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EP 0 954 672 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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21.05.2003 Bulletin 2003/21 |
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Date of filing: 11.11.1996 |
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International Patent Classification (IPC)7: E06B 9/305 |
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International application number: |
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PCT/US9617/747 |
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International publication number: |
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WO 9802/1437 (22.05.1998 Gazette 1998/20) |
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VENETIAN TYPE BLINDS
RAFFLAMELLENSTORE
STORES DE TYPE VENITIEN
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Designated Contracting States: |
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BE DE ES FR GB GR IT NL |
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Date of publication of application: |
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10.11.1999 Bulletin 1999/45 |
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Proprietor: Judkins, Ren |
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Pittsburgh,
Pennsylvania 15202 (US) |
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Inventor: |
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- Judkins, Ren
Pittsburgh,
Pennsylvania 15202 (US)
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Representative: SERJEANTS |
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25, The Crescent
King Street Leicester, LE1 6RX Leicester, LE1 6RX (GB) |
| (56) |
References cited: :
FR-E- 92 322 US-A- 5 060 709
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US-A- 4 951 729
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
FIELD OF INVENTION
[0001] The invention relates to a venetian type blind.
BACKGROUND OF THE INVENTION
[0002] Venetian type blinds have a series of slats hung on ladders which extend from a headrail
to a bottomrail. In most Venetian blinds a pair of lift cords is provided each having
one end attached to the bottomrail and then passing through elongated holes in the
slats up to and through the headrail. A cord lock is usually provided in the headrail
through which the lift cords pass. The cord lock allows the user to maintain the blind
in any desired position from fully raised to fully lowered.
[0003] The slats rest on rungs between rails of the ladders. The blind is in an open position
when the rungs are horizontal. To close the blind one lifts one rail while allowing
the other to either remain in place or be lowered. This raises one end of each rung
tilting the slats. Thus, when the blind is closed there is typically tension on one
rail while the other rail of the ladder is not in tension.
[0004] The rails originally used for venetian blinds consisted of a fabric tape typically
from one to two inches in width. The rungs were also made of fabric strips. Conventionally,
the lift cords pass through holes in the slats which were aligned between the rails
of the ladder. When the blind was closed, the fabric rails covered the holes. Consequently,
there was no concern about light passing through the holes when the blind was in a
closed position.
[0005] Walker in United States Patent No. 2,572,224 discloses slats for a Venetian type
blind having a tape type ladder system and two lift cords. One lift cord passes through
notches on the inside edges at one end of the slats. The second lift cord passes through
notches on the outside edge of the other end of the slats. Each lift cord is positioned
behind one of the tape-type ladders. Walker does not disclose any lift mechanism inferring
that a standard lift mechanism could be used. In a blind made with Walker's slats
the lift cords play no role in maintaining the slats in alignment when the blinds
are closed. Rather, the tape-type rails of the ladders maintain the slats in alignment.
[0006] Very few tape type ladders are used in blinds today. Rather, the art has adopted
ladders formed of cord rails having cord-type rungs between them. Typically, the rungs
are multiple strands of cord. However, a single strand of cord has also been used.
Frequently, a braided cord is used for the ladder rails. The conventional lift cord
arrangement in which the lift cord passes through elongated holes in the slats is
used. The lift cords are aligned to be between the rails of the ladders which are
provided near opposite ends of the blind. When this type of blind is closed light
can pass through the holes in the blind slats. This is readily apparent to anyone
looking at the closed blind.
[0007] In pleated shades efforts have been made to prevent light from passing through the
cord holes by making the holes to be a diameter very close to the diameter of the
cord. This is not possible in a venetian type blind where the holes must be elongated
to allow the slats to tilt properly.
[0008] In the venetian blinds which utilize a cord-type ladder the blinds are opened and
closed by lifting or lowering one of the ladder rails relative to the other. In most
blinds the lateral position of the ladder rails relative to one another remains unchanged
at the headrail. Thus, there will be slack at the top of one of the ladder rails and
the center of gravity shifts forward or back when the blind is tilted.
[0009] Venetian blind slats are conventionally made of aluminium plastic or wood. Cord route
holes are normally punched into the slat one at a time while the length is cut. Wood
slats are usually cut to length by saws so that punching or machining of the holes
is done one unit at a time. Moreover, punching of holes through wood slats sometimes
causes splintering and the areas around the holes are very difficult to paint or seal.
