[0001] The present invention relates to a building system with at least one profile and
at least one bracket for attaching a building element to a profile, said profile having
a bottom and two side walls defining an opening in the profile.
[0002] Such a bracket for a building system is described in
WO 2013/079070 A1. This bracket consists of a bi-stable spring having two positions, an open position
and a closed position, respectively. The bracket is designed for being inserted in
the profile of a building element.
[0003] International patent application
WO 2011/033148A1 describes a panel fastening device comprising a baseplate and a catch both being
produced from a non-ferromagnetic material. The catch being movable longitudinally
on said baseplate and comprising a magnet or magnetic part, such that said magnet
moves the catch towards a closed position on the baseplate when the panel is located
in the erection position and the magnet is close to a metal framework for supporting
roof or wall panels that carry the closure device. This device utilizes a magnetic
connection by moving a catch into a locked position when being attracted by a metal
counterpart. However, the connection is not magnetically releasable after it has once
been locked in position.
[0004] AU 2006202122A1 discloses a connection system for interconnecting two elements such as panels in
abutting relationship. The connection system comprises an abutting face on each panel.
Magnets are accommodated in recesses in the vertical sides of the panels adjacent
the abutting faces for attracting the two faces into face-to-face abutting relationship
for the sake of ease installation. The locking of panels is secured by separate restraint
means. Thus the magnets are only considered installation means.
[0005] US 3,292,328 discloses a self-supporting panel partition with magnetic latch means therefor. The
disclosure generally relates to partitions and, in particular, to demountable partitions
for use within buildings utilizing a standard magnetic attachment system using permanent
magnets simply in order to retain panels in position.
[0006] EP-A-1 467 039 discloses a wall comprising panel parts and post parts which are attached magnetically
to each other by permanent magnets provided with holders, wherein mutual influencing
of the magnets is prevented.
[0007] In
DE 102005015270 an adjustable direct suspension device for ceiling and wall profiles is disclosed
which has body whose external contour corresponds approximately to internal contour
of profile. The body has a screw in the form of an adjustment screw with a union sleeve.
The body is trapezoidal and has two grooves corresponding to the profile edges.
[0008] FR2534986A1 shows a system according to the preamble of claim 1.
[0009] It is an object of the invention to provide a building system and a bracket therefor
for mounting building components on a profile of a building element, which allows
for easy attachment of the bracket.
[0010] This object is achieved by a building system of the initially mentioned kind, wherein
the side walls and bottom of the profile form a dovetailed profile opening where the
profile side walls hereby form an angle of less than 90° with the profile bottom,
and wherein the bracket comprises flexible side engagement members that are adapted
to be biased against the side walls of the profile for mounting the bracket therein.
[0011] In a building system according to the invention, a building element can be attached
to a profile in a simple manner by using a bracket.
[0012] According to the invention, the bracket comprises a mounting plate a bi-stable plate
spring, which is pivotally connected at both ends to side engagement members at the
innermost edges thereof and that the side engagement members are connected at their
outermost edges to the mounting plate.
[0013] After insertion of the bracket into the profile the bi-stable plate spring abuts
the side engagement members against the side walls of the profile whereby a pressure
is exerted and locking position is achieved. It is found advantageous that the bracket
is attachable to and also detachable from the profile simply by manipulating the bi-stable
plate spring. To further increase the securing strength of the profile and the retention
of the bracket in the profile, the side walls and plate parts are suitably dovetailed.
Accordingly, the side walls and bottom of the profile form a dovetailed profile opening
where the profile side walls hereby form an angle of less than 90° with the profile
bottom.
[0014] In other words, the axis of the spring, even if it is bendable, provides a strong
locking force of the bracket in the profile in the locked position.
[0015] The bi-stable plate spring may preferably be made of a strip of leaf spring steel.
[0016] According to the invention, the bi-stable plate spring is attached to the side engagement
members with a curved configuration, so that during insertion into the opening of
the profile the curved plate spring abuts against the bottom of the profile whereby
a pressure is exerted on the plate spring so that it is substantially straightened
into a stable locking position.
