System for joining building panels
Abstract
The invention relates to a system for laying and mechanically joining building panels, especially thin, hard, floating floors. Adjacent joint edges (3, 4) of two panels (1, 2) engage each other to provide a first mechanical connection locking the joint edges (3,4 ) in a first direction (D1) perpendicular to the principal plane of the panels. In each joint, there is further provided a strip (6) which is integrated with one joint edge (3) and which projects behind the other joint edge (4). The strip (6) has an upwardly protruding locking element (8) engaging in a locking groove (14) in the rear side (16) of the other joint edge (4) to form a second mechanical connection locking the panels (1, 2) in a second direction (D2) parallel to the principal plane of the panels and at right angles to the joint. Both the first and the second mechanical connection allow mutual displacement of joined panels (1, 2) in the direction of the joint.

Term
Term ended
Expired 29 April 2014, 12.4 years ago.
- Priority
- Filed
- Granted
- Expired
- Today
19 claims: 8 independent, 11 dependent
- 1Revendicări 1. Sistem de îmbinre a panourilor de construcții, de-a lungul unor margini de îmbinre a unor panouri, în special, panouri de pardoseală, îmbinare în care niște margini de îmbinare, adiacente, formează împreună o primă legătură mecanică pentru a se bloca pe o primă direcție Dt la unghiuri drepte față de planul principal al panourilor menționate, un dispozitiv de blocare aranjat la partea posterioară a acestor panouri formează o a doua legătură mecanică care blochează panourile pe o a doua direcție D 2 , paralelă cu planul principal și la unghiuri drepte față de marginile de îmbinare respective,acest dispozitiv de îmbinare cuprinzând un uluc de blocare care se extinde paralel și distanțat față de marginea unuia din panouri, denumit panou cu uluc, și care este deschis la partea posterioară a acestui panou, caracterizat prin aceea că dispozitivul de blocare menționat (6, 8, 14) cuprinde o bandă (6), care face corp comun cu un alt panou (1), dintre panourile menționate, denumit panou cu bandă, această bandă (6) extinzându-se, în principal, pe toată lungimea marginii de îmbinare (3) a panoului cu bandă (1) și fiind prevăzută cu un element de blocare (8) care iese în relief din banda respectivă astfel încât când panourile se îmbină banda (6) este dirijată pe partea posterioară panoului cu uluc (2) și elementul ei de blocare (8) pătrunde în ulucul de blocare (14) al panoului cu uluc (2), panourile menționate, când sunt îmbinate, pot ocupa o poziție relativă pe cea de-a doua direcție (D 2 ) unde există un joc (Δ) între ulucul de blocare (14) și o suprafață de blocare (10) de pe elementul de blocare (8), suprafață care este orientată către marginile de îmbinare și este funcțională în cea de-a doua legătură mecanică, ambele legături mecanice, prima și a doua, permit o deplasare reciprocă a apanourilor (1, 2) pe direcția marginilor de (3, 4), cea de-a doua legătură mecanică fiind astfel concepută încât să permită ca elementul de blocare (8) să iasă din ulucul de blocare (14) dacă panoul cu uluc (2) este rotit în jurul marginii lui de îmbinare (4), deplasându-se unghiular și depărtându-se de banda (6).
- 2Sistem de îmbinare, conform revendicării 1, caracterizat prin aceea că, atunci când panoul cu uluc (2) este împins către panoul cu bandă (1), pe cea de-a doua direcție (D a ) și este rotit cu deplasare unghiulară, depărtându-se de banda (6), distanța maximă dintre axa de rotație a panoului cu uluc (2) și suprafața de blocare a ulucului de blocare (14), cea mai apropiată de marginile de îmbinare, este astfel încât elementul de blocare (8) poate ieși din ulucul de blocare (14) fără să vină în contact cu suprafața de blocare a ulucului de blocare (14).
- 3Sistem de îmbinare, conform revendicării 1, caracterizat prin aceea că suprafața de blocare (10) a elementului de blocare (8) se extinde din partea frontală (22) abenzii (6) atingând o înălțime,pe prima direcție menționată, această înălțime fiind egală sau mai mică de 2mm.
- 4Sistem de îmbinare, conform oricăreia din revendicările precedente, caracterizat prin aceea că prima legătură mecanică este asigurată de către marginea RO 115185 Bl de îmbinare (4) panoului cu uluc (2) care se îmbină pe prima direcție pătrunzând între marginea de îmbinare (3) a panoului cu bandă (1) și partea frontală a benzii (6).
- 5Sistem de îmbinare, conform oricăreia din revendicările precedente, caracterizat prin aceea că banda (6), care formează corp comun cu panoul cu bandă m. este confecționată dintr-un material diferit de cela al panoului cu bandă (1) și este montată fix, la fabrică, pe acest panou cu bandă (1).
- 6Sistem de îmbinare, conform revendicării 5, caracterizat prin aceea că banda (6), cel puțin pentru unul din panourile (1, 2) pătrunde într-un uluc opus (40, 42) din partea posterioară (18, 16) a acestui panou (1, 2).