After the cord holes have been drilled, lift cords are passed from the bottom rail
through the cord holes to the headrail to complete the assembled blind. After the
blind has been assembled in this manner it is not possible to remove the slats from
the blind without removing the lift cords making it very difficult to clean the slats
in the area of the route holes. Thus, it is a major task to clean or paint the slats
in this type of blind. Since the lift cords pass through each slat they prevent tight
closure when the blind is tilted to a closed position. Further, the route holes weaken
the slats dramatically so that bending more easily occurs at the route holes. United
States Patent No. 5,060,709 discloses a venetian type blind having a headrail and
bottomrail and an array of slats. At least one of the ladder cords which are used
to adjust the angular orientation of the slats is received in notches formed in the
edges of the slats. The lift cords used to raise and lower the array of slats run
along the outer edges of the slats outside the ladder cords. The blind also has a
tilt mechanism.
[0010] There is a need for a venetian type blind having no holes through the slots. The
venetian must operate easily and the slats must maintain alignment when the blind
is open and closed and most particularly when the blind is raised and lowered.
SUMMARY OF THE INVENTION
[0011] I provide a venetian type blind having a bottomrail, headrail and plurality of slats
positioned therebetween. The slats are notched to form slots on their inside edge
and outside edge to accommodate lift cords. At least four lift cords pass from the
bottomrail to the headrail each passing through a slot on the inside edge or outside
edge of each slat. At least two preferably cord-type ladders are provided to hold
the slats. The ladders are aligned such that the rails of the ladders are adjacent
the lift cords and outside the slots cut in the slats.
[0012] A tilt mechanism to close the blind is provided within the headrail which preferably
moves the rails together as the tilt mechanism lifts one rail and lowers the other
rail relative to one another. Therefore, the center of gravity of the blind is in
the same plane throughout the tilt range.
[0013] A tube lift may be provided for the lift cords or a cord lock can be provided within
the headrail or on the cords outside of the headrail.
[0014] Other objects and advantages of the present invention will become apparent from a
description of the present preferred embodiments shown in the drawings.
BRIEF DESCRIPTION OF THE FIGURES
[0015]
Figure 1 is a front view of the present preferred embodiment of my venetian type blind
shown in a lowered open positioned.
Figure 2 is a front view similar to Figure 1 showing an upper portion of the blind
when the blind in a raised position.
Figure 3 is a sectional view taken along the line III-III of Figure 1.
Figure 4 is a sectional view similar to Figure 3 taken along the line IV-IV of Figure
2.
Figure 5 is a perspective view of a portion of the embodiment shown in Figure 1 taken
around the line V-V of Figure 1 to show the base of a pair of lift cords and adjacent
ladder.
Figure 6 is a fragmentary view showing the right end of the portion of the raised
blind shown in Figure 2 wherein the front panel of the headrail has been removed.
Figure 7 is a sectional view taken along the line VII-VII in Figure 1.
Figure 8 is a fragmentary view showing the front portion of the blind near the line
VII-VII in Figure 1.
Figure 9 is a perspective view similar to Figure 5 showing an alternative routing
for the lift cords.
Figure 10 is a rear view of one end of the headrail with the back panel removed to
show the top portion of the alternative lift cord routing of Figure 9.
Figure 11 is a sectional view taken along the line XI-XI of Figure 1.
Figure 12 is a sectional view taken along the line XII-XII of Figure 1 with the lift
cords removed.
Figure 13 is a sectional view similar to Figure 12 showing the blind in a closed position.
Figure 14 is a fragmentary view similar to Figure 6 showing a second preferred embodiment
that utilizes a tube lift.
Figure 15 is a sectional view taken along the line XV-XV of Figure 14.
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0016] The first present preferred embodiment is comprised of a headrail 2, two piece bottomrail
3 and 4 and set of slats 6 extending therebetween. If desired, a one piece bottomrail
could be used. For purposes of illustration only six slats are shown. However, the
blind could have any number of slats and likely would have many more slats than are
shown. The slats of this embodiment are symmetrical to a horizontal plane passing
through the front and back edges of the slat. Crowned slats may be used in place of
these flat slats if desired. The slats are suspended on a cord type ladder 10. The
ladder has a front rail 11, rear rail 12 and series of rungs 13 extending therebetween
on which these slats rest. As shown most clearly in Figure 7, the bottom ends of the
ladders are knotted within the bottomrails 4 and 5 and covered by plugs 42. Cord 40
is provided to tie the bottomrails 4 and 5 together and prevent them from flaring
out. At least two front slots 7 are provided on the front edge of each slat 6. A corresponding
set of rear slots 9 have been cut into the back edge of slat 6 opposite slots 7. I
prefer to have the slots 7 and 9 directly opposite one another as shown in Figure
5. However, one slot could be to the left or right of the other slot. The slots are
sized so that lift cords 81, 82, 83 and 84, which are generally identified by reference
number 8, and ends of rungs 13 can loosely fit therein. Tilt ladders 10 are positioned
near the ends of the blind so that the rails 11 and 12 are adjacent the lift cords.
