The invention relates to a venetian blind comprising a plurality of horizontal slats each having a first and a second horizontal edge, and a plurality of vertical cords, of which first cords at spaced apart locations are connected to the first edges of the top slats of each pair, second cords at spaced apart locations are connected to the second edges of the top slats of each pair, third cords at spaced apart locations are connected to the first edges of the bottom slats of each pair, and fourth cords at spaced apart locations are connected to the second edges of the bottom slats of each pair, where the top slats of each pair can be rotated in a clockwise direction and in an anti-clockwise direction around their longitudinal axis by pulling up specific cords and releasing other cords, while simultaneously the bottom slats of each pair rotate around their longitudinal axis in an anti-clockwise direction and clockwise direction, respectively.
A venetian blind of this type is known from U.S. Pat. No. 4,651,794. A disadvantage of the known venetian blind is that in the position in which the slats are in the horizontal, open position, the free view through the venetian blind is impeded.
It is an object of the invention to provide a venetian blind of the type defined in the opening paragraph in which in open position the free view is impeded less than with the known venetian blind. To this end the venetian blind according to the invention is characterized in that the venetian blind comprises a mechanism by which the cords can be pulled up and/or released, which mechanism is arranged such that the mechanism can immobilize the first and third cords and at the same time can displace the second and fourth cords in mutually opposite directions and vice versa, so that the slats are present between a first position in which the slats of each pair are spaced apart with the first edges and with the second edges are connected to each other, and a second position in which the slats of each pair are connected to each other with the first edges and are spaced apart with the second edges.
An advantageous embodiment of the venetian blind according to the invention is characterized in that the horizontal slats are connected to each other in pairs such that alternately the two slats of each pair are connected to each other with their first or second edges, respectively.
An advantageous construction by which this can be realized is characterized in that the two slats of each pair are connected to each other by means of at least one rope or tape, while the rope or tape is present in a figure of eight shape and the slats are located in the two loops of the rope or tape.
The cords are attached to the ropes or tapes preferably in the place of or in the vicinity of the edges of the slats, so that no separate fixture to the slats is needed.
An advantageous embodiment of the mechanism of the venetian blind according to the invention is characterized in that the mechanism comprises two motors which can be driven independently of each other and which drive each a winding shaft provided with spaced apart winding drums.
Preferably, the first and third cords are wound in mutually opposite directions on each winding drum on one of the winding shafts, and the second and fourth cords are wound in mutually opposite directions on each winding drum on the other winding shaft. In lieu of this, each winding shaft may be provided with a gear and the mechanism comprises two further winding shafts which run parallel to and are spaced apart from the winding shafts and which are each provided with a further gear, which further gears are in meshing engagement with the gears on the winding shafts, where spaced apart winding drums are present on each winding shaft, on which winding drum is wound one of the cords and where all cords are wound in the same direction.
Another advantageous embodiment of the mechanism of the venetian blind according to the invention is characterized in that the mechanism comprises a transmission as well as two bodies which can be successively displaced by the transmission, where the first and third cords are connected to one of the bodies at spaced apart locations and by means of the other body the second and fourth cords are connected at spaced apart locations, where the first and third cords and the second and fourth cords respectively, run to the slats through a notch or hole in between the spaced apart locations. An advantage of this mechanism is that this can be driven by only a single motor and that, in consequence, the driving electronics only need to be simple.
Preferably, the transmission is formed by a gear that can be driven manually or by means of a motor.
The invention will be described hereinbelow in more detail based on examples of embodiment of the venetian blind according to the invention represented in the drawing figures, in which:
An embodiment of the venetian blind according to the invention is shown in the drawing figures. The venetian blind comprises a plurality of pairs 1 of horizontal slats 3, 5. The two slats 3, 5 of each pair 1 are connected to each other by a rope or tape 15 at the ends.
The venetian blind has a mechanism (not shown) by which the cords 7, 9, 11, 13 can be pulled up and/or released, so that the slats 3, 5 between a first closed position in which the slats of each pair 1 with the first edges 3a, 5a are spaced apart from each other and are connected together with the second edges 3b, 5b (see
The mechanism is arranged such that when operated, the top slats 3 of each pair 1 can be rotated clockwise and anti-clockwise around their longitudinal axis 3c, while simultaneously the bottom slats 5 of each pair 1 rotate anti-clockwise and clockwise respectively around their longitudinal axis 5c and the two slats 3, 5 of each pair 1 are connected together with their first and second edges 3a, 5a, 3b, 5b, respectively.