- 7Sistem de îmbinare, conform revendicărilor 5 sau 6, caracterizat prin aceea că banda (6) este montată într-un uluc de egalizare (40) care constituie o adâncitură opusă din partea posterioară (18) a panoului cu bandă (1) și prezintă o distanță precisă, prestabilită (E), de la partea sa inferioară până la partea frontală (21) a panoului cu bandă (1), această parte de bandă (6) care trece înapoia panoului de uluc (2) se îmbină cu un uluc de egalizare corespunzător (42) care este o contraadâncitură din partea posterioară (16) a panoului cu uluc (2) și care prezintă exact o distanță prestabilită (E) de la baza ei până la partea frontală (26) a panoului cu uluc (2), respectiva bandă (6) având cel puțin o asemenea grosime încât partea posterioară (44) a benzii este așezată la același nivel cu părțile posterioare (18, 16) ale panourilor.
- 8Sistem de îmbinare, conform revendicării 7, caracterizat prin aceea că, banda are o asemenea grosime încât pătrunde numai parțial în ulucele de egalizare (40, 42).
- 9Sistem de îmbinare conform oricăreia din revendicările 5 până la 8, caracterizat prin aceea că, banda (6) este fixată pe panoul cu bandă (1) cu ajutorul unei legături mecanice.
- 10Sistem de îmbinare conform revendicării 6, caracterizat prin aceea că legătura mecanică dintre banda (6) și panoul cu bandă (1) cuprinde o margine de prindere (52) definită de două adâncituri (24, 50) din partea posterioară (18) a panoului cu bandă și niște gheare, ciocuri sau alte elemente similare (54, 56) care sunt îndoite sau decupate prin poasonare din banda (6) și presează pe părțile opuse exterioare ale marginii de prindere (52).
- 11Sistem de îmbinare conform revendicării 6, caracterizat prin aceea că legătura mecanică dintre banda (6) și panoul cu bandă (1) cuprinde o adâncitură (5, 8) în partea posterioară (18) și niște gheare, ciocuri sau alte elemente similare (60) care sunt îndoite sau decupate prin poansonare din banda (6) și presează pe părțile opuse interioare ale adânciturii (58).
- 12Sistem de îmbinare, conform oricăreia din revendicările 5 până la 11, caracterizat prin aceea că banda (6) este fixată pe panoul cu bandă (1) cu ajutorul unui adeziv.
- 13Sistem de îmbinare, conform oricăreia, din revendicările 5 până la 12, caracterizat prin aceea că banda (6) este confecționată dintr-un material flexibil, preferabil elastic, cum este o folie de aluminiu. 495 500 505 510 515 520 525 530 535 RO 115185 Bl
- 14Sistem de îmbinare, conform oricăreia din revendicările precedente, caracterizat prin aceea că elementul de blocare (8) constă dintr-o margine de blocare care se extinde continuu de-a lungul benzii (6).
- 15Sistem de îmbinare conform oricăreia din revendicările 1 până la 13, caracterizat prin aceea că, elementul de blocare constă dintr-o serie de elemente separate de blocare distribuite pe toată lungimea benzii (6).
- 16Sistem de îmbinare conform oricăreia din revendicările precedente, caracterizat prin aceea că panourile (1, 2) sunt rectangulare și destinate ca, la fiecare din cele patru margini (3, 4, 3', 4’) să se îmbine cu un panou similar prin intermediul unei prime legături mecanice, de tipul menționat mai înainte, și o a doua legătură mecanică de tipul menționat mai înainte, fiecare panou având o primă pereche de margini de îmbinare (3, 4) dintre care una este prevăzută cu o bandă (6) de tipul menționat mai înainte iar cealaltă prevăzută cu un uluc de blocare (14) de tipul menționat mai înainte și, o a doua pereche de margini opuse (3’, 4’) dintre care una este prevăzută cu o bandă (B'J de tipul menționat mai înainte, cealaltă fiind prevăzută cu un uluc de blocare (14’) de tipul menționat mai înainte.
- 17Sistem de îmbinare, conform oricăreia din revendicările precedente, caracterizat prin aceea că un strat inferior (46) din șipci de podea, spumă, pâslă sau un alt material similar este fixat pe părțile posterioare (18, 16) ale panourilor.
- 18Sistem de îmbinare, conform revendicării 17, caracterizat prin aceea că stratul inferior (46) este fixat astfel încât să acopere banda (6) pe cea de-a doua direcție menționată, cel puțin până la elementul de blocare (8) astfel încât îmbinarea dintre straturile inferioare (46) ale celor două panouri adiacente este decalată pe cea de-a doua direcție referitoare la marginile de îmbinare (3, 4).
- 19Sistem de îmbinare .conform oricăreia din revendicările precedente, caracterizat prin aceea că un mijloc de etanșare cum ar fi o compoziție de etanșare, o bandă de cauciuc sau un alt material similar este prevăzut pe partea frontală (22) a benzii între elementul de blocare (8) și marginea de îmbinare (3) a panoului cu bandă pentru a o etanșa pe panoul cu uluc (2).
Independent claims19
112 paragraphs, as filed
The invention relates, in general, to a system of connection between two construction panels, in particular, floor panels, along the adjacent edges, of joint. The system is very convenient to be used when joining floor panels, in particular, thin, layered panels, but also for the common joints of wood, and other types of building panels, such as those for walls and roofs.