A third tilt ladder is provided at the center of the blind where no lift cords are
needed. Slots 7 and 9 preferably have a depth such that only the lift cords 8 and
ends of rungs 13 can completely fit therein. Thus, the rails 11 and 12 can never be
fully within the slots. For purposes of illustration the lift cords 8 are shown in
chain line in some of the figures so as to distinguish them from the adjacent rails
of the tilt ladders or other structures. Because lift cords travel within slots 7
and 9 provided in the slats 6 there are no cord holes in the slats. As can be seen
in Figure 3 the slats 6 rest on rungs 13 of the tilt ladder 10 and can easily be lifted
from the rungs for cleaning or repainting.
[0017] The number of lift cords that are used will vary according to the size of the blind
and the cording arrangement. In every embodiment lift cords 8 should be positioned
near either end of the blind in slots on both the front and rear edges of the slats.
In the embodiment of Figure 1 four lift cords extend from the bottomrail through the
headrail. As shown most clearly in Figures 1 through 6, lift cords 81 and 83 extend
from the front bottomrail 4 through slots 7 in the front edge of slats 6. Lift cords
82 and 84 extend from the rear bottomrail 5 through slots 9 in the rear edge of slats
6. The lift cords 81, 82, 83 and 84 pass through the headrail 2 exiting on the front
right side as shown in Figures 1 and 2. The lift cords 81, 82, 83 and 84 are threaded
through the headrail over pulley 38 and into a cord lock 26 provided in the headrail
2. Support plate 36 is provided to attach the cord lock 26 to the headrail 2. The
pulley 38 is held in place by support 37. The cords extend through the cord lock to
a position outside and at one end of the blinds. Preferably, the cord lock is always
engaging the lift cords unless the blind is being raised or lowered. The distal end
of the lift cords may be tied together in a ball connector 33. If desired a pull cord
34 having a tassel 35 may be connected to the ball connector 33. If the bottomrail
is supported by the tilt ladders, as in the embodiment of Figure 1, the weight of
the lift cords extending out of the headrail and the attached tassel can provide sufficient
tension to hold the slats in place. Moreover, a weight can be placed in the tassel
35 or connector 33 if needed. If the bottomrail is supported only by the lift cords,
the weight of the bottomrail maintains the lift cords in tension. Tension in the lift
cord prevents lateral motion of the slats.
[0018] An alternative cording arrangement shown in Figures 9 and 10 utilizes two lift cords
and pulleys in the bottomrail 14. The distal end of each lift cord 85 and 86 is attached
to the headrail via the tilt disk 18 through hole 17. (See Figure 4) The lift cord
85 and 86 is routed from the headrail down the front of the blind, through the front
slats 7, over pulleys 88, across the bottomrails 3, 4, under pulley 89 and up the
back of the blind through back slots 9 to the headrail. The lift cords can be threaded
through the ladder rungs 13 as shown or be alternately laced with the ladder rungs.
The cords 85, 86 pass through a cord lock 90 and out of the headrail as shown in Figure
10. One could also provide a pulley arrangement in which four cords are used and each
cord goes up and down in the same set of slots. Yet another arrangement would affix
one lift cord at the disk away from the cord lock and route it down the front of the
blind through the front bottomrail to the other end of the bottomrail, up the front
of the blind, and through a cord lock at the other end of the headrail. A second lift
cord would start at the disk near the cord lock and pass through the headrail to the
disk at the opposite end and follow a similar path as the first cord back to the disk
near the cord lock where it is affixed. A comparable pair of cords travels through
the backside of the blind. In all of those cord routing patterns the lift cords are
in tension at all times preventing lateral motion of the slats.
