[0001] The invention relates to a sectional door system comprising a number of pivotally
coupled-together elongate door panels, which are movably supported in guide sections
near short sides, which sectional door system further comprises an elongate spring
system for assisting in moving the door panels, which spring system is connected to
first and second mounting plates near first and second ends, respectively.
[0002] In such a sectional door system, which is known from European patent application
EP-A1-1 818 488, both ends of the spring system are provided with two pins extending parallel to
each other in horizontal direction, which can be positioned in two passages formed
in each of the mounting plates. The pins are provided with a so-called "unidirectional
click system", which makes it possible to connect the spring system and the mounting
plates together according to a substantially straight line.
[0003] A drawback of said sectional door system is that one person must lift the relatively
heavy (about 25 kg) spring system when mounting the spring system and at the same
time position the pins opposite the respective passages near the first end and near
the second end and subsequently press said pins into said passages. The spring system
is elongate in shape (2 - 5 m), which makes it difficult to handle.
[0004] The object of the invention is to provide a sectional door system in which the spring
system can be connected to the mounting plate in a relatively simple manner.
[0005] This object is accomplished in a first embodiment of the sectional door system according
to the invention in that at least the first mounting plate is provided with a pin
which is oriented in a plane extending substantially transversely to the door panels,
which pin includes an angle of at least 5 degrees with the horizontal in an upwardly
inclined direction, whilst the first end of the spring system is provided with a plate
provided with a passage, which passage can be positioned over the pin.
[0006] In a second embodiment of the sectional door system said object is accomplished in
that at least the first end of the spring system is provided with a pin which is oriented
in a plane extending substantially transversely to the panels, which pin includes
an angle of at least 5 degrees with the horizontal in a downwardly inclined direction,
whilst the first mounting plate is provided with a passage in which the pin can be
positioned.
[0007] In the first embodiment, the inclined pin of the first mounting plate enables an
installer to position the passage in the plate connected to the first end over the
pin in a simple manner. The force of gravity will cause the plate, and thus the first
end, to slide down over the pin, thus ensuring that the plate is securely suspended
from the pin. The spring system can then be pivoted about the pin until the second
end is positioned opposite the second mounting plate, whereupon the second end is
connected to the second mounting plate. It is also possible, of course, to connect
the two ends simultaneously to the mounting plates.
[0008] In the second embodiment, in which the first end is provided with a pin, said pin
is positioned in the passage in the first mounting plate. In this case, too, the presence
of the downwardly inclined pin ensures that the first end is securely positioned in
the passage under the influence of the force of gravity.
[0009] When the second end is being connected to the second mounting plate, the risk that
the first end will become detached from the first mounting plate is excluded because
the first end would first have to move upwards with respect to the first mounting
plate in that case so as to disconnect the pin and the passage from each other.
[0010] It is noted that from
EP-A1-1 972 745 there is known a sectional door system in which the spring system is first attached
with a first end thereof and then pivoted for attaching the second end. The first
end is connected to the mounting plate by means of a unidirectional click system,
however, which extends in horizontal direction. This involves the risk of the unidirectional
click system easily becoming detached, because this only requires a horizontal movement.
Consequently, an installer must make sure not only that the first end is connected
to the mounting plate, but also that the unidirectional click system is mounted in
such a manner that it cannot become detached. With the sectional door systems according
to the invention, an installer only needs to effect a connection between the inclined
pin and the passage, whereupon the first end is securely connected to the mounting
plate under the influence of the force of gravity as a result of the angle at which
the pin extends. Not until the second end is securely connected to the second mounting
plate as well can an installer lock the ends of the elongate spring system and the
mounting plates together, thus preventing the spring system from becoming detached
undesirably when a force is exerted in upward direction thereon.
[0011] Another embodiment of the sectional door system according to the invention is
characterised in that the second end of the spring system and the second mounting plate are provided with
the same passage or pin as the first end and the first mounting plate. As a result,
the two ends of the spring system are connected to the mounting plate in an identical
manner.