The ropes or tapes 15 connecting together the two slats 3, 5 of a pair 1 are present in a figure of eight shape. The slats 3, 5 are located in the two loops 15a, 15b of the figure of eight shape. The rope or tape sections crossing each other in the middle of the figure of eight shape do not contact each other.
First cords 7 of the vertical cords are connected at locations spaced apart from each other to the first edges 3a of the upper slats 3 of each pair 1, and second cords 9 are connected at locations spaced apart from each other to the second edges 3b of the upper slats 3 of each pair 1. Furthermore, third cords 11 are connected at locations spaced apart from each other to the first edges 5a of the bottom slats 5 of each pair 1, and fourth cords 13 are connected at locations spaced apart from each other to the second edges 5b of the bottom slats 5 of each pair 1.
For rotating the slats from the position shown in
For rotating the slats from the position shown in
Each winding shaft accommodates a winding drum 43, which winding drums are spaced apart from each other and on which one of the cords 7, 9, 11, 13 is wound and where all cords are wound in the same direction. By driving electromotor 23, the winding shafts 27 and 31 will rotate in opposite directions to each other where for example the first cords 7 are pulled up and the third cords 11 are released. The same applies, to the other electromotor 25. With this mechanism the slats can thus be rotated in a simple manner.
In lieu of four winding shafts the mechanism can also be equipped with only the two winding shafts and no further winding shafts. In that case the first and third cords on each winding drum on the winding shaft 27 are to be wound in opposite directions to each other and the second and fourth cords 9 and 13 on each winding drum on the other winding shaft 29 are to be wound also in opposite directions to each other.
The bodies 51, 53 are formed by two parallel strips 71, 73 which are spaced apart from each other and are provided with a toothed rack 75, 77. These strips can each be displaced in a frame 79, 81 which frames as such are slidable along a guide 83, 85 in a direction perpendicular to the direction of displacement of the slats in the frame. The toothed racks 75, 77 are located on sides of the strips 71, 73 facing each other and at one end are provided with a protuberance 87, 89 which can cooperate in a switch position of the mechanism.
The two strips are further provided with a guide slot 91, 93 each, through which the wheel shaft 47 projects to which the gear 49 is attached. As a result of a rotation of the gear and due to engagement of the gear with the toothed gear 77 of the lower body 53, the gear will displace the strip 73. The guide slot 93 provides that the gear 49 retains its meshing engagement with the toothed gear 77. At the end of the toothed gear the gear leaves its engagement. Shortly before that instant the protuberance 89 has come into contact with the protuberance 87 on the strip 71 and then slightly pushes the strip 71 to a position where the gear 49 comes into engagement with the toothed gear 75 on the upper strip 71. The lower strip 73 now comes to a halt and the upper strip 71 is displaced by the toothed gear.
The displacement of the rod 57 that is fixed to the strip 73 results in a displacement of the connecting points 63 and 65 of the cords with the rod relative to the notch 69 through which the cords run to the slats. In this operation one connecting point moves towards the notch while the other connecting point moves away from the notch and, in consequence, one of the cords 9 will be released while the other cord 13 will be pulled up. As a result of this the slat edges connected to these cords will be moved away from each other or towards each other so that the venetian blind is closed or opened, respectively.
Albeit the invention has been described in the foregoing based on the drawing figures, it should be observed that the invention is not by any manner or means restricted to the embodiments shown in the drawing figures. The invention also extends to all embodiments deviating from the embodiments shown in the drawing figures within the spirit and scope defined by the claims. For example, the venetian blind may also be equipped with a pull-up mechanism (cord that goes down through holes in the middle of the slats or through loops or rings on the ropes or tapes 15 and is attached to the bottom slat) for raising the slats.
Furthermore, in lieu of the strips the mechanism may also comprise two gears with are provided with command slots with cam followers which have rods connected thereto. These gears are driven by worm wheels which are connected via a transmission to a drive shaft that is driven by a motor. The coupling of the one worm wheel that drives the one gear is realised by a rod via the command slot in the other gear, so that here too the two gears are driven successively. The cords are then connected to the gears in such a way that they are pulled up and released in the desired manner.
Number | Date | Country | Kind |
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2008663 | Apr 2012 | NL | national |
Filing Document | Filing Date | Country | Kind |
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PCT/NL2013/050296 | 4/19/2013 | WO | 00 |