BUILDING PANEL ADAPTED TO BE MOUNTED AT A CEILING OR WALL OF A ROOM AND METHOD OF MANUFACTURING SUCH BUILDING PANEL
A textile is extended over a framework between frame profile members. Each edge of the textile is attached to a corresponding frame profile member by a tensioning profile member being spring-biased into a tensioned state. Each edge of the textile is provided with a number of holding elements arranged flexibly in relation to each other along the edge of the textile. Each holding element includes an engagement portion for insertion into a longitudinal channel of the tensioning profile member through an opening slot of the channel. In the tensioned state of the textile, a tension force of the textile acts on each holding element so that a rotational moment seeks to rotate the engagement portion about a longitudinal axis of the channel and thereby forces the engagement portion of each holding element into locking engagement with the channel.
The present invention relates to a building panel adapted to be mounted at a ceiling or wall of a room so that a framework of the building panel has a room-facing side and a building-facing side, wherein the framework includes a peripheral frame formed by frame profile members, wherein a textile is extended over the room-facing side of the framework between the frame profile members, wherein each edge of the textile is attached to a corresponding frame profile member by means of at least one tensioning profile member being spring-biased for displacement in a tensioning direction being lateral of said frame profile member for bringing the textile into a tensioned state, and wherein said tensioning profile member has a longitudinal channel with which said edge of the textile is releasably connected.
EP 1 559 846 A1 discloses a panel for a suspended ceiling or the like, comprising a frame defining an open region covered by fabric. The frame is at least along portions of its periphery provided with laterally displaceable attachment members accessible from outside the frame for attachment of the fabric to the frame, where a lateral displacement of said members away from the lower peripheral edge portion of the frame results in tensioning of the fabric across the open region of the frame. The fastening of the fabric to the laterally displaceable attachment member is accomplished by means of a resilient clip inserted into a groove of the attachment member so that the fabric is pinched and thereby secured in the groove by the resilient clip. When mounting the fabric in this way, excess fabric is cut off next to the groove. The fabric may be dismantled from the panel by pulling the spring out of the groove. In practice, however, it will not be possible to mount the same piece of fabric again, e.g. after washing the fabric, as the edge of the fabric has been exactly fitted to the panel and as the assembly method requires a certain amount of excess fabric.
DE 23 32 688 A1 discloses an example of mounting a flexible material under a ceiling, wherein one edge of the flexible material is wrapped around a rail with a rectangular cross-section. The rail is inserted into a U-shaped groove of a mounting element attached to the ceiling, whereby the rail is angled in the groove and is thereby retained. However, this document is not concerned with spring-biased tensioning of the flexible material.
EP 1 045 369 A1 discloses attachment of a textile to a metal bar of a ceiling panel by means of a number of elements with a circular cross-section which are attached to the edge of the textile. In order to attach the textile to the metal bar, the elements having a circular cross-section are introduced into a longitudinal channel in the metal bar, one after each other from one end of the channel. However, this method of mounting a textile is not suitable for a building panel having a peripheral frame to which a textile is attached, due to the introduction of attachment elements into a longitudinal channel, one after each other, from one end of the channel.
EP 0 481 260 B1 discloses a connection of an edge of a flat wall element to a holding element with an undercut longitudinal groove. The edge of the flat wall element is provided with a series of small circular tongues which can be inserted sideways into the undercut groove by twisting these around a diametrical axis. It is essential that the tongues are resiliently mounted on the edge of the flat wall element, i.e. that they can be pivoted temporarily about said diametrical axis into a position allowing sidewards insertion into the groove and that the tongues automatically return to their original position after being pivoted. However, this method of attachment is not suitable for extending and tensioning a textile over a building panel, because the resiliently mounted tongues would not be able to withstand the tensioning force of the textile.
FR 1 518 396 A discloses a method of attachment of a flexible false ceiling by means of a zipper. A first part of the zipper is formed on an edge of the flexible false ceiling, and a second part of the zipper is formed on a rack attached at the edge of the fixed ceiling. However, this document is not concerned with spring-biased tensioning of the flexible material.
EP 1 276 091 B1 discloses a flex holder for retaining a flexible sign face to a sign frame, comprising a single-piece elongated body having a latch block and a latch blade hinged to the latch block for clamping the margin of a flexible sign face. A pair of pivot lips are provided on the outside of the flex holder for engagement into a slot in a sign frame. These pivot lips are symmetrical to each other relative to a clamping axis defined by the latch block and the latch blade. However, this document is not concerned with spring-biased tensioning of the flexible material.