[0012] Yet another embodiment of the sectional door system according to the invention is
characterised in that the pin comprises screw thread, onto which a nut can be screwed after the passage
has been positioned over the pin.
[0013] The nut locks the spring system and the mounting plate together.
[0014] Yet another embodiment of the sectional door system according to the invention is
characterised in that at least the first mounting plate and the plate provided with the passage comprise
surfaces extending at an angle to the vertical, which surfaces will abut against each
other once the spring system is connected to the mounting plates.
[0015] The surfaces extending at an angle to the vertical provide a secure connection between
the plate and the mounting plate. Preferably, the second mounting plate and the plate
connected to the second end are configured in the same manner.
[0016] It is noted that it is not possible to use such surfaces extending at an angle to
the vertical in the sectional door system according to
EP-A1-1 972 745, because the unidirectional click system makes it necessary to press the first end
directly against the first mounting plate in order to effect a connection, so that
pivoting of the spring system about the pin would no longer be possible if surfaces
extending at an angle to the vertical were to be present.
[0017] In the sectional door system according to the invention, the first end is spaced
from the first mounting plate once the pin is positioned in the passage, so that pivoting
of the spring system about the pin will still be possible. Only after the second end
has been connected to the second mounting plate as well will the first and the second
end be moved further downwards under the influence of the force of gravity, causing
the surfaces extending at an angle to the vertical being to be positioned into abutment
with each other.
[0018] The invention will now be explained in more detail with reference to the drawings,
in which:
Figure 1 is a perspective view of a sectional door system according to the invention;
Figure 2 is a perspective detail view of the left-hand upper end of the sectional
door system shown in figure 1;
Figure 3 is a perspective view of a part of the view shown in figure 2;
Figure 4 is a perspective view of a part of the view shown in figure 3;
Figure 5 is a perspective view of a part of the view shown in figure 4;
Figure 6 is a side view of the view shown in figure 4;
Figures 7-12 show alternative embodiments inter alia of the mounting plate of the
sectional door system according to the invention;
Figure 13 shows an alternative embodiment of the sectional door system shown in figure
1.
[0019] Like parts are provided with the same numerals in the figures.
[0020] Figures 1-6 show various views of a first embodiment of a sectional door system 1
according to the invention, which comprises a number of pivotally coupled-together
elongate door panels 2, which are movably supported in guide sections 3 via guide
wheels 4. The guide sections 3 are fixed to a wall 5 of a building, for example a
garage. An opening is provided in the wall 5, which opening is closed and hidden from
view by the door panels 2. The vertically extending guides 3 are connected to horizontally
extending guides 7 via arcuate guides 6. Near the arcuate guides 6, the horizontally
extending guides 7 are provided with an additional guide 8 for guiding the upper side
of the upper door panel 2. Such guides 3, 6, 7, 8 are known per se and will not be
explained in more detail herein, therefore. The horizontally extending guides 7 are
connected via a cross beam 9 on a side remote from the wall 5. Near the wall 5 and
near ends of the guides 8, the sectional door system 1 is provided with a spring system
10, which comprises a shaft 11, among other parts, extending parallel to the door
panels 2, as well as two coil springs 12. The spring system 10 is connected to a first
mounting plate 14 fixed to the wall 5 near a first end 13 and to a second mounting
plate 16 fixed to the wall 5 near a second end 15.
[0021] The sectional door system 1 further comprises an electrically driven motor (not shown)
by means of which the panels 2 can be moved from the position shown in figure 1, in
which the opening in the wall 5 is closed, to a position in which the panels 2 lie
in a plane defined by the guides 7 and the beam 9, in which the opening in the wall
5 is released. Such a manner of driving is known per se and will not be explained
in more detail herein, therefore.
[0022] As is clearly shown in figures 2-6, the first mounting plate 14 comprises a part
18 extending parallel to the wall 5 and a part 19 extending transversely thereto.
The part 18 is provided with holes 20 for fixing the first mounting plate 14 to the
wall 5. As is clearly shown in figure 6, the part 18 of the first mounting plate 14
comprises a profiled portion comprising inter alia four surfaces 22, 23, 24, 25 extending
at an angle to the vertical 21. The surface 22 extends in a direction away from a
lower side of the wall 5 and is provided with a pin 26 that extends in upward direction.
