Mechanical locking system for building panels

Information

  • Patent Grant
  • 11885355
  • Patent Number
    11,885,355
  • Date Filed
    Monday, April 11, 2022
    2 years ago
  • Date Issued
    Tuesday, January 30, 2024
    9 months ago
Abstract
Panels with a mechanical locking system including a separate and flexible tongue allowing connection with a snap action are described herein. An outer edge part of the separate flexible tongue includes a guiding protrusion that facilitates disassembly of the panels and that is deformed during locking and/or unlocking.
Description
TECHNICAL FIELD

The disclosure relates to the field of mechanical locking systems for building panels, especially furniture components with mechanical locking systems, which are intended to lock perpendicularly or in parallel to each other.


FIELD OF APPLICATION

Embodiments of the present invention are particularly suitable for use in furniture components, which are preferably formed of sheet shaped panels and which are joined mechanically with a locking system integrated with the panel, i.e. mounted at the factory, The following description of known technology, problems of known systems and objects and features of the invention will therefore, as a non-restrictive example, be aimed above all at this field of application and in particular at furniture components formed as rectangular or square panels intended to be mechanically joined on one pair of opposite edges perpendicularly or parallel to other adjacent panels.


It should be emphasised that the invention can be applied to any type of sheet shaped panel such as for example wood based HDF, particle board and plywood, plastic sheet shaped materials, mineral fibre and metal based materials, stone and ceramics and similar.


It may be used to assemble and disassemble furniture components, floor panels and elements for packaging boxes and similar. It may also be used to lock and unlock components, which for example have a cylinder form such as table legs.


BACKGROUND

Furniture such as kitchen cabinets, bookshelves, drawers, tables and similar are generally supplied as flat components in order to save transportation costs. The customer must assemble them. Several methods are used to assemble such furniture components for example glue, spikes, screws and similar. Snapping connections comprising plastic components are widely used to connect for example drawers. It is an advantage if assembled furniture components may be disassembled partly or completely again in a simple way. Mistakes during assembly may be corrected and furniture may be dissembled again to flat components in connection with transportation from one apartment to another. A simple and easy disassembly is an advantage even in the case when furniture components are factory assembled.


KNOWN TECHNOLOGY AND PROBLEMS THEREOF

It is known from WO 2012/154113 that furniture components may be locked mechanically with a perpendicular snap action. FIG. 1a shows a first 1 and a second 2 panel. The first panel 1 comprises a groove 6, formed in the panel core 7. An insertion groove 4 formed in one of the groove walls comprises a flexible tongue 3 that locks into a tongue groove 5 when an edge of the second panel 2 is displaced into the groove 6. FIG. 1b shows a known flexible bristle tongue 3, which is used to connect floor panels. Such a tongue is also used to connect furniture components. The tongue 3 comprises flexible protrusions 8 that bend in the length direction of the tongue and that displace the tongue in the insertion groove 4 during the snap action. FIG. 1b shows the tongue 3 in the outer locked position.



FIGS. 1c and 1d show that the locking system may be disassembled. A rod shaped stick 9 is inserted into the tongue groove 3 sideways. The flexible tongue 3 is pushed back into the insertion groove 4 and the second panel 2 may be released from the first panel 1.


The main problem with such disassembly is that the rod shaped stick 9 must be turned in a correct position and must be inserted precisely into the tongue groove 5. A disassembly is not possible if the rod shaped stick is inserted into the insertion groove 4.


SUMMARY

A basic objective of embodiments of the present invention is to simplify disassembly of panels that are locked perpendicularly to each other with a flexible tongue.


The above objects of embodiments of the invention are achieved wholly or partly by a mechanical locking system and panels, according to the independent claims that provide a stronger and easier locking and unlocking. Embodiments of the invention are evident from the dependent claims and from the description and drawings.


A first aspect of the invention is a set of panels comprising a first and a second panel. 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 is 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. The panel edge comprising a separate and flexible tongue and the core groove comprising a tongue groove, or the panel edge comprising a tongue groove and the core groove comprising a separate and flexible tongue. The separate and flexible tongue is insertable into the tongue groove for connecting the panels to each other in a first direction, which is perpendicular to a main plane (MP-1) of the first panel. The panel edge of the second panel is configured to cooperate with the core groove of the first panel for connecting the panels to each other in a second direction, which is perpendicular to a main plane (MP-2) of the second panel. A longitudinal direction of the separate and flexible tongue extends parallel with the panel edge and/or core groove. The separate and flexible tongue is arranged in an insertion groove and the separate and flexible tongue being displaceable inwardly towards a bottom of the insertion grove and outwardly into the tongue groove during a locking of the first and second panel. The separate and flexible tongue comprises a guiding protrusion at a short edge of the separate and flexible tongue and the guiding protrusion is configured such that its shape changes during the locking and/or unlocking of the first and second panel.


By means of the inventive concept, the panels may be disassembled in an improved and simple manner.


Preferably, the panels in the set of panels are essentially formed as parallelepipeds or, more specifically, as rectangular parallelepipeds.


Each of the panels, in particular the first and the second panel, may comprise a lower side and an upper side. Preferably, the lower and upper sides are shaped as rectangles or squares and are planar. The lower side and the upper side may be parallel. In one example, the panel has a uniform thickness. In another example, the panel has a non-uniform thickness. In yet another example, the panel comprises two or more sections, each having a uniform thickness. The lower side and the upper side of the panel may be parallel with the main plane of the panel. In particular, the main plane of the panel may coincide with the lower or the upper side of the panel. Moreover, each panel may comprise side edges which may connect the upper and lower sides. In the case of a panel formed as a parallelepiped, there may be two pairs of side edges. Preferably, at least portions of the two side edges in each pair of side edges are parallel.


In one example, a density of the panel is uniform. In another example, the density of the panel is higher closer to the upper and/or lower sides than in a center part of the panel.


The first direction may be parallel to the main plane of the second panel. Moreover, the second direction may be parallel to the main plane of the first panel.


The panel edge of a panel may comprise at least a portion of a side edge of the panel. Additionally, the panel edge may comprise a portion of the lower side and a portion of the upper side of the panel close to the side edge. A shape of the panel edge may substantially correspond to a shape of the core groove. Thereby, the second panel may engage with the first panel in a tightly fit manner. In particular, the panel edge and the core groove may be essentially U-shaped. Optionally, corners of the panel edge and/or the core groove may be bevelled.


By a short edge of the separate and flexible tongue is here meant an edge of the tongue in a longitudinal direction of the separate and flexible tongue.


The separate and flexible tongue may comprise an outer edge part that is formed as a guiding protrusion.


The guiding protrusion may be in contact with an inner part of the insertion groove during the locking.


In particular, in a locked position of the first and the second panel, the guiding protrusion may be in contact with the inner part of the insertion groove.