[0017] In an advantageous use of the building system and the bracket according to the invention,
at least one bracket is mounted onto an exterior wall panel, at the mounting plate
thereof for attachment of the wall fitting to the profile.
[0018] In an embodiment of the invention, a tongue of a magnet sensitive material is provided
on the underside of the spring whereby an expedient manner of releasing the bracket
from the profile is obtained without having to use tools which is especially advantageous
if the bracket is hidden.
[0019] Preferably, this outer covering on the outer side of the mounting plate can be obtained
by a wall lining being mounted on the outer side of the mounting plate. The bracket
can be designed for the mounting of various building components, simply by suitable
design of the mounting plate. The building components could include wall linings,
wall covering panels and similar exterior building covers, as well as electric sockets,
sanitary equipment and other wall mounted building equipment, including furniture,
bathroom fitting etc. It is also realised that the brackets can be used for retaining
water pipes, electrical cables or the like inside the groove opening of the profile.
[0020] The side walls of the profile may advantageously be provided with ribs. This increases
the retention of the bracket inside the profile to prevent any vertical displacement
of the bracket relative to the profile.
[0021] In the following the invention is described in further detail with reference to the
drawings in which
Fig. 1 shows a building element with insulation material prior to being provided with
a wall lining;
Fig. 2 shows a bracket in a first operation mode for attaching on the building element;
Fig. 3 shows the bracket in fig 2 in a second operation mode;
Fig. 4 shows an alternative embodiment of a bracket in a first operation mode for
attachment in a building element;
Fig. 5 shows the bracket according to fig. 4 in a second operation mode, whereas
Figs. 6 - 8 show the fundamental operation principles of the bracket according to
figs. 4 and 5;
Figures 9-11 show another embodiment of a bracket for a building system according
to the invention.
Fig. 12 shows a schematic perspective view of a bracket in relation to the second
embodiment.
[0022] Fig. 1 shows a building element shown as an insulation material 1 enclosed by plate
parts provided with profiles defining one or more profile openings or profile grooves
for receiving mounting brackets therein.
[0023] Each opening comprises a bottom 4 and rails with side walls 2, 3 having a dovetailed
cross section or in other words, having inclined walls 2, 3 which narrow down from
the bottom 4 towards the opening of the profile. The side walls 2, 3 hereby form an
angle of less than 90° with the profile bottom 4.
[0024] The building elements can be mounted adjacent each other to form a building system,
such as a wall, ceiling or separation deck of a building.
[0025] The inside walls 2, 3 of the rails facing towards the opening of the profile may
be provided with ribs 11, 11a as shown in figs. 2 and 3 intended for engaging with
the sides of the bracket. The bracket may be provided with complementary ribs (not
shown).
[0026] Referring to figs. 2 and 3, the construction of a first embodiment for a bracket
is now explained in detail.
[0027] The bracket basically comprises a mounting plate 8, side engagement members 7, 7a
and a plate spring 5, which is pivotally hinged at both ends to the innermost edges
of the side engagement members 7, 7a. By the term "innermost" is meant the edges facing
towards the bottom 4 of the profile. At the outermost edge of the side engagement
members 7, 7a, the engagement parts 7, 7a, connect to the mounting plate 8.
[0028] One or more brackets may be attached to a wall lining 10, such as an exterior inner
or outer wall panel, which thereby is mountable to the building element.
[0029] The mounting plate 8 has edges 9, 9a shown as bent parts of the mounting part 8.
These edges 9, 9a are to engage with the bent edges of the plate-like side engagement
members 7, 7a for the retention of the mounting plate 8 between the edges and thereby
retain the mounting plate 8 in the bracket between the side engagement members 7,
7a whilst allowing for an angular displacement there between as the bracket is locked
in the profile (see description thereof below). The mounting plate 8 may extend along
the entire length of the profile or have a width for instance similar to the side
engagement members 7, 7a and/or the plate spring 5. The mounting plate 8 and the side
engagement members 7, 7a may be attached in a pivotally engagement either as a permanent
attachment or a loose attachment.