The pin 26 includes an angle α of 5-80° with the horizontal 27, preferably an angle
of more than 15% and less than 45%.
[0023] The first end 13 of the spring system 10 is provided with a plate 31 comprising a
part 32 extending parallel to the wall 5 and a part 33 extending transversely thereto.
The part 33 inter alia comprises a bearing 34, in which the shaft 11 of the spring
system 10 is supported. On a side of the plate 33 remote from the coil spring 12 of
the spring system 10, the shaft 11 is provided with a drum 35, on which a cable is
wound, which cable is connected to the lowermost door panel 2 with an end remote from
the spring system 10. The operation of such a drum 35 and the cable 2 connected thereto
is known per se and will not be explained in more detail herein, therefore. The part
32 of the plate 31 is provided with a profiled portion which, as is clearly shown
in figure 6, comprises four surfaces 37, 38, 39, 40 extending at an angle to the vertical
21, which surfaces correspond to the surfaces 22, 23, 24, 25 as regards their dimensions
and form, such that the part 32 can be positioned against the part 18, with the respective
surfaces 22, 37; 23, 38; 24, 39 and 25, 40 abutting against each other. The surface
37 is provided with a passage 41, whose dimension is larger than the diameter of the
pin 26.
[0024] Upon installation of the sectional door system 1 according to the invention, in particular
the spring system 10 thereof, the first and the second mounting plate 14 are preferably
first fixed to the wall 5, correctly spaced, at the desired height. The second mounting
plate 16 is the mirror-symmetrical image of the first mounting plate 14 and is provided
inter alia with a pin 26 in the same manner as the first mounting plate 14.
[0025] Prior to being connected to the mounting plate 14, 16, the spring system 10 has been
provided with the shaft 11, the springs 12, the plate 31, the drums 35, etc.
[0026] The guides 6, 7, 8 and the cross beam 9 are not fitted yet when the spring system
10 is connected to the mounting plate 14, 16.
[0027] An installer will take hold of the first end 13 of the spring system 10 and 15 and
lift it until the passage 41 in the surface 37 is positioned opposite the pin 26 of
the first mounting plate 14, so that the passage 41 can be positioned over the pin
26 (see figure 5). The upper edge 42 of the passage 41 is now supported on the pin
26. The first end 13 will tend to move along the pin 26 in the direction of the surface
22 under the influence of the force of gravity.
[0028] The second end 15 of the spring system 10 need not be supported when the first end
13 is being connected to the first mounting plate 14, and consequently it will be
inclined downwards. As a result, the surfaces 37, 38, 39, 42 do not extend parallel
to the respective services 22, 23, 24, 25, and the passage 41 can be moved over the
pin 26 up to the surface 22. Subsequently, the second end of the spring system 10
will be taken hold of and be pushed in the direction of the second mounting plate
16. During said movement, the spring system 10 will pivot about the pin 26. Near the
second mounting plate 16, the passage 41 in the surface 37 of the plate 31 of the
second end 15 is positioned opposite the pin 26 of the second mounting plate 16 and
moved over the pin 26 in the direction of the surface 22. Because the passages 41
of both ends 13, 15 are now positioned over the pins 26 of the mounting plate 14,
16, the surfaces 37, 38, 40 of the plates 31 extend parallel to the surfaces 22, 23,
24, 25 of the mounting plates 14, 16, so that the plates 31 can be moved further in
the direction of the part 18 of the mounting plate 14, until the surfaces 37, 38,
39, 40 abut against the respective surfaces 22, 23, 24, 25.
[0029] The abutting surfaces ensure that the ends 13, 15 will be correctly positioned against
the mounting plate 14, 16. The pins 26 merely function to facilitate the mounting
of the spring system 10, and the passages 41 may be relatively large, so that positioning
the passages 41 over the pins 26 will be relatively easy. The pins 26 are preferably
provided with screw thread, onto which a nut 44 can subsequently be screwed. If the
pins 26 are provided with screw thread, the pins 26 also function to secure the ends
13, 15 to the mounting plates 14, 16. It is also possible, however, to secure the
ends 13, 15 to the respective mounting plates 14, 16 using separate fixing means.
