MECHANICAL LOCKING SYSTEM FOR BUILDING PANELS
20170089379 · 2017-03-30
Assignee
Inventors
Cpc classification
F16B12/125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2012/466
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B12/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47B47/0075
HUMAN NECESSITIES
A47B47/025
HUMAN NECESSITIES
F16B12/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47B63/00
HUMAN NECESSITIES
International classification
F16B12/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A47B63/00
HUMAN NECESSITIES
A47B47/00
HUMAN NECESSITIES
Abstract
Panels are shown, which are provided with a mechanical locking system comprising a separate and flexible tongue allowing connection with a snap action. An outer edge part of the separate flexible tongue comprises a guiding protrusion that facilitates easy disassembly of the panels and that is deformed during locking and/or unlocking.
Claims
1. A set of panels comprising a first and a second panel, a panel edge of the second panel being insertable into a core groove of the first panel to obtain a mechanical connection between the first and the second panel, the panel edge being insertable into the core groove by an essentially linear relative displacement of the first and second panel when the first and second panel are arranged essentially perpendicularly to each other, said panel edge comprising a separate and flexible tongue and said core groove comprising a tongue groove, or said panel edge comprising a tongue groove and said core groove comprising a separate and flexible tongue, wherein the separate and flexible tongue is insertable into the tongue groove for connecting said panels to each other in a first direction, which is perpendicular to a main plane (MP-1) of the first panel, wherein the panel edge of the second panel is configured to cooperate with the core groove of the first panel for connecting said panels to each other in a second direction, which is perpendicular to a main plane (MP-2) of the second panel, wherein a longitudinal direction of the separate and flexible tongue extends parallel with said panel edge and/or core groove, and wherein the separate and flexible tongue is arranged in an insertion groove, said separate and flexible tongue being displaceable inwardly towards a bottom of the insertion groove and outwardly into the tongue groove during a locking of the first and second panel, wherein the separate and flexible tongue comprises a guiding protrusion at a short edge of the separate and flexible tongue, and that the guiding protrusion is configured such that its shape changes during the locking and/or unlocking of the first and second panel.
2. The set of panels as claimed in claim 1, wherein the guiding protrusion is further configured to be in contact with an inner part of the insertion groove during the locking.
3. The set of panels as claimed in claim 1, wherein there is a space between an inner part of the insertion groove and the guiding protrusion in a locked position of the first and the second panel.
4. The set of panels as claimed in claim 1, wherein the guiding protrusion is curve shaped and configured to guide a rod shaped tool into the tongue groove when the rod shaped tool is inserted into the insertion groove.
5. The set of panels as claimed in claim 1, wherein the rod shaped tool comprises an essentially round cross section.
6. The set of panels as claimed in claim 1, wherein the separate and flexible tongue comprises several flexible protrusions extending in the length direction of the tongue.
7. The set of panels as claimed in claim 1, wherein, when said panel edge comprises the tongue groove and said core groove comprises the separate and flexible tongue, said tongue groove is arranged in a lower side or in an upper side of the second panel.
8. The set of panels as claimed in claim 1, wherein, when said panel edge comprises the tongue groove and said core groove comprises the separate and flexible tongue, said insertion groove is formed in said core groove of the first panel.
9. The set of panels according to claim 8, wherein said insertion groove is arranged in a side wall of said core groove.
10. A locking system for locking of panels comprising a first and a second panel, wherein a panel edge of the second panel is insertable into a core groove of the first panel to obtain a mechanical connection between the first and the second panel, the panel edge being insertable into the core groove by an essentially linear relative displacement of the first and second panel when the first and second panel are arranged essentially perpendicularly to each other, wherein the locking system comprises: a separate and flexible tongue arranged in an insertion groove which is formed in the core groove; and a tongue groove at the panel edge, said tongue groove being adapted to accommodate a part of the separate and flexible tongue, wherein the separate and flexible tongue comprises a guiding protrusion at a short edge of the separate and flexible tongue, and that the guiding protrusion is configured such that its shape changes when a rod shaped tool is inserted into at least a part of the tongue groove.
