. Preferably, upon interlocking, the downward tongue on the second side of the interlocking tile is pressed into the upward groove on the first side of the other tile, and the upward tongue on the other tile is pressed into the downward groove of the interlocking tile, which is achieved by deformation of the first and / or second sides, thereby locking adjacent tiles together both horizontally and vertically at the third and fourth sides. The first locking element may optionally additionally be provided on the upward flank, and the second locking element may optionally additionally be provided on the side of the downward tongue facing away from the downward flank.
[0016] Preferably, the second pair of opposing sides may be free of connecting portions and may be cut linearly, preferably perpendicularly, to define third and fourth end faces, respectively. The second pair of opposing sides are typically formed by the short sides of the tiles. Typically, the third and fourth end faces face each other when adjacent tiles are connected. Preferably, when adjacent tiles are connected, the tops of the third and fourth end faces engage with each other, preferably seamlessly. In a preferred embodiment, the tops of the third and fourth end faces engage with each other or contact each other over at least half of the thickness of the tile. This allows for a relatively large contact area between the tiles when connected.
[0017] Preferably, at least a portion of the bottom of the third end surface and the fourth end surface mutually enclose a lateral adhesive chamber. This adhesive chamber is configured to receive adhesive during installation, thereby strengthening the connection between the tiles along the second pair of opposing sides. The third end surface and / or the fourth end surface may be provided with at least one adhesive collection void, particularly at least one adhesive collection groove. The adhesive collection void or groove preferably extends from the bottom of the tile toward the center or center of the tile, but not more than halfway through the thickness of the tile. Thus, adhesive collected in the collection void or groove cannot flow further upward toward the top surface of the tile.
[0018] Preferably, the lateral adhesive chambers, or adhesive collection voids or grooves, of the second pair of sides include recesses on both of the second pair of sides, or on the third and fourth sides. Preferably, the recesses extend horizontally and face each other, and preferably the recesses are symmetrical. When the adhesive is filled and solidifies, it penetrates horizontally at least partially into the second pair of sides. While this is not considered a mechanical connection as part of the second pair of sides, the adhesive in the recesses at least partially prevents vertical displacement of the connected tiles, improving the stability of the tiles.
[0019] The second pair of opposing sides does not include a mechanical connection, making the tile suitable for mechanically connecting to only two tiles. Each of the second pair of sides may have a longitudinal groove extending parallel to the corresponding side. The grooves on adjacent sides may be connected and aligned with each other to form a circumferential groove as a whole. The circumferential groove is, for example, for receiving adhesive when attaching the tile to a subfloor, strengthening the connection between the tile and the subfloor and the connection between tile 1 and the adjacent tile. The grooves on the third and fourth sides preferably face each other and collectively form an additional (small) adhesive chamber. An adhesive inlet may be formed at the bottom between each tile to allow adhesive to flow into the adhesive chamber during installation. The adhesive inlet may be formed by a cutout in the bottom portion of the third and fourth sides. The tops of the outer surfaces of the third and fourth sides are preferably located opposite each other. The additional adhesive chambers formed between the grooves contribute to further stabilization of the floor covering material after the adhesive has solidified.
[0020] The second pair of opposing sides preferably does not include a mechanical connection, but it is conceivable that the second pair of opposing sides may include a mechanical connection so that the tiles can be mechanically connected to each other. These connections may be configured to form a first locking system and a second locking system, where the first locking system locks the connected tiles in a direction perpendicular to each side in the plane of the tiles, and the second locking system locks the connected tiles in a direction perpendicular to the plane of the tiles, and the connection parts are substantially formed by the substrate layer. The connection parts of the second pair of opposing sides may be configured so that two tiles can be connected to each other by rotational and / or vertical movement on these sides. In this case, for example, when a tile is tilted and connected to the second side of an already installed tile on its first side, the tiles are locked together, and the fourth side of the connecting tile moves toward the third side of the other already installed tile in a scissors-like manner. Here, it is conceivable that the third side includes a single upward tongue, at least one upward flank spaced apart from the upward tongue, and a single upward groove formed between the upward tongue and the upward flank, wherein at least a portion of the side of the upward tongue facing the upward flank is inclined and extends in the direction of a normal to the upper side of the core, and at least a portion of the side of the upward tongue facing opposite the upward flank may include a first locking element; the fourth side includes a single downward tongue, at least one downward flank spaced apart from the downward tongue, and a single downward groove formed between the downward tongue and the downward flank, wherein at least a portion of the side of the downward tongue facing the downward flank is inclined and extends in the direction of a normal to the lower side of the core, and the downward flank may include a second locking element, and the second locking element is adapted to cooperate with the first locking element of the third side of a further tile. Preferably, when connecting, the downward tongue of the fourth side of the connecting tile is pressed into the upward groove of the third side of the other tile, and the upward tongue of the other tile is pressed into the downward groove of the connecting tile, which is achieved by deformation of the third side and / or the fourth side, thereby locking adjacent tiles together both horizontally and vertically at the third and fourth sides.