[0030] The plate spring 5 is of the bi-stable type having a first stable form with a convex
curvature as shown in fig. 2, and a second stable form where the plate spring 5 is
straight, as shown in fig. 3.
[0031] The side engagement members 7, 7a end at the innermost top in hinges 14, 14a shaped
as rotary joints with plate parts 6, 6a to which the ends of a curved spring 5 is
attached whereas the opposite ends of the plate parts are attached on the hinges 14,
14a. It is realised by the invention that the other means of angularly displaceable
attachment than hinges may be provided.
[0032] Furthermore, the outer sides of the side engagement members 7, 7a may be provided
with ribs, not shown, for engagement with the ribs 11, 11a on the profiles of the
building element.
[0033] In fig. 2, the bracket is shown prior to being inserted in the profile of the building
element shown in fig. 1. The inclined walls of the building element engage with ribs
on the outer side of the side engagement members 7, 7a (not shown).
[0034] When the bracket is guided from the position in fig. 2 into the profile, the convex
curved plate spring 5 abuts on the bottom 4 whereas the side engagement members 7,
7a are close to the walls of the plate parts 2, 3. As the bracket is then further
pressed into the profile opening, the plate spring 5 will be caused to transform its
shape from the first stable form to the second straight form and thereby cause the
side engagement members 7, 7a into engagement with the profile side walls 2, 3, preferably
even such that the plate spring 5 exercise a spring force on the side engagement members
7, 7a and thereby enhances the surface engagement between the side engagement members
7, 7a and the profile side walls 2, 3.
[0035] In this way, a very strong coupling is obtained as the spring in straight condition
can absorb significant compressive forces, which means that the bracket cannot be
removed easily from the profile.
[0036] The spring is constructed as a bi-stable spring causing the coupling of the bracket
to the profile being able to be carried out as a "click coupling" with the spring
being clicked in place from the position in fig. 2 to the position in fig. 3.
[0037] In a further embodiment of the invention, a tongue 12 is shown in figs. 2 and 3,
the tongue is magnetically sensitive. This tongue 12 is attached to the interior surface
of the spring 5 near the plate part 6. As shown, the tongue 12 is detached of the
spring at its free end.
[0038] The function of the tongue 12 is the following:
When the bracket is guided from the position in fig. 2 to the position in fig. 3,
the tongue 12 will be in the position in fig. 2 when the spring 5 meets the bottom,
in this position the tongue is pointing downwards as it follows the movement of the
plate part 6. When the bracket is locked inside the profile opening in the position
shown in fig. 3 the tongue 12 points somewhat outwards.
[0039] If the tongue is subjected to magnetic forces in the position in fig. 3, the tongue
will be pulled outwards and click the bi-stable spring 5 whereby the plate part 6
can be released from the building element 1 after which the spring will be in the
curved position in fig. 2.
[0040] In this way, a hidden mounting of a wall lining 10 can be removed from a building
element without use of tools other than a magnet.
[0041] It is also to be noted that it is possible to provide spacers (not shown) on the
bottom 4 of the profile resulting in the spring straightening and leaving a small
space between the spring and the bottom 4 upon contact with the spaces.
[0042] Referring to figs. 4 - 8, an alternative construction of the bracket is shown.
[0043] In these figures, mounting blocks are designated 16, 17 and are connected to each
other by a spring 19 of the bi-stable type. On the outer side of the mounting blocks
16, 17, ribs 18, 18a are provided for engaging ribs on a building element - not shown
- with parallel ribs.
[0044] In the figures, a pawl 20 extending from the mounting block 17 is shown. A corresponding
pawl 20a is on the mounting block 16 which cannot be seen in the figure but which
is shown in the following figures.
[0045] In fig. 4, the bracket is shown in a position with a curved spring before being inserted
in the rails of the building element, whereas fig. 5 shows the bracket in a position
in which it has been inserted into the building element and with a stretched spring.
[0046] Referring to figs. 6 - 8, the fundamental construction of the bracket is explained.
[0047] The figures show the spring 19 and pawl 20 and the pawl 20a.
[0048] These pawls 20, 20a are connected to the ends of the spring 19.