The object of the present invention is to provide a building panel allowing easy removal and subsequent refitting of the tensioned textile.
In view of this object, each edge of the textile is provided with a number of holding elements arranged flexibly in relation to each other along the edge of the textile, each holding element includes an engagement portion adapted for insertion into the longitudinal channel in a lateral insertion direction of the channel, through an opening slot of the channel, and, in the tensioned state of the textile, a tension force of the textile acts on each holding element inserted into the longitudinal channel in such a way that a rotational moment is created that seeks to rotate the engagement portion about a longitudinal axis of the channel and thereby forces the engagement portion of each holding element into locking engagement with the channel.
In this way, because the tensioning force of the textile acts to securely hold the edges of the textile fixed to the channel of the respective tensioning profile members, the textile may easily be removed from the building panel and subsequently refitted again by firstly releasing and later activating the tensioning mechanism of the panel. The premounted holding elements on the textile may ensure an easy refit of the textile. Indeed, the handling of the textile may be easy due to the provision of holding elements arranged flexibly in relation to each other along the edge of the textile, thereby enabling creasing of the entire piece of textile. Thereby, for instance, washing of the textile in a washing machine may be possible before refitting the textile on the panel.
In an embodiment, said longitudinal channel is provided with a protrusion along a first edge of the opening slot of the longitudinal channel, and, in the tensioned state of the textile, the engagement portion of each holding element is retained inside the longitudinal channel by said protrusion. Thereby, mounting of the textile on the panel may be facilitated in that the engagement portion of the holding elements may be easier to locate and retain in the longitudinal channel before and until the textile is tightened by activation of the tensioning mechanism of the panel. By pressing the engagement portion of the holding elements into the channel by means of, for instance, a screwdriver or the like tool, the engagement portion may be trapped behind the protrusion of the opening slot and retained there until tightening of the textile.
In an embodiment, the lateral insertion direction of the longitudinal channel is directed in a transverse direction of the tensioning direction of the respective tensioning profile member. Thereby, it may be ensured that a tension force of the textile acts on each holding element in such a way that a sufficiently large rotational moment is created for retaining the engagement portion of each holding element in the channel.
Preferably, in order to create a sufficiently large rotational moment, the lateral insertion direction of the longitudinal channel forms an angle of between 20 and 160 degrees, preferably between 40 and 140 degrees, more preferred between 60 and 120 degrees, and most preferred between 80 and 100 degrees with the tensioning direction of the respective tensioning profile member.
In an embodiment, the engagement portion of each holding element is adapted for insertion into the longitudinal channel with a longitudinal direction of the engagement portion directed in the lateral insertion direction of the channel, and the engagement portion is adapted to be forced into locking engagement with the channel in a position in which the longitudinal direction of the engagement portion forms an angle with the lateral insertion direction of the channel.
In an embodiment, the opening slot of the longitudinal channel has a minimum width, the engagement portion of each holding element has a longitudinal direction along which the holding element is adapted to be displaced during insertion of the engagement portion into the longitudinal channel, the engagement portion of each holding element has a maximum width in a direction extending transversely to a longitudinal direction of a respective edge of the textile or of an edge of a ribbon attached to said edge of the textile and extending transversely to the longitudinal direction of the engagement portion, and said maximum width of the engagement portion is smaller than the minimum width of the opening slot of the longitudinal channel. Thereby, it may be ensured that the engagement portion of the holding elements may easily be inserted through the opening slot into the longitudinal channel without twisting, pressing or in any other way manipulating the engagement portion of the holding elements.
In a structurally particularly advantageous embodiment, the longitudinal channel has a bottom wall opposed the opening slot, a first side wall and a second side wall, the engagement portion of each holding element has a front end, a back end, a first side wall and a second side wall, in the inserted position of the engagement portion in the longitudinal channel, the front end of the engagement portion is arranged opposed to the bottom wall of the longitudinal channel, the first side wall of the engagement portion is arranged opposed the first side wall of the longitudinal channel, and the second side wall of the engagement portion is arranged opposed the second side wall of the longitudinal channel.