[0021] The tiles of the flooring covering system of the present invention typically include at least one balancing layer attached directly or indirectly to the underside of the substrate layer. This balancing layer keeps the tile as flat as possible. The balancing layer is typically formed by a PVC-based film. The balancing layer may also act as a sound-reducing layer. Preferably, each tile includes at least one decorative layer attached directly or indirectly to the upper surface of the substrate layer. The decorative layer may be a printed layer and / or may be covered by at least one protective (top) layer. The presence of the printed and / or protective layer may prevent the tile from being damaged by scratches and / or environmental factors such as UV and moisture, and / or wear and tear. The printed layer may be formed by providing a decorative print on a film. The film is attached to the substrate layer and / or to an intermediate layer, such as a primer layer, located between the substrate layer and the decorative layer. The print layer may also be formed by at least one ink layer applied directly to the top surface of the substrate layer or to a primer layer applied to the substrate layer. Each tile may also include at least one wear layer applied directly or indirectly to the top surface of the decorative layer. Each tile may also include at least one lacquer layer applied directly or indirectly to the top surface of the decorative layer, preferably the top surface of the wear layer.
[0022] The thickness of the tiles of the stick-on floor covering system of the present invention is not particularly limited and is typically between 2 mm and 12 mm. Preferably, the thickness is limited to less than 4.7 mm, more preferably less than 4 mm, such as 2.5 mm (or less), 2.8 mm (or less), 3.0 mm (or less), 3.5 mm (or less), or 3.8 mm (or less), which is more typical for stick-on floor tiles. The tiles of the stick-on floor covering system of the present invention are preferably flexible. For this purpose, it is advantageous if the PVC of the substrate layer contains a plasticizer, typically in an amount between 0% and 20% by weight. However, this does not exclude the substrate layer being semi-rigid or rigid, and / or each such tile being semi-rigid or rigid. The substrate layer may be foamed, although it is more common to apply a solid substrate layer to stick-on tiles. The substrate layer preferably contains at least one inert filler, such as calcium carbonate (chalk) or talc, or a mixture of various fillers. The amount of filler is preferably between 20% and 70% by weight.
[0023] The bottom (back) surface of each tile may be provided with an adhesive that adheres the tile to the subfloor. This may be any suitable adhesive and / or pressure-sensitive adhesive. A pressure-sensitive adhesive is one that becomes adhesive when subjected to mechanical pressure. This eliminates the need for a separate adhesive to attach the tile to the subfloor. Optionally, the adhesive is initially covered with a removable cover. This allows for a peel-and-stick version of the adhesive floor covering.
[0024] The present invention also relates to a stick-on floor covering achieved by interlocking tiles of the stick-on floor covering system according to the present invention.
[0025] The invention further relates to stick-on tiles for use in the stick-on floor covering system according to the invention.
[0026] As used in this document, ordinal numbers such as "first," "second," and "third" are used for identification purposes only. "Complementary" connections or connection geometries mean that these connections can cooperate with each other. However, for this purpose, complementary connections do not necessarily have complementary shapes. In this document, the directional expression "horizontal" should be understood as a direction parallel to, or along, the plane defined by the tiles, and the directional expression "vertical" should be understood as a direction perpendicular to, or along, the plane of the tiles. Therefore, locking in the "vertical direction" means locking in a direction perpendicular to the plane of the tiles. Locking in the "horizontal direction" means locking in a direction perpendicular to each of the connected edges of two tiles and parallel to, or along, the plane defined by the tiles. [Brief explanation of the drawings]
[0027] The invention will be explained on the basis of non-limiting exemplary embodiments shown in the following drawings.