[0019] While the lift cords are always in tension, the rails of the tilt ladders are only
in tension when the blind is fully lowered. Since the rails are on the outside edges
of the slats they can fold neatly across the front of the blind when the blind is
raised to the position shown in Figure 2. Although such neat folding generally occurs,
I prefer to assure that such neat folding always occurs by treating the rails with
a permanent pleating or other treatment to provide a memory in the rails so that they
will fold in the desired manner.
[0020] A tilt mechanism 16 is provided to move the rails 11 and 12 of the tilt ladder 10
relative to one another to open and close the blind and also moves the lift cords
at the same time. The present preferred tilt mechanism can be seen most clearly by
referring to Figures 4, 3, 7, 8, 11, 12 and 13. The tilt mechanism in the preferred
embodiment is comprised of a disk 18 to which the rails 11 and 12 of the tilt ladder
10 are connected. There is one disk for each tilt ladder 10. The disks 18 are mounted
on tilt rod 19 so that rotation of the tilt rod will turn the disks in unison. The
tilt rod is suspended above the base 20 of the headrail by cradles 22. I prefer to
provide a bridge 23 on each cradle to prevent the lift cords from getting caught on
the cradles. As shown in Figure 14, a right angle drive or worm gear drive 24 is provided
at one end of tilt rod 19. The drive extends through the headrail 2 to provide a handle
25 which is turned to open and close the blind. Rotation of the disk 18 in either
direction lifts one rail 11 or 12 and associated lift cords relative to the other
and moves the rails 11 and 12 toward one another. If a two piece bottomrail is used,
the front bottomrail will move relative to the rear bottomrail. The same center of
gravity should be maintained for the blind through the tilt cycle.. The disks can
be rotated 100 degrees. As can be seen in Figures 12 and 13, the blind slats 6 will
be in a nearly closed position after the disks 18 have been rotated through approximately
90 degrees. As disks 18 are rotated the lift cords 8 and the rails 11 and 12 of the
tilt ladders 10 are constantly in tension. This contains the slats and prevents them
from slipping laterally.. The number of tilt ladders which are used will vary according
to the width of the blind.
[0021] As can be most clearly seen in Figures 3, 4 and 6 the lift cords are routed through
pivot holes 17 in the disks 18 located at the point of attachment of the ladder rails
11 and 12. Consequently, rotation of the disk shifts the lift cords transversely and
vertically in tandem with the ladder rails and keeps the lift cords under tension.
An alignment arm 27 extends from tilt rod 19 through which the lift cords pass to
prevent the lift cords from getting caught on the cradles and to present the cords
for a uniform entry into the cord lock independent of the tilt angle of the slats.
[0022] In the first preferred embodiment the lift cords 8 pass through the headrail. An
alternative is shown in Figures 14 and 15 wherein the lift cords are wound about a
tubular drive mechanism 30. The drive mechanism includes an axle 29 around which the
lift cords 8 are wound. Winding is done such that the lift cord extending from the
front is wound in one direction whereas the lift cord extending from the rear is wound
in the opposite direction as shown in Figure 15. Thus, turning of the drive axle 29
will raise or lower the lift cords in the front and back at the same time. A tube
lift mechanism such as is disclosed in United States Patent No. 5,184,660 can be adopted
for the venetian blind shown in Figures 14 and 15.
[0023] There are many hardware systems by which the lift cords can be tilted in tandem with
the rails of the tilt ladder 10. For example, a set of parallel cradles can be combined
with straps or cables and cord locks to form a parallelogram that moves in tandem
with the tilt ladder. In another possible arrangement, the disks could be combined
with a tilting bar or rotating beam. Although I have shown and described certain present
preferred embodiments of my venetian blind it should be distinctly understood that
the invention is not limited thereto but may be variously embodied within the scope
of the following claims.