Such type of joint is shown in the invention description SE 450141. At this joint, the first mechanical connection is of the groove and groove type. The locking device for the second mechanical link comprises oblique grooves (channels), one on the back side of each panel and a series of spaced, elastic clips, which are distributed along the joint and whose legs are pressed into said channels. They are inclined so that they can tightly grip and assemble the panels. Such a method of joining is very useful when assembling thin panels, for floors, with a thickness of about 7 to 10 mm, especially the stratified ones, they gained a great deal of weight on the market. All these thin floor panels are laid as floating floors without being attached to the supporting structure. As a rule, floor panels have a size of 200x1200mm and are provided with groove and groove on their short and long sides. Traditionally, the floor is assembled by applying a binder in the groove (groove) and forcing the panels, one to the other. Then the blade is stuck in the groove of the other panel. Typically, a layered panel is made up of a top, decorative, wear layer with a thickness of about 1 mm, an intermediate core of a particle board or other panel type and a lower, basic layer to stabilize the construction. mainly, the core has weaker properties than the stratified product, for example, in terms of hardness and water resistance, but it is still necessary to provide groove and groove elements for assembly. This means that the total thickness must be at least 7mm. These stratified panels, existing in the known state of the art, which are used with glued grooves and grooves, have several disadvantages. The first disadvantage is that the requirement of a total thickness of at least 7mm entails an unwanted restriction on the placement of the floor, because it is easier to find solutions with low thresholds, when using thin floor panels, and often the doors they must be adjusted to the height to form a game against the laid floor. Moreover, manufacturing costs are directly related to the consumption of materials. The second disadvantage is that the core has to be made of a material capable of absorbing water to allow the use of water-based binders when laying the floor. This is why thinner floors cannot be made using so-called compact products, due to the lack of convenient methods for bonding core materials that do not absorb moisture. The third disadvantage is the degree of wear of the tools, when processing the surface for making the joint (tongue or groove), which is a serious problem, because the material in the laminated floor panels is very resistant. The fourth disadvantage is that the strength of a joint based on a groove and groove bond is limited by the properties of the core and the binder, as well as the depth and width of the groove (groove). The quality of the picture depends entirely on the gluing. In the event of improper gluing, the joint will undo as a result of stretching efforts, which occur, for example, in relation to changing air humidity. The fifth disadvantage is
RO 115185 Bl that the laying of a floor, having glued joints and grooves, glued together, is time consuming, since the binder must be applied to each panel on both its long and short sides. The sixth disadvantage is that, once a glued floor has been fitted, it can no longer be dismantled without breaking the joints. Therefore the floor panels removed from their place can no longer be reused. This fact is a disadvantage especially in the case of rented houses, where the dwelling in question must be restored to the state it was at the time it was taken over. Damaged or worn panels cannot be replaced without considerable effort and this would be desirable, especially in public places and other spaces, where some parts of the floor are subject to advanced wear. The seventh disadvantage is that the stratified panels from the prior art are not suitable for such use, because they involve a high risk of moisture penetration, in their moisture-sensitive core. The eighth disadvantage refers to the fact that the current hard, floating panels require that, before laying the floor panels 60 on the hard sub-floors, a basic layer, separately, consisting of floor panels, felt, foam or other, is laid. similar materials, which cushion the sounds produced by impact and make the floor more comfortable when walking. The placement of this auxiliary layer is a complicated operation, because the respective plates must be placed with the edges side by side. Other settlements negatively affect the properties of the 65 floors.
Compared to the above, it is imperative that the mentioned disadvantages be eliminated. However, in the above method it is necessary to remove the mentioned disadvantages. However, the known method, with joints of the type with groove and groove, glued, cannot be used in the case of a thickness of about 3mm of the floor, because such a connection would not be sufficiently resistant and practically impossible to make floors. so thin. On the other hand, there are no other known joints - for joining such thin floors, on the other hand, there are no other known joints for joining such thin floors. Another reason that causes problems in the manufacture of thin floors, for example, compact, stratified panels, with a thickness of about 3mm, concerns the tolerances to thicknesses within the limits of about O, 2 ... O, 3mm. A compact, stratified panel with a uniform thickness at the back would have an asymmetrical construction, which entails the risk of bulging (swelling). Moreover, if the panels have different thicknesses, this means that the joint will be subjected to an excessive load. 8o
The problems mentioned above cannot be overcome either by the use of an adhesive tape, double, or something similar, on the underside of the panels, as such a connection is directly attached and does not allow a subsequent adjustment of the panels as is the case when applying a glue. ordinary.
Nor does the use of U-shaped staples, such as those set forth in the invention disclosure SE 450141 or other similar methods, represent a viable solution to eliminate said disadvantages. In particular, inclined staples of this type cannot be used when joining panels with such a small thickness of 3mm. Normally, it is not possible to dismantle the panels without having access to their lower part. This well-known technology, based on staples, also presents other disadvantages 90 as follows:
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- the subsequent adjustment of the panels in the longitudinal direction is a complicated operation, in relation to the positioning, because the staples force the panels to sit tightly next to each other;
- laying the floor, using staples, is time consuming;
- this method is only applicable when the panels are resting on bars below and with staples between them. Such staples cannot be used for laying thin floors on a flat, continuous, supporting structure;
- the floor panels can be joined together, only on their long sides. There is no connection with the clip on the short sides.