[0028] [Figure 1] 1 shows a perspective view of a stick-on tile of a stick-on floor covering system according to the present invention. [Figure 2] 2 shows a transverse cross section of the tile of FIG. 1; [Figure 3] 2 shows a longitudinal cross section of the tile of FIG. 1; [Figure 4] 2 shows a stick-on floor covering made up of a plurality of interlocking stick-on tiles from FIG. 1; [Figure 5] FIG. 5 is a detailed view of portion A of the floor covering of FIG. 4. [Figure 6] 5 shows a cross section of the floor covering material of FIG. 4 taken along line BB. [Figure 7] 2 is a top view of a stick-on floor covering made up of a plurality of interlocking stick-on tiles of FIG. 1 installed in a first installation pattern. [Figure 8] 2 is a top view of a stick-on floor covering made up of a plurality of interlocking stick-on tiles of FIG. 1 installed in a second installation pattern. [Figure 9] 1 shows a cross section of (part of) two identical panels according to the invention in a connected state. DETAILED DESCRIPTION OF THE INVENTION
[0029] FIG. 1 shows a perspective view of a rectangular, stick-on tile 1 of a stick-on floor covering system 2 (see FIGS. 4-8) according to the present invention. FIG. 2 shows a horizontal cross-section of the tile of FIG. 1. FIG. 3 shows a vertical cross-section of the tile of FIG. 1. The tile 1 can be mechanically interconnected with two similar tiles to form the covering 2. The tile 1 includes a first pair of opposing long sides 1a, 1b (designated first side 1a and second side 1b) and a second pair of opposing short sides 1c, 1d (designated third side 1c and fourth side 1d). The first pair of opposing sides 1a, 1b include complementary mechanical interlocks 3, 4 (designated male interlock 3 and female interlock 4) that allow the tile 1 to be mechanically interlocked with two other tiles 1. The second pair of opposing sides 1c, 1d does not include a mechanical interlock, making the tile 1 suitable for mechanical interlocking with only two other tiles. Each side 1a, 1b, 1c, and 1d has a longitudinal groove 5a, 5b, 5c, and 5d extending parallel to the side. The grooves 5a, 5b, 5c, and 5d of adjacent sides 1a, 1b, 1c, and 1d are interconnected to form a circumferential groove 5. The circumferential groove 5 is for receiving adhesive when attaching the tile 1 to a subfloor 6, strengthening the connection between the tile 1 and the subfloor 6 and the connection between the tile 1 and adjacent tiles. The male connector 3 includes a lateral tongue 7, which is integrally connected to a central body 8 of the tile 1. The front region 7a of the lateral tongue 7 has a flat bottom surface 9. The outer end (tip) of the front region 7a of the lateral tongue 7 has an inclined locking surface 10 on its upper side. The rear region 7b of the lateral tongue 7 is located between the front region 7a and the central body and connects the front region 7a to the central body 8. The underside of the rear region 7b may also be a bearing surface 11. This bearing surface 11 is inclined toward the front region 7a of the lateral tongue 7. The bearing surface 11 connects to a first substantially vertical end face 12 of the central body 8. The female coupling part 4 includes an upper lip 13 and a lower lip 14 that define a recess 15. Both lips 13, 14 are integrally connected to the central body 8. As shown in FIG. 1, the width of the upper lip 13 is significantly smaller than the width of the lower lip 14. The shape of the recess 15 is complementary to the shape of the lateral tongue 7.More specifically, the top surface 16 of the rear region 14a of the lower lip 14 has a (complementary) flat shape and is configured to cooperate with the flat bottom surface of the front region 7a of the lateral tongue 7, while the front region 14b of the lower lip 14 is provided with an upwardly protruding shoulder 17 and is configured to face the