1. A venetian blind comprising:
a headrail (2);
a bottomrail (4,5,14);
at least two cord ladders (10) each having substantially parallel rails (11,12);
lift cords (8,81-82) extending between the headrail (2) and the bottomrail (4,5) and
comprising a first pair of lift cords (81,82) adjacent to the first ladder (10) and
connected to the bottomrail (4,5), and a second pair of lift cords (83,84) adjacent
to the second ladder (10);
a plurality of slats (6) carried on the ladders, each slat (6) having a first end
and a second end and an inside edge and an outside edge, and at least a first slot
(7) on the outside edge or the inside edge proximate the first end of the slat, the
first slots forming a first vertically arrayed set of slots, and a second slot (7)
on the inside edge or the outside edge proximate the second end of the slat and laterally
spaced from the first slot, the second slots forming a second vertically arrayed set
of slots such that a first ladder (10) is positioned proximate the first ends of the
slats so that one ladder rail (11) is positioned near the first set of slots, and
a second ladder (10) is positioned proximate the second ends of the slats so that
one ladder rail (11) is positioned near the second set of slots; and
a tilt mechanism (16) attached to the headrail (2) to which the first and second ladders
(10) are attached, such that when the blind is changed from an open position to a
closed position the rails (11,12) of each of the ladders will move relative to one
another;
characterised by:
one of the first pair of lift cords (82) running through the first set of slots (7)
and one of the second pair of lift cords (84) running through the second set of slots
(7); and
the first pair of lift cords (81,82) being engaged with substantially each of the
rungs (13) of the first ladder (10) and the second pair of lift cords (83,84) being
engaged with substantially each of the rungs (13) of the second ladder (10), such
that the rails (11,12) of the ladders (10) fold substantially in a plane parallel
to the edges of the slats (6) when the lift cords (81-84) draw the slats (6) together.
2. The venetian blind of claim 1 wherein each slat has a third slot (9) opposite the
first slot (7) and a fourth slot (9) opposite the second slot (7), a second one (81)
of the first pair of lift cords (81,82) runs through the third slot (9) of each slat
(6) and a second one (83) of the second pair of lift cords (83,84) runs through the
fourth slot (9) of each slat (6).
3. The venetian blind of any previous claim wherein the ladder rails (11,12) have a dimension
greater than the opening of the slots (7,9).
4. The venetian blind of any previous claim wherein the engagement of the lift cords
(8,81-84) with the ladder rungs (13) comprises the alternate lacing of lift cords
with the ladder rungs.
5. The venetian blind of any previous claim wherein the engagement of the lift cords
(8,81-84) with the ladder rungs (13) comprises each of the lift cords passing through
at least one of the ladder rungs.
6. The venetian blind of any previous claim wherein the bottomrail is comprised of two
spaced apart parallel rails (4,5) and where one lift cord (81,83) of each pair of
lift cords is attached to one rail (5) and a second lift cord (82,84) of each pair
of lift cords is attached to the other rail (4).
7. The venetian blind of any previous claim also comprising a tube lift (30) attached
to the headrail (2) and to which the lift cords (8) are connected.
8. The venetian blind of any previous claim also comprising four pulleys (88,89) within
the bottomrail and positioned so that one lift cord (85) passes over each pulley.
9. The venetian blind of any previous claim also comprising a cord lock (26) through
which the lift cords (8,81-84) pass wherein the cord lock is always engaged unless
the lift cords are being operated.
10. The venetian blind of any previous claim wherein the tilt mechanism is comprised of
a first cylindrical member (18) to which the rails (11,12) of the first ladder (10)
are attached; a second cylindrical member (18) to which the rails (11,12) of the second
ladder (10) are attached; an axle (19) attached between the first cylindrical member
and the second cylindrical member, and means (24) for rotating the axle (19) and attached
cylindrical members (18).
11. The venetian blind of claim 10, wherein at least one of the lift cords passes through
at least one of the cylindrical members (18).
12. The venetian blind of claim 10 wherein the means (24) for rotating the axle and attached
cylindrical members is one of a right angle drive and a worm drive.
13. The venetian blind of any of claims 1 through 10 wherein the tilt mechanism is comprised
of:
a first disk (16) to which the rails (11,12) of the first ladder (10) are attached;
a second disk (18) to which the rails (11,12) of the second ladder (10) are attached;
an axle (19) attached between the first disk (18) and the second disk (18); and
means (24) for rotating the axle and attached disks.
14. The venetian blind of claim 13 wherein at least one of the lift cords (8) passes through
at least one of the first disk and the second disk (18).