11. A locking system as claimed in claim 10, wherein the rod shaped tool comprises an essentially round cross section.
12. A set of panels comprising a first and a second panel, a panel edge of the second panel being insertable into a core groove of the first panel to obtain a mechanical connection between the first and the second panel, the panel edge being insertable into the core groove by an essentially linear relative displacement of the first and second panel when the first and second panel are arranged essentially perpendicularly to each other, said panel edge comprising a separate and flexible tongue and said core groove comprising a tongue groove, wherein the separate and flexible tongue is insertable into the tongue groove for connecting said panels to each other in a first direction, which is perpendicular to a main plane (MP-1) of the first panel, wherein the panel edge of the second panel is configured to cooperate with the core groove of the first panel for connecting said panels to each other in a second direction, which is perpendicular to a main plane (MP-2) of the second panel, wherein a longitudinal direction of the separate and flexible tongue extends parallel with said panel edge and/or core groove, and wherein the separate and flexible tongue is arranged in an insertion groove, said separate and flexible tongue being displaceable inwardly towards a bottom of the insertion groove and outwardly into the tongue groove during a locking of the first and second panel, wherein an engagement portion of the core groove is arranged to engage with said separate and flexible tongue during locking of the first and second panel for displacing the separate and flexible tongue inwardly towards the bottom of the insertion groove, wherein said engagement portion is bevelled.
13. The set of panels as claimed in claim 12, wherein the bevelled engagement portion is provided in an upper part of the first panel, said upper part having a higher density than a center part of the first panel.
14. The set of panels as claimed in claim 12, wherein the bevelled engagement portion is provided between a side wall of said core groove and a lower or upper side of the first panel.
15. The set of panels as claimed in claim 12, wherein the second panel comprises an overlapping portion, which engages with the bevelled engagement portion in a locked position of the first and second panel.
16. The set of panels as claimed in claim 12, wherein a thickness of the second panel is smaller at the panel edge than in a visible part of the second panel which is visible in a locked position of the first and the second panel.
17. The set of panels as claimed in claim 12, wherein a distance between a lower edge side and a parallel upper edge side of the panel edge is smaller than a distance between a lower side and a parallel upper side, the lower and upper edge sides being located closer to a side edge of the second panel than the lower and upper sides.
18. The set of panels as claimed in claim 17, wherein the insertion groove is provided in said lower edge side or in said upper edge side of the panel edge.
19. A set of panels comprising a first and a second panel, a panel edge of the second panel being insertable into a core groove of the first panel to obtain a mechanical connection between the first and the second panel, the panel edge being insertable into the core groove by an essentially linear relative displacement of the first and second panel when the first and second panel are arranged essentially in the same plane (MP-1) said panel edge comprising a separate and flexible tongue and said core groove comprising a tongue groove, or said panel edge comprising a tongue groove and said core groove comprising a separate and flexible tongue, wherein the separate and flexible tongue is insertable into the tongue groove for connecting said panels to each other in a first direction, which is parallel to a main plane (MP-1) of the first panel, wherein the panel edge of the second panel is configured to cooperate with the core groove of the first panel for connecting said panels to each other in a second direction, which is perpendicular to the main plane (MP-1) of the panels, wherein a longitudinal direction of the separate and flexible tongue (3) extends parallel with said panel edge and/or core groove, and wherein the separate and flexible tongue is arranged in an insertion groove, said separate and flexible tongue being displaceable inwardly towards a bottom of the insertion groove and outwardly into the tongue groove during a locking of the first and second panel, wherein the separate and flexible tongue comprises a guiding protrusion at a short edge of the separate and flexible tongue, and that the guiding protrusion is configured such that its shape changes during the locking and/or unlocking of the first and second panel.
20. The set of panels as claimed in claim 19, wherein the guiding protrusion is further configured to be in contact with an inner part of the insertion groove during the locking.
21. The set of panels as claimed in claim 19, wherein the guiding protrusion is curve shaped and configured to guide a rod shaped tool into the tongue groove when the rod shaped tool is inserted into the insertion groove.