A major objective, pursued by the present invention, is to realize a system of joining the construction panels, in particular, the floating hard floor panels, which will allow the use of floor panels with a total thickness smaller than the thickness of the current panels. .
A particular object of the invention relates to the elaboration of a method for joining the panels, which meets the following requirements:
- to make it possible to join the floor panels in a simple, cheap and rational way without requiring the use of a binder, in particular, a joint that is based on mechanical connections between the panels;
- it can be used when joining floor panels, with a thickness smaller than the thickness of the current stratified panels and which, due to the use of a different core material, have properties superior to the known panels, even at a thickness of 3mm ;
- make it possible to make such a joint between thin panels, which eliminates any unplannedness caused by the tolerance field at the thickness of the panels in the joint area;
- allow jointing on all sides of the panel;
- reduce tool wear when making panels that have hard surface layers;
- to allow the disassembly and repeated reassembly of a previously installed floor, without causing damage to the panels and at the same time ensuring a high quality of the picture;
- make it possible to obtain waterproof floors;
- to eliminate the need for precise and separate placement of an auxiliary layer, before laying the floor panels;
- greatly reduce the time required to assemble the panels.
These objects of the invention and other objects related to the joining of the panels can be achieved, by means of the system according to the present invention, which have characteristics included in the appended claims.
Thus, the invention provides a system for making a joint, along adjacent joining edges, which belong to two construction panels, in particular, to floor panels, a joint in which some joining edges, together form a first mechanical link, to lock in a first direction D<sub>q</sub> at right angles to the main plane of said panels, a locking device arranged at the rear of these panels forms a second mechanical link that blocks the panels in a second direction D<sub>2</sub>, parallel to the main plane
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140 and at right angles to the respective joining edges, this jointing device comprising a lock groove that extends parallel and spaced relative to the edge of one of the panels, called a panel with groove, and which is open at the rear of this panel, characterized in that said locking device comprises a tape which makes common body with one of said panels, called a tape panel, this band extending mainly along the entire length of the joining edge of the ribbon panel and being provided with a locking element which protrudes from the respective strip so that when the panels are joined, the strip is directed to the back of the groove panel and its locking element enters the locking groove of the grooved panel, said panels, when they are joined, they can occupy a relative position on the second direction where there is a play between the locking channel and a locking surface on the locking element, surface that is oriented to the joining edges and is functional in the second mechanical link , both mechanical links, the first and the second, allow a reciprocal movement of the panels in the direction of the joining edges, the second mechanical link being designed so as to allow the locking element to exit the locking groove if the grooved panel is rotated around its joining edge, moving angularly and away from the web.
The term rear, as used above, should be considered so as to encompass any part of the panel located behind / below the front of the panel. The opening plane of the locking groove of a grooved panel may thus be located at a certain distance from the rear surface of the tire which rests on the support structure. Moreover, the strip which in the invention extends - mainly - the entire length of the joining edge of the strip panel, must be considered to include both the case where the strip is a continuous, uninterrupted element and the case where the strip is formed, along its longitudinal direction, from several sides, which together cover the main portion of the joining edge.
It should also be noted that i) namely the first and second link, as such, are the ones that allow the reciprocal movement of the apnures in the direction of the joining edges and ii) that is the second mechanical link, as such, that allows the locking element leaving the locking groove if the grooved panel is turned around its joining edge by angular displacement of displacement relative to the tape, within the scope of the objective pursued by the invention, there may be means, such as an adhesive and mechanical devices that can withstand or prevent such movement and / or tilting upwards.
The system according to the invention makes it possible to obtain a precise, hidden lock of both the long and short sides of thin, hard floors. The floor panels can be disassembled, quickly and routinely, in the reverse order from the order of placement, without any risk of degradation of the panels, while ensuring a high quality of placement (postage). The panels can be assembled and disassembled much faster than in the case of current systems and any damaged or worn panels can be replaced by removing and relocating the respective parts of the floor.
According to a particularly preferred embodiment of the invention, a system is provided that allows a precise connection of thin panels that have, for example, a thickness of the order of 3 mm and which, at the same time, ensure a smooth and independent upper surface. of tolerances, in the area of the joint. For this purpose, the tape is mounted in an equalization groove, which is an opposite opening (groove) in the part
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RO 115185 The rear block of the tape panel and which is at an exact, predetermined distance, from its lower part to the front of the tape panel. The band portion behind the groove panel enters a matching groove, correspondingly representing an opposite depth, from the back of the culvert panel and which has exactly the predetermined distance from its bottom to the front of the panel with groove. The thickness of the strip is then at least so great that the back of the strip is at the same level as the back of the panels and preferably passes just below this part. In this constructive variant, the panels will always support, in combination, with their equalization channels on the tape. This equals the tolerances and prints the resistance required for the joint. The band transmits horizontally and vertically oriented forces, the panels and downward oriented forces to the existing sub-pod.
Preferably, the tape can be made of a material that is flexible, elastic and durable and can be cut. A preferred material for the tape is an aluminum foil. □ Aluminum tape can have a strength sufficient to a thickness of about 0.5mm.