Alternatively, there may be a space between the inner part of the insertion groove and the guiding protrusion in a locked position of the first and the second panel. The space is preferably smaller than the displacement of the separate and flexible tongue during locking along a direction towards the inner part of the insertion groove.


The guiding protrusion may be 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. By curve shaped is here meant that at least a portion of the guiding protrusion is shaped as a curve. The curve may have a non-zero curvature. In particular, as seen from a top view, an outer side of the guiding protrusion may be shaped as a curve. The curvature is preferably such that an angle formed between a tangential direction of the outer side of the guiding protrusion and a longitudinal direction of the rod shaped tool is acute. In particular, the angle may be between 1° and 89°. Since the guiding protrusion is curve shaped, the acute angle may vary along the guiding protrusion in a direction towards a tip of the guiding protrusion. For example, the acute angle may increase towards the tip of the guiding protrusion.


According to an alternative embodiment, the guiding protrusion comprises at least one straight portion. As seen from a top view, each straight portion may be inclined with respect to a longitudinal direction of the tongue. In one example, the guiding protrusion comprises one straight portion. In another example, the guiding protrusion comprises at least two straight portions. In the latter example, the straight portions are preferably juxtaposed. The angle with respect to the longitudinal direction of the tongue may be different between the different straight portions. For example, the angle may increase by each straight portion towards the tip of the guiding protrusion.


In one example, a cross section of the guiding protrusion along a direction towards the tip of the guiding protrusion is constant. In another example, the cross section of the guiding protrusion is tapering. Moreover, in non-limiting examples, the cross section of the guiding protrusion along a direction towards its tip may be shaped as a circle, an oval, a polygon, a rectangle, a square, or a triangle.


The guiding protrusion may be flexible. More generally, at least portions of the guiding protrusion may be flexible.


The rod shaped tool may comprise an essentially round cross section. In particular, the cross-section may be shaped as a circle or an oval. By having a rotationally symmetric cross-section, such as a circle, the precise orientation of the rod shaped tool when inserting it into the insertion groove may become immaterial, which may further simplify the disassembly of the panels.


The separate and flexible tongue may comprise several flexible protrusions extending in the length direction of the tongue.


The insertion groove may be formed in the core groove of the first panel.


When the panel edge comprises the tongue groove and the core groove comprises the separate and flexible tongue, the tongue groove may be arranged in the lower side or in the upper side of the second panel. In particular, the tongue groove may be arranged in the lower side or in the upper side of the second panel, close to a side edge of the second panel.


Moreover, when the panel edge comprises the tongue groove and the core groove comprises the separate and flexible tongue, the insertion groove may be formed in the core groove. The core groove may comprise two side walls and a bottom wall. The two side walls of the core groove may be parallel. According to one embodiment, the insertion groove may be arranged in a side wall of the core groove. A shape of at least a part of the flexible tongue may substantially correspond to a shape of the insertion groove. In particular, the flexible tongue and the insertion groove may be essentially U-shaped. The insertion groove may comprise two side walls and a bottom wall. The side walls of the insertion groove may be parallel. In a first example, the bottom wall of the insertion groove is planar. In a second example, the bottom wall of the insertion groove is rounded. The insertion groove may be inclined with respect to the lower side and/or the upper side of the first panel. In a non-limiting example, the angle between a side wall of the insertion groove and the lower side and/or the upper side of the first panel may be between 5° and 45°.


The tongue groove may comprise two side walls and a bottom wall. The side walls of the tongue groove may be parallel. In a first example, the bottom wall of the tongue groove is planar. In a second example, the bottom wall of the tongue groove is rounded. The tongue groove may be inclined with respect to the lower side and/or the upper side of the second panel. In a non-limiting example, the angle between a side wall of the tongue groove and the lower side and/or the upper side of the second panel may be between 45° and 85°. The inclination of the tongue groove may correspond to an inclination of the insertion groove so that in a connected state of the first and second panel, parallel side walls of the tongue groove and parallel side walls of the insertion groove are essentially aligned with each other.


A second aspect of the invention is a locking system for locking of panels comprising a first and a second panel. 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 is 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. 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. The tongue groove is adapted to accommodate a part of the separate and flexible tongue. The separate and flexible tongue comprises a guiding protrusion at a short edge of the separate and flexible tongue. 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.


The rod shaped tool may comprise an essentially round cross section.


The invention provides the advantages that a rod shaped tool may be inserted sideways into the insertion groove that generally is larger than the tongue groove and the tool will be automatically guided by the guiding protrusion into the tongue groove. The rod shaped tool may have a simple round cross section and a precise orientation of the tool during insertion into the groove may be avoided. This facilitates an easy and simple disassembly of locked panels.


According to a third aspect of the invention, there is provided a set of panels comprising a first and a second panel. 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. Moreover, the panel edge comprises a separate and flexible tongue and the core groove comprises a tongue groove, wherein the separate and flexible tongue is insertable into the tongue groove for connecting the panels to each other in a first direction, which is perpendicular to a main plane of the first panel. The panel edge of the second panel is configured to cooperate with the core groove of the first panel for connecting the panels to each other in a second direction, which is perpendicular to a main plane of the second panel. A longitudinal direction of the separate and flexible tongue extends parallel with the panel edge and/or core groove. The separate and flexible tongue is arranged in an insertion groove and is displaceable inwardly towards a bottom of the insertion groove and outwardly into the tongue groove during a locking of the first and second panel. An engagement portion of the core groove is arranged to engage with the 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 the engagement portion is bevelled.


The bevelled engagement portion may be an upper bevelled engagement portion, provided close to, or at, an upper or lower side of the second panel.


The bevelled engagement portion may be provided in an upper part of the first panel, the upper part having a higher density than a center part of the first panel.


The bevelled engagement portion may be provided between a side wall of the core groove and a lower or upper side of the first panel. In particular, the bevelled engagement portion may join the side wall of the core groove and the upper or lower side of the first panel.


The second panel may comprise an overlapping portion, which engages with the bevelled engagement portion in a locked position of the first and second panel.


A thickness of the second panel may be 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.


A distance between a lower edge side and a parallel upper edge side of the panel edge may be 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.


The insertion groove may be provided in the lower edge side or in the upper edge side of the panel edge. Alternatively, the insertion groove may be provided in the lower side or in the upper side of the second panel.


According to a fourth aspect of the invention, there is provided a set of panels comprising a first and a second panel. 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, and the panel edge is 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. Moreover, the panel edge comprises a separate and flexible tongue and the core groove comprises a tongue groove, or the panel edge comprises a tongue groove and the core groove comprises a separate and flexible tongue. The separate and flexible tongue is insertable into the tongue groove for connecting the panels to each other in a first direction, which is parallel to a main plane of the first panel. The panel edge of the second panel is configured to cooperate with the core groove of the first panel for connecting the panels to each other in a second direction, which is perpendicular to the main plane of the panels. A longitudinal direction of the separate and flexible tongue extends parallel with the panel edge and/or core groove. Moreover, the separate and flexible tongue is arranged in an insertion groove and is displaceable inwardly towards a bottom of the insertion groove and outwardly into the tongue groove during a locking of the first and second panel. The separate and flexible tongue comprises a guiding protrusion at a short edge of the separate and flexible tongue, and the guiding protrusion is configured such that its shape changes during the locking and/or unlocking of the first and second panel.