1. Jalousie, mit
einer oberen Schiene (2);
einer unteren Schiene (4, 5, 14);
mindestens zwei Seilleitern (10), wovon jede im Wesentlichen parallele Seilführungen
(11, 12) aufweist;
Zugseilen (8, 81-82), die sich zwischen der oberen Schiene (2) und der unteren Schiene
(4, 5) erstrecken und ein erstes Paar Zugseile (81, 82) nahe der ersten Leiter (10)
aufweisen, das mit der unteren Schiene (4, 5) verbunden ist, sowie ein zweites Paar
Zugseile (83, 84) nahe der zweiten Leiter (10);
mehreren Lamellen (6), die auf den Leitern ruhen, wobei jede Lamelle ein erstes Ende
und ein zweites Ende sowie eine Innenkante und eine Außenkante aufweist, sowie einen
ersten Schlitz (7) an der Außenkante oder der Innenkante nahe dem ersten Ende der
Lamelle, wobei die ersten Schlitze einen ersten Satz vertikal aufgereihter Schlitze
bilden, und einen zweiten Schlitz (7) an der Innenkante oder der Außenkante nahe dem
zweiten Ende der Lamelle, seitlich von dem ersten Schlitz beabstandet, wobei die zweiten
Schlitze einen zweiten Satz vertikal aufgereihter Schlitze bilden, so dass eine erste
Leiter (10) nahe den ersten Enden der Lamellen so positioniert ist, dass eine Seilführung
(11) der Leiter nahe dem ersten Satz von Schlitzen positioniert ist, und eine zweite
Leiter (10) ist nahe den zweiten Enden der Lamellen so positioniert, dass eine Seilführung
(11) der Leiter nahe dem zweiten Satz von Schlitzen positioniert ist; und
einen Kippmechanismus (16), der an der oberen Schiene (2) befestigt ist, an dem die
ersten und zweiten Leitern (10) befestigt sind, so dass bei Änderung der Position
der Jalousie von einer offenen in eine geschlossene Position die Seilführungen (11,
12) jeder der Leitern sich relativ zueinander bewegen;
dadurch gekennzeichnet, dass
eines der beiden ersten Zugseile (82) durch den ersten Satz von Schlitzen (7) verläuft
und eines der beiden zweiten Zugseile (84) durch den zweiten Satz von Schlitzen (7)
verläuft; und
dass das erste Paar von Zugseilen (81, 82) mit im Wesentlichen jeder der Sprossen
(13) der ersten Leiter (10) und das zweite Paar von Zugseilen (83, 84) mit im Wesentlichen
jeder der Sprossen (13) der zweiten Leiter (10) in Eingriff ist, so dass die Seilführungen
(11, 12) der Leitern (10) sich im Wesentlichen in einer Ebene zusammenfalten, die
parallel zu den Kanten der Lamellen ist (6), wenn die Zugseile (81-84) die Lamellen
(6) zusammenziehen.
2. Jalousie nach Anspruch 1, bei der jede Lamelle einen dritten Schlitz (9) aufweist,
der dem ersten Schlitz (7) gegenüberliegt, und einen vierten Schlitz (9), der dem
zweiten Schlitz (7) gegenüberliegt, wobei ein zweites (81) des ersten Paars von Zugseilen
(81, 82) durch den dritten Schlitz (9) jeder Lamelle (6) verläuft und ein zweites
(83) des zweiten Paars von Zugseilen (83, 84) durch den vierten Schlitz (9) jeder
Lamelle (6) verläuft.
3. Jalousie nach einem der vorhergehenden Ansprüche, bei der die Leiterseilführungen
(11, 12) größere Abmessungen haben als die Öffnung der Schlitze (7, 9).
4. Jalousie nach einem der vorhergehenden Ansprüche, bei der das In-Eingriff-Stehen der
Zugseile (8, 81-84) mit den Leitersprossen (13) in dem abwechselnden Verbinden (Einfädeln)
der Zugseile mit den Leitersprossen besteht.
5. Jalousie nach einem der vorhergehenden Ansprüche, bei der das In-Eingriff-Stehen der
Zugseile (8, 81-84) mit den Leitersprossen darin besteht, dass jedes der Zugseile
durch mindestens eine der Leitersprossen verläuft.
6. Jalousie nach einem der vorhergehenden Ansprüche, bei dem die untere Schiene aus zwei
voneinander beabstandeten, parallelen Schienen (4, 5) besteht, wobei ein Zugseil (81,
83) jedes Paars von Zugseilen an einer Schiene (5) und ein zweites Zugseil (82, 84)
jedes Paars von Zugseilen an der anderen Schiene (4) befestigt ist.
7. Jalousie nach einem der vorhergehenden Ansprüche, die auch eine Aufwickelvorrichtung
(30) aufweist, die an der oberen Schiene (2) befestigt ist, und mit der die Zugseile
(8) verbunden sind.