[0049] Finally is seen a U-shaped block, a magnet sensitive mass, lifting and clicking the
bi-stable spring as shown in fig. 6.
[0050] If the pawls 20, 20a are forced up, the spring 19 will be in the stretched position
in fig. 7.
[0051] When the spring is clicked and guided back to the curved, unlocked position, the
pawls 20, 20a pivot down. Fig. 8 shows the position of the pawls when the bracket
is removed from the profile. The connecting pieces 21, 21a follow the magnet sensitive
mass 22 and function as levers that fall into notches under the pawls which thereby
are retained when the bi-stable spring is stretched, i.e. straightened, to the locked
position. The pawls disengage the connecting pieces when the magnet sensitive mass
is lifted and first the connecting pieces tilt and then the bi-stable spring clicks
into the position shown in fig. 6.
[0052] With reference to figures 9-11, a second embodiment of a bracket is shown in a building
system according to the invention. A profile of the same kind as shown in figures
1-3 is provided. This profile has a bottom 4 and side walls 2, 3 whereby the groove
or opening is formed in which a bracket is received.
[0053] The bracket, which is shown in fig. 9 prior to mounting in the profile groove opening,
is made from sheet metal which is folded into a U-like shape with a bracket mounting
plate portion 8 and two upright side engagement members 7, 7a with exterior wing flanges
22, 22a provided on the distal ends of said side engagement members 7, 7a.
[0054] The sheet metal of preferably 0.5-1.5 mm in thickness provides a flexibility of the
bracket, in particular the side engagement members 7, 7a will flex as the bracket
is advanced into the groove opening of the profile to the position as shown in fig.
10. This flexibility in the sheet metal provides a biasing force which forces the
side engagement members 7, 7a and their exterior wing flanges 22, 22a onto the side
walls 2, 3 of the profile and thereby provides a firm retention of the bracket in
the profile groove opening. The side walls 2, 3 are preferably provided with ribs
11, 11a. The exterior wing flanges 22, 22a are provided with indentations 24, 24a
on their exterior distal edges. These indentations engage with the ribs 11, 11a on
the side walls 2, 3 to further increase the retention force.
[0055] As also shown in figs. 9-11, the bracket can be pre-mounted on a wall panel 10. The
wall panel 10 can be mounted via screws 13 (see fig. 11) or other means. The advantage
of this building component mounting according to the invention is also that the profile
itself is not penetrated by any fastening means and the profile remains intact and
provides a vapour barrier for the building system.
[0056] Additionally, the space between the bottom 4 of the profile and the bracket mounting
plate portion 8 leaves a room for e.g. pipes, cables or other building installations.
[0057] The brackets may have a relative small length covering only a small portion of the
groove opening in the profile or the bracket could have a "full" length, i.e. the
same length as the profile. If the brackets are relatively narrow, e.g. made of strips
of material, it is also realised that several brackets can be mounted in the same
profile groove opening. With reference to fig. 12, such a short bracket according
to the second embodiment, which is also described above with reference to figures
9-11, is shown before being mounted in the profile groove.
1. A building system comprising at least one profile having a bottom (4) and two side
walls (2, 3) defining an opening in the profile, and at least one bracket on a wall
panel attachable to said profile, the side walls (2, 3) and bottom (4) of the profile
form a dovetailed profile opening where the profile side walls (2, 3) hereby form
an angle of less than 90° with the profile bottom (4), the bracket comprises flexible
side engagement members (7, 7a) that are adapted to be biased against the side walls
(2, 3) of the profile for mounting the bracket therein, wherein the bracket comprises
a mounting plate (8) and a bi-stable plate spring (5), characterized in that said spring (5) is pivotally connected at both ends to the flexible side engagement
members (7, 7a) at the innermost edges thereof and that the flexible side engagement
members (7, 7a) are connected at their outermost edges to the mounting plate (8),
where said flexible side engagement members (7, 7a) are biased against the side walls
(2, 3) of the profile by the bi-stable plate spring (5) having a first stable form
with a convex curvature and a second stable form where the bi-stable plate spring
(5) is substantially straightened into a stable locking position and thereby cause
the flexible side engagement members (7, 7a) into engagement with the profile side
walls (2, 3), and in that the bi-stable spring (5) is attached to the flexible side engagement members (7,
7a) with a curved configuration, so that during insertion into the opening of the
profile the curved bi-stable plate spring (5) abuts against the bottom (4) of the
profile whereby a pressure is exerted on the bi-stable plate spring (5) so that it
is straightened into a stable locking position.