In an embodiment, in the inserted position of the engagement portion in the longitudinal channel, the engagement portion of each holding element is prevented from free rotation about any longitudinal axis of the channel of the tensioning profile member at least as a result of engagement between the first side wall of the engagement portion and the first side wall of the longitudinal channel and/or as a result of engagement between the second side wall of the engagement portion and the second side wall of the longitudinal channel. Thereby, the above-mentioned rotational moment created for locking the engagement portion of each holding element in the channel may result in engagement and/or frictional force being created between the first side wall of the engagement portion of the holding element and the first side wall of the longitudinal channel and between the second side wall of the engagement portion of the holding element and the second side wall of the longitudinal channel. The engagement and/or frictional force may efficiently retain the engagement portion of each holding element fixed in the channel.
In a structurally particularly advantageous embodiment, the back end of the engagement portion of each holding element is fixed on a respective edge of the textile or an edge of a ribbon attached to said edge of the textile. According to this embodiment, the engagement portion of each holding element may constitute the entire holding element, but it may alternatively form only a part of the holding element.
In a further structurally particularly advantageous embodiment, said longitudinal channel is provided with a protrusion along a first edge of the opening slot of the longitudinal channel, and, in the inserted position of the engagement portion in the longitudinal channel, the back end of the engagement portion is supported on the protrusion of said longitudinal channel.
In an embodiment, a respective ribbon is attached to each edge of the textile, and holding elements are provided at an edge of each respective ribbon. Thereby, cutting the textile to size and mounting the holding elements may be facilitated in that a prefabricated ribbon with holding elements mounted thereon may be used. The ribbon may for instance simply be sewed onto the edge of the textile.
In an embodiment, the holding elements are mutually spaced. Thereby, even better flexibility between neighbouring holding elements may be achieved, and the handling of the textile may be even easier due to the better flexibility of the edge of the textile provided with holding elements, thereby enabling creasing of the entire piece of textile.
In an embodiment, each holding element is fixed at least substantially against rotation in relation to the textile about an axis extending longitudinally through the holding element and extending transversely to a respective edge of the textile or an edge of a ribbon attached to said edge of the textile. Thereby, it may be ensured that the engagement portion of the holding elements is not able to escape through the opening slot of the longitudinal channel by rotation in relation to the textile about such axis. This could otherwise possibly occur, depending on the dimension of the engagement portions in the longitudinal direction of the edge of the textile or a corresponding edge of a ribbon attached to said edge of the textile.
In a structurally particularly advantageous embodiment simple to manufacture, each holding element has the form of a metal element gripping over a respective edge of the textile or an edge of a ribbon attached to said edge of the textile. For instance, a ribbon provided with holding elements could be provided in the form of a half part of a standard metal zipper of the classic zipper type having teeth in the form of individual pieces of metal molded into shape and set on a zipper tape at regular intervals.
In an embodiment, each frame profile member has a rounded outer edge connecting a room-facing side of the frame profile member with a building-facing side of the frame profile member, the textile is bent about the rounded outer edges of the frame profile members, and edges of the textile is fixed to the building-facing side of the respective frame profile members.
The present invention further relates to a method of manufacturing a building panel adapted to be mounted at a ceiling or wall of a room so that a framework of the building panel has a room-facing side and a building-facing side, the framework including a peripheral frame formed by frame profile members, whereby a textile is extended over the room-facing side of the framework between the frame profile members by attaching each edge of the textile to a corresponding frame profile member by means of a least one tensioning profile member, by releasably connecting said edge of the textile with a longitudinal channel of the tensioning profile member, and by spring-biasing the tensioning profile member so that it is displaced in a lateral direction of said frame profile member and thereby brings the textile into a tensioned state.
The method is characterised by providing each edge of the textile with a number of holding elements arranged flexibly in relation to each other along the edge of the textile, by inserting an engagement portion of each holding element into the longitudinal channel in a lateral insertion direction of the channel, through an opening slot of the channel, and by retaining the engagement portion of each holding element in the channel by means of a rotational moment seeking to rotate the engagement portion about a longitudinal axis of the channel of the tensioning profile member and thereby forcing the engagement portion of each holding element into locking engagement with the channel, said rotational moment being created by a tension force of the textile acting on each holding element. Thereby, the above-mentioned features may be obtained.
The invention will now be explained in more detail below by means of examples of embodiments with reference to the very schematic drawing, in which
In the following, generally, similar elements of different embodiments have been designated by the same reference numerals.