8. Jalousie nach einem der vorhergehenden Ansprüche, die auch vier Riemenscheiben (88,
89) in der unteren Schiene aufweist, die so angeordnet sind, dass ein Zugseil (85)
über jede Riemenscheibe läuft.
9. Jalousie nach einem der vorhergehenden Ansprüche, die auch eine Seilverriegelung (26)
aufweist, durch die die Zugseile (8, 81-84) laufen, wobei die Seilverriegelung immer
in Verriegelungsposition ist, außer wenn die Zugseile in Betrieb sind.
10. Jalousie nach einem der vorhergehenden Ansprüche, bei der der Kippmechanismus aus
einem ersten zylindrischen Element (18) besteht, an dem die Seilführungen (11, 12)
der ersten Leiter (10) befestigt sind; einem zweiten zylindrischen Element (18), an
dem die Seilführungen (11, 12) der zweiten Leiter (10) befestigt sind; einer Achse
(19), die zwischen dem ersten zylindrischen Element und dem zweiten zylindrischen
Element befestigt ist; und Mitteln (24), um die Achse (19) und die daran befestigten
zylindrischen Elemente (18) in Drehung zu versetzen.
11. Jalousie nach Anspruch 10, bei der mindestens eines der Zugseile durch mindestens
eines der zylindrischen Elemente (18) läuft.
12. Jalousie nach Anspruch 10, bei der die Mittel (24), mit denen die Achse und die daran
befestigten zylindrischen Elemente in Drehung versetzt werden, entweder ein Winkeltrieb
oder ein Schneckenantrieb sind.
13. Jalousie nach einem der Ansprüche 1 bis 10, bei der der Kippmechanismus Folgendes
aufweist:
eine erste Scheibe (16), an der die Seilführungen (11, 12) der ersten Leiter (10)
befestigt sind;
eine zweite Scheibe (18), an der die Seilführungen (11, 12) der zweiten Leiter (10)
befestigt sind;
eine Achse (19), die zwischen der ersten Scheibe (18) und der zweiten Scheibe (18)
befestigt ist; und
Mitteln (24), um die Achse und die daran befestigten Scheiben in Drehung zu versetzen.
14. Jalousie nach Anspruch 13, bei der mindestens eines der Zugseile (8) durch mindestens
eine der ersten und der zweiten Scheiben (18) läuft.
1. Store vénitien comprenant :
un rail supérieur (2) ;
un rail inférieur (4, 5, 14) ;
au moins deux échelles de cordons (10) comportant chacune des rails sensiblement parallèles
(11, 12) ;
des cordons de levage (8, 81 à 82) s'étendant entre le rail supérieur (2) et le rail
inférieur (4, 5), et comprenant une paire de cordons de levage (81, 82) adjacents
à la première échelle (10) et reliés au rail inférieur (4, 5), et une deuxième paire
de cordons de levage (83, 84) adjacents à la deuxième échelle (10) ;
une pluralité de lames (6) supportées sur les échelles, chaque lame (6) comportant
une première extrémité et une deuxième extrémité et un bord intérieur et un bord extérieur,
et au moins une première encoche (7) sur le bord extérieur ou le bord intérieur à
proximité de la première extrémité de la lame, les premières encoches formant un premier
jeu d'encoches groupées verticalement, et une deuxième encoche (7) sur le bord intérieur
ou le bord extérieur à proximité de la deuxième extrémité de la lame et latéralement
espacée de la première encoche, les deuxièmes encoches formant un deuxième jeu d'encoches
groupées verticalement, de telle sorte qu'une première échelle (10) soit positionnée
à proximité des premières extrémités des lames de telle sorte qu'un rail d'échelle
(11) soit positionné à proximité du premier jeu d'encoches, et qu'une deuxième échelle
(10) soit positionnée à proximité des deuxièmes extrémités des lames de telle sorte
qu'un rail d'échelle (11) soit positionné à proximité du deuxième jeu d'encoches ;
et
un mécanisme d'inclinaison (16) fixé au rail supérieur (2) auquel sont fixées les
première et deuxième échelles (10), de telle sorte que, lorsque le store passe d'une
position ouverte à une position fermée, les rails (11, 12) de chacune des échelles
se déplacent l'un par rapport à l'autre ;
caractérisé par le fait que :
l'un de la première paire de cordons de levage (82) s'étend à travers le premier jeu
d'encoches (7) et l'un de la deuxième paire de cordons de levage (84) s'étend à travers
le deuxième jeu d'encoches (7) ; et
la première paire de cordons de levage (81, 82) s'engage avec sensiblement chacun
des échelons (13) de la première échelle (10) et la deuxième paire de cordons de levage
(83, 84) s'engage avec sensiblement chacun des échelons (13) de la deuxième échelle
(10), de telle sorte que les rails (11, 12) des échelles (10) se plient sensiblement
dans un plan parallèle aux bords des lames (6) lorsque les cordons de levage (81 à
84) tirent les lames (6) les unes vers les autres.