2. A building system according to claim 1, wherein the bracket is made from sheet metal
which is folded into a U-like shape with a bracket mounting plate portion and two
upright side engagement members with exterior wing flanges provided on the distal
ends of said side engagement members.
3. A building system according to claim 2, wherein the flanges are provided with indentations.
4. A building system according to any of the preceding claims, wherein the side walls
of the profile are provided with ribs.
5. A building system according to any of claims 1-4, wherein at least one bracket is
mounted onto a wall fitting, such as an exterior wall panel, at the mounting plate
thereof for attachment of the wall fitting to the profile.
6. A method of removing, in the building system of any of the claims 1-5, said bracket
mounted on a wall panel from said profile, the building system including a tongue
of magnetically sensitive material provided on the underside of the spring, using
a magnet to pull said tongue outwards and click the bi-stable spring.
1. Gebäudesystem umfassend mindestens ein Profil aufweisend einen Boden (4) und zwei
Seitenwände (2, 3), die eine Öffnung im Profil definieren, und mindestens eine Klammer
auf einer Wandplatte, die am Profil befestigt werden kann, indem die Seitenwände (2,
3) und der Boden (4) des Profils eine schwalbenschwanzförmige Profilöffnung bilden,
wodurch die Profilseitenwände (2, 3) einen Winkel von weniger als 90° mit dem Profilboden
(4) bilden, indem die Klammer flexible Seiteneingriffselemente (7, 7a) umfasst, die
dafür ausgelegt sind, gegen die Seitenwände (2, 3) des Profils zum Montieren der Klammer
darin vorgespannt zu werden, wobei die Klammer eine Montageplatte (8) und eine bistabile
Plattenfeder (5) umfasst, dadurch gekennzeichnet, dass die Feder (5) an beiden Enden mit den flexiblen Seiteneingriffselementen (7, 7a)
an den innersten Kanten davon drehbar verbunden ist, und dass die flexiblen Seiteneingriffselemente
(7, 7a) an den äußersten Kanten mit der Montageplatte (8) verbunden sind, wo die flexiblen
Seiteneingriffselemente (7, 7a) gegen die Seitenwände (2, 3) des Profils durch die
bistabile Plattenfeder (5) mit einer ersten stabilen Form mit einer konvexen Krümmung
und einer zweiten stabilen Form vorgespannt sind, wo die bistabile Plattenfeder (5)
im Wesentlichen in eine stabile Verriegelungsposition ausgerichtet ist und dadurch
die flexiblen Seiteneingriffselemente (7, 7a) in Eingriff mit den Profilseitenwänden
(2, 3) bringen, und dass die bistabile Feder (5) an den flexiblen Seiteneingriffselementen
(7, 7a) mit einer gekrümmten Ausformung befestigt ist, so dass die gekrümmte bistabile
Plattenfeder (5) während der Einführung in die Öffnung des Profils gegen den Boden
(4) des Profils anliegt, wodurch ein Druck auf die bistabile Plattenfeder (5) ausgeübt
wird, so dass sie in eine stabile Verriegelungsposition ausgerichtet wird.
2. Gebäudesystem nach Anspruch 1, wobei die Klammer aus Metallblech hergestellt ist,
das zu einer U-ähnlichen Form gefaltet ist mit einem Klammermontageplattenteil und
zwei aufrechtstehenden Seiteneingriffselementen mit Außenflügelflanschen auf den distalen
Enden der Seiteneingriffselemente.
3. Gebäudesystem nach Anspruch 2, wobei die Flansche mit Einschnitten versehen sind.
4. Gebäudesystem nach einem der vorgehenden Ansprüche, wobei die Seitenwände des Profils
mit Rippen versehen sind.