The guiding protrusion may be further configured to be in contact with an inner part of the insertion groove during the locking.


The guiding protrusion may be 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.


The rod shaped tool may comprise an essentially round cross section.





BRIEF DESCRIPTION OF THE DRAWINGS


FIGS. 1a-1d illustrate known technology;



FIGS. 2a-2d illustrate disassembly of locked panels according to an embodiment;



FIGS. 3a-3d illustrate embodiments of separate flexible tongues;



FIGS. 4a-4c illustrate assembly and disassembly of panels according to an alternative embodiment;



FIGS. 5a-5d illustrate assembly and disassembly of panels located in the same main plane according to an embodiment.





DESCRIPTION OF EMBODIMENTS

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.



FIGS. 2a-d illustrate a first panel 1 and a second panel 2 which are connected to each other in accordance with an embodiment. The first panel 1 comprises a core groove 6 which is arranged in an upper side 1b of the first panel 1. The core groove 6 comprises two opposing side walls 6a, 6b and a bottom wall 6c. The opposing side walls 6a, 6b are parallel. The second panel 2 comprises a panel edge 12 which in a locked position of the panels 1, 2 is arranged in the core groove 6. More specifically, a portion of a lower side 2a, a portion of an upper side 2b, and a side edge 2c of the second panel 2 are arranged in the core groove 6. The panels 1, 2 may be locked to each other by means of a separate and flexible tongue 3.



FIG. 2a shows a top view of the flexible tongue 3 in a locked position. A part of the flexible tongue 3 comprising flexible protrusions 8 is located in an insertion groove 4. An opposite part is located in the tongue groove 5 according to known technology. The flexible tongue 3 comprises an outer edge part 3a that is formed as a guiding protrusion 10 that automatically guides a rod shaped tool 9 into a tongue groove 5 when the tool 9 is inserted sideways into the insertion groove 4. The guiding protrusion 10 is arranged at a short edge of the tongue 3. It is understood that there may be a corresponding guiding protrusion 10 arranged at the other short edge of the tongue 3 (not shown).



FIG. 2b shows that the flexible guiding protrusion is deformed when the rod shaped tool 9 is displaced sideways parallel to the length direction of the tongue 3 such that the tongue 3 is pressed into the insertion groove 4. It is an advantage if the flexible guiding protrusion 10 is in contact with an inner part of the insertion groove 4 during locking and when the tongue is pressed into the insertion groove. The guiding protrusion 10 is preferably flexible and is preferably also formed as a curved edge part.



FIG. 2c shows a side view of the locking system. According to the present embodiment, a main plane MP-1 of the first panel 1 coincides with the upper side 1b of the first panel 1. Moreover, a main plane MP-2 of the second panel 2 coincides with the lower side 2a of the first panel 2, which is situated to the left, as shown in FIG. 2c. The rod shaped tool 9 preferably comprises an essentially round cross section. According to the present embodiment, the cross section of the rod shaped tool 9 is circular. Moreover, a width of the rod shaped tool 9 corresponds to a width of the tongue groove 5 between two parallel side walls 5a, 5b thereof. According to the present embodiment, a bottom wall 5c of the tongue groove 5, connecting the two side walls, is rounded. The curvature of the rounded bottom wall 5c substantially corresponds to the curvature of the rod shaped tool 9. Thereby, an improved guiding of the rod shaped tool 9 may be provided. In the present embodiment, the rod shaped tool 9 is adapted to be fitted inside the tongue groove 5 so that essentially no portion of the rod shaped tool 9 extends outside the lower side 2a of the second panel 2. Thereby, the panels 1, 2 may be easily disassembled, since the rod shaped tool 9 may be fitted inside the tongue groove 5 while the tongue 3 is displaced into the insertion groove 4, thereby releasing the mechanical connection between the first 1 and the second panel 2. FIG. 2d shows disassembly of the first 1 and the second panel 2 according to the present embodiment.


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.


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.


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.


The guiding of the rod shaped tool 9 is illustrated in FIG. 2a and FIG. 2c. The broken lines illustrate the position of the rod shaped tool 9 when inserted into the insertion groove 4 and the arrows indicate that the rod shaped tool 9 is guided into the tongue groove 5 in the shown direction.



FIG. 3a shows a tongue blank 11 comprising several thermoplastic injection-moulded flexible tongues 3. The tongues are preferably separated from the blank 11 at a separation portion S located inwardly and at a distance from the outer edge of the tongue 3.



FIG. 3b shows that the guiding protrusion 10 may replace one of the flexible protrusions 8 such that all flexible protrusions 8 are located along the tongue in the length direction of the tongue and spaced in the length direction from the guiding protrusion 10.



FIG. 3c shows that the principles of the invention may be used to improve disassembly when other types of tongues are used for example flexible tongues comprising a snap tab 13 at the outer part. The locking system comprising a flexible snap tab 13 may be formed such that a tool 9 with an essentially round cross section may be used to release the first 1 and the second 2 panels.



FIG. 3d shows that such tongue 3 comprising a snap tab 13 may comprise a symmetric cross section in inner parts and an edge portion that may be cut or formed to a wedge shaped edge part 14. The flexible tongue may comprise a flexible snap tab and an asymmetric cross section along its length direction.


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 FIG. 3d, the cross section of the flexible snap tab 13 decreases towards the edge. A portion 13a of the flexible snap tab 13 has been cut out from the flexible tongue 3 for providing the tapering edge.


Next, an alternative embodiment will be described with respect to FIGS. 4a-c. FIGS. 4a and 4b show a side view of a first panel 1 and a second panel 2 which are being assembled. It is understood that, in FIGS. 4a-c, the first panel 1 extends horizontally and that the second panel 2 extends vertically and that only a connecting region of the first 1 and second 2 panel is shown. The first 1 and second 2 panels are arranged essentially perpendicularly to each other.


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.


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 FIGS. 4a-c, a linear extension E of the lower side wall 5a is located at or above a right part 21b of the first panel 1, which is located to the right of core groove 6. Thereby, a tool, such as a cutting tool, may easily provide the tongue groove 5 by means of a linear displacement of the tool.


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.


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 FIG. 4c, the distance d1 between the lower edge side 22a and the upper side edge 22b is smaller than the distance d2 between the lower side 2a and the upper side 2b.


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.


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.


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.


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.


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.


From FIG. 4b it is clear that the visible outer parts of the first 1 and second 2 panels have a uniform thickness in a locked position of the first 1 and second 2 panel.


It is understood that according to an alternative embodiment, the second panel 2 may have a uniform thickness.