In order to allow the simple removal of previously assembled and assembled panels, a preferred constructive embodiment of the invention is characterized in that when the groove panel is pressed on the strip direction in the second direction, it turns with angular displacement and strip removal, the maximum distance between the axis of rotation of the groove panel and the locking surface of the lock groove, closest to the joining edges, is in this way, so that the locking element can exit the groove, without coming into contact with the locking surface of the locking groove. Such disassembly can take place, even if the aforementioned play, between the locking groove and the locking surface of the locking element, can provide a locking function, sufficient even in the case of very small heights of the locking surface. □ Effective locking of 3mm floor panels can be achieved with a locking surface that does not exceed the height of 2mm. Even a surface with a height of 0.5 mm can ensure sufficient locking. The term "locking surface" as used herein refers to a part of the locking element that enters the locking groove to form the second mechanical bond.
In order to obtain optimal behavior of the object of the invention, the tape and the locking element must be formed, on the panel with the tape, with high accuracy. In particular, the locking surface of the locking member must be positioned at an exact distance from the joining edge of the tape panel.
Moreover, the size of the penetration area of the floor panels should be reduced to a minimum, as it reduces the strength of the floor.
By known manufacturing methods, a tape provided with locking pin, for example by extruding aluminum or plastic material, can be manufactured in a convenient section, which is then glued to the floor panel or inserted into special sockets. However, these methods and all the other classical methods do not ensure an optimal function and an optimal level of economy. In order to produce a coupling system according to the invention, the strip is conveniently formed of an aluminum foil and is mechanically fastened to the strip panel.
Placing the panels can be done by first placing the tape panel on the sub pod and then moving the groove panel, with its long side, to the long side of the tape panel, at a certain angle between the main plane and the sub pod. When the edges
The joints have been brought together to form the first mechanical connection, the groove panel is inclined downward so as to adopt the locking element in the locking groove.
Laying can also be done by first placing the sub-pod on both the ribbon and groove panels and then bending the strip downward until the locking element enters the locking groove. This method of placement allows, in particular, the mechanical locking of both the long and short sides of the floor panels. For example, the long sides can be joined using the first method of tilting the groove panel, and the short ones can be joined later by moving the groove panel in its longitudinal direction until its short side is pressed and locked to the short side of the adjacent panel. from the same line.
With regard to the fabrication, the floor panels may be provided with a substrate, for example a slab, foam or felt, this substrate should preferably cover the strip so that the joint between the substrates is offset relative to the joint between the floor panels. .
The above features and other features and advantages of the invention will be highlighted in the following description and in the appended claims.
Following is an example of an embodiment of the system for joining the construction panels according to the invention, in connection with FIG. 1 ... 7 which represents:
FIG. 1a and 1b, schematic representation showing the floating joint mode of two floor panels with different thicknesses according to a first embodiment;
-fig.2a ... 2c, three phases of a method of mechanical joining of two floor panels according to a second embodiment;
- fig.3a ... 3c, three phases of joining the floor panels, from fig.2a ... 2c, according to another embodiment;
- Figs. 4a and 4b, top and bottom view respectively of the floor panel from Figs. 2a to 2c;
- Fig. 5, the third example of the method of laying and joining the floor panels;
- Fig. 6, bottom perspective view of a first variant of mounting a strip on a floor panel;
- Fig. 7, section according to a second variant, regarding the installation of a strip on a floor panel.
in FIG. 1a and 1b to which we refer now, there is presented a first floor panel 1, hereinafter referred to as a strip panel, and a second floor panel 2, hereinafter referred to as a groove panel. The names of the uluc panel are only meant to facilitate the description of the invention because, in practice, panels 1 and 2 are normally identical. Panels 1 and 2 can be made of a compact laminate material with a thickness of about 3mm and a tolerance to a thickness of about +/- 0.2mm. Considering this tolerance to thickness, panels 1, 2 are presented with different thicknesses (fig. 1b), panel 1 with a maximum thickness (3,2mm), and panel with groove having a minimum thickness (2.8 mm) ).
In order to make it possible to mechanically join panels 1 and 2, the panels are provided on the opposite edges, generally denoted by 3 and 4 respectively, with some strips and grooves as shown below.
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We refer now mainly to fig. 1a and 1b as well as in figs. 4a and 4b in which the basic construction of the bottom and top panels respectively is presented.
From the join edge 3 of the panel 1, that is to say from a long side, it starts horizontally, a flat strip 6 factory-mounted on the underside of the panel with tape 1 and extending across the entire edge of the joint 3. This tape 6, which is made of a flexible and elastic aluminum foil, can be mechanically fastened using a binder or in any convenient way. in FIG. 1a and 1b, the strip 6 is bonded with a binder, and in Figs. 4a and 4b it is mounted by means of a mechanical link which will be described in detail in the following. Other tape-based materials such as foils from other metals as well as aluminum or plastic foils can be used. Alternatively tape 6 may be formed from a piece with tape panel 1. In any case, the strip 6 must form a common body with the strip panel 1, ie it must not be mounted on the strip panel 1 in connection with the laying. As an unlimited example it is mentioned that the band 6 can have a width of about 30mm and a thickness of about 0.5mm.
As shown in Figs. 4a and 4b, a similar band G, although shorter, is provided, and on a shorter side 3 'of the apane with band 1. A shorter band 6' does not extend, however, on the entire short side. 3 ', but it is identical to the G band and so it is not detailed here.