5. Gebäudesystem nach einem der Ansprüche 1-4, wobei mindestens eine Klammer auf einer
Wandbefestigung, wie beispielsweise einer Außenwandplatte, an der Montageplatte davon
zum Befestigen der Wandbefestigung am Profil montiert ist.
6. Verfahren zum Entfernen, im Gebäudesystem nach einem der Ansprüche 1-5, der Klammer,
die auf einer Wandplatte montiert ist, vom Profil, indem das Gebäudesystem eine Zunge
aus einem magnetisch empfindlichen Material enthält, die auf der Unterseite der Feder
vorgesehen ist, unter Verwendung eines Magneten zum Ziehen der Zunge nach außen und
Klicken der bistabilen Feder.
1. Système de construction comprenant au moins un profilé ayant un fond (4) et deux parois
latérales (2, 3) définissant une ouverture dans le profilé, et au moins un support
sur un panneau de paroi pouvant être fixé audit profilé, les parois latérales (2,
3) et le fond (4) du profilé formant une ouverture de profilé en queue d'aronde où
les parois latérales de profilé (2, 3) forment ainsi un angle inférieur à 90° avec
le fond de profilé (4), le support comprenant des éléments de mise en prise latéraux
flexibles (7, 7a) qui sont adaptés pour être sollicités contre les parois latérales
(2, 3) du profilé pour monter le support à l'intérieur de celui-ci, le support comprenant
une plaque de montage (8) et un ressort à lame bistable (5),
caractérisé en ce que ledit ressort (5) est relié de manière pivotante au niveau des deux extrémités aux
éléments de mise en prise latéraux flexibles (7, 7a) au niveau des bords les plus
à l'intérieur de ceux-ci, et en ce que les éléments de mise en prise latéraux flexibles (7, 7a) sont reliés au niveau de
leurs bords les plus à l'extérieur à la plaque de montage (8), lesdits éléments de
mise en prise latéraux flexibles (7, 7a) étant sollicités contre les parois latérales
(2, 3) du profilé par le ressort à lame bistable (5) ayant une première forme stable
avec une courbure convexe et une deuxième forme stable, le ressort à lame bistable
(5) étant essentiellement redressé dans une position de verrouillage stable et amenant
ainsi les éléments de mise en prise latéraux flexibles (7, 7a) en prise avec les parois
latérales de profilé (2, 3),
et en ce que le ressort bistable (5) est fixé aux éléments de mise en prise latéraux flexibles
(7, 7a) avec une configuration incurvée si bien que, pendant l'insertion dans l'ouverture
du profilé, le ressort à lame bistable incurvé (5) vient en butée contre le fond (4)
du profilé, une pression étant exercée sur le ressort à lame bistable (5) si bien
qu'il est redressé dans une position de verrouillage stable.
2. Système de construction selon la revendication 1, dans lequel le support est fait
de tôle qui est pliée dans une forme de U avec une partie de plaque de montage de
support et deux éléments de mise en prise latéraux verticaux avec des brides d'aile
extérieures prévues sur les extrémités distales desdits éléments de mise en prise
latéraux.
3. Système de construction selon la revendication 2, dans lequel les brides sont pourvues
d'indentations.
4. Système de construction selon l'une quelconque des revendications précédentes, dans
lequel les parois latérales du profilé sont pourvues de nervures.
5. Système de construction selon l'une quelconque des revendications 1 à 4, dans lequel
au moins un support est monté sur un raccord mural, tel qu'un panneau mural extérieur,
au niveau de sa plaque de montage pour la fixation du raccord mural au profilé.
6. Procédé d'élimination, dans le système de construction de l'une quelconque des revendications
1 à 5, dudit support monté sur un panneau de paroi à partir dudit profilé, le système
de construction comprenant une languette de matériau magnétiquement sensible disposée
sur la face inférieure du ressort, à l'aide d'un aimant pour tirer ladite languette
vers l'extérieur et cliquer le ressort bistable.