FIG. 4c shows a side view of a first panel 1 and a second panel 2 which are being disassembled. This is analogous to the disassembly described above in relation to FIGS. 2a-d. In particular, when disassembling, the rod shaped tool 9 is inserted sideways into the insertion groove 4 and is guided into a proper position in the tongue groove 5 by means of a guiding protrusion 10 which is provided at a short edge of the separate and flexible tongue 3. When the rod shaped tool 9 is inserted into the tongue groove 5, the separate and flexible tongue 3 is displaced into insertion groove 4. Thereby, the second panel 2 becomes unlocked and the panel edge 12 may be removed from the core groove 6 by a relative linear vertical displacement of the first 1 and second 2 panel.



FIGS. 5a-5d show a locking system that may be used to lock and unlock a first 1 and a second 2 panel that, in a locked position, are located in the same main plane MP-1. In other words, the panels are arranged essentially in parallel with each other. Such a locking system may be used to lock two or several furniture components with, for example, a length of 0.6 m and that after locking form a part of a book shelf with a length of, for example, 1.2 or 1.8 m. An advantage of providing this type of locking system is that smaller components are easier to transport, assemble and disassemble. It is clear than other lengths of the furniture components are equally conceivable. In non-limiting examples, the length may be between 0.1 m and 1.0 m.


In the present embodiment, the first panel 1 and the second panel 2 have a uniform thickness.


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.


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.


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.


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 FIG. 5c. In addition, in a locked position, an upper and a lower face of the panel edge 12 engage with a respective one of two opposing side walls of the core groove 6. According to an alternative embodiment (not shown), however, the side face of the panel edge 12 may be separated from the bottom wall of the core groove 6 in a locked position of the first 1 and second 2 panel.


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.



FIG. 5d shows unlocking of the first 1 and second 2 panels with a rod shaped tool 9 according to the above-described methods. The separate and flexible tongue 3 comprises an outer edge part 3a that is formed as a guiding protrusion 10 that automatically guides the rod shaped tool 9 into the tongue groove 5 when the tool 9 is inserted sideways into the insertion groove 4.


EMBODIMENTS

1. A set of panels (1,2) comprising a first (1) and a second panel (2), a panel edge (12) of the second panel (2) being insertable into a core groove (6) of the first panel (1) to obtain a mechanical connection between the first and the second panel, the panel edge (12) being insertable into the core groove (6) 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 (12) comprising a separate and flexible tongue (3) and said core groove (6) comprising a tongue groove (5), or said panel edge (12) comprising a tongue groove (5) and said core groove (6) comprising a separate and flexible tongue (3),
    • wherein the separate and flexible tongue (3) is insertable into the tongue groove (5) 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 (12) of the second panel (2) is configured to cooperate with the core groove (6) of the first panel (1) 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 (3) extends parallel with said panel edge and/or core groove, and
    • wherein the separate and flexible tongue (3) is arranged in an insertion groove (4), said separate and flexible tongue (3) being displaceable inwardly towards a bottom of the insertion groove (4) and outwardly into the tongue groove (5) during a locking of the first and second panel,
    • characterized in that the separate and flexible tongue (3) comprises a guiding protrusion (10) at a short edge of the separate and flexible tongue (3), and that the guiding protrusion (10) 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 in embodiment 1, wherein the guiding protrusion (10) is further configured to be in contact with an inner part of the insertion groove (4) during the locking.


3. The set of panels as in embodiment 1, wherein there is a space between an inner part of the insertion groove (4) and the guiding protrusion (10) in a locked position of the first (1) and the second (2) panel.


4. The set of panels as in any of the preceding embodiments, wherein the guiding protrusion (10) is curve shaped and configured to guide a rod shaped tool (9) into the tongue groove (5) when the rod shaped tool (9) is inserted into the insertion groove (4).


5. The set of panels as in any of the preceding embodiments, wherein the rod shaped tool (9) comprises an essentially round cross section.


6. The set of panels as in any of the preceding embodiments, wherein the separate and flexible tongue (3) comprises several flexible protrusions (8, 10) extending in the length direction of the tongue (3).


7. The set of panels as in any of the preceding embodiments, wherein, when said panel edge (12) comprises the tongue groove (5) and said core groove (6) comprises the separate and flexible tongue (3), said tongue groove (5) is arranged in a lower side (2a) or in an upper side (2b) of the second panel (2).


8. The set of panels as in any of the preceding embodiments, wherein, when said panel edge (12) comprises the tongue groove (5) and said core groove (6) comprises the separate and flexible tongue (3), said insertion groove (4) is formed in said core groove (6) of the first panel (1).


9. The set of panels according to embodiment 8, wherein said insertion groove (4) is arranged in a side wall (6a) of said core groove (6).


10. A locking system for locking of panels (1, 2) comprising a first (1) and a second panel (2), wherein a panel edge (12) of the second panel (2) is insertable into a core groove (6) of the first panel (1) to obtain a mechanical connection between the first and the second panel, the panel edge (12) being insertable into the core groove (6) 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 (3) arranged in an insertion groove (4) which is formed in the core groove (6); and
    • a tongue groove (5) at the panel edge (12), said tongue groove (5) being adapted to accommodate a part of the separate and flexible tongue (3),
    • characterized in that the separate and flexible tongue (3) comprises a guiding protrusion (10) at a short edge of the separate and flexible tongue (3), and that the guiding protrusion is configured such that its shape changes when a rod shaped tool (9) is inserted into at least a part of the tongue groove (5).


11. A locking system as in embodiment 10, wherein the rod shaped tool (9) comprises an essentially round cross section.


12. A set of panels (1,2) comprising a first (1) and a second panel (2), a panel edge (12) of the second panel (2) being insertable into a core groove (6) of the first panel (1) to obtain a mechanical connection between the first and the second panel, the panel edge (12) being insertable into the core groove (6) 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 (12) comprising a separate and flexible tongue (3) and said core groove (6) comprising a tongue groove (5),
    • wherein the separate and flexible tongue (3) is insertable into the tongue groove (5) 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 (12) of the second panel (2) is configured to cooperate with the core groove (6) of the first panel (1) 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 (3) extends parallel with said panel edge and/or core groove, and
    • wherein the separate and flexible tongue (3) is arranged in an insertion groove (4), said separate and flexible tongue (3) being displaceable inwardly towards a bottom of the insertion groove (4) and outwardly into the tongue groove (5) during a locking of the first and second panel,
    • characterized in that an engagement portion (20) of the core groove (6) is arranged to engage with said separate and flexible tongue (3) during locking of the first and second panel for displacing the separate and flexible tongue (3) inwardly towards the bottom of the insertion groove (4), wherein said engagement portion (20) is bevelled.


13. The set of panels as in embodiment 12, wherein the bevelled engagement portion (20) is provided in an upper part (30) of the first panel (1), said upper part (30) having a higher density than a center part (32) of the first panel (1).