The edge of the band G exceeding the joint edge 3 is formed with a locking element 8 extending over the entire band 6. The locking element 8 has a locking surface 10 oriented towards the joining edge 3 and having a height of for example 0, 5mm. The locking element 8 is constructed such that when laying the floor and the panel with strip 2 in fig. 1a is pressed with its joining edge 4 to the joining edge 3 of the strip panel 2 of fig. 1a is pressed with its joining edge 4 to the joining edge 3 of the strip panel 1 and is inclined downwards to the floor under the floor 12, according to FIG. 1b, it penetrates into a locking groove 14 formed at the bottom 16 of the groove panel 2 and extends parallel and spaced from the joint 4. in fig. 1b the locking element G and the locking groove 14 together form a mechanical connection through which panels 1 and 2 are locked against each other in the direction denoted by D<sub>2</sub>. Specifically, the locking surface 10 of the locking element 8 serves as a stop relative to that surface of the locking groove 14 which is closest to the joining edge 4.
When panels 1 and 2 are joined, however, they can occupy such a relative position in the D direction.<sub>2</sub> wherein there is a small clearance Δ between the locking surface 10 and the locking groove 14. this mechanical connection in the D direction<sub>2</sub> allows a reciprocal movement of panels 1, 2 in the sense of joining, which greatly facilitates the positioning and gives the possibility of joining the short sides by means of a spacing action.
As can be seen from FIG. 4a and 4b, each panel in the system has a G band on a long side 3 and a lock groove 14 on the other long side, as well as a G 'tape on a short side 3' and a lock groove 14 'on the other side. short 4 '.
In addition, the joining edge 3 of the strip panel 1 has at its lower part 18 a recess 20 which extends over the entire joining edge 3 and together with the upper face 22 of the strip G forms a recessed lateral groove 24.
RO 115185 Bl
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The joint edge 4 of the groove panel 2 has at its top 26 a corresponding recess 28 which forms a locking groove 30 intended to be inserted into the recess 24 so as to form a mechanical connection which blocks the edges 3, 4, one relative to the other, in the direction noted with This connection can be made by other constructions of the joining edges 3, 4 for example, by flattening them so that the joint edge 4 of the groove panel 2 passes obliquely under the join edge 3 of the panel 1 to be locked between this edge and the strip 6.
Panels 1, 2 can be removed from the joint, in reverse order, relative to the order of placement, without damaging the joint and then they can be re-joined.
The band 6 is mounted in a tolerance-equalization groove 40 from the underside 18 of the panel with strip 1 adjacent to the joint edge 3. At this constructive variant the width of the equalization groove is equal to approximately half of the width of the strip 6, ie about 15mm. by means of this equalization groove 40 it is ensured that between the upper side 21 of the panel 1 and the base of the groove 40 there will always be a precise, predetermined distance E which is slightly smaller than the minimum thickness (2.8 mm) of the floor panels 1. , 2. The groove panel 2 has a corresponding tolerance-equalization surface 42 at the bottom 16 of the joint edge 4. The distance between the equalizing surface 42 and the upper side 26 of the groove panel 2 is exactly equal to the distance E mentioned above. Furthermore, the thickness of the strip 6 is chosen so that the bottom part 44 of the strip is slightly below the level of the lower parts 18 and 16 of the floor panels 1 and 2 respectively. In this way, the entire joint will be supported on the band 6 and all downward vertical forces will be effectively transmitted to sub-frame 12 without exerting stress on the joint edges 3, 4. due to the provision of equalization grooves 40, 42 a smooth joint will be obtained at the top, although there are tolerances to the thickness of panels 1, 2, a joint which no longer requires any grinding or other similar operation in the transverse direction of the panels in whole. In this way, the risk of deterioration of the lower layer of the laminated material, which could lead to the panels being pumped, is avoided.
References will now be made to the constructive variant from figs. 2a to 2c, which in the same sequence presents the laying method as in fig. 1a and 1b. This constructive variant of fig. 2a-2c is different from the constructive variant of fig. 1a and 1b, mainly, in that the tape 6 is mounted on the panel with tape 1 by means of a mechanical link instead of an adhesive. To ensure this mechanical connection, presented in more detail in Fig. 6, a groove 50 is provided at the bottom 18 of the panel 1, at a certain distance from the groove 24. This groove 50 may be formed either as a continuous groove which extends the entire length of panel 1, either as a series of separate grooves. The groove 50, together with the groove 24, defines a gripping edge, in the form of a swallow tail 52, which, at the bottom shows an equalizing distance E to the top 21 of the panel with band 1. The aluminum strip 6 has a series of claws 54, obtained by cutting and bending, as well as one or more bumps 56 which are bent and connected on opposite sides of the clamping edge 52 together forming a tight coupling. This link is presented in detail,
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RO 115185 Bl in a bottom perspective view of fig.6. □ Another alternative of the mechanical connection between the band 6 and the panel with the band 1 can be realized as in Fig. 7, which shows a sectioned portion of the panel with the band 1 in an inverted position. The mechanical connection of Fig. 7 comprises a groove in the form of a swallow tail 58, at the bottom 18 of the panel with strip 1, as well as claws, bumps cut from the band 6 and bent to cling to the opposite inner faces of the recess 58.