bearing surface 11 of the lateral tongue 7 of another tile while being spaced apart from said bearing surface 11. The space thus formed in the coupled state is defined as an upper adhesive chamber 21. The lower surface 18 of the upper lip 13 is inclined and corresponds to the locking surface 10 of the lateral tongue 7. The approximately vertical distal end surface 19 of the lower lip 14 is connected to the lower surface 20 of the tile 1 and faces the end surface 12 of the central body 8 while being spaced apart from said end surface 12 when coupled with another tile. The space thus formed in the coupled state is defined as a lower adhesive chamber 22. The lower adhesive chamber 22 is connected to the upper adhesive chamber 21 as shown in more detail in FIGS. Figures 4 to 8 show a floor covering system according to the present invention, and more specifically, a floor covering realized by the floor covering system. A plurality of tiles 1 are interconnected and attached to a subfloor 6 using solidified adhesive 23. As shown in Figure 5, the adhesive flows (and solidifies) in upper and lower adhesive chambers 21 and 22. As shown in Figure 6, the groove 5c on the third side 1c and the groove 5d on the fourth side 1d face each other, collectively forming a (small) additional adhesive chamber 24. An adhesive inlet 25 is formed at the bottom between each tile 1 to allow the adhesive 23 to flow into the adhesive chamber 24 during installation. This adhesive inlet 25 is actually formed by a cutout in the bottom of the third side 1c and the fourth side 1d. The peaks of the outer surfaces of the third side 1c and the fourth side 1d typically face each other and are in direct (unconnected, loose) contact. Optionally, adhesive may flow between these tops to form a thin film during installation. The aforementioned additional adhesive chamber 24 formed between grooves 5c and 5d contributes to further stabilizing the floor covering material after the adhesive has solidified. Two tiles 1 can be mechanically connected by inserting the male connector 3 of the tile 1 to be connected into the female connector 4 of the already installed tile 1 and then tilting the tile 1 to be connected (face down), as shown by arrow C in Figure 4. During this tilting, the connectors 3 and 4 interact with each other to properly install and align the tile 1 to be installed and also to prevent adhesive from flowing between the connectors 3 and 4 and reaching the top surface of each tile 1 (and thereby contaminating the tile 1). During this tilting, the connectors 3 and 4 must at least temporarily deform to allow the lateral tongues 7 to be inserted into the complementary recesses 15. Once installed, the connectors 3 and 4 typically return to their original, complementary shapes. This temporary deformation of one or both of the connectors 3, 4 creates a click or snap type connection, i.e. the male connector 3 must click or snap into the female connector 4. This interconnection locks the two tiles 1 together both horizontally and vertically. As shown in Figures 5 and 6, the tile 1 has a layered structure. The substrate layer 26 (core layer) is usually the thickest layer and contains PVC, a plasticizer, and preferably at least one filler. The plasticizer softens the PVC, typically making the tile 1 flexible. A support layer 27 (also called a balancing layer) is attached to the underside of the substrate layer 26 and typically functions to balance the tile 1. A decorative printed layer 28, a wear layer 29, and a UV-cured lacquer layer 30 are sequentially applied on top of the substrate layer 26. The panel preferably has a thickness between 2.8 mm and 4.7 mm. As shown in Figures 4 and 7, the rectangular tiles 1 may be arranged in a horizontal grid, but it is also contemplated that they may be arranged in an offset or staggered brickwork pattern, for example, as shown in Figure 8.