The framework 2 includes a peripheral frame 5 formed by frame profile members 6, and a textile 7 is extended over the room-facing side 3 of the framework 2 between the frame profile members 6. Each edge 8 of the textile 7 is attached to a corresponding frame profile member 6 by means of at least one tensioning profile member 9 being spring-biased by means of a U-formed elastic spring 14 for displacement in a tensioning direction DT being lateral of said frame profile member 6 for bringing the textile 7 into a tensioned state. The tensioning direction Dr is indicated in
Each edge 8 of the textile 7 is provided with a number of mutually spaced holding elements 11 arranged flexibly in relation to each other along the edge 8 of the textile 7. Referring to
As it will be explained in further detail below, the holding elements 11 may be fixed directly to the edge 8 of the textile 7 or the holding elements 11 may be fixed to a ribbon 18 mounted on the edge 8 of the textile 7, for instance by sewing. Furthermore, it is noted that the holding elements 11 may, as in the illustrated embodiments, be separate elements mutually spaced and distributed along the respective edge 8 of the textile 7. Thereby, good flexibility between neighbouring holding elements 11 may be achieved, and the handling of the textile 7 may be easy due to the better flexibility of the edge of the textile provided with holding elements, thereby enabling creasing of the entire piece of textile.
However, although being separate and possibly spaced elements, the holding elements 11 may be interconnected by means of flexible elements, spring-like elements or the like, in addition to the connection formed between them by means of the edge 8 of the textile 7 or the edge 19 of the ribbon 18. Typically, the holding elements 11 may be provided along an edge 8 of the textile 7 in a density of about 100 to 500 per metre, preferably about 200 to 450 per metre, more preferred about 300 to 440 per metre, and most preferred about 400 to 430 per metre, such as for instance approximately 420 per metre. Typically, a mutual distance between neighbouring holding elements 11 at their point of attachment to the ribbon 18 mounted on the edge 8 of the textile 7 or at their point of attachment to the edge 8 of the textile 7 is at least ½ of, preferably at least ⅔ of, and most preferred at least equal to a width of each holding element 11 measured in the longitudinal direction of the edge 8 of the textile 7 at said point of attachment. Alternatively, each holding element 11 may form part of an elongated element extending along the edge 8 of the textile 7. For instance, each holding element 11 may be formed as a part of a spring-like element formed, for instance, of a thread or wire made of for example metal or plastic. In the case of forming a thread or wire made of plastic, the spring-like element could be injection moulded. The engagement portion 12 of each such holding element 11 may be formed suitably for being forced into locking engagement with the channel 10.
It should be noted that according to the illustrated embodiments, neighbouring holding elements 11 are spaced in relation to each other in order to provide for good flexibility of the entire edge 8 of the textile 7. However, flexibility between the neighbouring holding elements 11 may be obtained even if a part of the neighbouring holding elements 11 touch each other. For instance, the edge 8 of the textile 7 may be elastic and/or the edges of the holding elements 11 touching each other may be rounded in such a way that the edge 8 of the textile 7 or the edge 19 of the ribbon 18 attached to the edge 8 of the textile 7 may bend.
The handling of the textile 7 may be easy due to the provision of holding elements 11 arranged flexibly in relation to each other along the edge 8 of the textile 7, thereby enabling creasing of the entire piece of textile 7. Thereby, for instance, washing of the textile 7 in a washing machine may be possible before refitting the textile 7 on the panel 1.
As further indicated in
In the embodiment illustrated in
As a result of the protrusion 15, mounting of the textile 7 on the building panel 1 may be facilitated in that the engagement portion 12 of the holding elements 11 may be easier to locate and retain in the longitudinal channel 10 before and until the textile 7 is tightened by activation of the tensioning mechanism of the building panel 1. By pressing the engagement portion 12 of the holding elements 11 into the channel 10 by means of, for instance, a screwdriver 55 or the like tool, the engagement portion 12 may be trapped behind the protrusion 15 of the opening slot 13 and retained there until tightening of the textile 7.
As seen in
It is noted that, in the embodiment illustrated in
Referring to the embodiments illustrated in
As mentioned above, according to the embodiment illustrated in
Furthermore, as seen, according to the embodiments illustrated in
It is noted that other embodiments than those illustrated in
In all of the embodiments illustrated in
Preferably, in order to create a sufficiently large rotational moment MR, the lateral insertion direction DI of the longitudinal channel 10 forms an angle of between 20 and 160 degrees, preferably between 40 and 140 degrees, more preferred between 60 and 120 degrees, and most preferred between 80 and 100 degrees with the tensioning direction DT of the respective tensioning profile member 9.
In the embodiments illustrated in
As illustrated in
Furthermore, in the embodiments illustrated in
In the illustrated embodiments, as seen in
Each holding element 11 may have the form of a metal element gripping over a respective edge 8 of the textile 7 or the edge 19 of the ribbon 18 attached to said edge 8 of the textile 7 in the illustrated embodiments.