The constructive variant of fig. 2a-2c is also characterized by the fact that the locking element 8 of the strip 6 is constructed as a bent part of the aluminum foil this piece being provided with a functional surface 22 of the strip 6 and having a height of approx. Q, 5mm, a rounded guide surface 34 which facilitates the insertion of the locking element 8 in the groove 14, when the groove panel 2 is inclined downwards, towards the sub-base 12 (fig.2b), as well as a portion 36 which is inclined to sub-floor 12 (fig.2b), as well as a portion 36 which is inclined to sub-floor 12 and which does not have a functional role in the laying method presented in fig.2a-2c.
From FIG. 2a to 2c it can also be seen that the joint edge 3 of the panel 1 has a lower recess 70 which, during the drawing, cooperates with an upper recess corresponding to the joint edge 4 of the panel 2, so that panels 1 and 2 are forced to move vertically, one to the other, when their joining edges 3, 4 move up, one to the other, and the panels are pressed together horizontally.
Preferably, the locking surface 10 is so positioned relative to the joint edge 3 that when the groove panel 2, starting from the joint position of Fig. 2c, is pressed horizontally in the direction D<sub>2</sub> to the panel with band 1, and is rotated upward from the band 6, the maximum distance between the axis of rotation A of the groove 2 and the locking surface 1Oa of the lock groove is such that the locking element can exit the locking channel 14 without to come in contact with him.
In Fig. 3a to 3b, another joining method is presented in which a mechanical jointing of the floor panels from Fig. 2a to 2c is performed. This method shown in FIG. 3a to 3c is based on the fact that the strip 6 is flexible and is particularly useful for joining the short sides of the floor panels that have already been joined along a long side as shown in Figs. 2a to 2c. The method, according to Figures 3a-3c, is performed by first placing the two panels 1 and 2 with the faces on the sub-floor 12 and then moving them horizontally, one to the other as shown in fig. 3b. The inclined portion 36 of the locking element 8 then serves as a guide surface which guides the joining edge 4 of the groove panel 2 up to the top 22 of the band 6. The band 6 will then be forced downward during the locking element. 8 slides on the equalizing surface 42. When the edges 3, 4 become completely joined together, in the horizontal plane the locking element will penetrate into the locking groove 14 (fig. 3c) thus achieving the same locking as fig. 2c. the same locking method can be used by placing in the initial position the joining edge 4 of the groove with the groove to position the equalizing groove 42 on the locking element 10 is not then functional. This method makes it possible to mechanically lock the floor panels in all directions, and by repeating the laying operations the entire floor can be laid without using adhesive.
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The invention is not limited to the preferred constructive variants presented above in the text and in the drawings, other variants can be imagined within the scope pursued and within the limits of the appended claims. Band 6 can be divided into small, small portions that cover the main part of the joint length. Moreover, the thickness of the strip may vary in its width. All the strips, lock grooves, locking elements and recesses are so sized as to make it possible to place the floor panels to which the upper, flat parts so as to rest on the band 6 of the joint. If the floor panels consist of a compact laminate material and if silicone, or any other sealing composition between the protruding, flat parts of the strip 6 and the panel with the groove 2 and / or in the groove 26, is applied prior to laying, then a moisture-resistant floor.
As can be seen from Fig. 6, an example substrate 46 of floor, foam or felt slabs can be mounted on the underside of the panels in their manufacturing process. In one embodiment, the substrate 46 covers the strip 6 to the locking element 8 so that the joint between the substrates 46 becomes offset with respect to the joint 3 and 4.
In the embodiment of FIG. 5, the strip 6 and its locking element 8 are formed from a piece with the tape apn 1 the protruding part of the strip 6 thus forming an extension of the lower part of the joining edge 3. The blocking function is same as in the embodiments presented above. On the underside 18 of the panel with tape 1 there is provided a separate strip, tape or something similar 74 that extends along the entire length of the joint and having in this embodiment a width that covers approximately the same surface as the separate strip 6 of the embodiments earlier. The strip 74 may be provided directly on the rear 18 or in the recess formed there (not shown), so that the distance from the front side 21, 26 of the floor to the rear 76, including the thickness of the strip 74, is always at least equal to the corresponding distance from the panel that has the highest thickness tolerance. Panels 1, 2 will then be supported, in the joint, on the band 74 or only on the lower parts 18 and 16 of the panels, if these parts are flat.
When using a material that does not allow the bending of the web 6 or of the locking element 8 to be bent down, the laying can be done as shown in FIG. A floor panel 2a goes up, inclined upwards, to join with the long side 3 of a panel on the floor 1 previously placed, while at the same time bringing a third floor panel 1 previously placed, bringing at the same time a third floor panel 2b so that its short side 4b 'is joined to the short side 3a' of a floor panel 2a, inclined upwards and fixed by tilting the panel 2b downwards. then, panel 2b is pushed along the short side 3a of the floor panel 2a, inclined upwards, until the long side 3 of panel 1, initially seated. The two panels 2a and 2b, inclined upwards, are therefore inclined downwards on sub-floor 12, so that they almost reach the lock.
By reversing operations, the panels can be removed, in reverse order, without damaging the joint and can then be repositioned.
The few preferred variants of the method of laying can be realized in other ways. For example, the tape panel can be inserted underneath the groove panel, giving
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RO 115185 Bl possibility of the panels being placed in all four directions in relation to the initial position.