[0030] FIG. 9 shows a cross section of two identical panels 31 (parts thereof) connected together according to the present invention. This view shows only a first pair of complementary opposing sides, particularly their complementary joints. The panels 31 are typically square or rectangular, and the second pair of opposing sides preferably does not include joints. The illustrated panels 31 have a thickness of 4.7 mm or less, preferably between 3.2 mm and 3.5 mm. This cross section does not show all panel layers. Typically, these panels 31 include a core 32 and a layer-top structure. The layer-top structure is typically decorative and adheres to the core 32. The core 32 is typically PVC-based, but alternatively, mineral-based, wood-based, and / or polymer-based compositions may be used to construct the core 32. A backing layer may be applied by adhering it to the core 32. Each joint is an integral part of the core. One of the connectors, depicted on the left-hand side and part of panel 31, includes a lower bridge 33 to which an upward tongue 34 is connected. The upward tongue 34 includes an inner side 34a, which faces the upward flank 32a of the first connector. The inner side 34a and the upward flank 32a of the upward tongue 34 enclose an upward groove. The outer side 34b of the upward tongue 34 is provided with a locking element, e.g., a bulge 35. The second connector, depicted as part of panel 31 on the right-hand side, includes an upper bridge 36 to which a downward tongue 37 is connected. The lower bridge 33 and / or the upper bridge 36 are preferably (to some extent) elastic to facilitate the connector. The downward tongue 37 is inserted into the upward groove. The upward tongue 34 is inserted into a downward groove bounded by the downward tongue 37 and the downward flank 32b. The downward flank 32b is provided with a second locking element, e.g., a recess 37, which is configured to cooperate in the interlocking position, preferably the interlocking offset position (where the panels are slightly tilted relative to one another). A gap 38 exists between the outer side 34b of the upward tongue 34 and the downward flank 32b. Adhesive can flow into the gap 38 to improve the bond between the panel 32 and the subfloor (not shown).Optionally, additional, mutually cooperating locking elements 39a, 39b, such as a bulge and a cooperating recess shown in dashed lines, are applied near the top seam of the two panels 32. Various spaces exist between the panels 32 to allow for panel stretching and / or to receive adhesive. A portion of the inner side 34a of the upward tongue 34 is inclined toward the upward flank 32, and preferably a portion of the inner side 37a of the downward tongue 37 is inclined toward the downward flank 32b to provide an (additional) vertical locking effect (i.e., a locking effect perpendicular to the plane defined by the panels 31). It will be apparent that the illustrated connection is configured for connection by vertical movement (also known as drop-down movement, downward movement, or drop-lock movement).
[0031] The inventive concepts described above are illustrated by several exemplary embodiments. It is contemplated that individual inventive concepts may be applied without applying other details of the described examples. Those skilled in the art will recognize that many inventive concepts can be combined (recombined) to arrive at specific applications, so it is not necessary to detail examples of all possible combinations of the described inventive concepts.
[0032] It will be clear that the invention is not limited to the embodiments shown and described herein, but is capable of many variations within the scope of the appended claims which will be apparent to those skilled in the art.
[0033] The verb "comprise" and its conjugations as used in this patent publication are understood to mean not only "comprise" but also "contain," "substantially consist of," "formed by," and their conjugations.
Claims
1. 1. A stick-on decorative floor covering system comprising: a plurality of interlocking decorative flexible floor tiles; Each floor tile is less than 4.7 mm thick; Each floor tile includes at least one flexible substrate layer at least partially made of polyvinyl chloride (PVC); each floor tile is rectangular, either rectangular or square, and includes a first pair of opposing sides and a second pair of opposing sides; the first pair of opposing sides including mechanical interlocks to allow a plurality of such tiles to be mechanically interlocked with one another; the connecting portions form a first locking system and a second locking system, the first locking system locking the interconnected tiles in a direction perpendicular to each side in the plane of the tiles, and the second locking system locking the interconnected tiles in a direction perpendicular to the plane of the tiles; These connecting portions are substantially made up of the substrate layer, the connectors on the first pair of opposing sides are configured to allow two such tiles to be connected to each other by rotational and / or vertical movement on those sides; the second pair of opposing sides does not include a mechanical link; the connecting portions of the first pair of opposing sides include lateral tongues on the first sides, the lateral tongues extending substantially parallel to the plane of the tile, bottom front regions of the lateral tongues being at least partially rounded or flat, and bottom rear regions of the tongues being configured as bearing regions; the bottom rear region is located closer to the level of the upper side of the tile than the lowest point of the bottom front region; the connecting portions of the first pair of opposing sides include recesses on opposing second sides for receiving at least a portion of the lateral tongues of a further tile, the recesses being defined by upper and lower lips, the lower lip being provided with upwardly projecting shoulders for supporting the bearing areas of the lateral tongues; The lateral tongues are The lateral tongue of the additional tile is inserted into the recess, and the additional tile is tilted around an axis parallel to the first side to be locked. so that the upper surfaces of the lateral tongues engage with the upper lip and the bearing areas of the lateral tongues rest against and / or face the shoulders of the lower lip, This causes adjacent tiles to lock together on the first and second edges. It is designed to The lower lip further includes a first end surface that is substantially vertical; the bearing region is connected to a second substantially vertical edge of the tile; When adjacent tiles are joined together, the first end faces of the tiles face the second end faces, and the first end faces and the second end faces mutually enclose a lower adhesive chamber.