The ribbon 18 with the attached holding elements 11 may advantageously have the form of one of the two corresponding zipper tapes of a conventional zipper which are provided with zipper teeth. The zipper tape may be provided with individual pieces of metal molded into shape and set on the zipper tape at regular intervals. The teeth of metal zippers may for instance be made in brass, aluminum and nickel. However, plastic materials may also be used for the teeth.
However, the mutually spaced holding elements 11 may alternatively be attached directly to the edge 8 of the textile 7.
In the embodiment illustrated in
Preferably, each holding element 11 is fixed at least substantially against rotation in relation to the textile 7 about an axis extending longitudinally through the holding element 11 and extending transversely to a respective edge 8 of the textile 7 or an edge 19 of a ribbon 18 attached to said edge 8 of the textile 7. Referring to the embodiment of
In the illustrated embodiments, each frame profile member 6 has a rounded outer edge 27 connecting a room-facing side 28 of the frame profile member 6 with a building-facing side 29 of the frame profile member 6. The textile 7 is bent about the rounded outer edges 27 of the frame profile members 6, and edges 8 of the textile 7 is fixed to the building-facing side 29 of the respective frame profile members 6.
According to an embodiment of a method of manufacturing a building panel 1 according to the present invention, the method includes extending a textile 7 over the room-facing side 3 of the framework 2 between the frame profile members 6, attaching each edge 8 of the textile 7 to a corresponding frame profile member 6 by means of a least one tensioning profile member 9, releasably connecting said edge 8 of the textile 7 with a longitudinal channel 10 of the tensioning profile member 9, and spring-biasing the tensioning profile member 9 so that it is displaced in a lateral direction of said frame profile member 6 and thereby brings the textile 7 into a tensioned state. Furthermore, the embodiment of the method includes providing each edge 8 of the textile 7 with a number of holding elements 11 arranged flexibly in relation to each other along the edge 8 of the textile 7, inserting an engagement portion 12 of each holding element 11 into the longitudinal channel 10 in a lateral insertion direction DI of the channel 10, through an opening slot 13 of the channel 10, and retaining the engagement portion 12 of each holding element 11 in the channel by means of a rotational moment MR seeking to rotate the engagement portion 12 about a longitudinal axis AL of the channel 10 of the tensioning profile member 9 and thereby forcing the engagement portion 12 of each holding element 11 into locking engagement with the channel 10, said rotational moment MR being created by a tension force FT of the textile 7 acting on each holding element 11.
Different steps of the above-mentioned embodiment of the method of manufacturing a building panel 1 are illustrated in
Each corner piece 30 forms, at least together with the neighbouring frame profile members 6, an internal cavity 36 of the respective corner 35 of the panel 1. Said internal cavity 36 extends laterally from either side of at least part of the length of the slot 31 of the corner piece 30 behind the opposed wall parts 32, 33 of the corner piece 30. When inserted into the internal cavity 36 of the respective corner 35 of the panel 1, the excess textile 34 at each corner 35 of the panel 1 forms an at least partly tubular shape 37 extending to either side of the slot 31 in the internal cavity 36 of the corner 35 of the panel 1. As seen in
Due to the elastic nature of the arrangement of the resilient member 38 inside the at least partly tubular shape 37 formed by the excess textile 34, a smooth finish of the textile 7 may be maintained at the corner piece 30 even if the textile 7 should generally stretch during time or if the textile should generally shrink as a result of washing the textile 7. In such cases, the spring-biased tensioning profile member 9 could be displaced in the tensioning direction DT of the textile 7, thereby generally compensating for the stretching or shrinking, however something that, according to prior art embodiments, could lead to an uneven arrangement of the textile 7 at the corners 35 of the building panel 1.
It is noted that although the corner piece 30 is illustrated as forming a right angle between the connected neighbouring frame profile members 6 in the typical case of the peripheral frame 5 of the building panel 1 being formed by four frame profile members 6, the corner piece 30 may just as well form different angles. For instance, if the peripheral frame 5 of the building panel 1 is formed by six frame profile members 6, each corner piece 30 may form an angle of 120 degrees. However, of course, the corner pieces 30 may also form different angles between their respective neighbouring frame profile members 6.