22. The set of panels as claimed in claim 19, wherein the rod shaped tool comprises an essentially round cross section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0047]
[0048]
[0049]
[0050]
[0051]
DESCRIPTION OF EMBODIMENTS OF THE INVENTION
[0052] To facilitate understanding, several locking systems in the figures are shown schematically. It should be emphasised that improved or different functions can be achieved using combinations of the preferred embodiments.
[0053]
[0054]
[0055]
[0056]
[0057] It is clear that other shapes of the rod shaped tool 9 and the tongue groove 5 are equally conceivable. For example, the cross-section of the rod shaped tool 9 may be shaped as a polygon, a rectangle, a square, an oval, a triangle or a star. Additionally, according to alternative embodiments, the shape of the bottom wall may not correspond to the shape of the rod shaped tool 9. For example, the cross-section of the rod shaped tool 9 may be circular and the cross-section of the tongue groove 5 may be U-shaped, for example comprising a planar bottom wall.
[0058] The insertion groove 4 may also be formed in the second panel 2 and the tongue groove 5 may be formed in the core groove 6 of the first panel 1. This will be described in more detail below.
[0059] The above-described embodiment provides the advantages that the insertion of the tool 9 may be made into the whole cross section comprising the insertion groove 4 and the tongue grooves 5. A symmetric tool cross section may be used that eliminates a precise orientation of the tool 9 prior to insertion into the grooves.
[0060] The guiding of the rod shaped tool 9 is illustrated in
[0061]
[0062]
[0063]
[0064]
[0065] In particular, the flexible tongue 3 may be tapering towards an edge of the flexible tongue 3 in a longitudinal direction. Thereby, an area of the cross section of the flexible tongue 3 may decrease towards the edge. Additionally, a maximal horizontal distance from an inner part of the cross section to an outer part of the cross section may decrease towards the edge. Here, the horizontal distance is measured in a direction along which the flexible tongue 3 is adapted to contract and expand. For example, the horizontal distance may be measured in a direction along which the flexible snap tab 13 is adapted to contract and expand. As shown in the embodiment according to
[0066] Next, an alternative embodiment will be described with respect to
[0067] According to the present embodiment, the first panel 1 comprises three parts: an upper part 30, a center part 32, and a lower part 34. The upper part 30 and the lower part 34 are located close to the upper 1b and lower 1a sides, respectively, and have a higher density than the center part 32.
[0068] The core groove 6 comprises two opposing side walls 6a, 6b and a bottom wall 6c. The core groove 6 comprises a tongue groove 5. The tongue groove 5 is provided in the side wall 6a of the tongue groove 5. Thus, the tongue groove 5 is provided in a left part 21a of the first panel 1 which is located to the left of core groove 6. Moreover, the tongue groove 5 comprises two parallel side walls 5a, 5b and a bottom wall 5c. As seen from the side view in
[0069] An engagement portion 20 of the core groove 6 is bevelled. The bevelled engagement portion 20 is provided between an upper part of the side wall 6a and the upper side 1b of the first panel 1, thereby joining them. Alternatively, the engagement portion 20 of the core groove 6 may be rounded off.
[0070] Moreover, the panel edge 12 of the second panel 2 has a smaller thickness than an inner part of the second panel 2, wherein the inner part is located farther from a side edge 2c of the second panel 2 than the panel edge 12. More specifically, the panel edge 12 comprises a lower edge side 22a and an upper side edge 22b which are parallel to each other and are located closer to the side edge 2c of the second panel 2 than a lower side 2a and an upper side 2b of the second panel 2. As displayed in
[0071] The lower edge side 22a is joined to the lower side 2a by means of an overlapping portion 24. According to the present embodiment, there is a corresponding upper edge side 22b which is joined to the upper side 2b of the second panel 2 by means of an overlapping portion 25. By means of the overlapping portions 24, 25, which in an assembled state, or locked position, of the first 1 and second 2 panels engage with the bevelled engagement portion 20 and a bevelled surface 27 of the core groove 6, respectively, the panel edge 12 and/or the core groove 6 may be concealed in an improved manner.