14. The set of panels as in embodiment 12 or 13, wherein the bevelled engagement portion (20) is provided between a side wall (6a) of said core groove (6) and a lower (1a) or upper side (1b) of the first panel (1).


15. The set of panels as in any of embodiments 12 to 14, wherein the second panel (2) comprises an overlapping portion (24), which engages with the bevelled engagement portion (20) in a locked position of the first (1) and second (2) panel.


16. The set of panels as in any of embodiments 12 to 15, wherein a thickness of the second panel (2) is smaller at the panel edge (12) than in a visible part of the second panel (2) which is visible in a locked position of the first (1) and the second (2) panel.


17. The set of panels as in any of embodiments 12 to 16, wherein a distance between a lower edge side (22a) and a parallel upper edge side (22b) of the panel edge (12) is smaller than a distance between a lower side (2a) and a parallel upper side (2b), the lower and upper edge sides (22a, 22b) being located closer to a side edge (2c) of the second panel (2) than the lower and upper sides (2a, 2b).


18. The set of panels as in embodiment 17, wherein the insertion groove (4) is provided in said lower edge side (22a) or in said upper edge side (22b) of the panel edge (12).


19. A set of panels (1,2) comprising a first (1) and a second panel (2), a panel edge (12) of the second panel (2) being insertable into a core groove (6) of the first panel (1) to obtain a mechanical connection between the first and the second panel, the panel edge (12) being insertable into the core groove (6) 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 (12) comprising a separate and flexible tongue (3) and said core groove (6) comprising a tongue groove (5), or said panel edge (12) comprising a tongue groove (5) and said core groove (6) comprising a separate and flexible tongue (3),
    • wherein the separate and flexible tongue (3) is insertable into the tongue groove (5) 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 (12) of the second panel (2) is configured to cooperate with the core groove (6) of the first panel (1) for connecting said panels to each other in a second direction, which is perpendicular to the main plane (MP-1) of the panels (1, 2),
    • wherein a longitudinal direction of the separate and flexible tongue (3) extends parallel with said panel edge (12) and/or core groove (6), and
    • wherein the separate and flexible tongue (3) is arranged in an insertion groove (4), said separate and flexible tongue (3) being displaceable inwardly towards a bottom of the insertion groove (4) and outwardly into the tongue groove (5) during a locking of the first and second panel,
    • characterized in that the separate and flexible tongue (3) comprises a guiding protrusion (10) at a short edge of the separate and flexible tongue (3), and that the guiding protrusion (10) 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 in embodiment 19, wherein the guiding protrusion (10) is further configured to be in contact with an inner part of the insertion groove (4) during the locking.


21. The set of panels as in any of embodiments 19 to 20, wherein the guiding protrusion (10) is curve shaped and configured to guide a rod shaped tool (9) into the tongue groove (5) when the rod shaped tool (9) is inserted into the insertion groove (4).


22. The set of panels as in any of embodiments 19 to 21, wherein the rod shaped tool (9) comprises an essentially round cross section.

Claims
  • 1. A set of panels comprising a first panel 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 panel and the second panel, said first panel comprising a first main plane and said second panel comprising a second main plane, the panel edge being insertable into the core groove by an essentially linear relative displacement of the first and second panels when the first main plane is essentially parallel to the second main plane,said panel edge comprising a separate and flexible tongue and said first panel 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 parallel to the first main plane,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 first main plane,wherein a longitudinal direction of the separate and flexible tongue extends parallel with said panel edge and/or core groove, andwherein 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 panels,wherein the insertion groove is inclined with respect to said second direction.
  • 2. The set of panels according to claim 1, wherein side walls of the insertion groove are parallel to each other and are planar.
  • 3. The set of panels according to claim 1, wherein a side wall of the tongue groove is planar.
  • 4. The set of panels according to claim 1, wherein side walls of the core groove are parallel to each other.
  • 5. The set of panels according to claim 1, wherein the tongue groove is at least partially provided in the core groove.
  • 6. The set of panels according to claim 1, wherein the first panel and the second panel have a uniform thickness.
  • 7. The set of panels according to claim 1, wherein a first upper edge and a first lower edge of the first panel and a second upper edge and a second lower edge of the second panel are respectively in contact with each other when the panels are locked.
  • 8. The set of panels according to claim 1, wherein a side face of the panel edge engages with a bottom wall of the core groove in a locked position of the first and second panels.
  • 9. The set of panels according to claim 1, wherein a side face of the panel edge is separated from a bottom wall of the core groove in a locked position of the first and second panels.
  • 10. The set of panels according to claim 1, wherein the first panel comprises an engagement portion configured to engage with the separate and flexible tongue during locking of the first and second panels for displacing the separate and flexible tongue inwardly towards the bottom of the insertion groove.
  • 11. The set of panels according to claim 10, wherein the engagement portion is inclined with respect to the first main plane of the first panel.
  • 12. The set of panels according to claim 10, wherein the engagement portion is beveled at a portion that is adjacent to the tongue groove.
  • 13. The set of panels according to claim 1, wherein a short edge of the separate and flexible tongue comprises a guiding protrusion.
  • 14. The set of panels according to claim 13, wherein the guiding protrusion is configured such that a shape of the guiding protrusion changes during the locking and/or unlocking of the first and second panels.
  • 15. The set of panels according to claim 13, wherein the guiding protrusion is configured to be in contact with an inner part of the insertion groove during the locking.
  • 16. The set of panels according to claim 13, 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.
  • 17. The set of panels according to claim 16, wherein the rod-shaped tool comprises an essentially round cross section.
  • 18. The set of panels according to claim 1, wherein the panels are furniture components.
Priority Claims (1)
Number Date Country Kind
1400231-5 May 2014 SE national
CROSS REFERENCE TO RELATED APPLICATIONS

The present application is a continuation of U.S. application Ser. No. 16/946,047, filed on Jun. 4, 2020, which is a continuation of U.S. application Ser. No. 15/308,872, filed on Nov. 4, 2016, now U.S. Pat. No. 10,846,562, which is a U.S. National Stage of International Application No. PCT/SE2015/050518, filed on May 8, 2015, which claims the benefit of Swedish Application No. 1400231-5, filed on May 9, 2014. The entire contents of each of U.S. application Ser. No. 16/946,047, U.S. application Ser. No. 15/308,872, International Application No. PCT/SE2015/050518, and Swedish Application No. 1400231-5 are hereby incorporated herein by reference in their entirety.