As illustrated in
As indicated in
As indicated in
Comparing
As seen in
In the embodiment illustrated in
As understood, in order to insert the resilient member 38 in the form of the helical spring through the slot 31 and into the internal cavity 36 of the corner 35, the spring should preferably be compressed somewhat from its relaxed state. As seen in
As illustrated in
Furthermore, referring to
As seen in
As seen in
As further seen in
In the illustrated embodiments, the corner pieces 30 forms an outer part of the respective corners 35 of the building panel 1. Neighbouring frame profile members 6 form themselves part of the corner of the building panel 1 and are further interconnected by means of a supplemental corner bracket 60 as seen for instance in
As seen in
According to an embodiment of a method of manufacturing a building panel 1 according to the present invention, the method includes connecting neighbouring frame profile members 6 to each other by means of corner pieces 30, bending the textile 7 about the rounded outer edges 27 of the frame profile members 6, inserting excess textile 34 at each respective corner 35 of the panel 1 into an oblique slot 31 formed between opposed parts 32, 33 of the respective corner piece 30, and retaining excess textile 34 by insertion of a resilient member 38. Furthermore, the embodiment includes, at each respective corner 35 of the panel 1, arranging the excess textile 34 to form an at least partly tubular shape 37 extending to either side of the slot 31 in an internal cavity 36 of the respective corner 35 of the panel 1, and arranging the resilient member 38 inside the at least partly tubular shape 37 formed by the excess textile 34.
In the following, some of the steps of a preferred method of manufacturing a building panel 1 according to the present invention are explained.
The framework 2 including the peripheral frame 5 is formed by the frame profile members 6 including respective spring-biased tensioning profile members 9, whereby neighbouring frame profile members 6 are connected to each other by means of corner pieces 30 as illustrated in
The textile 7 is cut to shape and is provided with holding elements 11 along its edges 8. The textile 7 is now placed on a flat surface, and the framework 2 of the building panel is placed on top of the textile 7 with its room-facing side 3 pointing downwards towards the textile 7 as illustrated in
It is noted that in
Referring now to
At this stage, illustrated in
If, at a later stage, it is desired to wash or repair the textile 7, it may be removed, for instance by means of the screwdriver 55, from the framework 2 of the building panel, by firstly removing the helical spring and the excess textile 34 from the internal cavity 36 of the corner 35. Subsequently, the steps of
It is noted that although a complete procedure for mounting a textile 7 on the framework 2 of a building panel 1 has been outlined above, not all steps of the outlined procedure are necessary in order to mount a textile 7 on a framework 2 of a building panel 1. For instance, the general mounting procedure illustrated in
-
- AW angle between wall parts
- AL longitudinal axis of channel of tensioning profile member
- DI lateral insertion direction of longitudinal channel
- DL longitudinal direction of engagement portion
- DT tensioning direction of tensioning profile member
- FT tension force of textile acting on holding element
- MR rotational moment
- P general plane of building panel
- tmax maximum thickness of opposed wall parts of corner piece
- wmin minimum width of oblique slot
- WMAX maximum width of engagement portion
- WMIN minimum width of opening slot
- 1 building panel
- 2 framework of building panel
- 3 room-facing side of framework
- 4 building-facing side of framework
- 5 peripheral frame of framework
- 6 frame profile member
- 7 textile
- 8 edge of textile
- 9 tensioning profile member
- 10 longitudinal channel of tensioning profile member
- 11 holding element
- 12 engagement portion of holding element
- 13 opening slot of channel
- 14 elastic spring
- 15 protrusion of longitudinal channel
- 16 first edge of opening slot
- 17 second edge of opening slot
- 18 ribbon
- 19 edge of ribbon
- 20 bottom wall of longitudinal channel
- 21 first side wall of longitudinal channel
- 22 second side wall of longitudinal channel
- 23 front end of engagement portion
- 24 back end of engagement portion
- 25 first side wall of engagement portion
- 26 second side wall of engagement portion
- 27 rounded outer edge of frame profile member
- 28 room-facing side of frame profile member
- 29 building-facing side of frame profile member
- 30 corner piece
- 31 oblique slot of corner piece
- 32, 33 opposed wall parts of corner piece
- 34 excess textile at corner of panel
- 35 corner of panel
- 36 internal cavity of corner of panel
- 37 at least partly tubular shape formed by excess textile
- 38 resilient member
- 39 inner surface of wall part of corner piece
- 40 outer surface of wall part of corner piece
- 41 first leg of corner piece
- 42 end of first neighbouring frame profile member
- 43 second leg of corner piece
- 44 end of second neighbouring frame profile member
- 45 part of first leg of corner piece
- 46 first groove of part forming rounded outer edge
- 47 part forming rounded outer edge
- 48 part of second leg of corner piece
- 49 second groove of part forming rounded outer edge
- 50 part forming rounded outer edge
- 51 first intermediate wall part
- 52 second intermediate wall part
- 53 extension of corner piece
