The invention relates to a fan type sunshade or weather protection device and in particular, but not exclusively, to a drive system for splaying the spars of such a fan type sunshade or weather protection device.
A fan-shaped weather protection device (referred to hereinafter as a fan) is known from European patent application EP0963495, for example. Because it can be mounted at a single fixing point, it can be designed to be supported in such a manner as to be rotatable about multiple axes. As a result, the position adjustment of such weather protection arrangements is very flexible and versatile. In order to ensure the flexibility and the versatility of such a weather protection device, a relatively complex drive mechanism is used for spreading open and for closing the fan. The drive mechanism must be capable of exerting the forces which are necessary for opening, closing, rotating and tilting the fan. Furthermore, the drive must be able to resist high loads caused by wind, rain, snow etc.
on the protection device. Previously used drive mechanisms have therefore been of complicated and robust construction. In addition, the drive mechanism greatly limits the speed of the opening or closing movement of the fan. There is thus a need for a simplified drive mechanism which enables a fast spreading or closing of the fan.
It is known from U.S. Pat. No. 3,298,422 to use a cylindrical coil spring for automatically closing a sunshade. The spring, which is arranged in the central support of the ribs, exerts a rotational force on the end of the outermost rib. This arrangement has the disadvantage that it is suitable only for smaller or lighter fans. In the case of larger or heavier fans, the parts which bear the rotary forces would need to be disproportionately strongly constructed. Furthermore, the presence of the helical springs in the central mechanism brings about other disadvantages, in that it becomes consequentially more difficult to install further drive, tilt or rotation mechanisms.
In umbrellas and similarly constructed parasols, it is known to provide the supporting underframe with gas springs, for example to enable an automatic opening of the shade. Such an arrangement is mentioned in the introduction of the German utility model DE202012104640U1. However, such a frame is not suitable for fan-shaped sunshade.
It is known from WO2005/017298 to operate a foldable mosquito net by means of an electric motor or a hydraulic cylinder drive. This arrangement has the disadvantage that it consumes electrical power and that the drive must always be connected to an external energy source (electrical power connection or hydraulic pump). Furthermore, no biasing of the opening or closing movement occurs in WO2005/017298 because the required drive energy cannot be stored in the electric motor or in the hydraulic cylinder.
It is known from BE396458A to provide a pretensioned closure of a fan-shaped sunshade by means of two sprung shafts and two corresponding pull cables which pass through eyelets of the spars. In order to avoid the need for fixing the parts individually to a wall, the spring shafts are mounted on a panel together with the spar support. Because of the large panel and the fixed-mounted sprung shafts, this arrangement has the disadvantage that a versatile tilt or rotation of the fan is rendered difficult or impossible. Furthermore, the spring shafts, pull cables and eyelets form a relatively complicated and failure-prone mechanism.
On order to eliminate at least some of the above disadvantages, the invention foresees a fan-type sunshade or weather protection device according to claim 1. Thanks to the biasing element, the splaying out or folding together of the fan can be actuated quickly and simply, and without the need for a complicated and costly drive mechanism.
The invention is described with reference to the accompanying drawings, in which:
The accompanying drawings are merely provided as illustrative examples to aid a better understanding of the invention. They are do not represent any limitation of the claimed invention. In the drawings, the same reference numerals are used for identical or functionally-similar elements. However, the use of different references does not mean that the indicated features are different.
Embodiments of the invention will be described in the following detailed description. The term “fan” is understood to be a splayable arrangement of at least two spars whose radial inner ends are mounted in a common joint hub, which spars extend substantially radially outwards in a common plane, and which can be outspread apart from one another and brought together, in the said plane, circumferentially with respect to an axis which passes through the hub orthogonally to the plane. In this way, the spars form a fan-like spreadable frame which can be provided with a flexible or foldable material such as tarp, netting, sheeting, fabric or an assembly of plates or leaves, for example. The numerous possible coverings of the fan are hereinafter collectively referred to by the term “canopy”. In its outspread state, such a fan can cover an area of at least one square metre, or at least three square metres.
The hub element 4 is illustrated as a single element, in which all the spars are mounted. The hub element 4 may alternatively consist of a plurality of individual elements, each element being able to support one or more spars. The hub element 4, whether consisting of one or more than one physical element, is referred to in this description as one functional element. The individual pivot axes of the spars may be substantially parallel to one another and may be coaxial or spaced apart from each other, for example. Together, they are collectively referred to as a common outspreading axis of the fan. The respective radial positions along the first and second spars where the biasing member 5 is connected or secured to the first and second spars (also referred to as the intermediate positions) may be expressed in terms of a radial distance from the inner end of the respective spar, or in terms of a radial distance from the outspreading axis. Unless specified otherwise, the distance from the inner end and the distance from the outspreading axis can be understood to be the same for practical purposes. Between the spars 2 and 3 extends an elongate biasing element 5, such as a gas strut (gas spring). The gas spring 5 is arranged in such a way that it keeps the canopy taut when the fan is in the outspread state (as shown in
In the closed state of the fan 1 (as shown in
The dimension b1 is preferably greater, or preferably at least 1.5 times the size, or preferably at least 1.8 times the first distance c1. The length a1 of the extended biasing element 5 (
If the spar 2 is moved along the circumferential direction 13 (hereinafter referred to as the closing direction), the gas spring 5 is put under pressure, thereby storing an amount of energy.