US Referenced Citations (332)
Number Name Date Kind
291032 Cleland Jan 1884 A
634581 Miller Oct 1899 A
701000 Ahrens May 1902 A
861911 Stewart Jul 1907 A
881673 Ellison Mar 1908 A
1533099 Carroll Apr 1925 A
1534468 Shea, Jr. Apr 1925 A
1800386 Hoffman Apr 1931 A
1800387 Greist Apr 1931 A
1802245 Foretich Apr 1931 A
1954242 Heppenstall Apr 1934 A
2360451 Stone Oct 1944 A
2362904 Kramer Nov 1944 A
2496184 Von Canon Jan 1950 A
2681483 Morawetz Jun 1954 A
3002630 Heisser Oct 1961 A
3195968 Freeman Jul 1965 A
3284152 Schörghuber Nov 1966 A
3313054 Madey Apr 1967 A
3347610 Pilliod Oct 1967 A
3410441 Rhyne Dec 1968 A
3722704 Piretti Mar 1973 A
3722971 Zeischegg Mar 1973 A
3742807 Manning Jul 1973 A
3765465 Gulistan Oct 1973 A
3784271 Schreiber Jan 1974 A
3884002 Logie May 1975 A
3885845 Krieks May 1975 A
3981118 Johnson et al. Sep 1976 A
4089614 Harley May 1978 A
4099293 Pittasch Jul 1978 A
4099887 Mackenroth Jul 1978 A
4116510 Franco Sep 1978 A
4142271 Busse Mar 1979 A
4211379 Morgan et al. Jul 1980 A
4222544 Crowder Sep 1980 A
4279397 Larsson Jul 1981 A
4299067 Bertschi Nov 1981 A
4308961 Kunce Jan 1982 A
4324517 Dey Apr 1982 A
4403886 Haeusler Sep 1983 A
4405253 Stockum Sep 1983 A
4509648 Govang Apr 1985 A
4593734 Wallace Jun 1986 A
4595105 Gold Jun 1986 A
4597122 Handler Jul 1986 A
4615448 Johnstonbaugh Oct 1986 A
4629076 Amstutz et al. Dec 1986 A
4750794 Vegh Jun 1988 A
4752150 Salice Jun 1988 A
4815908 Duran et al. Mar 1989 A
4817900 Whittington et al. Apr 1989 A
4844266 Small et al. Jul 1989 A
4883331 Mengel Nov 1989 A
4886326 Kuzyk Dec 1989 A
4888933 Guomundsson Dec 1989 A
4891897 Gieske et al. Jan 1990 A
4909581 Haheeb Mar 1990 A
4938625 Matsui Jul 1990 A
4944416 Petersen et al. Jul 1990 A
4961295 Kosch, Sr. et al. Oct 1990 A
5004116 Cattarozzi Apr 1991 A
5018323 Clausen May 1991 A
5109993 Hutchison May 1992 A
5114265 Grisley May 1992 A
5121578 Holz Jun 1992 A
5125518 Ward Jun 1992 A
5138803 Grossen Aug 1992 A
5209556 Anderson May 1993 A
5212925 McClinton May 1993 A
5299509 Ballard Apr 1994 A
5360121 Sothman Nov 1994 A
5375802 Branham, II Dec 1994 A
5423155 Bauer Jun 1995 A
5451102 Chuan Sep 1995 A
5458433 Stastny Oct 1995 A
5471804 Winter, IV Dec 1995 A
5475960 Lindal Dec 1995 A
5499667 Nakanishi Mar 1996 A
5499886 Short et al. Mar 1996 A
5507331 Nakanishi Apr 1996 A
5527103 Pittman Jun 1996 A
5536108 Kvalheim Jul 1996 A
5658086 Brokaw et al. Aug 1997 A
5711115 Wirt Jan 1998 A
5775521 Tisbo Jul 1998 A
5810505 Henriott Sep 1998 A
5882098 Brown et al. Mar 1999 A
5893617 Lee Apr 1999 A
5941026 Eisenreich Aug 1999 A
5944294 Baer Aug 1999 A
5950389 Porter Sep 1999 A
6045290 Nocievski Apr 2000 A
6050426 Leurdijk Apr 2000 A
6142436 Thurston et al. Nov 2000 A
6312186 Röck et al. Nov 2001 B1
6349507 Muellerleile Feb 2002 B1
6363645 Hunter Apr 2002 B1
6413007 Lambright Jul 2002 B1
6418683 Martensson Jul 2002 B1
6491172 Chance Dec 2002 B2
6505452 Hannig Jan 2003 B1
6547086 Harvey Apr 2003 B1
6578498 Draudt et al. Jun 2003 B1
6675979 Taylor Jan 2004 B2
D486676 Campbell et al. Feb 2004 S
6769219 Schwitte et al. Aug 2004 B2
6772890 Campbell et al. Aug 2004 B2
6827028 Callaway Dec 2004 B1
6971614 Fischer et al. Dec 2005 B2
7127860 Pervan Oct 2006 B2
7223045 Migli May 2007 B2
7228977 Perkins et al. Jun 2007 B2
7300120 Shin Nov 2007 B2
7451535 Wells et al. Nov 2008 B2
7451578 Hannig Nov 2008 B2
7484337 Hecht Feb 2009 B2
7584583 Bergelin et al. Sep 2009 B2
7614350 Tuttle et al. Nov 2009 B2
7621092 Groeke et al. Nov 2009 B2
7634884 Pervan Dec 2009 B2
7641414 Joyce Jan 2010 B1
7717278 Kao May 2010 B2
7721503 Pervan et al. May 2010 B2
7793450 Chasmer et al. Sep 2010 B2
7818939 Bearinger Oct 2010 B2
7841145 Pervan Nov 2010 B2
7854100 Pervan Dec 2010 B2
7998549 Susnjara Aug 2011 B2
8033074 Pervan Oct 2011 B2
8038363 Hannig Oct 2011 B2
8042311 Pervan Oct 2011 B2
8146754 Apgood Apr 2012 B2
8220217 Muehlebach Jul 2012 B2
8234830 Pervan Aug 2012 B2
8341915 Pervan Jan 2013 B2
8365499 Nilsson et al. Feb 2013 B2
8387327 Pervan Mar 2013 B2
8431054 Pervan Apr 2013 B2
8464408 Hazzard Jun 2013 B2
8464489 Pervan Jun 2013 B2
8495849 Pervan Jul 2013 B2
8505257 Boo et al. Aug 2013 B2
8544230 Pervan Oct 2013 B2
8596013 Boo Dec 2013 B2
8602227 McDonald Dec 2013 B1
8615952 Engström Dec 2013 B2
8713886 Pervan May 2014 B2
8745952 Perra Jun 2014 B2
8764137 Fehre Jul 2014 B2
8776473 Pervan Jul 2014 B2
8833028 Whispell et al. Sep 2014 B2
8864407 Sorum Oct 2014 B1
8869485 Pervan Oct 2014 B2
8882416 Baur et al. Nov 2014 B2
8887468 Håkansson et al. Nov 2014 B2
8925274 Darko Jan 2015 B2
9175703 Maertens Nov 2015 B2
9216541 Boo Dec 2015 B2
9290948 Cappelle et al. Mar 2016 B2