2. A stick-on decorative floor covering system, comprising: a plurality of interlocking decorative flexible floor tiles; Each floor tile is less than 4.7 mm thick; Each floor tile includes at least one flexible substrate layer at least partially made of polyvinyl chloride (PVC); each floor tile is rectangular, either rectangular or square, and includes a first pair of opposing sides and a second pair of opposing sides; the first pair of opposing sides including mechanical interlocks to allow a plurality of such tiles to be mechanically interlocked with one another; the connecting portions form a first locking system and a second locking system, the first locking system locking the interconnected tiles in a direction perpendicular to each side in the plane of the tiles, and the second locking system locking the interconnected tiles in a direction perpendicular to the plane of the tiles; These connecting portions are substantially made up of the substrate layer, the connectors on the first pair of opposing sides are configured to allow two such tiles to be connected to each other by rotational and / or vertical movement on those sides; the second pair of opposing sides does not include a mechanical link; the second pair of opposing sides includes a third side and an opposing fourth side, The third side has a substantially vertical third end face, The fourth side has a substantially vertical fourth end surface, When adjacent tiles are joined together, the third end faces face the fourth end faces, and the tops of the third end faces and the fourth end faces contact each other, and at least a portion of the bottoms of the third end faces and the fourth end faces mutually enclose lateral adhesive chambers; A floor covering system, wherein a bottom of the third end and / or the fourth end defines an adhesive inlet configured to allow adhesive to flow into the adhesive chamber during installation.
3. 3. The floor covering system of claim 1 or 2, wherein the connecting portions of the first pair of opposing sides are designed to snap or click into one another when interconnected.
4. 4. The floor covering system of claim 1, wherein at least one of the connecting portions of the first pair of opposing sides is designed to elastically deform when interconnected.
5. 5. The floor covering system of claim 4, wherein at least one of the connectors is forced to deform upon interconnection of the connectors.
6. The floor covering system of claim 1 , wherein the lateral tongues and the recesses mutually enclose a plurality of gaps when the connecting portions are connected to each other.
7. 2. The floor covering system of claim 1, wherein the lower surface of the bearing area configured to bear against and / or face the shoulder of the lower lip slopes upwardly toward the bottom front area of the lateral tongue.
8. The lower adhesive chamber is positioned away from the bottom of the tile, and / or 2. The floor covering system of claim 1, wherein the first end surface and the second end surface are spaced apart by a distance of at least 0.2 mm to allow sufficient adhesive to enter between the first end surface and the second end surface.
9. 9. The floor covering system of claim 8, wherein the first end surface and / or the second end surface is provided with at least one adhesive collection groove.
10. A floor covering system as described in claim 2, wherein the top of the third end face and the fourth end face are in contact with each other over at least half the thickness of the tile.
11. 11. The floor covering system of claim 10, wherein the third end surface and / or the fourth end surface is provided with at least one adhesive collection groove.
12. 12. A floor covering system according to any preceding claim, wherein the top sides of the tiles are adapted to interlock substantially seamlessly with the top sides of other tiles.
13. The floor covering system of any one of claims 1 to 12, wherein each tile comprises at least one decorative layer attached directly or indirectly to an upper surface of the substrate layer.
14. 14. The floor covering system of claim 13, wherein the decorative layer is a printed layer.
15. 15. The floor covering system of claim 13 or 14, wherein each tile includes at least one wear layer attached directly or indirectly to an upper surface of the decorative layer.
16. The floor covering system of any one of claims 1 to 15, wherein the substrate layer comprises at least one plasticizer.
17. The floor covering system of any one of claims 1 to 16, wherein the substrate layer comprises at least one inert filler.
18. 18. The floor covering system of any one of claims 1 to 17, wherein the bottom surface of each tile has an adhesive that adheres the tile to a subfloor, the adhesive being initially covered by a removable cover.
19. A stick-on floor covering achieved by interlocking a plurality of tiles of the stick-on floor covering system according to any one of claims 1 to 18.
Citation Information
Patent Citations
Floor panel and method for manufacturing floor panels.
EP2642044A2
Construction method of floor plate
JP2009174238A
Panel, covering and method for installing such panels
US20120266555A1
Floor panel for forming a floor covering
US20180266121A1