- 54 Z-formed bracket
- 55 screwdriver
- 56 indentations of frame profile member
- 57 mineral wool
- 58, 59 massive wall part of corner piece
- 60 supplemental corner bracket
- 61 zig zag stitch
- 62 stitch
- 63 groove for insertion of Z-formed bracket
- 64 inner faces of internal cavity
Claims
1. A building panel adapted to be mounted at a ceiling or wall of a room so that a framework of the building panel has a room-facing side and a building-facing side, wherein the framework includes a peripheral frame formed by frame profile members, wherein a textile is extended over the room-facing side of the framework between the frame profile members, wherein each edge of the textile is attached to a corresponding frame profile member by means of at least one tensioning profile member being spring-biased for displacement in a tensioning direction being lateral of said frame profile member for bringing the textile into a tensioned state, and wherein said tensioning profile member has a longitudinal channel with which said edge of the textile is releasably connected, wherein each edge of the textile is provided with a number of holding elements arranged flexibly in relation to each other along the edge of the textile, in that each holding element includes an engagement portion adapted for insertion into the longitudinal channel in a lateral insertion direction of the channel, through an opening slot of the channel, and in that, in the tensioned state of the textile, a tension force of the textile acts on each holding element inserted into the longitudinal channel in such a way that a rotational moment is created that seeks to rotate the engagement portion about a longitudinal axis of the channel and thereby forces the engagement portion of each holding element into locking engagement with the channel.
2. A building panel according to claim 1, wherein said longitudinal channel is provided with a protrusion along a first edge of the opening slot of the longitudinal channel, and wherein, in the tensioned state of the textile, the engagement portion of each holding element is retained inside the longitudinal channel by said protrusion.
3. A building panel according to claim 1, wherein the lateral insertion direction of the longitudinal channel is directed in a transverse direction of the tensioning direction of the respective tensioning profile member.
4. A building panel according to claim 1, wherein the engagement portion of each holding element is adapted for insertion into the longitudinal channel with a longitudinal direction of the engagement portion directed in the lateral insertion direction of the channel, and wherein the engagement portion is adapted to be forced into locking engagement with the channel in a position in which the longitudinal direction of the engagement portion forms an angle with the lateral insertion direction of the channel.
5. A building panel according claim 1, wherein the opening slot of the longitudinal channel has a minimum width wherein the engagement portion of each holding element has a longitudinal direction along which the holding element is adapted to be displaced during insertion of the engagement portion into the longitudinal channel, wherein the engagement portion of each holding element has a maximum width in a direction extending transversely to a longitudinal direction of a respective edge of the textile or of an edge of a ribbon attached to said edge of the textile and extending transversely to the longitudinal direction of the engagement portion, and wherein said maximum width of the engagement portion is smaller than the minimum width of the opening slot of the longitudinal channel.
6. A building panel according to claim 1, wherein the longitudinal channel has a bottom wall opposed the opening slot, a first side wall and a second side wall, wherein the engagement portion of each holding element has a front end, a back end, a first side wall and a second side wall, wherein, in the inserted position of the engagement portion in the longitudinal channel, the front end of the engagement portion is arranged opposed to the bottom wall of the longitudinal channel, the first side wall of the engagement portion is arranged opposed the first side wall of the longitudinal channel, and the second side wall of the engagement portion is arranged opposed the second side wall of the longitudinal channel.
7. A building panel according to claim 6, wherein, in the inserted position of the engagement portion in the longitudinal channel, the engagement portion of each holding element is prevented from free rotation about any longitudinal axis of the channel of the tensioning profile member at least as a result of engagement between the first side wall of the engagement portion and the first side wall of the longitudinal channel and/or as a result of engagement between the second side wall of the engagement portion and the second side wall of the longitudinal channel.
8. A building panel according to claim wherein the back end of the engagement portion of each holding element is fixed on a respective edge of the textile or an edge of a ribbon attached to said edge of the textile.
9. A building panel according to claim 6, wherein said longitudinal channel is provided with a protrusion along a first edge of the opening slot of the longitudinal channel, and wherein, in the inserted position of the engagement portion in the longitudinal channel, the back end of the engagement portion is supported on the protrusion of said longitudinal channel.