The fan 1 may comprise a blocking device, such as the locking pin 23 for holding the fan 1 in the closed state. Upon closing the fan, the locking pin 23 latches into a hole or into a recess in the oblique end part of the spar 2.
In the closed state (see
The locking device described above can also function as a release device, for example by moving the latching locking pin 23 out of the hole or the recess, whereupon the fan 1 is outspread by means of the energy stored in the biasing element 5. The outspreading is preferably achieved using only the energy stored in the biasing element 5, without any external mechanical drive energy. The biasing member 5 is thus formed so that it can store enough energy to power the outspreading (or the closing, depending on the implementation) of the fan 1 between its closed state and its outspread state. The release device is preferably constructed such that it can be actuated from a distance of more than 1 m, for example with a pole or a remote control. Thus, the fan 1, which may be mounted at a height of eg 2.5 m on a wall, for example, can be opened using the pole or the remote control. In another arrangement of the fan 1 (eg where the fan 1 is secured to the ground), the release device can be designed so that it can be operated directly by hand.
The fan 1 may comprise a damping device for damping the movement of the spars 2, 3, 7, 7′ during the closing and/or spreading of the fan 1. In the illustrated example, the gas spring 5 also performs the function of the damping device. However, a separate damping device could be arranged as one or more single elements or in the pivot axes of the spars.
The example depicted in
In the illustrated example, a biasing element 5 is shown which extends between the two circumferentially outermost spars 2 and 3. The biasing element 5 can alternatively be arranged between any two of the spars, whereby the driving and tensioning force of the biasing element 5 can, if required, be transferred to the further spars in a different way. A plurality of biasing elements 5 can also be arranged between the spars 2, 3, 7, 7′, eg in an overlapping arrangement with each biasing element 5 skipping a spar to which another biasing element is connected. In this way, the opening angle of the fan 1 can be made as large as desired, eg when the hub element 4 and/or the bearings of the inner ends of the spars 2, 3, 7, 7′ are also suitably redesigned.
In this description, the invention is explained using examples in which the pretensioning energy stored in the biasing element is used for spreading out the fan 1. However, it should be noted that the fan 1 can alternatively be designed in such a way that the energy stored in the biasing element 5 serves for closing instead of opening the fan 1. A biasing element 5 may be fitted which is charged during the linear expansion of the biasing element 5. In the latter case, the fan is held in the closed state by the tensioning force of the biasing element 5. In the outspread state of the fan 1, the spars can be held outspread by other means.
In
For this purpose, the tilting mechanism comprises an adjustment element 6, which can be fixed substantially rigidly at the fastening point. The fan 1 is supported on the adjusting element 6 by means of a rotary joint 17, the fan 1 being able to rotate about the axis X relative to the adjusting element 6. In order to increase the variety of possible settings, the adjusting element can be provided with further rotary axes or joints. The illustrated adjusting element 6 has a plurality of adjusting openings 20, into which an adjustment pin 19 can be moved in order to thereby block the rotation of the fan 1. Actuation of the adjusting pin 19 is effected by means of an actuating element 9 and an actuating connection 18. In this example, the actuating connection is implemented, for example, as a cord or chain 18 which can be pulled by means of the actuating element 9 (such as a rotatable shaft) in order to unlatch the adjusting pin from the corresponding adjustment opening. As with the release device described above, the actuating element 9 can be designed such that it can be operated manually by the operator, either directly by hand, or with a pole or other remote control. The actuating connection 18 can extend at least partially through the spar 3, for example in an inner hollow space of the spar 3.
In the illustrated example, the tilting mechanism comprises a second biasing member 10, such as a gas spring, for example. This extends between the hub element 4 of the fan 1 and the adjusting element 6 such that the second biasing element 10 biases the rotary movement of the fan 1 in a direction of rotation about the axis X. In this way, a relatively heavy fan can be easily moved by a user in the said direction of rotation.
In this example, a first end of the second biasing element 10 is mounted on a first bracket 21 which is rigidly or integrally connected to the hub element 4. The second end of the second biasing element 10 is supported on a second bracket 22, which is rigidly or integrally connected to the adjustment element 6.
The fan 1 illustrated in
The features mentioned herein may be arbitrarily combined unless otherwise specified to form further embodiments of the invention.
Number | Date | Country | Kind |
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15157599.0 | Mar 2015 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2016/051122 | 3/1/2016 | WO | 00 |