9375085 Derelöv Jun 2016 B2
9538842 Håkansson et al. Jan 2017 B2
9655442 Boo et al. May 2017 B2
9700157 Keyvanloo Jul 2017 B2
9714672 Derelöv et al. Jul 2017 B2
9723923 Derelöv Aug 2017 B2
9726210 Derelöv et al. Aug 2017 B2
9745756 Hannig Aug 2017 B2
9758973 Segaert Sep 2017 B2
9763528 Lung Sep 2017 B2
9809983 Trudel Nov 2017 B2
9945121 Derelöv Apr 2018 B2
10017948 Boo Jul 2018 B2
10034541 Boo et al. Jul 2018 B2
10202996 Håkansson et al. Feb 2019 B2
10378570 Broughton Aug 2019 B2
10415613 Boo Sep 2019 B2
10448739 Derelöv et al. Oct 2019 B2
10451097 Brännström et al. Oct 2019 B2
10486245 Fridlund Nov 2019 B2
10506875 Boo et al. Dec 2019 B2
10544818 Fridlund Jan 2020 B2
10548397 Derelöv et al. Feb 2020 B2
10669716 Derelöv Jun 2020 B2
10670064 Derelöv Jun 2020 B2
10724564 Derelöv Jul 2020 B2
10731688 Brännström et al. Aug 2020 B2
10736416 Derelöv et al. Aug 2020 B2
10830266 Fridlund Nov 2020 B2
10830268 Boo Nov 2020 B2
10871179 Håkansson et al. Dec 2020 B2
10876562 Pervan Dec 2020 B2
10876563 Derelöv et al. Dec 2020 B2
10933592 Blomgren Mar 2021 B2
10953566 Fransson Mar 2021 B2
10968936 Boo et al. Apr 2021 B2
11076691 Boo Aug 2021 B2
11083287 Boo et al. Aug 2021 B2
11098484 Derelöv Aug 2021 B2
11137007 Fridlund Oct 2021 B2
11204051 Brännström et al. Dec 2021 B2
11246415 Derelöv et al. Feb 2022 B2
11272783 Derelöv Mar 2022 B2
11326636 Pervan May 2022 B2
11331824 Myllykangas May 2022 B2
11421426 Boo Aug 2022 B2
11441590 Derelöv Sep 2022 B2
11479970 Pervan Oct 2022 B2
11480204 Derelöv Oct 2022 B2
11536307 Derelöv Dec 2022 B2
20020170258 Schwitte et al. Nov 2002 A1
20040165946 Areh et al. Aug 2004 A1
20050042027 Migli Feb 2005 A1
20050104483 Saravis May 2005 A1
20050236544 Mancino Oct 2005 A1
20050247653 Brooks Nov 2005 A1
20060091093 Armari May 2006 A1
20060101769 Pervan et al. May 2006 A1
20060180561 Wisnoski et al. Aug 2006 A1
20060236642 Pervan Oct 2006 A1
20060273085 Casto Dec 2006 A1
20070006543 Engström Jan 2007 A1
20070028547 Grafenauer et al. Feb 2007 A1
20070193178 Groeke et al. Aug 2007 A1
20080010937 Pervan et al. Jan 2008 A1
20080066415 Pervan Mar 2008 A1
20080193209 Henderson Aug 2008 A1
20080216435 Nolan Sep 2008 A1
20080236088 Hannig et al. Oct 2008 A1
20080244882 Woxman et al. Oct 2008 A1
20090014401 Tallman Jan 2009 A1
20090064624 Sokol Mar 2009 A1
20100028592 Barkdoll et al. Feb 2010 A1
20100083603 Goodwin Apr 2010 A1
20100104354 Spalding Apr 2010 A1
20100173122 Susnjara Jul 2010 A1
20100289389 Crabtree, II Nov 2010 A1
20110023303 Pervan et al. Feb 2011 A1
20110167750 Pervan Jul 2011 A1
20110225921 Schulte Sep 2011 A1
20110225922 Pervan et al. Sep 2011 A1
20110280655 Maertens et al. Nov 2011 A1
20110283650 Pervan et al. Nov 2011 A1
20120009383 Hardesty Jan 2012 A1
20120027967 Maertens et al. Feb 2012 A1
20120073235 Hannig Mar 2012 A1
20120124932 Schulte et al. May 2012 A1
20120145845 Hightower Jun 2012 A1
20120180416 Perra et al. Jul 2012 A1
20120279161 Håkansson et al. Nov 2012 A1
20120286637 Fehre Nov 2012 A1
20130014463 Pervan Jan 2013 A1
20130048632 Chen Feb 2013 A1
20130071172 Maertens et al. Mar 2013 A1
20130081349 Pervan Apr 2013 A1
20130097846 Pettigrew Apr 2013 A1
20130111845 Pervan May 2013 A1
20130170904 Cappelle et al. Jul 2013 A1
20130232905 Pervan Sep 2013 A2
20130287484 Phillips Oct 2013 A1
20140013919 Gerke et al. Jan 2014 A1
20140055018 Shein et al. Feb 2014 A1
20140111076 Devos Apr 2014 A1
20140286701 Sauer Sep 2014 A1
20140294498 Logan Oct 2014 A1
20150034522 Itou et al. Feb 2015 A1
20150035422 Håkansson et al. Feb 2015 A1
20150078807 Brännström et al. Mar 2015 A1
20150078819 Derelöv et al. Mar 2015 A1
20150196118 Derelöv Jul 2015 A1
20150198191 Boo Jul 2015 A1
20150230600 Schulte Aug 2015 A1
20150330088 Derelöv Nov 2015 A1
20150368896 Schulte Dec 2015 A1
20160000220 Devos Jan 2016 A1
20160007751 Derelöv Jan 2016 A1
20160145029 Ranade et al. May 2016 A1
20160174704 Boo et al. Jun 2016 A1
20160186925 Bettin Jun 2016 A1
20160192775 Andersson Jul 2016 A1
20160270531 Derelöv Sep 2016 A1
20170079433 Derelöv et al. Mar 2017 A1
20170089379 Pervan Mar 2017 A1
20170097033 Håkansson et al. Apr 2017 A1
20170159291 Derelöv Jun 2017 A1
20170208938 Derelöv et al. Jul 2017 A1
20170227031 Boo Aug 2017 A1
20170227032 Fridlund Aug 2017 A1
20170227035 Fridlund Aug 2017 A1
20170234346 Fridlund Aug 2017 A1
20170298973 Derelöv Oct 2017 A1
20170360193 Boo et al. Dec 2017 A1
20180080488 Derelöv Mar 2018 A1
20180087552 Derelöv et al. Mar 2018 A1
20180112695 Boo et al. Apr 2018 A1
20180119717 Derelöv May 2018 A1
20180202160 Derelöv Jul 2018 A1
20180328396 Fransson et al. Nov 2018 A1