10. A building panel according to claim 1, wherein a respective ribbon is attached to each edge of the textile, and wherein holding elements are provided at an edge of each respective ribbon.
11. A building panel according to claim 1, wherein the holding elements are mutually spaced.
12. A building panel according to claim 1, wherein each holding element is fixed at least substantially against rotation in relation to the textile about an axis extending longitudinally through the holding element and extending transversely to a respective edge of the textile or an edge of a ribbon attached to said edge of the textile.
13. A building panel according to claim 1, wherein each holding element has the form of a metal element gripping over a respective edge of the textile or an edge of a ribbon attached to said edge of the textile.
14. A building panel according to claim 1, wherein each frame profile member has a rounded outer edge connecting a room-facing side of the frame profile member with a building-facing side of the frame profile member, wherein the textile is bent about the rounded outer edges of the frame profile members, and wherein edges of the textile is fixed to the building-facing side of the respective frame profile members.
15. A method of manufacturing a building panel adapted to be mounted at a ceiling or wall of a room so that a framework of the building panel has a room-facing side and a building-facing side, the framework including a peripheral frame formed by frame profile members, whereby a textile is extended over the room-facing side of the framework between the frame profile members by attaching each edge of the textile to a corresponding frame profile member by means of a least one tensioning profile member, by releasably connecting said edge of the textile with a longitudinal channel of the tensioning profile member, and by spring-biasing the tensioning profile member so that it is displaced in a lateral direction of said frame profile member and thereby brings the textile into a tensioned state, wherein providing each edge of the textile with a number of holding elements arranged flexibly in relation to each other along the edge of the textile, by inserting an engagement portion of each holding element into the longitudinal channel in a lateral insertion direction of the channel, through an opening slot of the channel, and by retaining the engagement portion of each holding element in the channel by means of a rotational moment seeking to rotate the engagement portion about a longitudinal axis of the channel of the tensioning profile member and thereby forcing the engagement portion of each holding element into locking engagement with the channel, said rotational moment being created by a tension force of the textile acting on each holding element.
16. A building panel according to claim 2, wherein the lateral insertion direction of the longitudinal channel is directed in a transverse direction of the tensioning direction of the respective tensioning profile member.
17. A building panel according to claim 2, wherein the engagement portion of each holding element is adapted for insertion into the longitudinal channel with a longitudinal direction of the engagement portion directed in the lateral insertion direction of the channel, and wherein the engagement portion is adapted to be forced into locking engagement with the channel in a position in which the longitudinal direction of the engagement portion forms an angle with the lateral insertion direction of the channel.
18. A building panel according to claim 3, wherein the engagement portion of each holding element is adapted for insertion into the longitudinal channel with a longitudinal direction of the engagement portion directed in the lateral insertion direction of the channel, and wherein the engagement portion is adapted to be forced into locking engagement with the channel in a position in which the longitudinal direction of the engagement portion forms an angle with the lateral insertion direction of the channel.
19. A building panel according to claim 2, wherein the opening slot of the longitudinal channel has a minimum width, wherein the engagement portion of each holding element has a longitudinal direction along which the holding element is adapted to be displaced during insertion of the engagement portion into the longitudinal channel, wherein the engagement portion of each holding element has a maximum width in a direction extending transversely to a longitudinal direction of a respective edge of the textile or of an edge of a ribbon attached to said edge of the textile and extending transversely to the longitudinal direction of the engagement portion, and wherein said maximum width of the engagement portion is smaller than the minimum width of the opening slot of the longitudinal channel.
20. A building panel according to claim 3, wherein the opening slot of the longitudinal channel has a minimum width, wherein the engagement portion of each holding element has a longitudinal direction along which the holding element is adapted to be displaced during insertion of the engagement portion into the longitudinal channel, wherein the engagement portion of each holding element has a maximum width in a direction extending transversely to a longitudinal direction of a respective edge of the textile or of an edge of a ribbon attached to said edge of the textile and extending transversely to the longitudinal direction of the engagement portion, and wherein said maximum width of the engagement portion is smaller than the minimum width of the opening slot of the longitudinal channel.
Type: Application
Filed: Jan 26, 2024
Publication Date: Aug 6, 2026
Applicant: Kvadrat Acoustics A/S (Ebeltoft)
Inventors: Jesper Nielsen (Ebeltoft), Mette Søndergaard Caspersen (Ebeltoft)
Application Number: 19/151,114