[0072] The panel edge 12 comprises a separate and flexible tongue 3. The separate and flexible tongue 3 may assume a contracted state and an expanded state and has a tendency to assume the expanded state when no forces are acting on it. The separate and flexible tongue 3 is arranged in an insertion groove 4 which is provided in lower edge side 22a of the panel edge 12. The separate and flexible tongue 3 comprises a chamfered portion 23 which is pointing downwards when the separate and flexible tongue 3 is inserted into the insertion groove 4.
[0073] When the first 1 and second 2 panels are assembled, the panel edge 12 of the second panel 2 is inserted into the core groove 6 of the first panel 1 by a relative vertical displacement of the first 1 and second 2 panels. The displacement is linear. The separate and flexible tongue 3 is partly inserted into the insertion groove 4 and is further displaced into the insertion groove 4 when the chamfered portion 23 engages with the bevelled engagement portion 20 during the vertical displacement. By means of the bevelled engagement portion 20, the chamfered portion 23 engages with a smooth surface during the assembly. Thereby, the chamfered portion 23 may avoid engaging with any sharp edges during assembly. When displaced further into the insertion groove 4, the separate and flexible tongue 3 may become contracted. When the side walls 4a, 4b of the insertion groove 4 are aligned with the side walls 5a, 5b of the tongue groove 5, the separate and flexible tongue 3 may expand and may be displaced out from the insertion groove 4 and into the tongue groove 5 for obtaining a locking of the first 1 and second 2 panels in a direction which is perpendicular to the main plane MP-1 of the first panel.
[0074] The core groove 6 comprises an inclined portion 16 between the side wall 6a and the bottom wall 6c as well as between the side wall 6b and the bottom wall 6c. Moreover, the panel edge 12 comprises a bevel 26 between the lower edge side 22a and the side edge 2c of the second panel 2 and a bevel 26 between the upper edge side 22b and the side edge 2c of the second panel 2. A shape of the inclined portion 16 may substantially correspond to a shape of the bevel 26. For example, the inclination of the inclined portion 16 and the bevel 26 may be substantially the same. The bevels 26 may remove sharp corners between the edge sides 22a, 22b and the side edge 2c. Moreover, the bevels 26 may guide the second panel 2 into a proper locking position.
[0075] In a locked position of the panels 1, 2, the panel edge 12 cooperates with the core groove 6 for connecting the panels to each other in a second direction, which is perpendicular to a main plane MP-2 of the second panel 2.
[0076] From
[0077] It is understood that according to an alternative embodiment, the second panel 2 may have a uniform thickness.
[0078]
[0079]
[0080] In the present embodiment, the first panel 1 and the second panel 2 have a uniform thickness.
[0081] The first panel 1 comprises a core groove 6 and a tongue groove 5 and the second panel 2 comprises a panel edge 12 that is insertable into the core groove 6 with a displacement parallel with the main plane MP-1 of the first and the second panel. The panel edge 12 comprises a separate and flexible tongue 3 which is provided in an insertion groove 4. In a locked position of the panels, the separate and flexible tongue 3 locks into the tongue groove 5.
[0082] According to an alternative embodiment (not shown), the tongue groove 5 may be provided in the second panel 2 and the separate and flexible tongue 3 may be provided in the first panel 1.
[0083] It is essential that the locking system is strong in order to provide sufficient rigidity to the locked components. Preferably, an upper edge 30a and a lower edge 31a of the first panel 1 and an upper edge 31b and a lower edge 31b of the second panel 2 are in contact with each other when the panels 1, 2 are locked.
[0084] According to the present embodiment, a side face of the panel edge 12 engages with a bottom wall of the core groove 6 in a locked position of the first 1 and second 2 panel. This may be seen in
[0085] The first panel 1 comprises an engagement portion 40 which is arranged to engage with the separate and flexible tongue 3 during locking of the first 1 and second 2 panel for displacing the separate and flexible tongue 3 inwardly towards the bottom of the insertion groove 4. The engagement portion 40 is inclined with respect to the main plane MP-1 of the first 1 and second 2 panel. Moreover, the engagement portion 40 is bevelled at a portion 42 which is adjacent to the tongue groove 5.
[0086]