[0030] Figures 7-11 show other embodiments of the parts 18 of the mounting plates 14, 16
and the parts 32 of the plate 31 that abut against said parts 18.
[0031] In the embodiment shown in figure 7, the parts 18', 32' extend fully parallel to
each other in the mounted condition.
[0032] In the embodiment shown in figure 8, the parts 18", 32" do not extend parallel to
each other between the inclined surfaces 22, 37; 23, 38, so that the part 32" is relatively
simple in shape.
[0033] In the embodiment shown in figure 9, the parts 18"', 32'" comprise only one surface
22, 37 extending at an angle to the vertical.
[0034] The same applies as far as the embodiment shown in figure 10 is concerned, in which
the parts 18
IV, 32
IV each comprise one plane 22, 37, which includes an angle with the vertical, whilst
the parts 18
IV, 32
IV further comprise horizontally extending surfaces 51, 52.
[0035] In the embodiment shown in figure 11, the parts 18
V, 32
V each have a curved surface 53, 54 provided with the pin 26 and with the passage 41,
respectively. In this way a correct positioning of the parts 18
VI, 32
VI relative to each other can be realised.
[0036] In the embodiment shown in figure 12, the part 18
VI forming part of the first end 14 or the second end 16 is provided with an opening
55, whilst the part 32
VI that is connected to the first or the second end is provided with a pin 56, which
extends in downward direction and which includes an angle with the horizontal comparable
to the angle α that the pin 26 includes with the vertical. When the embodiment shown
in figure 12 is being mounted, the pin 56 is inserted into the opening 55. The opening
55 must be dimensioned so that the pin 56 can be easily inserted into the passage
55.
[0037] Figure 13 shows another embodiment of the sectional door system 61 according to the
invention, in which the spring system 10 is connected to the first and the second
end 62, 63 remote from the wall 5 of the guides 7 rather than to the wall 5. In this
embodiment, the mounting plates 14, 16 are connected to the ends 62, 63. The spring
system 10 is connected to the ends 62, 63 of the sections in a similar manner as in
the sectional door system 1 according to figure 1.
[0038] It is also possible for the shaft 11 to comprise one spring or more than two springs.
1. A sectional door system comprising a number of pivotally coupled-together elongate
door panels, which are movably supported in guide sections near short sides, which
sectional door system further comprises an elongate spring system for assisting in
moving the door panels, which spring system is connected to first and second mounting
plates near first and second ends, respectively, characterised in that at least the first mounting plate is provided with a pin which is oriented in a plane
extending substantially transversely to the door panels, which pin includes an angle
of at least 5 degrees with the horizontal in an upwardly inclined direction, whilst
the first end of the spring system is provided with a plate provided with a passage,
which passage can be positioned over the pin.
2. A sectional door system comprising a number of pivotally coupled-together elongate
door panels, which are movably supported in guide sections near short sides, which
sectional door system further comprises an elongate spring system for assisting in
moving the door panels, which spring system is connected to first and second mounting
plates near first and second ends, respectively, characterised in that at least the first end of the spring system is provided with a pin which is oriented
in a plane extending substantially transversely to the panels, which pin includes
an angle of at least 5 degrees with the horizontal in a downwardly inclined direction,
whilst the first mounting plate is provided with a passage in which the pin can be
positioned.
3. A sectional door system according to claim 1 or 2, characterised in that the second end of the spring system and the second mounting plate are provided with
the same passage or pin as the first end and the first mounting plate.
4. A sectional door system according to any one of the preceding claims, characterised in that said pin comprises screw thread, onto which a nut can be screwed after the passage
has been positioned over the pin.
5. A sectional door system according to any one of the preceding claims, characterised in that at least the first mounting plate and the plate provided with the passage comprise
surfaces extending at an angle to the vertical, which surfaces will abut against each
other once the spring system is connected to the mounting plates.