20190113061 Håkansson et al. Apr 2019 A1
20190166989 Boo et al. Jun 2019 A1
20190191870 Derelöv Jun 2019 A1
20190195256 Derelöv Jun 2019 A1
20190289999 Derelöv et al. Sep 2019 A1
20190320793 Boo Oct 2019 A1
20190323532 Boo Oct 2019 A1
20190323533 Boo Oct 2019 A1
20190323534 Derelöv Oct 2019 A1
20190323535 Derelöv Oct 2019 A1
20200003242 Brännström et al. Jan 2020 A1
20200055126 Fridlund Feb 2020 A1
20200069048 Derelöv et al. Mar 2020 A1
20200069049 Derelöv et al. Mar 2020 A1
20200102978 Fridlund Apr 2020 A1
20200121076 Derelöv et al. Apr 2020 A1
20200214447 Derelöv et al. Jul 2020 A1
20200300284 Pervan Sep 2020 A1
20200337455 Boo et al. Oct 2020 A1
20200340513 Derelöv Oct 2020 A1
20210079650 Derelöv Mar 2021 A1
20210148392 Brännström et al. May 2021 A1
20210180630 Bruno et al. Jun 2021 A1
20210190112 Derelöv Jun 2021 A1
20210207635 Håkansson et al. Jul 2021 A1
20210222716 Derelöv et al. Jul 2021 A1
20210262507 Svensson et al. Aug 2021 A1
20210262508 Svensson et al. Aug 2021 A1
20210276108 Derelöv et al. Sep 2021 A1
20210285480 Derelöv et al. Sep 2021 A1
20210381251 Svensson Dec 2021 A1
20220018373 Boo Jan 2022 A1
20220049735 Meijer Feb 2022 A1
20220298803 Boo Sep 2022 A1
Foreign Referenced Citations (99)
Number Date Country
400 611 Feb 1996 AT
365 507 Nov 1962 CH
685 276 May 1995 CH
696 889 Jan 2008 CH
698 988 Dec 2009 CH
705 082 Dec 2012 CH
101099618 Jan 2008 CN
203424576 Feb 2014 CN
1107910 May 1961 DE
24 14 104 Oct 1975 DE
25 14 357 Oct 1975 DE
31 03 281 Aug 1982 DE
228 872 Oct 1985 DE
42 29 115 Mar 1993 DE
94 17 168 Feb 1995 DE
198 31 936 Feb 1999 DE
298 20 031 Feb 1999 DE
198 05 538 Aug 1999 DE
203 04 761 Apr 2004 DE
299 24 630 May 2004 DE
20 2005 019 986 Feb 2006 DE
20 2004 017 486 Apr 2006 DE
20 2009 008 825 Oct 2009 DE
10 2008 035 293 Feb 2010 DE
10 2009 041 142 Mar 2011 DE
10 2011 057 018 Jun 2013 DE
10 2013 008 595 Nov 2013 DE
20 2014 100 090 Nov 2014 DE
10 2015 103 429 Oct 2015 DE
10 2014 110 124 Jan 2016 DE
0 060 203 Sep 1982 EP
0 060 203 Sep 1982 EP
0 357 129 Mar 1990 EP
0 362 968 Apr 1990 EP
0 675 332 Oct 1995 EP
0 871 156 Oct 1998 EP
1 048 423 Nov 2000 EP
1 048 423 May 2005 EP
1 650 375 Apr 2006 EP
1 671 562 Jun 2006 EP
1 863 984 Dec 2007 EP
1 922 954 May 2008 EP
2 017 403 Jan 2009 EP
2 037 128 Mar 2009 EP
1 922 954 Jul 2009 EP
2 333 353 Jun 2011 EP
1 863 984 Nov 2011 EP
2 487 373 Aug 2012 EP
3 031 998 Jun 2016 EP
2 517 187 Jun 1983 FR
2 597 173 Oct 1987 FR
2 602 013 Jan 1988 FR
245332 Jan 1926 GB
799155 Aug 1958 GB
1 022 377 Mar 1966 GB
2 163 825 Mar 1986 GB
2 315 988 Feb 1998 GB
2 445 954 Jul 2008 GB
2 482 213 Jan 2012 GB
2 520 927 Jun 2015 GB
S53-113160 Sep 1978 JP
H06-22606 Mar 1994 JP
2003-239921 Aug 2003 JP
10-1147274 May 2012 KR
2014-0042314 Apr 2014 KR
WO 8707339 Dec 1987 WO
WO 9007066 Jun 1990 WO
WO 9922150 May 1999 WO
WO 9941508 Aug 1999 WO
WO 0066856 Nov 2000 WO
WO 0153628 Jul 2001 WO
WO 02055809 Jul 2002 WO
WO 02055810 Jul 2002 WO
WO 03083234 Oct 2003 WO
WO 2004079130 Sep 2004 WO
WO 2005068747 Jul 2005 WO
WO 2006043893 Apr 2006 WO
WO 2006104436 Oct 2006 WO
WO 2007015669 Feb 2007 WO
WO 2008004960 Jan 2008 WO
WO 2008017281 Feb 2008 WO
WO 2008150234 Dec 2008 WO
WO 2009136195 Nov 2009 WO
WO 2010087752 Aug 2010 WO
WO 2011151758 Dec 2011 WO
WO 2011151758 Dec 2011 WO
WO 2012095454 Jul 2012 WO
WO 2012154113 Nov 2012 WO
WO 2013009257 Jan 2013 WO
WO 2013025163 Feb 2013 WO
WO 2013080160 Jun 2013 WO
WO 2013118075 Aug 2013 WO
WO 2014072080 May 2014 WO
WO 2014121410 Aug 2014 WO
WO 2015015603 Feb 2015 WO
WO 2015038059 Mar 2015 WO
WO 2015105449 Jul 2015 WO
WO 2015105450 Jul 2015 WO
WO 2015105451 Jul 2015 WO
Non-Patent Literature Citations (6)
Entry
U.S. Appl. No. 17/337,699, Johan Svensson, filed Jun. 3, 2021, (Cited herein as US Patent Application Publication No. 2021/0381251 A1 of Dec. 9, 2021).
U.S. Appl. No. 17/588,698, Caroline Låndgard, Marcus Ståhl and Darko Pervan, filed Jan. 31, 2022.
International Search Report/Written Opinion dated Sep. 15, 2015 in PCT/SE2015/050518, ISA/SE, Patent-och registreringsverket, Stockholm, SE, 11 pages.
Extended European Search Report issued in EP Application No. 15788871.0, dated Feb. 7, 2018, European Patent Office, Munich, DE, 10 pages.
Extended European Search Report issued in EP 21161911.9, dated May 6, 2021, European Patent Office, Munich, DE, 10 pages.
Landgård, Caroline, et al., U.S. Appl. No. 17/588,698, entitled “Building Panels Comprising a Locking Device,” filed Jan. 31, 2022.
Related Publications (1)
Number Date Country
20220299057 A1 Sep 2022 US
Continuations (2)
Number Date Country
Parent 16946047 Jun 2020 US
Child 17717359 US
Parent 15308872 US
Child 16946047 US