6 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| MD2266C2 | Cited by | Republic of Moldova | Search report |
226 members in 29 offices
Priority claims8
| Document | Office | Kind | Date |
|---|---|---|---|
| 9301595 | Sweden | A | |
| 9301595 | Sweden | A | |
| 9400386 | Sweden | W | |
| 9400386 | Sweden | W | |
| 9301595 | – | – | – |
| 9400386 | – | – | – |
| SE19930001595 | – | – | – |
| WO1994SE00386 | – | – | – |
Members226
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|---|---|---|---|
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| SE501014C2 | Sweden | C2 | |
| SE9301595L | Sweden | L | |
| NO20061755L | Norway | L | |
| CA2150384A1 | Canada | A1 | |
| CA2339339A1 | Canada | A1 | |
| CA2339341A1 | Canada | A1 | |
| CA2339342A1 | Canada | A1 | |
| CA2339344A1 | Canada | A1 | |
| WO9426999A1 | World Intellectual Property Organization (WIPO) | A1 | |
| AU6763094A | Australia | A | |
| NO950790D0 | Norway | D0 | |
| FI951211A | Finland | A | |
| FI951211A7 | Finland | A7 | |
| NO950790L | Norway | L | |
| NO986137L | Norway | L | |
| HU9503216D0 | Hungary | D0 | |
| BR9406718A | Brazil | A | |
| PL311568A1 | Poland | A1 | |
| EP0698162A1 | European Patent Office (EPO) | A1 | |
| CN1122623A | China | A | |
| CZ285295A3 | Czechia | A3 | |
| BG100126A | Bulgaria | A | |
| LV11491A | Latvia | A | |
| AU671919B2 | Australia | B2 | |
| JPH08510022A | Japan | A | |
| SK141195A3 | Slovakia | A3 | |
| NZ266232A | New Zealand | A | |
| SE9604484D0 | Sweden | D0 | |
| LV11491B | Latvia | B | |
| HUT75843A | Hungary | A | |
| BG61457B1 | Bulgaria | B1 | |
| US5706621A | United States of America | A | |
| HU214470B | Hungary | B | |
| SG47518A1 | Singapore | A1 | |
| SE9604484L | Sweden | L | |
| WO9824994A1 | World Intellectual Property Organization (WIPO) | A1 | |
| AU5422398A | Australia | A | |
| EP0855482A2 | European Patent Office (EPO) | A2 | |
| EP0698162B1 | European Patent Office (EPO) | B1 | |
| AT171238T | Austria | T | |
| ATE171238T1 | Austria | T1 | |
| DE69413391D1 | Germany | D1 | |
| EP0877130A2 | European Patent Office (EPO) | A2 | |
| EP0855482A3 | European Patent Office (EPO) | A3 | |
| EP0877130A3 | European Patent Office (EPO) | A3 | |
| SE509060C2 | Sweden | C2 | |
| RU2123094C1 | Russian Federation | C1 | |
| ES2122280T3 | Spain | T3 | |
| DK0698162T3 | Denmark | T3 | |
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| NO305614B1 | Norway | B1 | |
| NO992653L | Norway | L | |
| EP0958441A1 | European Patent Office (EPO) | A1 | |
| RO115185B1This record | Romania | B1 | |
| EP0855482B1 | European Patent Office (EPO) | B1 | |
| AT187222T | Austria | T | |
| ATE187222T1 | Austria | T1 | |
| DE69421945D1 | Germany | D1 | |
| EP0969163A2 | European Patent Office (EPO) | A2 | |
| EP0969164A2 | European Patent Office (EPO) | A2 | |
| EP0877130B1 | European Patent Office (EPO) | B1 | |
| EP0969163A3 | European Patent Office (EPO) | A3 | |
| EP0969164A3 | European Patent Office (EPO) | A3 | |
| AT189287T | Austria | T | |
| ATE189287T1 | Austria | T1 | |
| US6023907A | United States of America | A | |
| ES2140983T3 | Spain | T3 | |
| DE69422838D1 | Germany | D1 | |
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| EP1061201A2 | European Patent Office (EPO) | A2 | |
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| RU2162923C2 | Russian Federation | C2 | |
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| CN1285447A | China | A | |
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| US6205639B1 | United States of America | B1 | |
| CN1294238A | China | A | |
| CN1294239A | China | A | |
| UA39883C2 | Ukraine | C2 | |
| EP1061201A3 | European Patent Office (EPO) | A3 |
Numbers
- Publication, DOCDB
- 115185
- Publication, EPODOC
- RO115185
- Application
- 9501954
- Application, DOCDB
- 9501954
- Application, EPODOC
- RO19950001954
Titles2
- English
- SYSTEM FOR JOINING BUILDING PANELS
- Romanian
- SISTEM DE IMBINARE A PANOURILOR DE CONSTRUCTII
Classification
- CPC, 9
- E04F15/02
- E04F15/04
- E04F15/14
- E04F13/0801
- E04F2201/0115
- E04F2201/0153
- E04F2201/042
- E04F2201/0517
- Y10T428/167
- IPC, 13
- E04D3 362
- E04B1 38
- E04B1 68
- E04B5 00
- E04C2 00
- E04C2 30
- E04F
- E04F13 08
- E04F15 00
- E04F15 02
- E04F15 04
- E04F15 14
- E04F15 18