2. Store vénitien selon la revendication 1, dans lequel chaque lame comporte une troisième
encoche (9) opposée à la première encoche (7), et une quatrième encoche (9) opposée
à la deuxième encoche (7), un deuxième cordon (81) de la première paire de cordons
de levage (81, 82) s'étendant à travers la troisième encoche (9) de chaque lame (6),
et un deuxième cordon (83) de la deuxième paire de cordons de levage (83, 84) s'étendant
à travers la quatrième encoche (9) de chaque lame (6).
3. Store vénitien selon l'une quelconque des revendications précédentes, dans lequel
les rails d'échelle (11, 12) ont une dimension supérieure à l'ouverture des encoches
(7, 9).
4. Store vénitien selon l'une quelconque des revendications précédentes, dans lequel
l'engagement des cordons de levage (8, 81 à 84) avec les échelons d'échelle (13) comprend
le laçage alterné de cordons de levage avec les échelons d'échelle.
5. Store vénitien selon l'une quelconque des revendications précédentes, dans lequel
l'engagement des cordons de levage (8, 81 à 84) avec les échelons d'échelle (13) comprend
le fait que chacun des cordons de levage passe à travers au moins l'un des échelons
d'échelle.
6. Store vénitien selon l'une quelconque des revendications précédentes, dans lequel
le rail inférieur se compose de deux rails parallèles espacés l'un de l'autre (4,
5), et dans lequel un cordon de levage (81, 83) de chaque paire de cordons de levage
est fixé à un rail (5) et un deuxième cordon de levage (82, 84) de chaque paire de
cordons de levage est fixé à l'autre rail (4).
7. Store vénitien selon l'une quelconque des revendications précédentes, comprenant également
un élément de levage à tube (30) fixé au rail supérieur (2), et auquel sont reliés
les cordons de levage (8).
8. Store vénitien selon l'une quelconque des revendications précédentes, comprenant également
quatre poulies (88, 89) à l'intérieur du rail inférieur, et positionnées de telle
sorte qu'un cordon de levage (85) passe sur chaque poulie.
9. Store vénitien selon l'une quelconque des revendications précédentes, comprenant également
un élément de verrouillage de cordon (26) à travers lequel passent les cordons de
levage (8, 81 à 84), l'élément de verrouillage de cordon étant toujours engagé sauf
si les cordons de levage sont actionnés.
10. Store vénitien selon l'une quelconque des revendications précédentes, dans lequel
le mécanisme d'inclinaison se compose d'un premier élément cylindrique (18) auquel
sont fixés les rails (11, 12) de la première échelle (10) ; un deuxième élément cylindrique
(18) auquel sont fixés les rails (11, 12) de la deuxième échelle (10) ; un axe (19)
fixé entre le première élément cylindrique et le deuxième élément cylindrique ; et
des moyens (24) pour faire tourner l'axe (19) et les éléments cylindriques fixés à
lui (18).
11. Store vénitien selon la revendication 10, dans lequel au moins l'un des cordons de
levage passe à travers au moins l'un des éléments cylindriques (18).
12. Store vénitien selon la revendication 10, dans lequel les moyens (24) pour faire tourner
l'axe et les éléments cylindriques fixés à lui est l'un parmi un entraînement à angle
droit et un entraînement à vis sans fin.
13. Store vénitien selon l'une quelconque des revendications 1 à 10, dans lequel le mécanisme
d'inclinaison comprend :
un premier disque (16) auquel les rails (11, 12) de la première échelle (10) sont
fixés ;
un deuxième disque (18) auquel les rails (11, 12) de la deuxième échelle (10) sont
fixés ;
un axe (19) fixé entre le premier disque (18) et le deuxième disque (18) ; et
des moyens (24) pour faire tourner l'axe et les disques fixés.
14. Store vénitien selon la revendication 13, dans lequel au moins l'un des cordons de
levage (8) passe à travers au moins l'un parmi le premier disque et le deuxième disque
(18).